氧化钛及其对合金结构、物理性能和电化学腐蚀参数的影响

Abu Bakr El Bediwi
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引用次数: 0

摘要

物质在文明的发展中是如此重要。几乎没有金属以纯形式使用,但它们总是相互结合以恢复一种或多种特性。合金可以定义为具有金属性质并由至少一种为金属的两种或两种以上化学元素组成的物质。大多数合金在工业和艺术中比纯金属更重要。一些研究报道,通过在锡或铋基合金中添加合金元素来修饰结构,对测量的物理性能如弹性模量、硬度、接触温度、内摩擦、扩散、电阻率和电化学腐蚀行为等产生或大或小的影响[1-17]。研究了铋基或锡基合金在不同条件下的显微组织、力学性能和热性能[18-23]。这些合金的基体结构发生改变,从而影响所有测量的物理性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Titanium Oxide and their Effects on Structure, Physical Properties and Electrochemical Corrosion Parameters of Alloys
Materials are so significant in the development of civilization. Almost no metals are used in pure form, but they are always combined with each other to recover one or more properties. An alloy may be defined as a substance that has the metallic properties and is composed of two or more chemical elements of which at least one is a metal. Most alloys are great importance in industry and in the arts than are the pure metals. Several researches reported that, modification structure by adding alloying elements to tin or bismuth-based alloys caused minor/ or major effects on measured physical properties such as elastic modulus, hardness, meting temperature, internal friction, spreading, resistivity and electrochemical corrosion behavior with corrosion parameters [1-17]. Microstructure, mechanical and thermal properties of bismuth or tin based alloys are studied [18-23] studied at different conditions. Matrix structure of these alloys is changed which effects on all measured physical properties.
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