摘要:
Disclosed herein is a wear-resistance aluminum bronze alloy comprising 4 to 15 wt % of Al, 0.1 to 10 wt % of Cr and the balance Cu, and optionally containing not more than 6 wt % of Ni and not more than 15 wt % of Mn.
摘要:
Disclosed herein is a wear-resistance alloy consisting essentially of about 10 to 40 wt % of Zn, about 3 to 10 wt % of Al, about 0.1 to 4 wt % of Cr, and optionally not more than about 8 wt % of Mn and not more than about 2 wt % of Ni, with the balance, Cu.
摘要:
The present invention relates to a copper-based sintered slide member comprising 0.5 to 20% by weight of tin, 0.1 to 35% by weight of manganese, 2 to 25% by weight of a solid lubricant and the balance essentially consisting of copper; and a multilayer copper-based sintered slide member comprising a copper-based alloy sintered layer and a metal backing plate which are formed into an integral multilayer structure, wherein the copper-based alloy sintered layer comprises 0.5 to 20% by weight of tin, 0.1 to 35% by weight of manganese, 2 to 25% by weight of a solid lubricant and the balance essentially consisting of copper. The above slide members are in the form of a lead-free copper-based sintered slide member. The copper-based sintered slide member can exhibit sliding characteristics similar to or higher than those of lead-containing copper-based sintered slide members and can be suitably used as an oil-containing sintered slide member, and can also be suitably used even under conditions in high-temperature ranges and/or under dry frictional conditions in which it may be difficult to use a lubrication oil, and a multilayer sintered slide member capable of exhibiting excellent sliding characteristics even under high-load conditions.
摘要:
The present invention relates to a copper-based sintered slide member comprising 0.5 to 20% by weight of tin, 0.1 to 35% by weight of manganese, 2 to 25% by weight of a solid lubricant and the balance essentially consisting of copper; and a multilayer copper-based sintered slide member comprising a copper-based alloy sintered layer and a metal backing plate which are formed into an integral multilayer structure, wherein the copper-based alloy sintered layer comprises 0.5 to 20% by weight of tin, 0.1 to 35% by weight of manganese, 2 to 25% by weight of a solid lubricant and the balance essentially consisting of copper. The above slide members are in the form of a lead-free copper-based sintered slide member. The copper-based sintered slide member can exhibit sliding characteristics similar to or higher than those of lead-containing copper-based sintered slide members and can be suitably used as an oil-containing sintered slide member, and can also be suitably used even under conditions in high-temperature ranges and/or under dry frictional conditions in which it may be difficult to use a lubrication oil, and a multilayer sintered slide member capable of exhibiting excellent sliding characteristics even under high-load conditions.