首页> 外文会议>Internationale Kolloquium "Hart- und Hochtemperaturloeten und Diffusionsschweissen" >Development of 'architectured' solders for automotive high power electronic modules using powder metallurgy
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Development of 'architectured' solders for automotive high power electronic modules using powder metallurgy

机译:使用粉末冶金制造汽车高功率电子模块的“架构”焊料

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Generally, a power electronic module for the electric and hybrid vehicles (EV/HEV) is an assembly of several silicon components (transistors and diodes) on a copper substrate by soldering. The solder, which is often lead rich, ensures the heat transfer to the heat sink via the substrate, and electrical conduction between the components and the substrate. Under the effect of heat losses in service, the power module assembly is subjected to large thermomechanical stresses which may damage the soldered connexion. The thermomechanical stresses increase and the assembly lifetime decreases with increasing difference in thermal expansion between substrate, solder and chip. The elimination of lead in the list of materials for the power electronic industry also encourages the development of composite solders which could show some of the merits of lead rich solders, i.e. relative refractoriness in the soldering process and in service. The lead-free alloys used to date in addition to a low solidus temperature suffer from a low resistance to the thermal ageing. Under the effect of heat, the initial solder microstructure can evolve with the development of intermetallics in the form of plates (needles). These plates are stress concentration zones and reduce the lifetime of the module. This work's main objective is to study composite solders containing a SnAgCu alloy reinforced by refractory particles.
机译:通常,用于电动和混合动力车辆的电力电子模块(EV / HEV)是通过焊接在铜基板上的几种硅组件(晶体管和二极管)的组装。通常富含富有的焊料确保通过基板传热到散热器,以及部件和基板之间的电导。在使用的热损失的影响下,功率模块组件经受大的热机械应力,这可能损坏焊接连接。热机械应力增加,组装寿命随着衬底,焊料和芯片之间的热膨胀差异而降低。在电力电子行业材料清单中消除了铅也鼓励开发复合焊料,该焊料可以展示铅富焊料的一些优点,即焊接过程中的相对耐火材料和服务。除了低固相温度之外,还常用的无铅合金患有低耐药性的低抗性。在热的影响下,初始焊料微观结构可以随着平板(针)形式的金属间质量的发展而发展。这些板是应力集中区域并减少模块的寿命。这项工作的主要目的是研究含有难熔颗粒增强的镰刀合金的复合焊料。

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