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Fatigue behavior of integrally fabricated joints between titanium matrix composite and titanium alloy

机译:钛基复合材料与钛合金整体制造接头的疲劳行为

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摘要

An integrally fabricated double scarf joint, with a taper ratio of 20:1, between the monolithic titanium alloy and the silicon carbide fiber reinforced titanium matrix composite was studied under the monotonic and fatigue loading (both tension-tension and tension-compression) conditions. Further, the two parent materials forming this functionally graded material system were characterized under the similar loading conditions to compare their performance. In general, the mechanical response of the functionally graded material system was in-between those of the alloy and the composite under all loading conditions. The ultimate tensile strength of the functionally graded material showed a small improvement over that of the alloy; however, its modulus of elasticity in the joint region was about the average of its counterparts of alloy and composite. There was also a small improvement in fatigue life of the functionally graded material relative to that of the monolithic alloy in both tension-tension and tension-compression conditions. The fatigue damage initiated at fiber ends in the joint region and then progressed in the monolithic alloy section. The functionally graded material system containing the integrally fabricated joint between the monolithic titanium alloy and the titanium matrix composite provided the expected performance, i.e., it performed at least similar to its weakest link, i.e., titanium alloy, and it has potential to provide the practical benefits of cost, durability etc.
机译:研究了在单调和疲劳载荷(拉伸-拉伸和拉伸-压缩)条件下,整体式钛合金与碳化硅纤维增强的钛基复合材料之间锥度比为20:1的整体制造的双层丝巾接头。此外,在相似的加载条件下对形成这种功能分级材料系统的两种母体材料进行了表征,以比较它们的性能。通常,在所有载荷条件下,功能梯度材料系统的机械响应介于合金和复合材料的机械响应之间。功能梯度材料的极限抗拉强度比合金有很小的提高。然而,其在接合区域的弹性模量约为合金和复合材料对应物的平均值。相对于整体合金,在拉伸-拉伸和拉伸-压缩条件下,功能梯度材料的疲劳寿命也有很小的改善。疲劳损伤在接头区域的纤维端开始,然后在整体合金截面中发展。包含整体式钛合金和钛基复合材料之间的整体接头的功能梯度材料系统提供了预期的性能,即,其性能至少类似于其最薄弱的环节,即钛合金,并且具有提供实用的潜力。成本,耐用性等优点

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