Добавил:
Опубликованный материал нарушает ваши авторские права? Сообщите нам.
Вуз: Предмет: Файл:

книги / Усталость металлов

..pdf
Скачиваний:
8
Добавлен:
12.11.2023
Размер:
15.72 Mб
Скачать

406.

H. J. G o u g h

and

D. G. S o p wi th,

«Inert

Atmospheres

as

Fatigue En­

407.

vironments». J. Inst. Metals 72 (1946) 415.

 

«The

Effect

of

Atmospheric

N. J. W a d s w o r t h

and J.

H u t c h i n g s ,

408.

Corrosion on Metal Fatigue». Phil. Mag.

3

(1958) 1154.

 

a Single Crystal

H. J. G o u g h

and

D. G. W о p w i t h, «The Behaviour of

 

 

of Aluminium under Alternating Torsional Stresses while

Immersed

in

a

 

Slow Stream of Tap Water». Proc. Roy. Soc. A 135 (1932)

392.

 

 

 

 

409. U. R. E v a n s

and M. T. S i m n a d, «The Mechanism of Corrosion Fatigue

410.

of Mild Steel». Proc. Roy. Soc. A 188 (1947) 372.

Fatigue — the

Influence

D. Whi t w h a m and U. R. E v a n s ,

«Corrosion

411.

of Disarrayed Metal». J. Iron and Steel Inst. 165 (1950)

72.

 

 

 

 

 

К. H. R. Wr i g h t ,

«Fretting

Corrosion

as an Engineering Problem». Cor­

412.

rosion, Prevention and Control (Nov. 1957)

 

37.

 

«Fretting

Corrosion

A. J. F e n n e r ,

К. H. R. W r i g h t and

J.

Y. Ma nn,

 

and its Influence on Fatigue Failure». Int.

 

Conf. on

Fatigue.

 

Inst. Mech.

413.

Engrs.

(1956)

 

386.

«Fretting Corrosion

Tendencies of Several

 

Combina­

J. R. M c D o w e l l ,

 

 

tions of Materials». Amer. Soc. Test. Mat.

 

Symp. on

Fretting

Corrosion.

414.

Spec. Tech. Publ. 144 (1952)

24.

 

of Cast Iron». Conf. on Lubrica­

К. H. R. Wr i g h t ,

«Fretting Corrosion

415.

tion and Wear. Instn. Mech. Engrs. (1957) 628.

 

 

 

 

 

 

 

 

 

G. S a c h s

and

P.

S t e f a n ,

«Chafing

Fatigue Strength of some Metals

416.

and Alloys». Trans. Amer. Soc. Met. 29 (1941)

373.

 

 

 

«The

Fretting

G. A. T o m l i n s o n ,

P. L. T h o r p e and

H.

J. Go u g h ,

 

Corrosion of Closely Fitting Surfaces».

 

Proc.

Instn.

Mech.

 

Engrs.

141

417.

(1939)

223.

 

 

 

 

 

«The Current Status

of

Fretting

Corrosion».

Amer.

W. E. C a m p b e l l ,

418.

Soc. Test. Mat. Symp. on Fretting Corrosion. Spec. Tech. Publ. 144 (1952) 3.

A. J. F e n n e r

and J. E. F i e l d , «The

Onset

of Fatigue

Damage due

to

419.

Fretting». N. E. Coast Inst. Engrs. and

Shipbuilders.

76

(1960)

183.

 

 

O. J. H o r g e r ,

«Influence of Fretting

Corrosion on

the

Fatigue

Strength

 

of Fitted Members». Amer. Soc. Test. Mat. Symp. on Fretting

Corrosion.

420.

Spec. Tech. Publ. 144 (1952)

40.

 

 

 

by Fretting

 

Corrosion».

 

Int.

O. J.

H o r g e r ,

«Fatigue of Large Shafts

 

 

421.

Conf. on Fatigue. Inst. Mech. Engrs.

(1956)

352.

 

 

 

of

Large Shafts

O. J. H o r g e r

and

H. R. N e i f e r t ,

«Fretting Corrosion

 

as Influenced by Surface Treatments». Amer. Soc. Test. Mat. Spec.

Tech.

422.

Publ.

216

(1957)

81.

 

and G. M.

S i n c l a i r ,

«Fretting

Fatigue

H. W. Li u,

H. T. С о г t e n

 

Strength of Titanium Alloy RC 130В». Proc. Amer. Soc. Test. Mat. 57 (1957)

423.

623.

 

 

 

 

 

 

«Creases

to Prevent

Fretting

Corrosion».

Engineering

N. A. S c a r l e t t ,

424.

189

(1960)

424.

«Nitriding». Rev. Metal

45

(1948)

105.

 

 

 

 

 

 

 

H. W i e g a n d ,

 

 

 

 

 

 

 

425.

P. L. Tee d,

 

The Properties

of Metalic

Materials

at

Low Temperatures.

 

Chapman and Hall (1950).

«Behaviour of Steel at Low Temperatures un­

426. M. H e m p e 1 and J. Luce,

 

der Alternating Stress». Mitt. Kaiser Wilhelm Inst, fur Eisenforschung. 23

 

(1941 53. Transl. RAE No. 303 (1949).

 

 

 

 

 

 

 

 

 

 

 

 

 

 

427.

A. S. K e n n e f o r d

and R. W. N i c h o l s ,

«Fatigue

Properties

of

Steels

 

at Low Temperatures». J. Iron and Steel

Inst.

194

(1960)

13.

 

 

 

 

 

428.

A. H. S u l l y ,

Metallic Creep. Buttenrworths,

London

(1949).

 

 

(1959).

429. W. В e 11 e r i d ge, The Nimonic Alloys, Edward Arnold, London

430.

N. P. A l l e n

and

P. G. F o r r e s t , «Influence of

Temperature

on the

Fa­

 

tigue of Metals». Int. Conf. on Fatigue,

Inst. Mech. Engrs. (1956) 327.

431. J. E. B r e e n

and J. R. L a ne , «Effect

of Grain Size

on High Temperature

 

Fatigue Properties

of

Alpha

Brass». Trans. Amer. Soc. Metals

46

(1954)

1021.

432.

P. R. Т о о 1i n

and F. C. Hul l ,

«Fatigue Strength of Refractaloy

26 as

 

 

 

Affected by Temperature, Hardness and Grain Size». Proc. Amer. Soc. Test.

433.

Mat.

52 (1952)

791.

 

 

«Statistical

Study of Creep and Fatigue

G. T. H a r r i s

and H. C. Ch i l d ,

 

 

 

Properties of a Precision-Cast High Temperature Alloy». J. Iron and Steel

 

 

 

Inst.

178 (1954)

284.

of Pulsating Loads on the Creep of Aluminium

434. M. J. M a n j о i n e, «Effect

435.

Alloy 14S—Т». Proc. Amer. Soc. Test. Mat. 49 (1949) 788.

 

 

due

to

H. J. T a p s e 11, P. G. F o r r e s t

and G. R. T r e m a i n, «Creep

 

 

 

Fluctuating Stresses at Elevated Temperatures». Engineering 170 (1950)

436.

 

189.

 

 

 

 

 

and Rupture

Properties under

Tensile

Fa­

 

B. J. L a z a n, «Dynamic Creep

437.

tigue

Stress». Proc. Amer. Soc. Test. Mat. 49 (1949) 757.

 

 

 

 

 

 

F. H. V i t o v e c , «Dynamic

Creep». Proc. Amer. Soc. Test. Mat. 57 (1957)

438.

977.

 

«Influence of

Frequency on the Repeated Bending

Life

of

 

J. F. Ec ke l ,

439.

Acid Lead». Proc. Amer. Soc. Test. Mat. 51 (1951) 745.

 

 

 

 

 

and

 

H. F. M o o r e

and

C. W. D о 11 i n s, «Fracture and Ductility of Lead

440.

Lead Alloys». Univ. Illinois, Bulletin No. 347

(1943).

 

 

 

 

Proc.

 

G. R. G о h n

and

W. C. E l l i s ,

«Fatigue of

Lead Cable Sheath».

 

 

Amer. Soc. Test. Mat. 51 (1951) 721.

 

 

 

 

 

 

 

441. J. M c K e o w n ,

«Fatigue Properties of some Non-Ferrous Metals excluding

442.

 

Light Alloys». Int. Conf. on

Fatigue, ilnst. Mech. Engrs. (1956) 432.

 

 

P. G. F o r r e s t ,

«Speed Effect in

Fatigue». Proc. Roy. Soc. A.

242 (1957)

443.

 

223.

 

 

 

Int. Conf. on

Fatigue. Inst. Mech. Engrs.

(1956)

841.

G. F. G u a r n i e r i ,

444.

W. L. C o l l i n s ,

«Fatigue Tests of an Austenitic Cast

Iron

at

 

Elevated

 

Temperatures». Proc. Amer. Soc. Test. Mat. 4841948) 696.

the

Notched

445.

M. W e i s z and

R. C a z a u d, «Influence of Temperature on

 

Fatigue Strength of Steel». Rev. Metal 56 (1959) 299.

 

 

Sensitivity

446.

F. H. V i t o v e c

and B. J. L a z a

n, «Creep Rupture and Notch

 

Properties of S—816 Alloy up to 1650° F. under Fatigue

and Static

Stress».

447.

Amer. Soc. Test. Mat. Spec. Tech. Publ. No. 174 (1955).

Properties

at

Ele­

R. L. F e r g u s o n ,

«Effect of Surface Finish on Fatigue

448.

vated

Temperatures». Nat. Audv. Co. Aero. Tech. Note 3142 (1954).

on

Fa­

W. E. J o n e s

and

G. B. Wi l k e s ,

«Effect of

Various

Treatments

 

tigue Strengths at Elevated Temperatures». Proc. Amer. Soc. Test. Mat. 50

 

(1950)

744.

 

 

 

 

 

 

of Helical Springs

at Ele­

449. A. P o m p and M. H e m p e 1, «Fatigue Strength

450.

vated Temperatures». Arch. Eisenhuttenw. 21 (1950) 263.

 

 

 

 

 

 

F. P. B o w d e n ,

«The Experiments of Boas and Honeycombe on Internal

 

Stresses due to Anisotropic Thermal Expansion

of Pure

Metals

and

Al­

 

loys». Symposium on Internal Stresses in Metals and Alloys. Inst. Metals.

 

(1947)

275.

 

«Corrosion Fatigue Cracking Resulting from Wetting of

451. A. H. G o o d g e r ,

 

Heated Metal Surfaces». Int. Conf. on Fatigue. Instn. Mech. Engrs.

(1956)

394.

 

«Thermal Fatigue

and Thermal

Shock». Welding

Research

452.

H. T h i e 1 s c h,

Council Bulletin Series No. 10 (1952).

 

 

 

 

 

 

 

453.

L. N o r t h c o t t

and

H. G. B a r o n ,

«Craze—cracking in Metals». J. Iron

and Steel Inst. 184 (1956) 385. See also J. Iron and Steel Inst. 197 (1961)

223.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

454. J. R. J o h n s t o n ,

J. W. W e e t о n and R A. S i g n о г e 11i, «Engine Ope­

rating Conditions that Cause Thermal Fatigue Cracks in Turbojet-engine Buckets». National Aeronautics and Space Administration. Memo. 4—7—39E (1959). See also N. A. S. A. T. N. D—272 (1960).

455. M. J. W h i t m a n, R. W. H a 11 and C. Y a к e r, «Resistance of Six

Cast High-Temperature Alloys to Cracking Caused by Thermal Shock». Mat. Adv. Co. Aero. Tech. Note 2037 (1950).

456.

Н. Е.

L а г d g е,

«Thermal Fatigue

Testing of

Sheet

Metal».

 

Amer.

Soc.

457.

Test. Mat. Spec. Tech. Publ. No.

174 {1955) 146.

 

Fatigue

Behaviour of

Me­

E. G 1e n n у

and

T. A. T a 1о г,

«The

Thermal

458.

tals». J. Inst. Metals 88 (1960) 449. And see discussion 89 (1961)

428.

 

T. A. Hu nt e r ,

 

«Thermal Shock

Testing

of High — Temperature

Metallic

459.

Materials». Amer. Soc. Test. Mat. Spec. Tech. Publ. No. 174 (1955)

164.

F. L. M u s c a t e l

1, E. E. R e y n o l d s ,

W. W. D y r k a c z

and J.

H.

D a-

 

 

1h e i m, «Thermal

Shick

Resistance

of

High-Temperature

Alloys».

Proc.

460

 

Amer. Soc. Test. Mat.

57 (1957)

947.

for

High

Temperature

Service».

Iron

 

P. A. H a у t h о г n e,

«Sheet

Metals

461.

Age

162 (1948)

89.

 

 

 

of

 

Metals

under

 

Conditions

of

Thermal

S. S. M a n s on,

«Behaviour

 

 

462.

Stress». Nat. Adv. Co. Aero. Report 1170 (1954).

 

for the Study of the Ef­

L. F. C o f f i n

 

and R. P. We s l e y ,

«Apparatus

 

 

fects of Cyclic Thermal Stresses on Ductile Metals». Trans. Amer. Soc. Mech.

463.

Engrs.

75

(1953)

 

923.

 

 

 

 

 

 

 

 

 

 

 

 

 

High-Temperature

L. F. C o f f i n ,

 

«Thermal-Stress Fatigue as Related to

464.

Piping Flexibility». Trans. Amer. Soc. Mech. Engrs. 79 (1957)

1637.

 

L. F.

C o f f i n ,

 

«Strain Cycling and Thermal Stress

Fatigue».

Proc. 4th

 

 

Sagamore Ordnance Materials Research Corp. Syracuse University Res. Inst.

465.

 

New York (1957).

 

 

and Mechanical

Fatigue

of Nickel

and

 

Titanium».

 

H. M a j o r s ,

 

«Thermal

 

466.

Trans. Amer. Soc. Met.

51 (1959)

421.

 

«Thermal

Fatigue

of

Ductile Mate­

F. J. С 1a u s s

 

and J. W. F r e e m a n ,

 

 

rials». 1. Nat. Adv. Co. Aero. Tech. Note 4160 (1958), Adv. Co. Aero Tech.

467.

Note 4165 (1958). 3 Nat. Aero and Space Admin. Tech. Nate D—69 (1959).

 

R. W.

S w i n d e m a n

 

and

D.

A.

D o u g l a s ,

«The

Failure

 

of Metals

468.

 

Subject to Strain Cycling». Trans. Amer. Soc. Mech. Engrs. 81 D (1939) 203.

 

F. J. M e h r i n g e r

and R. P. F e 1g a r, «Low-Cycle Fatigue of Two Nickel-

 

 

Base Alloys by Thermal-Stress Cycling». Trans. Amer. Soc. Mech. Engrs.

469.

82 D (1960) 661.

«The Stability

of

Metals

under

 

Cyclic

 

Plastic

strain».

 

L. F. C o f f i n ,

 

 

470.

Trans. Amer. Soc. Mech. Engrs.

82 D (1960) 671.

 

Fatigue».

Mechanical

 

S. M. A r n o l d ,

 

«Effect of Screw Threads on

471.

Engng.

65

(1943)

497.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

of Metals by

 

J. G. R i t c h i e ,

 

«Fatigue of Bolts and Studs», Symp. Failure

472.

Fatigue, (1946) Melbourne Univ. Press (1947) 260.

Threaded

Connections».

 

R. C. A. T h u s

st on, «The Fatigue Strength of

473.

 

Trans. Amer. Soc. Mech. Engrs, 73 (1951)

1085.

 

 

 

 

Engineer

198

 

J. E. F i l e d ,

 

«Fatigue

Strength

of

Screw

Threads».

474.

(1954)

123.

 

 

 

 

 

 

 

 

 

 

 

«Unification

of Screw Thread

Practice».

 

D. G. S о p w i t h and J. E. F i e d.

 

Engineer 203

(1957)

793.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

475.

 

H. F. M o o r e

and

P. E. He n wood,

«The Strength

of

Screw

Threads

 

under Repeated Tension». Univ. Illinois Eng. Expt. Station Bull. No.

264

476.

(1934).

 

 

 

 

 

 

J. A. F o wl e r , «Development

of Aircraft

Fasteners by

 

R. T. A 11 s о p and

477.

G. K. N.» G. K. N. Report

No. 524

(1960).

 

Screw

Threads». Engineers’

Di­

H. D i n n e r

and

W. F e l i x ,

«'Rolling of

 

gest,

6 (1945)

332.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

478.

 

J. 0.

Al me n,

«On

the Strength of Highly iSrtessed, Dynamically

Loaded

Bolts and Study». Trans. Soc. Automotive Engrs.

52 (1944)

151.

 

 

 

 

479.

W. A. P. F i s h e r ,

R.

H. C r o s s

and

G. M.

N o r r i s ,

«Pre-Tensioning

for Preventing Fatigue Failure in Bolts». Aircraft Engng. 24 (1952)

160.

480.

P. B. Wa l k e r ,

«Fatigue

of a

 

Nut

and

Bolt».

J.

 

Royal

 

Aero

 

Soc.

62

481.

(1958)

395.

«Design of

Screw

 

Fastenings,

Subject

to

repeated

 

Stress».

A. E r k e r ,

 

 

 

 

Int. Conf.

on

Fatigue,

Inst. Mech. Engrs.

(1956)

290.

 

 

 

 

 

 

 

 

482.

D. G. S о p w i t h, «The Distribution

of Load

in Screw Threads». Proc. Inst.

483.

Mech. Engrs. 159 (1948) 373.

 

on

the

Fatigue

strength

of

H. W i e g a n d. «Effect of the nut material

484.

bolts». Z. Ver. Dtsch. lng. 83 (1939)

64.

 

 

and

Bolts. Engineering

R. В. H e у w о о d, «Longer Fatigue

Life for Nuts

485.

189

(I960)

494.

and W. J a n i c h e, «Fatigue

Strength

of Steel Bolts

and

F. K a u f m a n n

 

Studs Fitted with Steel or Magnesium Alloy Nuts». Z. Ver. Dtsch. Ing. 85

486.

(1941)

504.

 

and G. M. N o r r i s ,

«Preventing Fatigue Failure of

Steel

R. H. C r o s s

487.

Bolts». Engineer 198 (1954) 410.

 

 

and

Nut

Fastenings»

Trans.

M. H e t e n y i ,

«А Photoelastic Study of Bolt

488.

Amer. Soc. Mech. Engrs. 65 (1943) A 93.

 

 

Strength

of Five Types

A. F. C. B r o w n

and W. M с С 1i m о n t, «Fatigue

489.

of Stud». Engineering 189 (I960) 430.

 

 

 

 

Aircraft

Est.

R. B. H ey wood, «The Strength of

Lugs in Fatigue». Royal

490.

Tech. Note Struct. 182 (1956).

«The Fatigue Strength of Aluminium

J. S c h i j v e

and

F. A. J a c o b s ,

 

Alloy

Lugs». Nat.

Lucht. Lab. TN. M. 2024

(1957).

 

 

 

 

 

491.A. C. Low, «The Fatigue Strength of Pin—Jointed Connections in Alumi­ nium Alloy BS. L 65». Proc. Inst. Mech. Engrs. 172 (1958) 821 (and see

discussion).

492. W. A. P. F i s h e г and W. J. Wi n k w o r t h , «Improvements in the Fatigue

 

Strength of

Joints

by

the

Use

of Interference

Fits».

Aero.

Res.

Council.

493.

R. M. 2874.

H. M. S O.

(1955).

 

 

«Fatigue

Tests

of Riveted

Joints».

W. M. W i l s o n

and

F.

P. T h o m a s ,

494.

Univ. Illinois, Eng. Expt.

Station, Bull. No. 302

(1938).

«Laboratory

W. H. M u n s e, D. T. W r i g h t

and

N.

M.

N e w m a r k,

495.

Tests of Bolted Joints». Trans. Amer. Soc. Civil Engrs. 120 (1955)

1299.

S. K e l s e y

and J. B. S p o o n e r , «Direct Stress

Fatigue Tests on Redux—

 

Bonded and Riveted Double Strap Joints in 10 S. W. G. Aluminium Alloy

496.

Sheet». Aero. Res. Council, Current paper 355 (1957).

Strength

of

 

Single

A. H a r t m a n

and

W.

К 1a a s s e n,

«The Fatigue

 

 

Lap Joints of Clad 24 S—T and 75 S—T Aluminium Alloy with Two Rows

497.

of 17S Rivets». Nat. Lucht. Lab. TN M. 2011

(1956).

and W. W.

B e a v e r ,

H. W. R u s s e l l ,

L. R. J a c k s o n , H. J. G r o v e r

 

«Fatigue Characteristics

of Sheet and Riveted Joints of 0.040».

24

S—T,

 

75 S—T and R 303—T

275,

Aluminium Alloys».

Nat. Adv.

Co.

Aero.

498.

Tech. Note 1485 (1948).

 

 

 

 

H. F. M o o r e

and H.

J.

G r o v e r ,

L. R. J a c k s o n ,

W.

M. Wi l s o n ,

 

«The Fatigue Characteristics of Bolted Lap Joints of 24S—T Alclad Sheet

499.

Material». Nat. Adv. Co. Aero. Tech. Note 1030 (1946).

 

 

 

 

 

F. A. J а с о b s and A. H a r t m a n , «The Fatigue Strength of Redux-Bonded

500.

75 S—T Clad Simple Lap Joints». Nat. Lucht. Lab. Report M. 1969

 

(1954).

A. H a r t m a n ,

«The

Fatigue

Strength

of

Riveted

Single Lap

Joints of

501.

24S—T Alclad Sheet and

17S Rivets». Nat. Lucht. Lab. TN. M. 1943 (1954).

H. B u r n h e i m ,

«The Endurances of Riveted Joints in Light Metal Sheets».

 

Aluminium 28 (1952)

140

and

222.

 

 

 

 

 

 

 

 

 

 

 

502.

W. A. P. F i s h e r

and

W. J. Wi n k w o r t h ,

«The

Effect of

Tight

Clam­

 

ping on the Fatigue Strength of Joints». Aero. Res. Council.

R. M. 2873,

 

H.M. S.O. (1955).

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

503.

R. B. H ey wood,

«Correlated

Fatigue

Data

 

for

Aircraft

Structural

 

Joints». Aero. Res. Council. Current Paper 227

(1955).

 

 

 

 

 

504.

E. C. H a r t m a n n ,

M.

H o l t

and

I.

D. E a t o n ,

«Static

and

Fatigue

 

Strengths of High-Strength Aluminium Alloys Bolted Joints». Nat. Adv. Co.

 

Aero. T. N. 2276 (1951),

T. N. 3269 (1954).

 

 

 

 

 

 

 

 

 

505.

R. B. H ey wood,

«Simplified

Bolted Joints for

High

Fatigue

Strength»,

 

Engineering

183 (1957)

174.

 

 

 

 

 

 

 

 

 

 

 

 

 

506.

В. Е. S t e p h e n s o n , «Fatigue

Properties of Joints»,

Chapter

in Metals

507.

Fatigue, Chapman & Hall (1959)

283.

 

 

E. H. S p a u l d i n g ,

«Detail Desing for Fatigue in Aircraft Wing Structu­

 

res». Chapter in Metal

Fatigue. McGraw Hill, New York

(1959)

325.

508.R. Week, «Fatigue of Welded Structures». Struct. Engr. 32 (1954) 115.

509.R. Week, «The Fatigue Problem in Welded Construction». Int. Conf. on Fatigue. Inst. Mech. Engrs. (1956) 704.

510.Conference on Fatigue of Welded Structures. Cambridge (1960). Brit. Wel­ ding J. 7 (1960)1161, 281, 472, 513, 577.

511.

W. Sp r a r a g e n

 

and

G. E. С 1a u s s e n,

«Fatigue

Strength

of

Welded

512.

Joints». J. Amer. Welding Soc. 16 (Jan.

1937) 1—s.

Strength

 

of

Welded

W.

Sp r a r a g e n

 

and

D. R o s e n t h a l ,

«Fatigue

 

513.

Joints». Welding J. 21 (1942) 297—s.

 

of

Welds». Chapter in

Metal

Fa­

J.

G. Wh i t ma n ,

«Fatigue Properties

514.

tigue. Chapman and Hall

(1959) 295.

«Fatigue

Tests on Mild

Steel

Butt

R. P. N e w m a n

 

and

T. R. C u r n e y,

515.

Welds». Brit. Welding J. 6 (1959) 569.

 

 

N e w m a r k ,

«Fatigue

L. A. H a r r i s ,

G. E. No r dm a r k and N. M.

516.

Strength of Butt

Welds

in Structural Steels». Welding J.

34

(1955)

83—s.

J. E. S t a l l m e y e r

and W. H. M u n s e,

«Fatigue

of

Welded

Joints in

517.

High-Strength Steels». Brit. Welding J. 7 (1960) 281.

 

 

 

 

 

 

H. de L e i r i s and

H. D u t i 11 e u 1, «Fatigue Test of Are—Welded Joints».

 

Welding J. 31 (1952) 104—s.

 

 

Characteristics_of

a

Quenched

518. W. D ’ O r v i l l e

 

Dot y,

«Properties and

519.

and Tempered Steel for Pressure Vessels». Welding J. 34 (1955)

425—s.

 

H. J. G r o v e r ,

R. W. B e n n e t t and

G. M. F o l e y , «Fatigue

Properties

520.

of Flash Welds». Welding J. 24 (1945) 599—s.

 

 

 

Electro-Slag

E. P. U n к s о v,

 

«Fatigue Endurance of Large Parts with

521.

Welds». Int. Conf. on Fatigue. Inst. Mech. Engrs.

(1956)

727.

 

 

 

 

R. P. N e w m a n ,

 

«Fatigue Strength of Butt Welds in Mild Steel». Brit.

522.

Welding J. 7 (1960) 169.

 

 

British Standard

153

(1958).

 

Steel Girder Bridges. Part 3B Stresses.

 

523.

R. P. N e w m a n .

«Effect on Fatigue Strength of Internal Defects in Wel­

524.

ded

Joints.» Brit. Welding J. 6 (1959) 59.

 

 

 

 

 

 

 

 

R.

P. N e w m a n ,

 

«The Infuence of Weld Faults on Fatigue Strength».

 

Trans. Inst. Marine Engrs. 68 (1956)

153.

Low

Alloy Structural Steels».

525. J. Y. Ma nn,

«Fatigue

Properties of Welded

 

Aero. Res. Labs. Australia. Tech. Memo. SM/87 (1960).

 

Magnesium

526. J. E. B r e e n

and

 

A. S.

Dwy e r ,

«The Fatigue

Strength of

 

Alloy HK. 31, As Modified by a Weld Joint». Amer. Soc. Test. Mat. Bull.

No.

234 (1958)

60.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

527.

R. P. N e w m a n ,

«Fatigue Tests on Butt-Welded Joints in Aluminium Al­

loys, H. E. 30 and NP. 5/6». Brit. Welding J. 6 (1959) 324.

 

 

 

 

 

528.K. W. G u n n and R. M c L e s t e r, «Fatigue Properties of Aluminium Alloy Butt-Welded Joints». Brit. Welding J. 7 (1960) 201.

529.J. L. W о о d, «Flexural Fatigue Strength of Butt Welds in NP. 5/6 Type Aluminium Alloy». Brit. Welding J. 7 (1960) 365.

530.

R. L. T e m p i in

and M. Ho l t ,

«Static

and Fatigue Strengths of Welded

 

Joints

in Aluminium — Manganese Alloy

Sheet

and

Plates». Welding J.

26

 

(1947)

105—s.

 

 

 

 

 

 

 

 

 

 

 

531.

E. C.

H a r t m a n n ,

M.

H o l t

and I. D. E a t o n ,

«Fatigue

Strength

of

 

Butt Joints in 3/8in.

Thick Aluminium

Alloy

Plates».

Welding

J.

33

 

(1954)

21—s.

 

 

 

 

 

 

 

 

*

 

 

532.

Welding Handbook, Part

1, Amer. Welding Soc. (1957).

 

 

 

 

533.

W. H.

M u n s e

and

J.

E. S t a l l m e y e r ,

«Influence

of Weld

Details

 

on Fatigue of Welded

Beams and Girders». Brit. Welding J. 7

(1960) 188.

534.

I. V. K u d r y a v t s e v ,

«The Influence of Internal Stresses on

the

Fatigue

 

Endurance of Steel»,

Int. Conf. on Fatigue. Inst. Mech. Engrs.

(1956) 317

535.

T. R. G u r n e y and L. N. T г e p к a,

«Influence

of

Local Heating on

Fati­

536.

gue Behaviour of Welded Specimens». Brit. Welding J.

6 (1959)

491.

 

 

 

G. We l t e r ,

«Fatigue

of

Spot Welds». Welding J.

34

(1955) 153—s.

Single

537.

G. We l t e r

and A.

C h о q u e t, «Internal Stress

Distribution^ of

 

Spot Welds in Relation to their Fatigue Life». Welding J. 38 (1959)

145—s;

538. G. H a n s e l ,

«Mechanical Properties

of (Brazed iButt Joints». Wedling J.

35

539.

(1956)

211—s.

 

 

S. Tour, «Fatigue Strength

of Silver-Alloy

Bra­

С. H. C h a t f i e 1d and

540.

zed Joints in Steel». Welding J. 37 (1958) 37—s.

 

 

 

Bra­

R. G. A s p d e n and. W. F e d u s к a, «Fatigue Characteristics of Joints

541.

zed with a Ni—Cr—Si—В —C Alloy». Welding J.

37 <1958) 125—s.

 

 

in

R. W. K. H o n e y c o mb e , «Conditions

Leading

to

Fatigue

Failure

 

Sleeve Bearings». Symp. on Failure

of

Metals

by

Fatigue.

Melbourne

 

(1946)

362.

 

 

«The Fatigue Properties of Brasses,

Bronzer

and

542. J. W. C u t h b e r t s o n ,

 

Bearing Metals» and «Fatigue Testing of Bearings», Chapters in Metal

543.

Fatigue. Chapman and Hall (1959), 249 and 339.

 

 

 

 

 

 

 

W. E. D u c k w o r t h

and G. H. W a 11 e r, «Fatigue of Plain Bearings». Int.

 

Conf. on Fatigue. Instn. Mech. Engrs.

(1956) 585.

 

 

 

 

 

 

 

544.P. G. F o r r e s ter, «How to Choose Materials for Bearing Surfaces». Eng. Materials and Design 2 (1959) 494.

545.Symposium on Testing of -Bearings. Amer. Soc. Test. Mat. (1946).

546.

R. H. B u t l e r

and T. L. C a r t e r , «Stress—Life Relation of the RoHing—

547.

Contact Fatigue

Spin Rig». Nat. Adv. Co. Aero. Tech. Note 3930 (1957).

 

F. T. B a r we 11 and D. S c o t t ,

«Effect of

Lubricant on

Pitting

Failure

548.

of Ball Bearings». Engineering 182 (1956) 9.

Investigation

of

the

Fatigue

J. L i e b l e i n

and

M. Ze l e n,

«Statistical

 

Life of Deep-Groove Ball Bearings». J. Res. Nat. Bureau Standards

57

 

(1956)

273.

 

«Improved Method for Estimating Fatigue Life of Bevel

549. W. C o l e m a n ,

550.

and Hypoid Cears». Soc. Automative Engrs. Quarterly Trans. 6 (1952) 314.

H. B. K n o w l t o n

and

E. H. S n y d e r , «Selection

of

Steel

and Heat

551.

Treatment for Spur Gears». Trans. Amer. Soc. Met. 28 (.1940)

687.

 

 

M. R. G r o s s ,

«Laboratory Evaluation of Materials for Marine Propulsion

552.

Gears». Proc. Amer. Soc. Test. Mat. 51

(1951)

701.

 

Stresses

in Heli­

D. G. S о p w i t h, «The Production of Favourable Internal

 

cal Compression Springs by Pre-stressing». Symp. Internal Stresses in Me­

553.

tals

and Alloys,

Inst. Metals

(1947) 195.

 

 

 

 

Springs». Iron

W.

E. B a r d g e t t

and

F. G a г t s i d e, «Fatigue of Coiled

554.

and

Steel 24

(1951)

375,

411

and

454.

 

 

 

of Compression — Type

R. C. C o a t e s

and

J. A. Pope, «Fatigue Testing

 

Coil Springs». Int. Conf. on Fatigue, Instn. Mech. Engrs.

(1956) 604.

 

555.

R. L. R i с к e 11 and A. O. Ma s o n ,

«Fatigue

Properties

of Springs». Me­

 

tal

Progress

63

(March 1953)

107.

 

 

 

 

 

 

 

 

 

 

556.

H. C. B u r n e t t , «Torsional

Fatigue

Properties of

Small

Diameter

H igh -

 

Carbon Steel Wire». Proc. Amer. Soc. Test. Mat. 58 (1958)

515.

 

 

557.

«Design of

Helical

Compression

Springs».

Design

Data

Sheets

M. O. S

 

H.M .S.O., London (1951).

 

 

 

 

 

 

 

 

 

 

 

558.

J.

О. A 1m e n, «Torsional

Fatigue Failures».

Product

Engineering

22

 

(Sept.

1951)

167.

 

 

 

 

 

 

 

 

 

 

 

 

 

559.

T. B a l d w i n ,

«Significance of the Fatigue of Metals to Railways». Int.

 

Conf. on Fatigue. Inst. Mech. Engrs.

(1956)

695.

 

 

 

 

 

 

560. R. E. P e t e r s o n . «Fatigue of Shafts having Keyways», Proc. Amer. Soc Test. Mat. 32 II (1932) 413.

561.

C. G. W i l l i a m s

and

J. S. B r o wn , «Fatigue Strength

of Crankshafts».

562.

Engineering

154 (1942)

58.

159 (1948) 247.

R. J. Love,

«Cast

Crankshafts». J. Iron and Steel Inst.

563.

C. W. G a d d

and

N. A. O c h i l t r e e ,

«Full-Scale

Fatigue

Testing of

564.

Crankshafts».

Proc.

Soc. Exp. Stress

Analysis 211 (1944)

150.

Crankshafts».

H. R. M i l l s

and

R. J. Love , «Fatigue

Strength

of

Cast

 

Proc. Inst. Mech. Engrs., Automobile Division (1948—49)

81.

 

 

565. C. W. Ga d d ,

J. O. A n d e r s o n and

D. Ma r t i n ,

«The Fatigue Strength

566.

of Steel Members». Trans. Soc. Automotive

Engrs. 63 (1955)

362.

A. R. C. Ma r k l ,

«Fatigue Tests of Piping Components». Trans. Amer.

567

Soc. Mech. Engrs. 74 (1952) 287.

 

 

 

 

 

 

 

A. R. C. Ma r k l ,

«Piping-Flexibility Analysis». Trans. Amer. Soc. Mech.

568.

Engrs.

77

(1955)

127.

 

 

 

 

 

 

 

 

P. H.

R.

L a n e,

«Fatigue Tests on Seamless Mild-Steel Pipe Bends».

 

Int. Conf. on

Fatigue.

Inst. Mech. Engrs.

(1956) 687, also

see Discussion,

569.

page 869.

 

 

 

 

 

 

 

 

 

 

of Crane Hooks

H. J. Go u g h , H. L. C o x and D. G. S о p w i t h «Desing

 

and other Components of Lifting Gear». Proc. Inst. Mech. Engrs. 128

570.

(1934)

253.

«Failures of Railway Materials by Fatigue». Symp. on Fa­

H. O ’ Ne i l l ,

571.

tigue, Melbourne (1946)

416.

«Fatigue in Railroad Equipment». Int.

W. M. K e l l e r

and G.

M. M a g e e ,

 

Conf. on Fatigue. Inst.

Mech. Engrs.

(1956)

677.

 

 

 

 

572.А. О. P a у n e and others, «Fatigue Characteristics of a Riveted 24S—T Alu­ minium Alloy Wing». Aero. Res. Labs., Melbourne, SM. 246, 247, 248 (1956), SM. 263 (1958), SM. 268 (1959)—Discussion of Results and Conclusions.

573.K. R. R a i t h b у and J. L о n g s о n, «Some Fatigue Characteristics of a Two-Spar Light Alloy Structure». H. M. S. O. Aero. Res. Council, Current

574.

Paper 258 (1956).

 

 

 

 

 

Tests

of Full-Scade Transport-

R.

E.

Wh a l e y , «Variable-Amplitude

575.

Airplane Wings». Nat. Adv. Co. Aero. T.

N.

4132

(1957).

 

of

Metals».

O. F о p p 1,

«The

Practical Importance

of

Damping

Capacity

576.

J. Iron and Steel Inst. 134 (1936) 393.

Resonant

Vibration

Conditions».

B. J.

L a z a n, «Fatigue

Failure

under

577.

Chapter in Fatigue, ASM

(1953).

Aspects

of Fatigue in Aircraft Structures».

R. L. S c h l e i c h e r ,

«Practical

 

Fatigue in Aircraft Structures. Academic Press, New York (1956), 376 (and

578.

see Appendix, Page 423).

 

 

 

 

 

J.

Royal

Aero.

Soc.,

59

W. T у e, «The Outlook on Airframe Fatigue».

579.

(1959)

339.

 

 

 

 

 

 

H.

Gi d d i n g s ,

P.

B. W a l k e r

R. H.

S a nd if er, J. K. W i l l i a m s ,

 

and

A.

J. B a r r e t t ,

«Aircraft

Design Philosophy». J. Royal Aero. Soc. 60

580.

(1956)

301.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Fatigue in Aircraft Structures. Academic Press, New York (1956).

 

 

581.

J. Ta y l or ,

«Fatigue

Loading

Actions

on Transport Aircraft». Int. Conf.

582.

on Fatigue, dnst. Mech. Engrs.

 

(1956) 650.

 

 

 

 

 

 

 

 

J. T a y l o r ,

«Fatigue Loads and Their Effect on Aircraft Structures». Chap­

583.

ter in Metal Fatigue, Chapman and Hall, London

(1959)

308.

 

 

 

R. A t k i n s o n ,

«Fatigue Testing in Relation

to

Transport Aircraft». Fa­

584.

tigue in Aircraft Structures, Academic Press, New York (1956)

279.

Sci.

Bo. K. O. L u n d b e r g,

«Fatigue Life of Airplane

Structures».

J. Aero,

 

(1955)

349, and Aero. Res. Inst., Sweden, FFA Rpt. 60 (1955),

see

also

FFA

 

Rpt.

76 (1958).

 

 

 

 

 

 

 

 

 

 

 

 

 

 

585.

E. H.

S p a u l d i n g

«Design

of Fatigue—Resistant

and

Fail—Safe

Air­

 

craft Structures». Int.

Conf. on

Fatigue,

Instn. Mech.

Engrs. (1956) 628.

586. J. Y. M a n n, «The Historical Devel opment of Research on Fatigue». J. Au­ stralian Inst. Metals 3, (1958) 51.

587. N. T h o m p s o n and N. J. W a d s w o r t h , «Metal Fatigue», Advanc. Phys. 7 (1958) 72.

588. W. R a n к i n e, «On the Causes of Unexpected Breakage of the Journals of Railway Axles». Proct Inst. Civil Engrs. 2 (1843) 105.

589.

Е. А. H o d g k i n s o n ,

«Report of the Commissioners Appointed to Enquire

 

into the Application of

Iron to

Railway Structures». H. M. S. O. Command

590.

Paper No. 1123 (1849).

 

to Determine the Effect of Impact, Vibra­

W. F a i r b a i r n, «Experiments

 

tory Action and Long—Continued Changes of Load on Wrought Iron Gir­

591.

ders. Phil. Trans. Roy. Soc. 154 (1864) 311.

«The Fracture of Metals under

J. A. E w i n g

and J. C. W. H u m f r e y ,

592.

Repeated Alternations of Stress». Phil. Trans. Roy. Soc. A200 (1903) 241.

H. J. G o u g h

and D. H a n s o n , «Behaviour of Metals Subjected to Repea­

593.

ted Stresses». Proc. Roy. Soc. A104 (1923) 539.

 

H. J. Go u g h ,

«Crystalline Structure in Relation to Failure of Metals —

594.

Especially by "Fatigue». Proc. Amer. Soc. Test. Mat.

33 II (1933) 3.

E. O r o wa n ,

«Theory

of the Fatigue of

Metals».

Proc. Roy. Soc. A171

 

(1939)

79.

 

 

 

 

 

595.W. A. Wood, «Failure of Metals Under Cyclic Strain». Int. Conf. on Fa­ tigue Inst. Mech. Engrs. (1956) 531.

596.W. A. W о о d, «Basic Studies of Fatigue in Metals». Int. Conf. on Fracture. Swampscott, Massachusetts (1959) Technology Press M. I. T. and John Wi­

 

ley, New York; Chapman and Hall, London (1959) 412.

 

 

 

597. T. B r o o m

and

R. K. Ham,

«The

Hardening and Softening of Metals

 

by Cyclic Stressing». Proc. Roy. Soc.

A242

<(1957)

166.

See

also

251

598.

(1959)

186.

 

А. К. H e a d

and

W. A. Wood,

«Structural

Changes

F. P.

В u 11 e n,

599.

During the Fatigue of Metals». Proc. Roy. Soc. A216

(1953)

332.

 

 

P. J. F о r s у t h, «Slip-Band Damage and Extruction». Proc. Roy. Soc. A242

600.

(1957)

198.

 

 

 

Formation in Silver Chloride». Amer.

P. J. E. F o r s y t h , «Fatigue Crack

601.

Soc. Test. Mat. S. T. P. No. 237

(1958) 21.

and Intrusion by Cyclic Slip

in

A. H. C o t t r e l l

and D. Hul l ,

«Extrusion

602.

Copper». Proc. Roy. Soc. A242 (1957) 211.

 

 

 

 

 

D. Hul l , «Surface Structure of

Slip

Bands on Copper Fatigued at 293°,

603.

90°, 20° and

4.2° К». J. Inst. Met. 86 (1958) 425.

 

 

Origin

of

N. T h o m p s o n ,

N. J. W a d s w o r t h and N. L о u a t, «The

604.

Fatigue

Fracture

in Copper». Phil. Mag. 1

(1956) 113.

 

 

 

N. T h o m p s o n ,

«Some Observations on the Early Stages of Fatigue Fra­

 

cture». Int. Conf. on Fracture, Swampscott

1959. Tech. Press M. I.T. and

 

John Wiley,

New York, Chapman and

Hall,

London,

(1959)

354.

 

 

605' Як C* S m i t h . «The Initial Fatigue Crack». Proc. Roy. Soc. A242 (1957)

606. M. S. H u n t e r and W. G. F г i с к e, «Effect of Alloy Content on the Me­

tallography Changes Accompanying Fatigue». Proc. Amer. Soc. Test. Mat. 55 <1955) 942.

607.M. Hem pel, «Metallographic Observations on the Fatigue of Steels». Int. Conf. on Fatigue. Inst. Mech. Engrs. (1956) 543.

608.

W. J. C r a i g ,

«An Electron Microscope Study of the Development of Fati­

609.

gue Failures». Proc. Amer. Soc. Test. Mat. 52

(1952) 877.

Method

G. M. S i n c l a i r

and

T. J. Do l a n ,

«Use

of a Recrystallization

 

to Study the Nature of Damage in Fatigue of Metals». Proc. First U. S. Na­

 

tional Congress Appl. Mech. <1951) 647.

 

 

 

600.

P. J. E. F o r s y t h ,

«Fatigue Crack Formation in Silver Chloride».

Amer.

 

of Mild Steel Specimens During Fatigue Stressing. J. Iron and Steel Inst.

 

194

(1960)

459.

 

 

 

 

 

 

611.

В. P. H a i g h ,

«Hysteresis in Relation to Cohesion and Fatigue». Trans.

 

Faraday Soc. 24

(1928)

125.

 

 

 

612.

C. S. B a r r e t t ,

The Structure of Metals. McGraw Hill. 2nd Edition

(1953).

613.

H. J. G o u g h

and W. A. Wood, «Fatigue

of Metals Using X-ray Me­

 

thods». Proc. Roy. Soc. A154 (1936) 510. See also ibid. 165 (1938) 358.

614.

C. S. B a r r e t t ,

«The Application of X-ray Diffraction to the Study of Fa­

 

tigue in Metals». Trans. Amer. Soc. Met.

25 (1937) 1115.

 

615.

L.

M.

C l a r e b r o u g h ,

M.

E.

H a r g r e a v e s ,

G.

W.

We s t

and

 

A.

K.

 

He a d,

«The Energy Stored in Fatigued Metals».

Proc. Roy.

Soc.

616.

A242

(1957)

160.

 

Dislocations

and Plastic

Flow in

Crystals.

Clarendon

A. H. C o t t r e l l ,

617.

Press,

 

Oxford

(1953).

 

 

 

 

«The

Fatigue Behaviour of Decarbu-

H. A. L i p s i t t

and G. T. Ho r ne ,

618.

rized Steel». Proc. Amer. Soc. Test. Mat. 57

(1957)

587.

 

of Materials».

A. M. F r e u d e n t h a l ,

«The

Statistical

Aspect of

Fatigue

619.

Proc. Roy. Soc. A187 (1946) 416. See also 216 (1953)

309.

 

 

on Fa­

R. N. W i l s o n

and P. J. E. F o r s y t h ,

«Some New Observations

620.

tigue Damage». J. Inst. Met. 87

(1959) 336.

 

 

 

 

 

«Ап

Electron

P. В. H i г s c h,

P. G. P a r t r i d g e

and

R. L. S e g a 11,

 

Microscope Study of Stainless Steel Deformed in Fatigue and Simple Ten­

621.

sion». Phil. Mag. 4 (1959) 721.

 

 

 

 

 

 

 

 

44 (1953 )

925.

A. K. H e a d ,

«The Growth of Fatigue Cracks». Phil. Mag.

622.

A. K. He a d ,

«The Propagation

of Fatigue

Cracks».

J. Appl.

Mech. 78

623.

(1956)

 

407.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

H. L. Co x, «Fracture under Fatigue Conditions». «The Fracture of Me­

 

tals». Inst. Metallurgists (1950) 42.

 

 

 

 

 

 

 

 

 

 

 

624. W. C. L e wi s ,

«Fatigue of Wood and Glued — Wood Constructions». Proc.

625.

Amer. Soc. Test. Mat. 46

(1946) 814.

 

 

Characteristics of Natural

and

F. B. F u l l e r

and

T. T. О b e r g, «Fatigue

 

Resin-Impregnated

Compressed

 

Laminated

Woods».

J.

Aero.

Sci.

10

 

(1943)

 

81.

 

 

 

«Effect

of

5,000

cycles

of

Repeated

Bending Stresses

626. W. J. K o m m e r s ,

 

on 5-ply Sitka

Spruce Plywood». U. S.

Forest

Products

Lab.

Rpt.

1305

 

(1943).

 

 

 

«Fatigue of Wood and Glued

Joints

Used

in

Laminated

627. W. C. L e wi s ,

628.

Construction». Forest Products Res. Soc. Proc. 5 (1951)

221.

Bridge

Stringers

W.

C.

L e w i s ,

«Fatigue

Resistance

of

Quarter-Scale

629.

of Green and Dry Southern Pine». Amer. Railway Engg. Ass. 59 (1958) 363.

A. G. H. D i e t z

and H. G r i n s f e l d e r ,

«Behaviour of Plywood

Under

630.

Repeated Stresses». Trans. Amer. Soc. Mech. Engrs. 65

(1943)

187.

«Dura­

A. C. H o r n e r ,

W. C. L e wi s ,

E. J. R u b l e

and

L. W. Wood,

 

tion of Load and Fatigue in Wood Structures». Proc. Amer. Soc. Civil Engrs.

 

83 ST

 

5 (1957)

No.

1361.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

631.J. L. L e g g e t t , «Fatigue Strength of Rail-Road Timber Bridge Stringers». Amer. Railway Engng. Ass. Bull 55 (1953) 161.

632.R. В. H e у w о о d, «Present and Potential Fatigue and Creep Strengths of

 

Reinforced Plastics». R. A. E.

Tech. Note Chem.

1337 (1958). British Plas­

633.

tics Federation Reinforced Plastics Tech. Conf. (1958).

Plastics

R. C. H o o p e r ,

«Fatigue

of

Glass-Reinforced

Polyester Resins».

634.

Technology 3 (1957) 644.

Properties

of Fibrous

Glass—Reinforced

Plastics

К. H. B o i l e r ,

«Fatigue

635.

Laminates». Modern Plastic 34 (June

1957) 163.

Between Results of

Repea­

W. N. F i n d l e y and О. E. H i n t z,

«Relation

 

ted Blow Impact Tests and of Fatigue Tests». Proc. Amer. Soc. Test. Mat. 43

636.

(1943)

1226.

«Accelerated

Fatigue

of Plastics». Amer. Soc. Test. Mat.

L. S.

L a z a r ,

Bull. 220 (Feb. 1957) 67.

637.J. M. Z a г e k, «Accelerated Fatigue Testing of Polymethyl Methacrylate». British Plastics 30 (1957) 399.

638.S. M. C a d w e 11, R. A. M e r r i 11, С. M. S 1о m a n and F. L. Y о s t, «Dy­ namic Fatigue Life of Rubber». Ind. Engng. Chem. Analytical Ed. 12 (1940) 19.

639.

A. E. M o u l t o n

and P. W. T u r n e r ,

«Influence

of Design of Rubber

 

Springs». Trans. Inst. Rubber Industry 26 (1950) 86.

 

640.

A. E. M o u l t o n

and P. W. T u r n e r, «Rubber Springs for Vehicle Suspen­

 

sion». Inst. Mech.

Engrs. Proc. Automobile

Division

(1956) 17.

641.

C. G u r n e y

and

S. P e a r s o n ,

«Fatigue of

Mineral

Glass under Static

642.

and Cyclic Loading». Proc. Roy. Soc. A 192 (1948)

537.

 

Amer. Concrete

G. M. N o r d b y ,

«Fatigue of

Concrete — A

Review». J.

 

Inst. 55

(1958)

191.

 

 

 

 

 

 

,

 

TT

,

 

^

 

. .

643. S. С. C. B a t e ,

«The Strength of Concrete Members

Under

Dynamic Loa­

 

ding». Proc. Symp. on The Strength

of Concrete Structures. London (1956).

644.

Cement

& Concrete

Association

(1958),

p. 487.

of

Range of

Stress

on Fati­

J. W. M u r d o c k

and С. E. К e s 1e r,

«Effect

 

gue Strength

of

Plain

Concrete

Beams».

J.

Amer.

Concrete

Inst.

55

645.

(1958)

221

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

«Portland Cement (Ordinary and Rapid Hardening)». B. S. No. 12 (1947).

646.

British Standards Inst., London.

 

 

 

 

 

 

 

 

 

 

 

 

.

 

S. С. C. Ba t e ,

«The Relative Merits of Plain

and Deformed Wires in Pre­

 

stressed Concrete Beams Under Static and Repeated Loading». Proc. Inst.

647.

Civil Engineers 10 (1958) 473.

 

and G. W. F o r d , «The Mechanical

Pro­

G. A. H a n k i n s ,

D. H a n s o n

 

perties of Four Heat—Treated Spring Steels». J. Iron and

Steel

Inst.

114

 

(1926)

265.

 

«Notched and Unnotched Fatigue

Tests

on

Flake

and

No­

648. J. W. G r a n t ,

 

dular Cast Irons». J. Res. Development. Brit.

Cast

Iron

 

Res.

Ass. 3

649.

(1950)

333.

 

 

and

M. G.

F o n t a n a ,

«Mechanical

Properties, inclu­

J. L. Z a m b r o w

 

ding Fatigue, of Aircraft Alloys at Very Low Temperatures». Trans. Amer.

 

Soc. Met. 41 (1949)

480.

 

 

 

 

and

H. E. B r o o k s ,

 

«Notched

and

650. J. W. S p r e t n a k ,

M. G. F o n t a n a

 

 

Unnotched Tensile and Fatigue Properties

of Ten

Alloys

at

25

and —

651.

196° С». Trans. Amer. Soc. Met. 43

(1951) 547.

 

 

 

 

 

on

DTD 363A

N. J. F. Gunn,

«Fatigue Properties at Low Temperatures

 

Aluminium Alloy». R. A. E. Techn. Note Met. 163 (1952).

 

 

«Mechanical

652.

S. M. B i s h o p ,

J. W. S p r e t n a k

and M. G. F o n t a n a ,

Properties, including Fatigue, of Titanium—Base Alloys at Very Low Tem­

peratures». Trans. Amer. Soc. Met. 45 (1953) 993.

 

 

 

 

 

Properties

653.

P. L. T h о r p e, G. R. Tremain and R. W. R i d l e y , «Mechanical

of Some Wrought and Cast Aluminium Alloys

at

Elevated

Temperatures».

J. Inst. Met. 77 II (1950)

111.

 

and

L.

H.

Ba c k,

«Fatigue

Properties

654. J. M c K e o w n ,

D. E.

D i n e e n

of Four Cast Aluminium Alloys at Elevated Temperatures». Metallurgia 41

(1950)

393.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

655.

J. J. C a r t e r ,

D. N. M e n d s

and

J. M c K e o w n ,

«Creep

and

Fatigue

Properties of Two Commercial Aluminium Bronzes at

500° С». Metallurgia

45

(1952)

273.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

656.W. D. B i g g s , The Brittle Fracture of Steel. Macdonald & Evans, London (1960).

657. T. R. G. W i l l i a m s

and D. H. H u g h e s ,

«The

Development

of

Prog­

 

rammed Fatigue Testing». Engineer 210 (1960) 703.

 

 

 

 

658.

P. L. Teed, «Fretting». Metal. Rev.

5 (1960)

267.

the

Effects

of

Non—

659.

S. S. M a n s о n and

W. F. B r o w n ,

«А

Survey of

 

Steady

Load and

Temperature Conditions

on

the Creep

of Metals». Amer.

660.

Soc. Test. Mat. Spec. Tech. Publ. 260

(1959).

 

 

 

 

 

Symposium on

Acoustical Fatigue. Amer. Soc. Test. Mat. (1960).

 

661.

J. I. F i s h e r

and J. P. S h e e h a n ,

«Effect of Metallurgical Variables on

 

the Fatigue Properties of AISI 4340 Steel». Wright Air Development Cen­

 

ter. Tech. Rpt. 58—289

(1959).

 

 

 

 

 

 

 

662.

M. A t k i n s o n ,

«Influence of Non—Metallic

Inclusions

on Fatigue Pro­

 

perties». J. Iron and Steel Inst. 195 (1960)

64.

 

 

 

 

 

663.

H. J i г о and A. J u n i c h, «Studies on Rotating Beam

Fatigue

of

Large

 

Mild Steel Specimens». Proc. 9th Japan. National Congress Appl.

Mech.

 

(1959)

149.