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Metal Injection Molding (MIM) of Mg-Alloys

机译:镁合金的金属注射成型(MIM)

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MBM-technique possesses high potential for the SF_6 free near net shape mass production of small sized and complex shaped parts. Furthermore, MIM involves a high degree of freedom regarding individual alloy- and MMC-composition using the blended elemental (BE-route). Resent research has highlighted MTM of Mg-alloys as highly suitable for biomedical applications like screws, nails and bone-plates, as well as for commercial 3C applications. For prototyping and low quantities, the feedstock can be used for 3D-filament print, too. Hence, demonstrator parts and test specimen could be produced very successfully, ready for industrial upscaling. Increased mechanical properties of MIM dogbone tensile test specimen could be achieved using Mg-2.6Nd-l.3Gd-0.5Zr-0.3Zn alloy (EZK400, UTS: 164 MPa, YS: 123 MPa, ε_f: 3.4%) and AZ81-alloy for commercial applications (UTS: 240 MPa, YS: 118 MPa, ε_f: 4%). Thus, the mechanical properties are currently equivalent to those of as cast material and obtaining high development potential.
机译:MBM技术对于小尺寸和复杂形状零件的SF_6自由近净形批量生产具有很高的潜力。此外,MIM涉及使用混合元素(BE路径)的各个合金和MMC组成的高度自由度。最近的研究表明,镁合金的MTM非常适合螺钉,钉子和骨板等生物医学应用以及商业3C应用。对于原型和少量生产,原料也可用于3D丝打印。因此,演示器零件和测试样品可以非常成功地生产出来,可以进行工业升级。使用Mg-2.6Nd-1.3Gd-0.5Zr-0.3Zn合金(EZK400,UTS:164 MPa,YS:123 MPa,ε_f:3.4%)和AZ81合金可以提高MIM狗骨拉伸试样的机械性能适用于商业应用(UTS:240 MPa,YS:118 MPa,ε_f:4%)。因此,目前的机械性能与铸造材料的机械性能相同,并且具有很高的开发潜力。

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