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An Extension of the Monkman-Grant Model for the Prediction of the Creep Rupture Time Using Small Punch Tests

机译:Monkman-Grant模型的扩展,用于使用小冲孔试验预测蠕变破裂时间

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摘要

Creep tests on a small scale have the potential to be used without significant removal of material or in areas where the available material is limited. In this paper an extension of the modified Monkman-Grant model for the prediction of the creep rupture time using Small Punch Creep Tests (SPCT) is investigated. This test basically consists of punching, under constant load, a small size specimen (10×10×0.5 mm) with the ends fixed. For this purpose an AZ31B magnesium alloy, taking a test temperature of 150℃, has been selected. The Monkman-Grant relation is a predictive model, initially developed for uniaxial creep tests, which can be used to predict the rupture time of tests which have been interrupted once secondary stage of creep has been reached. The proposed extension of theMonkman-Grant model for SPCT is based on the definition of the Minimum Relative Punch Displacement Rate. The experimental techniques and data analysis, involving small punch testing, are explained in detail. The proposed predictive model allows the test times of small punch testing to be reduced and it can be directly applied to predict the failure time from an interrupted test at the time when the Minimum Relative Punch Displacement Rate is reached. Good correlations are obtained by comparing the failure time from the proposed Monkman-Grant extension with the experimental failure time.
机译:小规模的蠕变测试可能会在不大量去除材料的情况下或在可用材料有限的区域使用。在本文中,对改进的Monkman-Grant模型的扩展进行了研究,该模型用于使用Small Punch Creep Test(SPCT)预测蠕变破裂时间。该测试主要包括在恒定负载下冲压固定端部的小尺寸样本(10×10×0.5 mm)。为此,已选择测试温度为150℃的AZ31B镁合金。蒙克曼-格兰特(Monkman-Grant)关系是一种预测模型,最初是为单轴蠕变试验开发的,可用于预测一旦达到蠕变的第二阶段即已中断的试验的破裂时间。 SPCT的Monkman-Grant模型的拟议扩展基于最小相对穿孔率的定义。详细说明了涉及小冲头测试的实验技术和数据分析。所提出的预测模型可以减少小型打孔测试的测试时间,并且可以直接用于预测达到最小相对打孔位移率时中断测试的失败时间。通过将建议的Monkman-Grant扩展的失效时间与实验失效时间进行比较,可以获得良好的相关性。

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