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FATIGUE AND FAILURE BEHAVIOR OF HOMOGENEOUS AND REINFORCED COMPLIANT MECHANISM SEGMENTS

机译:均质和增强顺应性机械节的疲劳和破坏行为

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摘要

This paper presents a comprehensive study of the fatigue and failure behavior of both homogeneous and metallic-reinforced compliant segments. Baseline test results are presented for a homogeneous, fixed-free compliant segment constructed of thermoset urethane. The advantages of both polymeric and metallic materials for compliant mechanism construction are leveraged by designing and testing compliant test specimens containing a polymer casing and a metallic reinforcing element. Results obtained from fatigue testing of fixed-free compliant segments in a cyclic loading configuration show that the metallic-reinforced compliant specimens offer superior fatigue performance when compared to the homogeneous baseline specimens. Fractography, both macroscopic and microscopic, is used for a qualitative assessment of the failure behavior. This vein of research is undertaken using metallic reinforcement (inserts) toward the development of a new class of compliant mechanisms with significantly greater performance, particularly insofar as the problems of fatigue and creep are concerned.
机译:本文对均质和金属增强的柔性管段的疲劳和破坏行为进行了全面的研究。给出了由热固性聚氨酯制成的均质,无固定顺应性链段的基准测试结果。通过设计和测试包含聚合物外壳和金属增强元件的柔顺试样,可以充分利用聚合物材料和金属材料在柔顺机构构造方面的优势。在循环载荷配置下对自由固定柔顺节段进行疲劳测试的结果表明,与均质基线标本相比,金属增强柔顺标本具有出色的疲劳性能。宏观和微观形貌均用于故障行为的定性评估。研究的方向是使用金属增强材料(插入件)来开发具有更高性能的新型顺应机构,特别是在涉及疲劳和蠕变问题方面。

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