2Bulent Aydemir, Erdinc Kaluc, Sinan Fank. Influence of heat treatment on hysteresis error of force transducers manufactured from 17-4PH stainless steel [J]. Measurement, 2006, 39(10) : 890 - 900. 被引量:1
3Sinan Fank, Mehmet Demirkol. Effect of microstructure on the hysteresis performance of force transducers using AISI 4340 steel spring material [J]. Sensors and Actuators, 2006, A126: 25- 32. 被引量:1
4Allgeier T, Evans W T. Mechanical hysteresis in force transducers manufactured from precipitation-hardened stainless steel[J]. Journal of Mechanical Engineering Science Part C, 1995, 209(2) : 125 - 132. 被引量:1
6Rokuro Nishimura, Yasuaki Maeda. SCC evaluation of type 304 and 316 austenitic stainless steels in acidic chloride solutions using the slow strain rate technique [J]. Corrosion Science, 2004, 46: 769- 785. 被引量:1
7Li J X, Chu W Y, Wang Y B, et al. In situ TEM study of stress corrosion cracking of austenitic stainless steel[J]. Corrosion Science, 2003, 45:1355 - 1365. 被引量:1
8ASM Handbook: Fatigue and Fracture[M]. ASM International, Materials Park, Ohio, 1996:19. 被引量:1
9Alexopoulos P S,Cho C W, Hu C P, et al. Determination of the anelastic modulus for several metals [J]. Acta Metall, 1981, 29(4) :549- 577. 被引量:1
10Sudook A Kim, Ward L Johnson. Elastic constants and internal friction of martensitie steeL, ferritic-pearlitie steel, anda-iron [ J]. Materials Science and Engineering A, 2007, 452- 453: 633- 639. 被引量:1