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Structure and Tribological Properties of B83 Babbit–Based Composite Rods and the Coatings Produced from Them by Arc Surfacing

机译:B83基于Babbit的复合杆的结构和摩擦学性能和通过弧形表面产生的涂层

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摘要

Surfacing composite rods based on a B83 babbit alloy reinforced by silicon carbide and boron carbide particles are fabricated by extrusion. The structure and the tribological properties of the rods are studied. Extrusion allowed us to introduce and to uniformly distribute reinforcing fillers and to change the size and the morphology of the intermetallic phases in the matrix alloy. The wear resistance of the rods made of the B83 babbit + 5 wt % SiC composite material is shown to be higher than that of commercial B83 alloy samples by a factor of 1.2. Arc surfacing is used to deposit antifriction coatings, which are made of the surfacing composite rods based on B83 babbit reinforced by boron carbide or silicon carbide particles, onto steel substrates. The deposited layers exhibit good adhesion to the substrates: the melting line is continuous and does not contain discontinuities. The structure and the tribological properties of the deposited coatings are studied. The wear resistance of the composite coatings is higher than that of the B83 alloy–based coating by 30%.
机译:通过挤出制造基于碳化硅和碳化硼颗粒增强的B83 Babbit合金的表面复合杆。研究了杆的结构和摩擦学特性。挤出使我们介绍并均匀地分布增强填料并改变基质合金中金属间相的尺寸和形态。由B83 Babbit + 5wt%SiC复合材料制成的杆的耐磨性显示为高于1.2系数的商业B83合金样品的耐磨性。电弧表面用于沉积耐腐蚀涂层,其基于B83 Babbit由碳化硼或碳化硅颗粒加强的B83 Babbit在钢基板上的B83 Babbit制成。沉积的层对基材具有良好的粘附性:熔化线是连续的并且不含不连续性。研究了沉积涂层的结构和摩擦学特性。复合涂层的耐磨性高于B83合金基涂层的耐磨性30%。

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