材料力学性能的时间相关特性对结构设计非常重要,尤其是长期力学性能的准确信息是结构强度和寿命分析的基础.结合近期研究进展,对影响高聚物时间相关力学性能和长期力学加速表征的主要因素进行了分析,对高聚物等流变材料长期力学性能的加速表征方法和技术以及涉及的基础问题进行了简要评述.
参考文献
[1] | Schapery RA. .Nonlinear viscoelastic solids[J].International Journal of Solids and Structures,2000(1/2):359-366. |
[2] | Kassner M E;Nemat-Nasser S;Suo Zhigang et al.New directions in mechanics[J].Mechanics of Mater,2005,37:231. |
[3] | 杨挺青;罗文波;徐平.黏弹性理论与应用[M].北京:科学出版社,2004 |
[4] | Meijer H E H;Govaert L E .Mechanical performance of polymer systems:The relation between structure and properties[J].Progress in Polymer Science,2005,30(8-9):915. |
[5] | Klompen E T J;Govaert L E .Nonlinear viscoelastic behavior of thermorheological complex materials[J].Mechanics of TimeDependent Mater,1999,3:49. |
[6] | Drozdov A D.Mechanics of viscoelastic solids[M].New York:John Wiley and Sons,Inc,1998 |
[7] | 王仁;陈晓红 .高分子材料黏弹塑性本构关系研究进展[J].力学进展,1995,25(03):289. |
[8] | 程昌钧,朱正佑.关于粘弹性力学的一些进展[J].自然杂志,2003(03):125-129. |
[9] | Guedes R M .Mathematical analysis of energies for viscoelastic materials and energy based failure criteria for creep loading[J].Mechanics of Time-dependent Materials,2004,8:169. |
[10] | 金日光;刘薇 .高分子材料应力-时间等效性的考察[J].北京化工学院学报,1994,21(01):35. |
[11] | Brostow W .Time-stress correspondence in viscoelastic materials:an equation for stress and temperature shift factor[J].Mater Ras Innovations,2000,3:347. |
[12] | Yen S C;Williamson F L .Accelerated characterization of creep response of an off-axis composite material[J].Computer Science & Technology,1990,38:103. |
[13] | Hadid M;Rechak S;Tati A .Long-term bending creep behavior prediction of injection molded composite using stress-time correspondence principle[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2004(1/2):54-58. |
[14] | Lai J.;Bakker A. .ANALYSIS OF THE NON-LINEAR CREEP OF HIGH-DENSITY POLYETHYLENE[J].Polymer: The International Journal for the Science and Technology of Polymers,1995(1):93-99. |
[15] | 罗文波,安群力,杨挺青.非线性粘弹体的时间-温度-应力等效原理及其应用[J].固体力学学报,2001(03):219-224. |
[16] | O'Shaughnessy M T .An experimental study of the creep of rayon[J].Textile Ras J,1948,18:263. |
[17] | Schapery R A .On the characterization of nonlinear viscoelastic materials[J].Polymer Engineering & Science,1969,9(04):295. |
[18] | 罗文波,杨挺青,王霞瑜.高聚物自由体积与温度和应力水平的相关性[J].高分子材料科学与工程,2005(03):11-15. |
[19] | Luo Wenbo;Jazouli Said;Toan Vu-Khank.A stress accelerated characterization method for long-term properties of viscoelastic materials[A].Montreal,Canada,2005:68. |
[20] | Luo Wenbo;Wang Chuhong;Zhao Rongguo .Application of time-temperature-stress superposition principle to nonlinear creep of poly(methyl methacrylate)[J].Key Engineering Materials,2007,340-341:1091. |
[21] | Jazouli S;Luo WB;Bremand F;Vu-Khanh T .Nonlinear creep behavior of viscoelastic polycarbonate[J].Journal of Materials Science,2006(2):531-536. |
[22] | Luo Wenbo;Wang Chuhong;Vu-Khanh Toan.Timestress equivalence:application to nonlinear creep of polypropylene[A].New York:Science Press,2005:726. |
[23] | Struik L C E.Physical aging in amorphous polymers and other materials[M].Amsterdam:Elsevier,1978 |
[24] | Struik LCE. .ON THE REJUVENATION OF PHYSICALLY AGED POLYMERS BY MECHANICAL DEFORMATION[J].Polymer: The International Journal for the Science and Technology of Polymers,1997(16):4053-4057. |
[25] | Hutchinson J M .Physical aging of polymers[J].Progress in Polymer Science,1995,20:703. |
[26] | Sullivan J L .Creep and physical aging of composites[J].Computer Science & Technology,1990,39:207. |
[27] | Drozdov A D .Physical aging and nonlinear viscoelasticity of amorphous glassy polymers[J].COMPUTATIONAL MATERIALS SCIENCE,2001,21:197. |
[28] | Zheng S F;Weng G J .A new constitutive equation for the long-term creep of polymers based on physical aging[J].Eur J Mechanics A/Solids,2002,21:411. |
[29] | McKenna G B .Mechanical rejuvenation in polymer glasses:fact of fallacy[J].Journal of Physics:Condensed Matter,2003,15:S737. |
[30] | Hodge IM .PHYSICAL AGING IN POLYMER GLASSES[J].Science,1995(5206):1945-1947. |
[31] | Buckley C P;Dooling P J;Harding J et al.Deformation of thermosetting resins at impact rates of strain.Part 2:constitutive model with rej uventation[J].J Mechanics and Physics of Solids,2004,52:2355. |
[32] | Isner BA;Lacks DJ .Generic rugged landscapes under strain and the possibility of rejuvenation in glasses[J].Physical review letters,2006(2):5506-1-5506-4-0. |
[33] | Higuchi H;Yu Z;Jamieson A M et al.Thermal history and temperature dependence of viscoelastic properties of polymer glasses:relation to free volume quantities[J].Journal of Polymer Science Part B:Polymer Physics,1995,33:2295. |
[34] | Knauss W G;Emri I .Volume change and the nonlinearly thermo-viscoelastic constitution of polymers[J].Polymer Engineering and Science,1987,27:86. |
[35] | Losi G U;Knauss W G .Free volume theory and nonlinear thermoviscoelasticity[J].Progress in Polymer Science,1992,32:542. |
[36] | 王少阶,王采林.用正电子湮没探测高聚物的自由体积特性[J].物理,1995(02):103. |
[37] | Abdelhady EE.;Elsayed AMA. .FREE VOLUME HOLE DISTRIBUTIONS OF POLYMERS VIA THE POSITRON LIFETIME TECHNIQUE[J].Polymer Degradation and Stability,1995(3):369-373. |
[38] | Ramachandra P.;Ramgopal G.;Ranganathaiah C.;Murthy NS.;Ramani R. .Effect of stress on the free volume content of poly(chlorotrifluoroethylene)[J].Polymer: The International Journal for the Science and Technology of Polymers,1998(13):2987-2990. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%