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Effect of Micro-Surface Texturing on Breakaway Torque and Blister Formation on Carbon-Graphite Faces in a Mechanical Seal

机译:微观纹理对机械密封中碳钢胶片型扭矩和泡罩形成的影响

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Micro-surface textures can create hydrodynamic lift and thus they have the potential to reduce startup surface traction forces on mechanical seal faces. Lower surface traction forces will reduce the formation of the surface cracks that are commonly characterized as blisters. In this study, micro dimples were formed in controlled patterns on seal face surfaces with a laser. Tests were conducted with texture patterns on a carbon-graphite face or on a mating silicon carbide face. Fewer blisters were detected with textured silicon carbide faces in comparison to silicon carbide faces that were not textured. A higher rate of blister occurrence on laser textured carbon surfaces is attributed to the inherently low fracture toughness of carbon-graphite materials and the increased number of sites from which cracks could propagate.
机译:微表面纹理可以产生流体动力升力,因此它们有可能降低机械密封面上的启动表面牵引力。下表面牵引力将减少通常表征为水疱的表面裂缝的形成。在该研究中,以具有激光的密封面表面上的受控图案形成微凹坑。用碳石墨面或配合碳化硅面上的纹理图案进行测试。与没有纹理的碳化硅面相比,用纹理的碳化硅面检测了更少的水疱。激光纹理碳表面上的泡罩发生率较高归因于碳石墨材料的固有低断裂韧性以及裂缝可以繁殖的位点数增加。

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