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Determination of solid material elastic modulus and surface energy based on JKR contact model

机译:基于JKR接触模型的固体材料弹性模量和表面能的确定

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The JKR contact theory is employed to study the adhesion phenomena between two solid materials in intimate contact. The elastic contact modulus and the work of adhesion of solid materials are obtained during adhesion tests by utilizing a micro force-deflection measuring apparatus. Six of the plastic materials, including polyethylene polyoxymethlene (POM), polyamide (PA), terephthalate (PET), polyvinyl chloride (PVC), polypropylene (PP), and ultra-high molecular weight polyethylene (UHMWPE) are used to evaluate the adhesion effect implied by the JKR theory. Comparison is made between surface energy obtained from the adhesion tests with that by a dynamic contact angle analyser.rnResults show that the load/deflection data in the loading phase are in good agreement with the predictions of JKR equation, and the experimental data of unloading phase deviate significantly from the JKR theory. The phenomena of adhesion hysteresis in loading tests are responsible for these results due to the effects of molecular reconstruction on solid surfaces in contact. The work of adhesions, and hence surface energies of plastic materials, calculated by the best fitting of JKR equation with the experimental data in the loading phase, agree satisfactorily in a comparable manner with that obtained using the contact angle analyser.
机译:JKR接触理论用于研究两种固体材料在紧密接触中的粘附现象。固体材料的弹性接触模量和粘附功是在粘附力测试期间通过使用微力挠度测量设备获得的。使用六种塑料材料,包括聚乙烯聚氧甲基戊烯(POM),聚酰胺(PA),对苯二甲酸酯(PET),聚氯乙烯(PVC),聚丙烯(PP)和超高分子量聚乙烯(UHMWPE)来评估粘合力JKR理论暗示的效果。结果表明,在加载阶段的载荷/挠度数据与JKR方程的预测和卸载阶段的实验数据吻合良好。与JKR理论大相径庭。由于分子重构对接触的固体表面的影响,载荷测试中的粘附滞后现象是造成这些结果的原因。通过JKR方程与加载阶段的实验数据的最佳拟合计算出的粘合功以及塑料的表面能,均可以与使用接触角分析仪获得的结果相媲美。

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