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作 者:杨益航[1] 王德志[2] 林高用[2] YANG Yihang;WANG Dezhi;LIN Gaoyong(Fujian Key Laboratory of Functional Materials and Applications(Xiamen University of Technology),Xiamen 361024,China;School of Material Science and Engineering,Central South University,Changsha 410083,China)
机构地区:[1]福建省功能材料及应用重点实验室(厦门理工学院),福建厦门361024 [2]中南大学材料科学与工程学院,长沙410083
出 处:《材料科学与工艺》2020年第2期67-71,共5页Materials Science and Technology
基 金:福建省高校创新团队培育计划资助项目;厦门市科技计划指导性项目(3502Z20179041).
摘 要:分析了受约束机构内材料热应力存在的危害,给出静不定结构内热应力的定量描述方式:弹性变形状态时,热应力仅与线膨胀系数、弹性模量及温度变量成正比关系;当热应力达到材料在某温度下的屈服强度时,其热膨胀发生弹塑性转变,热应力为当时温度下的屈服强度。采用热模拟试验机测试了材料的温度与热应力关系,分析结果与数值模型基本吻合,测出刚性约束下45钢在升温至620℃时热应力等于其屈服强度约200 MPa。The harmfulness of thermal stress on mechanism was analyzed,and a quantitative evaluation model of the effect of the thermal stress was derived.Under elastic situation,the thermal stress was directly proportional to the linear expansion coefficient,elastic modulus,and temperature variable.When the thermal stress reached the yield strength of the material at a certain temperature,its thermal expansion experienced an elastic-plastic transformation,and the thermal stress was the yield strength at the temperature.Then,the relation between temperature and thermal stress was analyzed by a thermal simulation test machine Gleeble 1500.Results of the experiment were in accordance with the theoretical prediction,and the thermal stress of steel 45 under full restraint at 620℃reached its yield strength of about 200 MPa.
分 类 号:TB301[一般工业技术—材料科学与工程]
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