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Transient adhesion in a non-fully detached contact

机译:非完全分离的接触中的瞬态粘附

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Continuous approaching and detaching displacement usually occurs in an adhesion test. Here, we found a transient adhesion force at the end of a non-fully detached contact. This force occurred when the nominal detaching displacement was less than the traditional quasi-static theory predicted zero force point. The transient adhesion force was ascribed to interfacial adhesion hysteresis, which was caused by the cracking process of the contact and the deformation competition between the sphere and supporting spring. Results indicated that the testing of adhesion can be significantly affected by different combinations of stiffnesses of the contact objects and the supporting spring cantilever. This combination should be carefully designed in an adhesion test. All these results enabled increased understanding of the nature of adhesion and can guide the design of adhesive actuators.
机译:持续的接近和脱离位移通常发生在附着力测试中。在这里,我们发现在未完全分离的触点末端出现了短暂的粘附力。当名义分离位移小于传统的准静态理论预测的零力点时,就会产生该力。瞬时粘附力归因于界面粘附滞后,这是由于接触的破裂过程以及球体与支撑弹簧之间的形变竞争所引起的。结果表明,附着力的测试会受到接触物体和支撑弹簧悬臂刚度的不同组合的显着影响。该组合应在附着力测试中仔细设计。所有这些结果使人们对粘合的性质有了更多的了解,并可以指导粘合致动器的设计。

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