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Cyclic loading of polyetheretherketone at high tensile stress levels

机译:高拉应力水平下聚醚醚酮的循环载荷

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In a recent study of the corresponding author, it was found that PEEK bearing elements revealed high (irreversible) surface strains if they were loaded between steel sheets. Since this reflects the conditions in the practical application and because the rolling properties are dominated by the surface material, a more detailed analysis of highly strained PEEK was required. Hence, fatigue tests in the high stress tensile regime were conducted. The experiments were carried out on servo-hydraulic testing machines and during the tests the mechanical response of the specimens was recorded. Two material modifications of PEEK were investigated in the research: untreated PEEK (without heat treatment) and annealed PEEK which was modified using defined thermal conditions. The analysis of the recorded test data aimed on the distinction between cumulative material response (creep deformation, material hardening / softening) and spontaneous material response (material hardening / softening). At the highest stress levels, the cumulative response pretended material softening with increasing number of cycles. However, by examining the spontaneous material response which became stiffer with increasing number of cycles, it was shown that the cumulative softening was caused by time-dependent deformation processes.
机译:在最近对相应作者的一项研究中,发现PEEK轴承元素如果装载在钢板之间,则呈现出高(不可逆的)表面菌株。由于这反映了实际应用中的条件,并且因为滚动性能由表面材料主导,所以需要更详细地分析高度紧张的PEEK。因此,进行了高应力拉伸状态的疲劳试验。实验在伺服液压试验机上进行,在测试期间,记录样品的机械响应。在研究中调查了PEEK的两种材料修改:未经处理的PEEK(无热处理)和退火的PEEK,使用定义的热条件改性。记录测试数据的分析旨在区分累积材料响应(蠕变变形,材料硬化/软化)和自发材料响应(材料硬化/软化)。在最高应力水平下,累积响应假装材料软化随着越来越多的循环。然而,通过检查随着循环越多而变得更硬的自发性材料响应,结果表明累积软化是由时间依赖性变形过程引起的。

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