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Modelling compaction behaviour of nickel-phosphorus and nickel-boron electroless coated titanium powders

机译:镍磷和镍硼化学镀钛粉末的压实行为建模

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摘要

Electroless plating is used as an alternative approach to alloying the commercially pure titanium powders. Two types of irregularly shaped powders, which differ in particle size distribution, are coated with nickel-phosphorus (Ni-P) and nickel-boron (Ni-B). A novel method, combining aspects of the Kawakita and Alderbom approaches, has been employed in order to understand compaction behaviour. The overall consolidation is described by a Kawakita-Ludde relationship, and the transition pressures which demarcate the limits of rearrangement only and plastic deformation only are identified using a modification of the Alderborn relationship. A significant increase in green strength is achieved with the Ni-B coated powders, and this is attributed to a modification of friction conditions and the number of possible contacts, which lead to an increased contribution from plastic deformation. The Mohr-Coulomb model and Ohyane equations are used to describe the contribution of the number of contacts on green strength. (C) 2015 Elsevier B.V. All rights reserved.
机译:化学镀被用作使商业纯钛粉末合金化的替代方法。两种粒度分布不同的不规则形状的粉末都涂有镍磷(Ni-P)和镍硼(Ni-B)。为了了解压实特性,已采用一种结合了Kawakita和Alderbom方法的新方法。整体固结由Kawakita-Ludde关系描述,使用Alderborn关系的修正可以确定仅划分重排和塑性变形界限的过渡压力。镀Ni-B的粉末可显着提高生坯强度,这归因于摩擦条件和可能接触点的改变,这导致塑性变形的贡献增加。 Mohr-Coulomb模型和Ohyane方程用于描述接触数量对生胶强度的影响。 (C)2015 Elsevier B.V.保留所有权利。

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