发明公开
EP2255097A1 ANCHOR BOLT AND ANNULARLY GROOVED EXPANSION SLEEVE ASSEMBLY EXHIBITING HIGH PULL-OUT RESISTANCE, PARTICULARLY UNDER CRACKED CONCRETE TEST CONDITIONS
审中-公开
和锚固螺栓与环形胀紧套KNURL安排HIGH拉出来,尤其是在有裂痕的具体测试条件
- 专利标题: ANCHOR BOLT AND ANNULARLY GROOVED EXPANSION SLEEVE ASSEMBLY EXHIBITING HIGH PULL-OUT RESISTANCE, PARTICULARLY UNDER CRACKED CONCRETE TEST CONDITIONS
- 专利标题(中): 和锚固螺栓与环形胀紧套KNURL安排HIGH拉出来,尤其是在有裂痕的具体测试条件
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申请号: EP09714769.8申请日: 2009-02-05
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公开(公告)号: EP2255097A1公开(公告)日: 2010-12-01
- 发明人: KOBETSKY, Robert, G. , STAROZHITSKY, Michael , REITER, Matthew, J. , BROOMFIELD, Donald
- 申请人: Illinois Tool Works Inc.
- 申请人地址: 3600 West Lake Avenue Glenview, IL 60026 US
- 专利权人: Illinois Tool Works Inc.
- 当前专利权人: Illinois Tool Works Inc.
- 当前专利权人地址: 3600 West Lake Avenue Glenview, IL 60026 US
- 代理机构: Finnie, Peter John
- 优先权: US73141 20080229
- 国际公布: WO2009108473 20090903
- 主分类号: F16B13/06
- IPC分类号: F16B13/06
摘要:
A wedge-type anchor assembly, capable of meeting cracked concrete testing standards, comprises an anchor bolt component and a substantially C-shaped expansion sleeve component annularly disposed about the anchor bolt component. A plurality of annular grooves, threads, or teeth are disposed only about the forward end portion of the expansion sleeve component, as opposed to throughout the entire axial length thereof, so that when the anchor bolt component is moved axially through the expansion sleeve component, the maximum interference area (M.I.A.) and maximum interference volume (M.I.V.) can be generated between the anchor bolt component and the expansion sleeve component in a controlled and predictable manner, as well as between the expansion sleeve component and the internal peripheral side wall portions of a concrete substrate or substructure can be generated so as to enhance pull-out resistance and reliability of the anchor assembly within the concrete substructure or substrate. The expansion sleeve component may be plated with a tin-zinc (Sn—Zn) composition, and the rear end portion of the expansion sleeve component may have a larger diametrical extent than the forward end portion of the expansion sleeve component so as to enhance pull-out resistance.
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