首页> 外文会议>Laser Materials Processing Conference ICALEO 2000, Oct 2-5, 2000, Dearborn, MI USA >Development of laser welded stainless steel sandwich panels for lightweight vehicles - design, manufacturing and properties
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Development of laser welded stainless steel sandwich panels for lightweight vehicles - design, manufacturing and properties

机译:轻型车辆用激光焊接不锈钢夹芯板的开发-设计,制造和性能

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To gather background data for further bus floor structure development, laser welded sandwich panels made of stainless steels have been studied using weight optimizing as well as mechanical and corrosion tests. A PC-program developed for weight optimizing was first used in comparison of various sandwich panels. So called O panels assembled from cover plates and RHS-tubes were further subjected to mechanical tests using point-loading, 4-point-bending and fatigue testing. The corrosion behavior of the panels was studied by salt-spray chamber tests in an ice-control salt (CaCl_2) environment. The results showed that austenitic EN 1.4301 (AISI 304) stainless steel exhibited a better combination of mechanical and corrosion properties in the O panels than does 12 %Cr alloyed EN 1.4003 steel. Use of 1.4301 steel in cold-worked condition (2H) further improves the point-loading and bending strength of the panels. Fatigue tests showed that laser welding results in considerably higher fatigue resistance than does resistance spot welding. 1.4301 steel shows adequate corrosion resistance in the sheet surfaces, whereas the resistance of 1.4003 steel remains considerably lower. However, the corrosion resistance of 1.4003 in particular, but also 1.4301 to some degree, becomes limited at crevices in the laser welded lap joints. Thus, measures to eliminate crevices from panel structures becomes of primary importance in practical applications.
机译:为了收集背景数据以进一步开发公交车底板结构,已经对不锈钢制成的激光焊接夹芯板进行了重量优化以及机械和腐蚀测试。为了比较各种夹心板,首先使用了为优化重量而开发的PC程序。由盖板和RHS管组装而成的所谓O面板,还通过点载荷,四点弯曲和疲劳测试进行了机械测试。通过在制冰盐(CaCl_2)环境中的盐雾室测试研究了面板的腐蚀行为。结果表明,与12%Cr合金化的EN 1.4003钢相比,奥氏体EN 1.4301(AISI 304)不锈钢在O板中表现出更好的机械和腐蚀性能组合。在冷加工条件下(2H)使用1.4301钢可以进一步改善面板的点荷载和弯曲强度。疲劳测试表明,与电阻点焊相比,激光焊接产生的疲劳强度要高得多。 1.4301钢在板材表面显示出足够的耐腐蚀性,而1.4003钢的电阻仍然较低。但是,在激光焊接搭接缝的缝隙处,尤其是1.4003的耐腐蚀性,甚至在某种程度上还是1.4301的耐腐蚀性。因此,消除面板结构裂缝的措施在实际应用中变得至关重要。

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