简介:本文重点介绍开发高导热高耐热CEM-3覆铜板的技术背景、技术路线和技术成果。
简介:Thecorrosionfatiguebehaviorofepoxy-coatedMg–3Al–1Znalloywasinvestigatedinairand3.5wt%NaClsolution.Epoxycoatingasanewmethodwasusedtoimprovethecorrosionfatiguepropertyofthematerial.Resultsshowthatthefatiguelimit(FL)ofthecoatedspecimensishigherthanthatoftheuncoatedspecimensin3.5wt%NaClsolutionbecauseofthestrengtheningandblockingfunctionsoftheepoxycoating.TheFLofthecoatedspecimensin3.5wt%NaClsolutionisashighasthatinair.Itimpliesthatthecoatedspecimensarenotassensitivetotheenvironmentasthemagnesiumalloy.Thelowtensilestrengthandtheshortelongationofthepureepoxycoatingleadtothatthefatiguecrackofthecoatedspecimenisalwaysinitiatedfromtheepoxy-coatingfilmPoresandpinholesacceleratethefatiguecrackinitiationprocess.PinholesarecausedbythecorrosionreactionsbetweentheepoxycoatingandtheNaClsolution.
简介:ThemicrostructuresandcrystallizationbehaviorofTi–47at%Ni–3at%Feshapememoryalloywireundertheconditionofseverecolddrawingatroomtemperatureanddifferentpost-deformationannealingprocesseswereintensivelyinvestigatedusingtransmissionelectronmicroscope(TEM)anddifferentialscanningcalorimetry(DSC).ItisindicatedthattheamorphousphaseisdominantintheTi50Ni47Fe3wireafterthecolddrawingof78%arealreduction.Thecriticaltemperatureforrecrystalizationisdeterminedatabout300°C.Theaveragegrainsizegrowsfrom7upto125nmwhenannealingtemperaturerisesfrom300to500°C.Post-deformationannealingprocessexertssignificantinfluenceonthecrystallizationtemperaturewhichclimbsupwiththeincreaseofannealingtemperature.
简介:采用分子动力学方法对Mg7Zn3合金快速凝固过程进行计算机模拟,研究玻璃转变过程局域结构与动力学之间的关联。结果表明:以Mg原子为中心的FK多面体和以Zn原子为中心的二十面体局域结构,对Mg7Zn3金属玻璃的形成起关键性作用。Mg(Zn)原子的扩散系数在熔点附近开始偏离Arrhenius关系,而满足幂指数规律。根据均方位移、非相干中间散射函数和非Gauss函数等时间相关函数,发现:随着温度的降低,β驰豫越来越显著,α弛豫时间以VFT指数规律迅速增加;而且半径较小的Zn原子比Mg原子呈现较快的弛豫动力学行为。另外,部分短程有序局域原子结构具有较慢的动力学行为,对β驰豫中笼子效应起主导作用;并随着其数目的大量出现,体系扩散系数开始偏离Arrhenius关系,玻璃形成过程微观结构转变温度TgStr与动力学转变温度Tc非常接近。