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
    • 21. 发明申请
    • Molten metal leakege confinement and thernal optimization in vessels used for containing molten metal
    • 用于容纳熔融金属的容器中的熔融金属泄漏限制和动态优化
    • US20110253581A1
    • 2011-10-20
    • US13066474
    • 2011-04-14
    • Eric W. ReevesJames BoormanRobert Bruce WagstaffRandal Guy Womack
    • Eric W. ReevesJames BoormanRobert Bruce WagstaffRandal Guy Womack
    • B65D85/00
    • F27D3/145B22D11/103B22D35/04B22D35/06F27D1/0003F27D1/0006F27D1/0009
    • Exemplary embodiments of the invention relate to a vessel used for containing molten metal, e.g. a trough section for conveying molten metal from one location to another. The vessel has a refractory liner made of at least two refractory liner units positioned end to end, with a joint between the units, the units each having an exterior surface and a metal-contacting interior surface. A housing at least partially surrounds the exterior surfaces of the refractory liner units with a gap present between the exterior surfaces and the housing. Molten metal confinement elements, impenetrable by molten metal, are positioned on opposite sides of the joint within the gap, at least below a horizontal level corresponding to a predetermined maximum working height of molten metal held within the vessel in use, to partition the gap into a molten metal confinement region between the elements and at least one other region that may be used to hold equipment such as electrical heaters that may be damaged by contact with molten metal. Another embodiment employs refractory liner units of different thermal conductivity to maximize heat penetration into the molten metal from heaters in the gap, but to minimize heat loss at the inlet and outlet of the vessel where the end units contact the housing.
    • 本发明的示例性实施方案涉及用于容纳熔融金属的容器,例如, 用于将熔融金属从一个位置输送到另一个位置的槽区段。 容器具有由至少两个耐火衬垫单元制成的耐火衬垫,该耐火衬垫单元位于端部与端部之间,在单元之间具有接头,每个单元具有外表面和与金属接触的内表面。 壳体至少部分地围绕耐火衬垫单元的外表面,其间存在在外表面和外壳之间的间隙。 熔融金属不可渗透的熔融金属限制元件位于间隙内的关节的相对侧上,至少在与保持在使用中的容器内的熔融金属的预定最大工作高度相对应的水平面上,以将间隙分隔成 元件之间的熔融金属限制区域和至少一个其他区域,其可以用于保持诸如电加热器的设备,这些设备可能与熔融金属接触而损坏。 另一个实施例采用具有不同热导率的耐火衬垫单元来最大限度地使来自间隙中的加热器的熔融金属的热渗透最大化,但是最小化端部单元接触壳体的容器的入口和出口处的热损失最小化。
    • 25. 发明授权
    • Sliding anchorage device
    • US07111707B2
    • 2006-09-26
    • US11215191
    • 2005-08-30
    • Eric W. Reeves
    • Eric W. Reeves
    • F16B1/00E04G7/08
    • E04G21/3261A62B35/0081A62B35/04E04G5/045E04G21/3276
    • An anchorage safety device for steelworkers. The safety device is configured to be slidably coupleable to a flanged structural beam to which a lanyard may be attached to secure a workman against a fall. The anchorage device includes an elongate cross-member having a plurality of apertures formed there-through to allow adjustment of the anchorage device to accommodate various beams, a lanyard attachment apparatus, affixed to the mid-point of the cross-member, for receiving a clip of a workman's lanyard; and opposed first and second clamps for coupling the device to the flange of a beam. The clamps include a ratchet pawl having first and second teeth for selectively engaging the cross-member apertures. The worker needs only one hand to release the ratchet pawl from the apertures by simultaneously applying pressure on an enlarged engagement surface of the ratchet pawl and a clamp housing surface that is opposed to the enlarged engagement surface. Since both forces must be simultaneously applied in opposite directions, inadvertent disengagement of the clamp from the cross-member is obviated.
    • 26. 发明授权
    • Sliding anchorage device
    • 滑动锚固装置
    • US06962234B1
    • 2005-11-08
    • US10620146
    • 2003-07-14
    • Eric W. Reeves
    • Eric W. Reeves
    • A62B99/00A47B96/06A62B1/04E04G3/00E04G21/32E04G3/14
    • E04G21/3261A62B35/0081A62B35/04E04G5/045E04G21/3276
    • An anchorage safety device for steelworkers. The safety device is configured to be slidably coupleable to a flanged structural beam to which a lanyard may be attached to secure a workman against a fall. The anchorage device includes an elongate cross-member having a plurality of apertures formed there-through to allow adjustment of the anchorage device to accommodate various beams; a lanyard attachment apparatus, affixed to the mid-point of the cross-member, for receiving a clip of a workman's lanyard; and opposed first and second clamps for coupling the device to the flange of a beam. The clamps include a ratchet pawl having first and second teeth for selectively engaging the cross-member apertures. The worker needs only one hand to release the ratchet pawl from the apertures by simultaneously applying pressure on an enlarged engagement surface of the ratchet pawl and a clamp housing surface that is opposed to the enlarged engagement surface. Since both forces must be simultaneously applied in opposite directions, inadvertent disengagement of the clamp from the cross-member is obviated.
    • 钢结构的锚固安全装置。 安全装置构造成可滑动地连接到法兰结构梁上,挂绳可以连接到该法兰结构梁上以固定工人防止坠落。 锚固装置包括细长的横向构件,其具有形成在其上的多个孔,以允许调整锚固装置以适应各种梁; 固定在横梁的中点的挂绳连接装置,用于接收工人挂绳的夹子; 并且相对的第一和第二夹具用于将装置连接到梁的凸缘。 夹具包括具有用于选择性地接合横梁的第一和第二齿的棘爪。 工人只需要一只手就可以通过同时在棘爪的扩大的接合表面上施加压力和与扩大的接合表面相对的夹具壳体表面来从孔中释放棘爪。 由于两个力必须同时沿相反的方向施加,所以避免了夹具与横梁的无意的分离。
    • 28. 发明授权
    • Molten metal leakage confinement and thermal optimization in vessels used for containing molten metal
    • 用于包含熔融金属的容器中的熔融金属泄漏限制和热优化
    • US08657164B2
    • 2014-02-25
    • US13066474
    • 2011-04-14
    • Eric W. ReevesJames BoormanRobert Bruce WagstaffRandal Guy Womack
    • Eric W. ReevesJames BoormanRobert Bruce WagstaffRandal Guy Womack
    • B22D41/56B22D41/00
    • F27D3/145B22D11/103B22D35/04B22D35/06F27D1/0003F27D1/0006F27D1/0009
    • A vessel used for containing molten metal, e.g. a trough section for conveying molten metal from one location to another. The vessel has a refractory liner made of at least two refractory liner units positioned end to end, with a joint between the units, the units each having an exterior surface and a metal-contacting interior surface. A housing at least partially surrounds the exterior surfaces of the refractory liner units with a gap present between the exterior surfaces and the housing. Molten metal confinement elements, impenetrable by molten metal, are positioned on opposite sides of the joint within the gap, at least below a horizontal level corresponding to a predetermined maximum working height of molten metal held within the vessel in use, to partition the gap into a molten metal confinement region between the elements and at least one other region that may be used to hold equipment such as electrical heaters that may be damaged by contact with molten metal. Another embodiment employs refractory liner units of different thermal conductivity to maximize heat penetration into the molten metal from heaters in the gap, but to minimize heat loss at the inlet and outlet of the vessel where the end units contact the housing.
    • 用于容纳熔融金属的容器,例如 用于将熔融金属从一个位置输送到另一个位置的槽区段。 容器具有由至少两个耐火衬垫单元制成的耐火衬垫,该耐火衬垫单元位于端部与端部之间,在单元之间具有接头,每个单元具有外表面和与金属接触的内表面。 壳体至少部分地围绕耐火衬垫单元的外表面,其间存在在外表面和外壳之间的间隙。 熔融金属不可渗透的熔融金属限制元件位于间隙内的关节的相对侧上,至少在与保持在使用中的容器内的熔融金属的预定最大工作高度相对应的水平面上,以将间隙分隔成 元件之间的熔融金属限制区域和至少一个其他区域,其可以用于保持诸如电加热器的设备,这些设备可能与熔融金属接触而损坏。 另一个实施例采用具有不同热导率的耐火衬垫单元来最大限度地使来自间隙中的加热器的熔融金属的热渗透最大化,但是最小化端部单元接触壳体的容器的入口和出口处的热损失最小化。