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Rheological and mechanical properties of Yttria Stabilized Zirconia (YSZ) produced by ceramic injection moulding / Mahfuzah Zainudin

机译:陶瓷注射成型法生产的氧化钇稳定氧化锆(YSZ)的流变和力学性能/ Mahfuzah Zainudin

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摘要

Powder Injection Moulding (PIM) is a promising approach to producing a near netshape product of intricate geometry with cost-effective production. PIM by using ceramic powders has been studied recently due to interest as ceramic biomaterials. Yttria Stabilized Zirconia (YSZ) powders are renowned materials with their, biocompatibility, superior dimensional stability and excellent mechanical properties resulting from mechanisms of transformation toughening. The focus of this study is to fabricate root pins for dental implantation structure through Ceramic Injection Moulding (CIM). 3 mol% YSZ powders were used to mix with binder components that consist of palm stearin (PS) as a primary binder and polyethylene (PE) as a backbone binder in 60:40 ratios. Four different powder loadings were prepared in this study; 57, 58, 59 and 60 vol. % based on critical powder volume percentage (CPVP) experiment. The homogeneity of the feedstocks was evaluated via torque rheometry data and scanning electron microscopy (SEM) observation. The flow ability of the feedstock were determined through rheological characteristic which are the relationship of viscosity and shear rate formed pseudoplastic behaviour, the flow behaviour index value (n) is below than 1 and lower activation energy (E). Then, all feedstocks were injected in a screw thread shape and rectangular bar mould for further experiment. All moulded specimens were embedded into alumina powder (wicking agent) before undergoing thermal debinding process at 550°C to remove the binders and pre-sintering at 1100°C was carried out simultaneously after debinding process in the same furnace. The parts were subsequently sintered in the furnace up to 1450°C for 3 hours without wicking agent with 3°C/min heating rate. The characterization of sintered parts, physical properties, and mechanical properties was performed. It is expected that, low powder loading specimens (57 vol. %) had lower viscosity, strength, density and hardness but higher in porosity compared to higher powder loading specimens (58 vol. %, 59 vol. % and 60 vol. %). The elastic modulus of compressive strength and hardness for 60 vol. % specimens was 4.79 ± 1.24 GPa and 398.5±10.4 HV respectively. Overall, root pins for dental implantation structure was successfully fabricated via CIM technique using PS as the binder system.
机译:粉末注射成型(PIM)是一种有前途的方法,可以用经济高效的方法生产出复杂几何形状的近网形产品。由于对作为陶瓷生物材料的兴趣,最近已经研究了使用陶瓷粉末的PIM。氧化钇稳定的氧化锆(YSZ)粉末是著名的材料,具有生物相容性,优异的尺寸稳定性和由转化增韧机理产生的优异机械性能。这项研究的重点是通过陶瓷注射成型(CIM)制造用于牙植入结构的牙根钉。将3mol%的YSZ粉末以60∶40的比例与由棕榈硬脂(PS)作为主要粘合剂和聚乙烯(PE)作为主链粘合剂组成的粘合剂组分混合。在这项研究中准备了四种不同的粉末负载量。 57、58、59和60卷。 %基于临界粉末体积百分比(CPVP)实验。通过扭矩流变学数据和扫描电子显微镜(SEM)观察来评估原料的均质性。通过流变特性确定了原料的流动能力,该流变特性是粘度与剪切速率形成的假塑性行为之间的关系,流动行为指数值(n)小于1,活化能较低(E)。然后,将所有原料以螺纹形状和矩形模具注射以进行进一步的实验。在550℃下进行热脱脂处理以除去粘合剂之前,将所有模制样品均嵌入氧化铝粉末(芯吸剂)中,并在同一炉中进行脱脂处理后同时在1100℃下进行预烧结。随后将零件在无芯吸剂的情况下在加热炉中加热至1450°C达3小时,加热速率为3°C / min。进行了烧结零件,物理性能和机械性能的表征。可以预料,与较高的粉末载样(58%,59%和60%)相比,低粉末载样(57%(体积))具有较低的粘度,强度,密度和硬度,但孔隙率较高。 。压缩强度和硬度的弹性模量为60 vol。标本的百分比分别为4.79±1.24 GPa和398.5±10.4 HV。总体而言,采用PS作为粘合剂体系的CIM技术成功地制造了用于牙种植体结构的根销。

著录项

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    Zainudin Mahfuzah;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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