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Pyramidal indentation load-depth curve of viscoelastic materials

机译:粘弹性材料的金字塔形压痕载荷-深度曲线

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摘要

The indentation load P versus depth h curves are examined to investigate the time-dependent surface deformation of viscoelastic materials. The viscoelastic Ph curves significantly depend on the temperature of measurement and the penetration rate of indentation. Sneddon's elastic solution of a conical indentation is extended to a viscoelastic one for a conical or a pyramidal indentation in terms of the hereditary integral. Several types of viscoelastic problems are discussed in relation to the test techniques and analyses for determining the relaxation modulus E(t) and the creep compliance D(t). The superposition rules of time-temperature, penetration depth-temperature, and penetration depth-penetration rate are examined. The viscoelastic indentation tests (constant rate penetration test and constant load creep test) of amorphous Se are conducted at temperatures from 10 to 42 deg C. The theoretical considerations and the test results encourage pyramidal indentation as an effcient microprobe for the viscoelastic characterization, in particular, of extremely small-size test specimens and ceramic, metal, and polymer thin films coated on substrate.
机译:检验压痕载荷P与深度h的关系曲线,以研究粘弹性材料随时间变化的表面变形。粘弹性Ph曲线在很大程度上取决于测量温度和压痕的穿透率。 Sneddon的圆锥形压痕的弹性解在遗传积分方面扩展到了圆锥形或金字塔形压痕的粘弹性解。讨论了与测试技术有关的几种粘弹性问题,并分析了确定松弛模量E(t)和蠕变柔量D(t)的方法。研究了时间-温度,穿透深度-温度和穿透深度-穿透率的叠加规则。非晶态Se的粘弹性压痕测试(恒速穿透测试和恒定载荷蠕变测试)在10到42摄氏度的温度下进行。理论上的考虑和测试结果鼓励将金字塔形压痕作为一种有效的微探针来表征粘弹性极小尺寸的样品,以及涂在基材上的陶瓷,金属和聚合物薄膜。

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