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首页> 外文期刊>Archive of Applied Mechanics >Indentation of PU at different scales and computational modeling: identification of viscoelasticity and quantification of adhesion effects
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Indentation of PU at different scales and computational modeling: identification of viscoelasticity and quantification of adhesion effects

机译:不同规模的聚氨酯压痕和计算模型:粘弹性的鉴定和粘合效果的量化

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摘要

In the present study, nanoindentation and macroindentation tests are performed on a soft polymer: polyurethane (PU). Strong viscoelasticity is represented by the force-displacement data on both scales. A finite element method based on an inverse procedure is employed to identify the nonlinear viscoelasticity of PU. An appropriate viscoelastic model is chosen, and the corresponding parameters are identified by matching the experimental responses with the predictions of the computational model. At the very beginning, the uniaxial tensile test, which has a homogeneous deformation, is used to prove the isotropic properties and incompressibility of PU and to identify the viscoelasticity as a reference and verification source. The comparison between the identified results from nanoindentation and macroindentation allows to quantifying the adhesion effects in nanoindentation. The quantification is treated with a traction-separation relationship incorporated into the numerical adhesive contact model. Comparable strain rates in the macro-, nanoindentation and uniaxial tensile tests are considered to identify the viscoelasticity.
机译:在本研究中,纳米压痕和宏观压痕测试是在软质聚合物:聚氨酯(PU)上进行的。两种尺度上的力-位移数据都表现出很强的粘弹性。采用基于逆过程的有限元方法来识别聚氨酯的非线性粘弹性。选择合适的粘弹性模型,并通过将实验响应与计算模型的预测进行匹配来识别相应的参数。在一开始,具有均匀变形的单轴拉伸试验用于证明聚氨酯的各向同性和不可压缩性,并确定粘弹性作为参考和验证来源。纳米压痕和宏观压痕的鉴定结果之间的比较可以量化纳米压痕的粘合效果。量化通过结合在数字粘合剂接触模型中的牵引分离关系进行处理。在宏观,纳米压痕和单轴拉伸试验中,可比较的应变速率被认为可以识别粘弹性。

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