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
    • 2. 发明授权
    • Ring supported mobile tower crane
    • 环支撑移动式塔式起重机
    • US4381060A
    • 1983-04-26
    • US167054
    • 1980-07-09
    • James G. Morrow, Sr.Michael C. Anderson
    • James G. Morrow, Sr.Michael C. Anderson
    • B66C23/36B66C23/82B66C23/00
    • B66C23/82B66C23/36
    • A ring supported mobile lift crane includes a load carrier and a counterweight carrier in riding contact with the ring and a tower mounted on the carrier for pivotal movement between generally horizontal and vertical positions with a boom pivoted to the outer end of the tower and a rearwardly inclined mast mounted on said carrier and connected to the counterweight carrier by rigging a mast pendant, a tower backstay connected to the top of the tower and through tower hoist rigging to the top of the mast. A fixed boom strut is connected at one end to the top of the tower and at the other end to a fixed pendant secured to the carrier and a movable boom strut is connected at one end to the top of the tower and at the other end to a fixed pendant secured to the outer end of the boom, with a multi-part boom hoist line interconnecting the outer ends of the fixed and movable boom struts for raising and lowering the boom, and a tower erection hoist for changing the length of the tower hoist rigging for raising and lowering the tower, boom, boom struts and tower backstay as a unit.
    • 环支撑的移动式提升起重机包括负载托架和与该环的骑乘接触的配重托架和安装在托架上的塔架,用于在大致水平和垂直位置之间枢转运动,其中臂架枢转到塔的外端,并且向后 倾斜的桅杆安装在所述载体上并通过索具桅杆吊坠连接到配重载体,塔架后架连接到塔顶部,并通过塔葫芦索具到桅杆的顶部。 固定吊杆支柱的一端连接到塔顶部,另一端连接到固定在托架上的固定吊杆,一端可移动的吊臂支柱连接到塔顶,另一端与 一个固定在悬臂外端的固定悬臂,一个多部分的起重臂提升线,用于连接固定和可移动的悬臂支柱的外端,用于升高和降低起重臂;一个塔式起重机,用于改变塔架的长度 用于升降塔架,起重臂,吊臂支柱和塔后支架的起重索具作为一个单元。
    • 4. 发明授权
    • Ring supported tower crane
    • 环支塔式起重机
    • US4194638A
    • 1980-03-25
    • US913502
    • 1978-06-07
    • James G. Morrow, Sr.Michael C. AndersonRichard L. Siehr
    • James G. Morrow, Sr.Michael C. AndersonRichard L. Siehr
    • B66C23/36B66C23/84B66C23/26
    • B66C23/84B66C23/36
    • A tower crane is carried on a platform rotatably mounted on a large ring with the tower pivotally mounted on the forward portion of the platform above the ring and a mast mounted on the platform adjacent the boom and extending upwardly and rearwardly therefrom. A counterweight support at the rear end of the platform also rides on the ring and is connected to the top of the mast by a backstay. At the top of the tower is a pivotally mounted, forwardly projecting boom and an upwardly and rearwardly inclined boom strut whose upper end is pin-connected to the top of the mast by a backstay strut. A tower backstay is connected to an upper part of the tower and extends generally horizontally rearwardly to the top of the mast where it is also pin-connected. By removing the pin-connections at the top of the mast, the tower, boom, boom strut, backstay strut and tower backstay can be pivotally raised and lowered as a unit by powered erection rigging mounted on the platform. A pendant is connected between an intermediate point on the tower backstay and a lower point on the tower to insure that the openings for the pin-connections at the top of the mast are properly aligned when the tower is erected. Additional hoist mechanisms and rigging are carried on the platform for adjusting the boom angle and for raising and lowering a load. In the preferred embodiment, the crane includes two laterally spaced towers, booms, masts, backstays and struts interconnected as described above.
    • 塔式起重机承载在可旋转地安装在大环上的平台上,塔架可枢转地安装在环上的平台的前部上,并且安装在靠近起重臂的平台上并从其向上和向后延伸的桅杆。 在平台后端的配重支架也骑在环上,并通过后背连接到桅杆的顶部。 在塔的顶部是一个可枢转地安装的向前突出的悬臂,以及一个向上和向后倾斜的悬臂支柱,其上端通过后支撑柱连接到桅杆的顶部。 塔架后部连接到塔的上部,并且大体上水平地向后延伸到桅杆的顶部,其中它还被连接。 通过拆除桅杆顶部的销钉连接,塔架,起重臂,吊杆支柱,后支柱和塔背支架可以通过安装在平台上的动力安装索具作为一个单元枢转升降。 吊架连接在塔背后的中间点和塔架的下部点之间,以确保在塔架竖立时在桅杆顶部的销连接的开口正确对齐。 附加的起重机构和索具在平台上进行,用于调节起重臂角度和升高和降低负载。 在优选实施例中,起重机包括如上所述的互连的两个横向间隔开的塔,吊杆,桅杆,后支架和支柱。
    • 5. 发明授权
    • Orthodontic aligner fabrication by overlay method
    • 矫正矫正器通过叠加法制作
    • US09345557B2
    • 2016-05-24
    • US13391322
    • 2010-08-20
    • Michael C. AndersonBradford H. ClattJack K. HilliardDaniel Julié
    • Michael C. AndersonBradford H. ClattJack K. HilliardDaniel Julié
    • A61C3/00A61C7/08A61C7/00
    • A61C7/08A61C7/002A61C9/00
    • The orthodontic alignment of misaligned teeth includes preparing a digital and/or physical overlay model which is the superimposed positioning of the patient's original misaligned dentition with the target or final position. The superimposition of one upon the other creates an open space through which teeth may move in a natural manner, allowing for a treatment plan that takes into account the physical interaction of one tooth with another or the differences in tooth movement rates due in part to differences in underlying bone density or the like. An aligner tray fabricated using the model will likewise represent the before and after tooth positions and will also have the open space to allow tooth movement. Force exerting structures are preferably placed into the aligner tray to impinge upon the patient's teeth in a prescribed manner when the aligner tray is inserted into the patient's oral cavity.
    • 不正确的牙齿的正畸对准包括准备数字和/或物理覆盖模型,其是患者的原始对准齿列与目标或最终位置的叠加定位。 一个人的叠加产生了一个开放的空间,通过这个空间,牙齿可以以自然的方式移动,允许考虑到一个牙齿与另一个牙齿的物理相互作用的牙齿移动速率差异的治疗计划,或部分由于差异 在潜在的骨密度等中。 使用该模型制造的对准器托盘将同样代表牙齿前后位置并且还将具有允许牙齿移动的开放空间。 当矫正器托盘插入到患者的口腔中时,力施加结构优选地被放置在对准器托盘中以规定的方式撞击患者的牙齿。
    • 6. 发明申请
    • ORTHODONTIC ALIGNER FABRICATION BY OVERLAY METHOD
    • 正交对准器通过覆盖方法制造
    • US20120150494A1
    • 2012-06-14
    • US13391322
    • 2010-08-20
    • Michael C. AndersonBradford H. ClattJack K. Hilliard
    • Michael C. AndersonBradford H. ClattJack K. Hilliard
    • G06F17/50
    • A61C7/08A61C7/002A61C9/00
    • The orthodontic alignment of misaligned teeth includes preparing a digital and/or physical overlay model which is the superimposed positioning of the patient's original misaligned dentition with the target or final position. The superimposition of one upon the other creates an open space through which teeth may move in a natural manner, allowing for a treatment plan that takes into account the physical interaction of one tooth with another or the differences in tooth movement rates due in part to differences in underlying bone density or the like. An aligner tray fabricated using the model will likewise represent the before and after tooth positions and will also have the open space to allow tooth movement. Force exerting structures are preferably placed into the aligner tray to impinge upon the patient's teeth in a prescribed manner when the aligner tray is inserted into the patient's oral cavity.
    • 不正确的牙齿的正畸对准包括准备数字和/或物理覆盖模型,其是患者的原始对准齿列与目标或最终位置的叠加定位。 一个人的叠加产生了一个开放的空间,通过这个空间,牙齿可以以自然的方式移动,允许考虑到一个牙齿与另一个牙齿的物理相互作用的牙齿移动速率差异的治疗计划,或部分由于差异 在潜在的骨密度等中。 使用该模型制造的对准器托盘将同样代表牙齿前后位置并且还将具有允许牙齿移动的开放空间。 当矫正器托盘插入到患者的口腔中时,力施加结构优选地被放置在对准器托盘中以规定的方式撞击患者的牙齿。