会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 6. 发明授权
    • Weld repair of superalloy materials
    • 超级合金材料的焊接修复
    • US07653995B2
    • 2010-02-02
    • US11497113
    • 2006-08-01
    • James A. Morin
    • James A. Morin
    • B23P6/00C21D1/09C22F1/10
    • B23K31/02B23K35/304B23K2101/001B23P6/002C21D1/09C21D9/00C22F1/10Y10T29/49318Y10T29/49723Y10T29/49732Y10T29/49742
    • A method of weld repairing a superalloy material at ambient temperature without causing cracking of the base material. A superalloy material such as CM-247 LC, as is commonly used in gas turbine blade applications, is subjected to an overage pre-weld heat treatment in order to grow the volume percentage of gamma prime precipitate in the material to a level sufficient to permit ambient temperature welding without cracking. CM-247 LC material is heated in a vacuum furnace at a rate of about 0.5° C. per minute to an intermediate temperature of about 885° C. The material is then gas fan quenched to a temperature of about 52° C. to grow the gamma prime precipitate percentage to about 55%. A fusion repair weld may then be performed on the material at an ambient temperature using a filler material having a chemistry matching a chemistry of the base material.
    • 在环境温度下焊接修复超合金材料的方法,而不会引起基体材料的开裂。 在燃气轮机叶片应用中通常使用的诸如CM-247LC的超级合金材料经受过度预焊接热处理,以将材料中的γ'沉淀物的体积百分比增加至足以允许 环境温度焊接无裂纹。 CM-247 LC材料在真空炉中以约0.5℃/分钟的速率加热至约885℃的中间温度。然后将材料淬火至约52℃的温度以生长 γ'沉淀百分比至约55%。 然后可以使用具有与基材的化学性质匹配的化学物质的填充材料在环境温度下对材料进行熔融修补焊缝。
    • 7. 发明申请
    • WELD REPAIR OF SUPERALLOY MATERIALS
    • 超级焊接材料的焊接修复
    • US20090320966A1
    • 2009-12-31
    • US11497113
    • 2006-08-01
    • James A. Morin
    • James A. Morin
    • C22F1/10B23P6/00C21D9/00
    • B23K31/02B23K35/304B23K2101/001B23P6/002C21D1/09C21D9/00C22F1/10Y10T29/49318Y10T29/49723Y10T29/49732Y10T29/49742
    • A method of weld repairing a superalloy material at ambient temperatures without causing cracking of the base material. A superalloy material such as CM-247 LC, as is commonly used in gas turbine blade applications, is subjected to an overage pre-weld heat treatment in order to grow the volume percentage of gamma prime precipitate in the material to a level sufficient to permit ambient temperature welding without cracking. CM-247 LC material is heated in a vacuum furnace at a rate of about 0.5° C. per minute to an intermediate temperature of about 885° C. The material is then gas fan quenched to a temperature of about 52° C. to grow the gamma prime precipitate percentage to about 55%. A fusion repair weld may then be performed on the material at an ambient temperature using a filler material having a chemistry matching a chemistry of the base material.
    • 在环境温度下焊接修复超合金材料而不引起基体材料破裂的方法。 在燃气轮机叶片应用中通常使用的诸如CM-247LC的超级合金材料经受过度预焊接热处理,以将材料中的γ'沉淀物的体积百分比增加至足以允许 环境温度焊接无裂纹。 CM-247 LC材料在真空炉中以约0.5℃/分钟的速率加热至约885℃的中间温度。然后将材料淬火至约52℃的温度以生长 γ'沉淀百分比至约55%。 然后可以使用具有与基材的化学性质匹配的化学物质的填充材料在环境温度下对材料进行熔融修补焊缝。