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Reliability methods for structural composite applications in vehicle suspensions

机译:车辆悬架中结构复合材料应用的可靠性方法

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Delphi Chassis efforts in the area of advanced composites have focused on developing highly reliable suspension modules and components at a low cost and reduced mass. Delphi Chassis has developed two processes for use in automotive suspension applications. The first is a fiberglass filament winding process used to manufacture Liteflex~(TM) composite leaf springs. A more recent process, used to manufacture Litecast~(TM) suspension links, consists of die casting a metal (aluminum) end fitting directly onto a pultruded polymeric composite rod (fibergass, graphite). High reliability and confidence targets are met through lab and field validation testing that duplicates customer usage. Accelerated lab testing is utilized to reduce test times and cost by identifying what types of inputs are damaging to specific component. An accelerated, multienvironment, overstressed forced failure approach is utilized to predict reliability based on customer usage. Delphi is utilizing this forced failure reliability test approach to thoroughly understand and optimize their components before reaching the customers hands.
机译:德尔福底盘公司在高级复合材料领域的努力集中在以低成本和轻量化的方式开发高度可靠的悬架模块和组件。德尔福底盘公司开发了两种用于汽车悬架应用的工艺。第一种是用于制造Liteflex〜(TM)复合板簧的玻璃纤维丝缠绕工艺。用于制造LitecastTM悬架连杆的最新工艺包括将金属(铝)端部配件直接压铸到拉挤的聚合物复合材料棒(纤维状,石墨)上。通过重复使用客户的实验室和现场验证测试,可以达到较高的可靠性和置信度目标。通过识别什么类型的输入会损坏特定组件,加速实验室测试可用于减少测试时间和成本。一种加速的,多环境,过应力的强制失败方法可用于根据客户使用情况预测可靠性。德尔福(Delphi)正在利用这种强制性故障可靠性测试方法来在到达客户手中之前彻底了解并优化其组件。

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