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首页> 外文期刊>American journal of applied sciences >Injection Molding of Titanium Alloy Implant For Biomedical Application Using Novel Binder System Based on Palm Oil Derivatives
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Injection Molding of Titanium Alloy Implant For Biomedical Application Using Novel Binder System Based on Palm Oil Derivatives

机译:基于棕榈油衍生物的新型粘合剂系统用于生物医学的钛合金植入物的注塑成型

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摘要

Problem statement: Titanium alloy (Ti6A14V) has been widely used as an implant for biomedical application. In this study, the implant had been fabricated using high technology of Powder Injection Molding (PIM) process due to the cost effective technique for producing small, complex and precision parts in high volume compared with conventional method through machining. Approach: Through PIM, the binder system is one of the most important criteria in order to successfully fabricate the implants. Even though, the binder system is a temporary, but failure in the selection and removal of the binder system will affect on the final properties of the sintered parts. Therefore, the binder system based on palm oil derivative which is palm stearin had been formulated and developed to replace the conventional binder system. Results: The rheological studies of the mixture between the powder and binders system had been determined properly in order to be successful during injection into injection molding machine. After molding, the binder held the particles in place. The binder system had to be removed completely through debinding step. During debinding step, solvent debinding and thermal pyrolysis had been used to remove completely of the binder system. The debound part was then sintered to give the required physical and mechanical properties. The in vitro biocompatibility also was tested using Neutral Red (NR) and mouse fibroblast cell lines L-929 for the direct contact assay. Conclusion: The results showed that the properties of the final sintered parts fulfill the Standard Metal Powder Industries Federation (MPIF) 35 for PIM parts except for tensile strength and elongation due to the formation of titanium carbide. The in vitro biocompatibility on the extraction using mouse fibroblast cell line L-929 by means of NR assays showed non toxic for the sintered specimen titanium alloy parts.
机译:问题陈述:钛合金(Ti6A14V)已被广泛用作生物医学应用的植入物。在这项研究中,植入物是使用粉末注射成型(PIM)工艺的高科技制造的,这是因为与通过机械加工的传统方法相比,该技术具有成本效益高的技术,可以大批量生产小型,复杂和精密的零件。方法:通过PIM,粘合剂系统是成功制造植入物的最重要标准之一。即使粘合剂系统是暂时的,但是粘合剂系统的选择和去除失败也会影响烧结零件的最终性能。因此,已经配制和开发了基于棕榈油衍生物即棕榈硬脂的粘合剂体系,以代替常规粘合剂体系。结果:已正确确定了粉末和粘合剂体系之间混合物的流变学研究,以便成功地将其注入注塑机中。成型后,粘合剂将颗粒固定在适当的位置。粘合剂系统必须通过脱脂步骤完全除去。在脱脂步骤中,已使用溶剂脱脂和热解作用完全去除了粘合剂体系。然后将脱脂部分烧结以提供所需的物理和机械性能。还使用中性红(NR)和小鼠成纤维细胞系L-929对直接接触测定法进行了体外生物相容性测试。结论:结果表明,最终烧结零件的性能满足PIM零件的标准金属粉末工业联合会(MPIF)35要求,但由于形成碳化钛而产生的拉伸强度和伸长率除外。利用小鼠成纤维细胞系L-929通过NR分析提取的体外生物相容性对烧结的标本钛合金零件显示无毒。

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  • 来源
    《American journal of applied sciences 》 |2010年第6期| p.811-814| 共4页
  • 作者单位

    Advanced Materials Research Centre, SIRIM Berhad, Lot 34, Jalan Hi-Tech 2/3, Kulim Hi-Tech Park, 09000 Kulim, Kedah, Malaysia;

    rnAdvanced Materials Research Centre, SIRIM Berhad, Lot 34, Jalan Hi-Tech 2/3, Kulim Hi-Tech Park, 09000 Kulim, Kedah, Malaysia;

    rnAdvanced Materials Research Centre, SIRIM Berhad, Lot 34, Jalan Hi-Tech 2/3, Kulim Hi-Tech Park, 09000 Kulim, Kedah, Malaysia;

    rnAdvanced Materials Research Centre, SIRIM Berhad, Lot 34, Jalan Hi-Tech 2/3, Kulim Hi-Tech Park, 09000 Kulim, Kedah, Malaysia;

    rnAdvanced Materials Research Centre, SIRIM Berhad, Lot 34, Jalan Hi-Tech 2/3, Kulim Hi-Tech Park, 09000 Kulim, Kedah, Malaysia;

    Engineering and Process Division, Malaysian Palm Oil Board, No. 6, Persiaran Institute, Bandar Baru Bangi, 43000 Kajang, Selangor Malaysia;

    rnHerbal Medicine Research Centre, Institute of Medical Research, Jalan Pahang, 50588 Kuala Lumpur, Malaysia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    binder system; rheological study; powder injection molding; debinding and sintered parts;

    机译:粘结剂系统;流变学粉末注射成型;脱脂和烧结零件;

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