首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Rheological properties of titanium-hydroxyapatite with powder space holder composite feedstock for powder injection moulding
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Rheological properties of titanium-hydroxyapatite with powder space holder composite feedstock for powder injection moulding

机译:用粉末空间夹持器复合原料钛 - 羟基磷灰石用于粉末注射成型的流变性能

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摘要

Metal-ceramic composites such as titanium-hydroxyapatite have been extensively studied as a new generation of implant material in medical application. The powder injection moulding (PIM) process is one the viable processing method in producing the titanium-hydroxyapatite composite which offers extreme geometry part at a lower cost of production. The final powder injection moulding (PIM) product was influenced by the feedstock rheological and thermal properties that related to the binder selection and the critical solids loading. The emphasis of this study was towards the rheological and thermal properties of Ti6Al4V-hydroxyapatite composite feedstock with the powder space holder using a low-density polyethene and palm stearin binder system. The critical solids loading for 90:10 of Ti6Al4V-hydroxyapatite with 20% of the space holder was selected for capillary rheometer tests. The solids loading was obtained at 73vol.% with optimal solids loading in the range of 2-5% below the critical solids loading which were 68, 69 and 70vol.%. All feedstocks exhibited shear thinning behaviour, with the shear rate and viscosity values in the range of the PIM feedstock. The work in this study found that the feedstock of 68vol.% solids loading possessed the best rheological properties with a higher flow behaviour index.
机译:金属陶瓷复合材料如钛 - 羟基磷灰石已被广泛地研究了医疗应用中的新一代植入物质。粉末注射成型(PIM)工艺是生产钛 - 羟基磷灰石复合材料的可行加工方法,可以较低的生产成本提供极端的几何部件。最终粉末注射成型(PIM)产物受到与粘合剂选择相关的原料流变学和热性能和临界固体载荷的影响。该研究的重点是使用低密度聚乙烯和棕榈树脂粘合剂体系与粉末空间夹持器的Ti6Al4V-羟基磷灰石复合原料的流变和热性能。选择Ti6Al4V-羟基磷灰石90:10的关键固体加载,其中20%具有20%的空间支架,用于毛细管流变仪测试。固体载荷在73℃下获得。在低于临界固体负荷的范围内,最佳固体载荷在68,69和70Vol。%。所有原料都表现出剪切稀疏行为,在PIM原料的范围内具有剪切速率和粘度值。本研究中的工作发现,68Vol的原料。%固体载荷具有更高的流动行为指数的最佳流变性能。

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