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On the models of erosive wear of ductile materials

机译:关于韧性材料的腐蚀磨损模型

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As the mechanism by which material is lost from ductile surfaces during solid particle erosion is still a matter of scientific debate, the work presented in this paper is aimed at trying to shed more light on the mechanism by which material is detached from ductile surfaces during solid particle erosion. Moreover, validating some of the most widely accepted models that predict erosive wear rate will form part of the paper. A specially designed test rig was used to facilitate test condition of an extensive experimental program. Results of the test program showed that plastic strain accumulation is largely responsible for material loss from ductile surfaces, even at cute impact angles. The key to this finding is the drop of erosive wear upon impact angle reversal indicates. It has been shown that none of the most widely accepted models of erosive wear could explain the result obtained under condition of impact angle reversal.
机译:由于在固体颗粒腐蚀过程中材料从延性表面损失的机理仍是一个科学争论,因此本文提出的工作旨在试图更多地揭示在固体颗​​粒侵蚀时材料从延性表面分离的机理。颗粒侵蚀。此外,验证某些预测腐蚀磨损率的最广泛接受的模型将成为本文的一部分。使用专门设计的测试台来简化广泛实验程序的测试条件。测试程序的结果表明,即使在可爱的冲击角下,塑性应变的积累也是造成韧性表面材料损失的主要原因。这一发现的关键是在反冲角指示时侵蚀磨损的下降。已经表明,最广泛接受的侵蚀磨损模型都不能解释在冲击角反转条件下获得的结果。

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