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    • 1. 发明授权
    • Self-moving tunnel support canopy
    • 自行隧道支护冠层
    • US09291053B2
    • 2016-03-22
    • US14395511
    • 2012-06-26
    • Xinbin Li
    • Xinbin Li
    • E21D9/06E21D11/40E21D23/04E21D15/14E21D23/03E21D11/10E21D23/06E21D23/16E21D23/08
    • E21D9/0621E21D11/10E21D11/28E21D11/30E21D11/40E21D15/14E21D23/0086E21D23/03E21D23/04E21D23/0427E21D23/06E21D23/08E21D23/16
    • A self-moving tunnel support canopy includes front arch frame, rear arch frame, forward jack, and support jack disposed under the front arch frame. The front arch frame has front arch beams and front longitudinal beams longitudinally disposed along arch upper surfaces of front arch beams and coupled to all the front arch beams. The rear arch frame has rear arch beams and rear longitudinal beams longitudinally disposed along arch upper surfaces of the rear arch beams and coupled to all the rear arch beams. The front longitudinal beams and the rear arch beams are spacedly disposed, and a spacing is configured between the front arch beam and a front-adjacent rear arch beam. One end is coupled to the front arch frame, and the other end of the forward jack is coupled to the rear arch frame. The front arch beam and the rear arch beam are both arch-shaped beams.
    • 自行式隧道支护罩包括前拱架,后拱架,前进千斤顶和设置在前拱架下方的支撑千斤顶。 前拱形框架具有前拱梁和前纵梁,纵向纵向设置在前拱梁的拱形上表面并且连接到所有前拱梁。 后拱形框架具有后拱梁和后纵梁,纵向纵向设置在后拱梁的拱形上表面并且联接到所有后拱梁。 前纵梁和后拱梁间隔设置,并且在前拱梁与前相邻的后拱梁之间构成间隔。 一端连接到前拱形框架,并且前进千斤顶的另一端联接到后拱架。 前拱梁和后拱梁均为拱形梁。
    • 2. 发明申请
    • TELESCOPIC MINE ROOF SUPPORT
    • TELESCOPIC矿山屋顶支持
    • US20140064859A1
    • 2014-03-06
    • US13599428
    • 2012-08-30
    • Michael T. ShookCharles C. Lash
    • Michael T. ShookCharles C. Lash
    • E21D15/14
    • E21D15/14E21D15/00E21D15/18E21D15/44E21D15/486
    • A longitudinally yieldable support for underground roof support includes a first support section with a first elongate outer shell filled with a solid compressible filler material and a second support section filled with a second solid compressible filler material with a second elongate outer shell extending above the first elongate outer shell. The second support section has density that is greater than a density of the first solid compressible filler material. A pair of attachment members are coupled to the second elongate outer shell and are configured for lifting the second elongate outer shell relative to the first elongate outer shell and for securing the second elongate outer shell relative to the first elongate outer shell once lifted.
    • 用于地下屋顶支撑件的纵向可屈服的支撑件包括具有填充有固体可压缩填充材料的第一细长外壳的第一支撑部分和填充有第二固体可压缩填充材料的第二支撑部分,第二细长外壳在第一细长 外壳。 第二支撑部分的密度大于第一固体可压缩填充材料的密度。 一对附接构件联接到第二细长外壳并且被构造成用于相对于第一细长外壳提升第二细长外壳并且用于在提起时相对于第一细长外壳固定第二细长外壳。
    • 5. 发明授权
    • Telescopic mine roof support
    • 望远镜矿顶支撑
    • US09347316B2
    • 2016-05-24
    • US14508032
    • 2014-10-07
    • BURRELL MINING PRODUCTS, INC.
    • Michael T. ShookCharles C. Lash
    • E21D15/18E21D15/14E21D15/00E21D15/44E21D15/48
    • E21D15/14E21D15/00E21D15/18E21D15/44E21D15/486
    • A longitudinally yieldable support for underground roof support includes a first support section with a first elongate outer shell filed with a solid compressible filler material and a second support section filled with a second solid compressible filler material with a second elongate outer shell extending above the first elongate outer shell. The second support section has density that is greater than a density of the first solid compressible filler material. A pair of attachment members are coupled to the second elongate outer shell and are configured for lifting the second elongate outer shell relative to the first elongate outer shell and for securing the second elongate outer shell relative to the first elongate outer shell once lifted.
    • 用于地下屋顶支撑件的纵向可屈服支撑件包括具有第一细长外壳的第一支撑部分,其具有固体可压缩填充材料,第二支撑部分填充有第二固体可压缩填料,第二固体可压缩填充材料具有在第一细长 外壳。 第二支撑部分的密度大于第一固体可压缩填充材料的密度。 一对附接构件联接到第二细长外壳并且被构造成用于相对于第一细长外壳提升第二细长外壳并且用于在提起时相对于第一细长外壳固定第二细长外壳。
    • 8. 发明授权
    • Telescopic mine roof support
    • 望远镜矿顶支撑
    • US08851805B2
    • 2014-10-07
    • US13599428
    • 2012-08-30
    • Michael T. ShookCharles C. Lash
    • Michael T. ShookCharles C. Lash
    • E21D15/18
    • E21D15/14E21D15/00E21D15/18E21D15/44E21D15/486
    • A longitudinally yieldable support for underground roof support includes a first support section with a first elongate outer shell filled with a solid compressible filler material and a second support section filled with a second solid compressible filler material with a second elongate outer shell extending above the first elongate outer shell. The second support section has density that is greater than a density of the first solid compressible filler material. A pair of attachment members are coupled to the second elongate outer shell and are configured for lifting the second elongate outer shell relative to the first elongate outer shell and for securing the second elongate outer shell relative to the first elongate outer shell once lifted.
    • 用于地下屋顶支撑件的纵向可屈服的支撑件包括具有填充有固体可压缩填充材料的第一细长外壳的第一支撑部分和填充有第二固体可压缩填充材料的第二支撑部分,第二细长外壳在第一细长 外壳。 第二支撑部分的密度大于第一固体可压缩填充材料的密度。 一对附接构件联接到第二细长外壳并且被构造成用于相对于第一细长外壳提升第二细长外壳并且用于在提起时相对于第一细长外壳固定第二细长外壳。
    • 10. 发明申请
    • SUPPORT FOR USE IN MINE
    • 支持在矿山使用
    • US20160208609A1
    • 2016-07-21
    • US15023545
    • 2014-09-29
    • Ian Edward HEALY
    • Ian Edward HEALY
    • E21D15/44
    • E21D15/44E21D15/14
    • A support comprising an outer casing having a main axis, the outer casing comprising a first casing part and a second casing part, the first casing part being at least partially receivable within the second casing part to enable relative movement therebetween in the axial direction, the casing parts having a cavity therein at least one of which has a core which includes a compressible medium, the support further including a pressure responsive system configured so that under the influence of pressure it can cause the relative displacement or movement between the first and second casing parts.
    • 一种支撑体,其包括具有主轴的外壳,所述外壳包括第一壳体部分和第二壳体部分,所述第一壳体部分至少部分地可接收在所述第二壳体部分内,以使得能够在轴向方向上相对移动, 壳体部件具有其中至少一个具有包括可压缩介质的芯的空腔,所述支撑件还包括压力响应系统,其构造成使得在压力的影响下,所述压力响应系统可以引起第一和第二壳体之间的相对位移或运动 部分。