Characteristics of Hybrid Composite from Hydroxyapatite/Metal Powder and Ceramic

A. Pramono, F. Sulaiman, Alfirano Alfirano, S. Suryana, A. Milandia
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引用次数: 1

Abstract

Milkfish bones/chanos-chanos forsk (CCF) contain of 4% calcium, 3% phosphorus, and 32% protein. CCF is heated at certain temperatures (500-7000C) then can be turned into hydroxyapatite (HAp) as a biomaterial application. The selection of materials in accordance by HAp is aluminum (Al), magnesium (Mg) and titanium (Ti). Al is one of the non-ferrous metals with very wide applications. It has specific properties such as; being light weight, ductile and a lower melting point compared to many other common engineering materials. The combining some of metals by HAp, is a composite material term, which is currently the latest development for processing various elements of different materials. Processing of composite for multi-alloy materials, requires a complex process in resulting of products, both in terms of parameters and process variables. Self-propagating high temperature synthesis (SHS) is a relatively novel and simple method for making certain advanced composites and intermetallic compounds. The SHS method is very suitable to be used as a composite multi-alloy material processing because it has a series of processes capable of producing strong bonds between the elements combined, such as HAp, Al, Mg and Ti. The HAp material from milkfish bones was combined by several metal materials such as Al, Mg and Ti. The use of this material is expected to improve mechanical properties especially eliminating fragility in composite materials. Variation of composition on hybrid composites consist of 3 types: (hybrid composites). There are three combinations of compositions in hybrid composite manufacturing, namely: 80% HAp; 10% Al; 5% Mg; 5% Ti, 80% HAp; 10% Al; 5% Mg; 5% Cu and 80% HAp; 10% Al; 5% Mg; 5% SiC. Characterization carried out ware mechanical and microstructure to determine the properties of hybrid composites, from the values obtained can be recommended for biomaterial applications
羟基磷灰石/金属粉末与陶瓷杂化复合材料的特性
遮目鱼骨/遮目鱼叉(CCF)含有4%的钙,3%的磷和32%的蛋白质。CCF在一定温度下加热(500-7000C),然后可以转化为羟基磷灰石(HAp)作为生物材料应用。HAp根据材料的选择是铝(Al)、镁(Mg)和钛(Ti)。铝是一种应用非常广泛的有色金属。它具有特定的属性,例如;与许多其他常见工程材料相比,重量轻,延展性好,熔点低。用羟基磷化钾(HAp)结合某些金属,是复合材料的一个术语,是目前对不同材料中各种元素进行加工的最新发展。多合金材料复合材料的加工,无论是在参数方面还是在工艺变量方面,都是一个复杂的过程。自传播高温合成(SHS)是一种相对新颖和简单的制备高级复合材料和金属间化合物的方法。SHS方法非常适合用于复合多合金材料的加工,因为它具有一系列能够在组合元素(如HAp, Al, Mg和Ti)之间产生强键的工艺。遮目鱼骨头中的HAp材料与Al、Mg和Ti等几种金属材料结合在一起。这种材料的使用有望改善机械性能,特别是消除复合材料的易碎性。混合复合材料的成分变化包括3种类型:(混合复合材料)。混合复合材料制造中有三种组合物,即:80% HAp;艾尔·10%;5%毫克;5% Ti, 80% HAp;艾尔·10%;5%毫克;5% Cu和80% HAp;艾尔·10%;5%毫克;5%的碳化硅。通过力学和微观结构表征来确定混杂复合材料的性能,从所获得的数值可以推荐用于生物材料的应用
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