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Crash Durable Structural Adhesives - Fatigue and Durability Evaluation of a 7 Series Car Body

机译:耐撞的耐用结构胶-7系列车身的疲劳和耐用性评估

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BETAMATE? Crash Durable Adhesives (CDA's) from Dow Automotive are applied to the vehicle body structure and provide significant increases in the amount of impact energy that can be absorbed. By bonding adjacent layers of sheet metal with a continuous bead of CDA, manufacturers also can improve body stiffness and durability as compared to spot welding. This offers OEM's the ability to save mass and total cost by down gauging the sheet metal in many locations. As well, CDA materials enable reductions in spot weld pitch, provide increased integrity of high strength steel joints, and also enable joining of dissimilar materials in the body structure.As CDA technology continues to advance, information from in-service vehicles is also becoming available. By correlating data gathered from accelerated aging cycles and data taken from vehicles which have seen a significant service life, one can draw important conclusions about the durability of CDA's.This paper will focus on results gathered from a teardown analysis of a 2002 BMW 745i, which completed 172,200 km of service life in Louisiana, USA, under hot and humid climatic conditions. Strength and energy absorbing characteristics of the adhesively bonded joints were measured as a function of position in the vehicle and compared to performance from fresh adhesive bonded in the same specimen configuration.A best-case baseline material performance was determined by laboratory simulation of actual manufacturing conditions and all material performance results taken from the vehicle were compared to that baseline distribution. The results arc concluded as a critical data point in determining a single point value to be used in constructing an overall property retention versus time relationship.This is a very relevant body of research, as it conclusively shows that CDA's maintain a very high level of performance over the life of the vehicle. It also provides a starting point for determining the correlation between accelerated corrosion testing via cyclic corrosion test cycles and what is actually found in the vehicle after a substantial service life in a demanding environment.
机译:BETAMATE?陶氏汽车(Dow Automotive)的防撞耐用粘合剂(CDA's)被应用于车身结构,并显着增加了可吸收的冲击能量。通过使用连续的CDA焊缝将相邻的钣金层粘合在一起,与点焊相比,制造商还可以提高车身刚度和耐用性。这使OEM能够通过在许多位置降低金属板的厚度来节省质量和总成本。同样,CDA材料可以减小点焊间距,提高高强度钢接头的完整性,还可以在车身结构中接合异种材料。 随着CDA技术的不断发展,在役车辆的信息也越来越多。通过将加速老化周期中收集的数据与使用寿命显着的车辆数据进行关联,可以得出CDA耐久性的重要结论。 本文将重点关注对2002年宝马745i进行的拆解分析所收集的结果,该汽车在炎热和潮湿的气候条件下在美国路易斯安那州完成了172,200 km的使用寿命。测量粘合接头的强度和能量吸收特性,作为车辆中位置的函数,并将其与在相同样本配置下粘合的新鲜粘合剂的性能进行比较。 通过对实际制造条件的实验室模拟确定最佳情况下的基准材料性能,并将从车辆中获取的所有材料性能结果与基准分布进行比较。在确定要用于构建总体属性保留与时间的关系的单个点值时,得出的结论是关键数据点。 这是一个非常相关的研究机构,因为它最终表明CDA在车辆的整个使用寿命中都保持着很高的性能水平。它还提供了一个起点,用于确定通过循环腐蚀测试循环进行的加速腐蚀测试与在苛刻环境中经过相当长的使用寿命后在车辆中实际发现的腐蚀之间的相关性。

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