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Improved Plasticity of Ti-Based Bulk Metallic Glass at Room Temperature by Electroless Thin Nickel Coating

机译:化学镀薄镍涂层改善室温下钛基大块金属玻璃的可塑性

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By restricting the dilated deformation, surface modification can stimulate multiple shear banding and improve the plasticity of bulk metallic glasses (BMGs). Aimed at modifying the surface of BMGs by thin layers, a crystalline Ni coating with ultrafine grains was coated on the surface of a Ti-based BMG by electroless plating. With a thickness of about 10 ????m, the prepared thin coating could effectively limit the fast propagation of primary shear bands and stimulate the nucleation of multiple shear bands. As a result, the compression plasticity of the coated Ti-based BMG was improved to about 3.7% from near 0% of the non-coated BMG. Except for a small amount of Ni coating was adhered to the BMG substrate after fracture, most of the coatings were peeled off from the surface. It can be attributed to the abnormal growth of some coarse grains/particles in local region of the coating, which induces a large tensile stress at the interface between the coating and the BMG substrate. It is suggested that, for electroless nickel plating, improving the adhesive bonding strength between the coating and the substrate has a better geometric restriction effect than simply increasing the thickness of the coating.
机译:通过限制膨胀变形,表面改性可以刺激多个剪切带并提高块状金属玻璃(BMG)的可塑性。为了通过薄层修饰BMG的表面,通过化学镀在Ti基BMG的表面上涂覆具有超细晶粒的结晶Ni涂层。所制备的薄涂层的厚度约为10μm,可以有效地限制主剪切带的快速传播并刺激多个剪切带的形核。结果,涂覆的Ti基BMG的压缩可塑性从未涂覆的BMG的接近0%提高到约3.7%。断裂后,除了少量的Ni涂层附着在BMG基板上外,大多数涂层均从表面剥离。这可以归因于在涂层的局部区域中一些粗大晶粒/颗粒的异常生长,这在涂层和BMG基材之间的界面处引起了很大的拉应力。建议对于化学镀镍,提高涂层和基材之间的粘合强度比单纯增加涂层的厚度具有更好的几何限制效果。

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