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高温力学性能的英文

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"高温力学性能"怎么读用"高温力学性能"造句

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  • mechanical behavior under high temperature

例句与用法

  • Study on high temperature mechanical performance of high carbon steel
    高碳钢高温力学性能研究
  • Effect of adding nanocrystalline - al2o3 on sintering behavior of alumina fibers
    3纳米粉对高纯刚玉制品高温力学性能的影响
  • High temperature mechanical properties of manual argon arc welded joint of 10cr9mo1vnb steel
    钢手工氩弧焊焊接接头的高温力学性能
  • Effects of hydrogen on the microstructure and high temperature mechanical properties of ti - 60 alloy
    60钛合金显微组织和高温力学性能的影响
  • Like ceramics , it is elastically stiff ; exhibits excellent high temperature mechanical properties
    和陶瓷相似, ti _ 3alc _ 2具有高弹性模量和优秀的高温力学性能
  • The high temperature mechanical behavior of two 0 . 15wt . % c steels with different concentrations of sn is investigated
    本文借助gleeble - 2000热模拟试验机研究了两种含有不同量残留元素sn的0 . 15wt . c钢的高温力学性能
  • The addition of more re elements can significantly enhance the comprehensive properties , especially mechanical behavior at high temperature
    随著稀土元素加入量的增加,可以显著提高铝、镁合金的综合性能特别是高温力学性能
  • The relationship between the volume frac tion , distribution , shape of dispersoid and the normal , elevated temperature mec hanical properties of aluminum alloys is outlined briefly in this paper
    简要概述了弥散相的数量、分布、形状等和耐热铝合金常温和高温力学性能之间的关系。
  • This article introduced the development and ti - based brazing material used for titanium alloys , and analyzed the relationship between metallurgical structure and mechanical property of welding joint , mechanical behavior under high temperature 、 corrosion resisting property and fatigue capability of the joint were also represented
    本文介绍了钛合金用的钛基钎焊料的发展现状,重点评价了钛基钎料钎焊后组织与力学性能的关系,以及钛基钎料的高温力学性能、耐蚀性以及疲劳性能等。
  • B & 0 . 2 decrease while 6 increases with the increasing of the temperature . there lies deforamtion - hardening phenomenon during the course of the tensile deforamtion ; temperature has an obvious effect on deformation - hardening constant ( d / d ) , which decreases gradually when temperature rises
    对镁合金高温拉伸力学性能研究则表明,温度对镁合金高温力学性能有显著的影响:对所有试样,随温度不断升高,抗拉强度_ b 、屈服强度_ ( 0 . 2 )不断降低,延伸率则不断升高。
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