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    • 1. 发明授权
    • Invalid hoist
    • 起重机无效
    • US06718572B2
    • 2004-04-13
    • US10179248
    • 2002-06-26
    • Philip von Schroeter
    • Philip von Schroeter
    • A61G710
    • A61G7/1017A61G7/1046A61G7/1061A61G7/108A61G2203/72
    • An invalid hoist includes a lifting arm, an actuator between the lifting arm and a mast, the lifting arm being pivotably connected to the upper end of the mast at a position intermediate its ends and the actuator being connected to the lifting arm on the side of the pivotable connection between the lifting arm and the mast remote from said one end of the lifting arm, and a connecting link pivotably connected between one end of the actuator and the lifting arm (or mast). The connecting link is connected between the actuator and the lifting arm (or mast) such that an auxiliary link incorporating a load cell can be additionally and removably connected between the actuator and the lifting arm (or mast) and such that any load applied to the lifting arm is transmitted entirely through the auxiliary link.
    • 无效升降机包括提升臂,在提升臂和桅杆之间的致动器,提升臂在其端部之间的位置处可枢转地连接到桅杆的上端,并且致动器连接到提升臂的侧面上 提升臂和桅杆之间的可枢转连接远离提升臂的一端,以及可枢转地连接在致动器的一端和提升臂(或桅杆)之间的连接连杆。 连接链路连接在致动器和提升臂(或桅杆)之间,使得结合有称重传感器的辅助连杆可以额外地和可移除地连接在致动器和提升臂(或桅杆)之间,并且使得施加到 提升臂完全通过辅助连杆传输。
    • 2. 发明授权
    • Invalid positioning device
    • 定位装置无效
    • US06557189B2
    • 2003-05-06
    • US09899133
    • 2001-07-06
    • Philip Von Schroeter
    • Philip Von Schroeter
    • A61G710
    • A61G7/1019A61G7/1046A61G7/1061A61G7/1067A61G7/1076A61G2200/32A61G2200/34A61G2200/36Y10S414/134
    • An invalid positioning device comprising a support structure, a lifting element which is angularly displaceable about a main horizontal axis relative to the support structure, and a power operated mechanism for pivoting the lifting element about the the main horizontal axis. The power operated mechanism is arranged such that the torque applied by the power operated mechanism decreases as the lifting element moves away from one extreme position and increases again as the lifting element approaches its other extreme position and such that the angular speed of the lifting element increases as it moves away from one extreme position and decreases as it approaches its other extreme position.
    • 一种无效的定位装置,包括支撑结构,相对于支撑结构围绕主水平轴线成角度地移位的提升元件以及用于使提升元件围绕主水平轴线枢转的动力操作机构。 动力操作机构布置成使得由动力操纵机构施加的扭矩随着提升元件从一个极限位置移动而减小,并且随着提升元件接近其另一极限位置而增加,并且提升元件的角速度增加 当它从一个极限位置移开时,随着它接近其他极限位置而减小。
    • 3. 发明申请
    • Procedure for determining the form of a residual tooth area
    • 确定残余牙齿区域形式的步骤
    • US20070072151A1
    • 2007-03-29
    • US10576510
    • 2004-12-08
    • Lothar VolklPhilip Von Schroeter
    • Lothar VolklPhilip Von Schroeter
    • A61C11/00
    • A61C13/34A61C9/002A61C9/0053A61C9/0093A61C13/0004
    • The invention relates to a process for determining the form a duplicate of a residual tooth area, which is to be fitted with a dental restoration whereby the duplicate sections to be fitted with the restoration are removed from the duplicate and the form data to be allocated to their forms has to be determined and stored in a computer, by means of which the form of the restoration is calculated taking into consideration the spatial allocation of the duplicate sections. In order to be able to determine the shape of the residual tooth area to be fitted with the restoration, and thereby determine the shape of the restoration itself with high precision, it is proposed that the duplicate sections are or are being individually referenced to each other in their spatial allocation to each other according to a referencing stored in the computer.
    • 本发明涉及一种用于确定残留牙齿区域的复制形式的方法,该残余牙齿区域将与牙科修复体相配合,由此将要从该复制件中取出装配有复原件的复制部分以及要分配给 必须将它们的形式确定并存储在计算机中,借助于此,考虑到重复部分的空间分配来计算恢复的形式。 为了能够确定要与修复体配合的残余牙齿区域的形状,从而以高精度确定修复体本身的形状,建议复制部分彼此或者彼此单独地参考 在根据存储在计算机中的参考来彼此的空间分配。
    • 5. 发明授权
    • Invalid hoists
    • 起重机无效
    • US06329612B1
    • 2001-12-11
    • US09496593
    • 2000-02-02
    • Philip von Schroeter
    • Philip von Schroeter
    • G01G1952
    • A61G7/1019A61G7/1046A61G7/1061A61G7/1067A61G7/1069A61G7/1076A61G7/108G01G19/445Y10S177/09
    • An invalid hoist comprises a mast, a lifting arm which can be raised and lowered by telescopically extending and retracting the mast and/or by raising and lowering a carriage, which may support the lifting arm, relative to the mast, and a load cell on the lifting arm for providing a signal representative of the weight of a person being lifted. The lifting arm is connected to the mast or the carriage by an arrangement which allows the lifting arm to be displaced angularly in a vertical plane against a spring force in order to maintain the load cell in a constant orientation as a vertical load is applied to the lifting arm.
    • 无效升降机包括桅杆,提升臂,其可以通过可伸缩地延伸和缩回桅杆和/或通过升高和降低相对于桅杆将支撑提升臂的滑架升高和降低,并且将负载传感器 提升臂用于提供代表被提升的人的体重的信号。 提升臂通过这样的装置连接到桅杆或滑架,该装置允许提升臂在垂直平面中成角度地抵抗弹簧力移动,以便将负载单元保持在恒定的方向,因为垂直负载被施加到 提升臂。
    • 7. 发明授权
    • Method for three-dimensional shape measurement of a body
    • 身体三维形状测量方法
    • US07492470B2
    • 2009-02-17
    • US11399346
    • 2006-04-07
    • Erik BüchlerHartmut BrinkmannAndre GarthausPhilip Von Schroeter
    • Erik BüchlerHartmut BrinkmannAndre GarthausPhilip Von Schroeter
    • G01B11/24A61C3/00
    • A61C19/04A61C9/0053A61C9/0093G01B11/24
    • The invention relates to a method for three-dimensional shape measurement of a body or of a part thereof, in particular of a dental object such as a model, by scanning non-contact distance measurement using an optical sensor device comprising a beam source, where the shape of the body subjects reproducing areas to a beam at various incidence angles (impinging beam), and the reflected beam (measuring beam) is measured, with the body being adjusted relative to the optical sensor device. To permit measurement with high precision of the body and undercuts thereof, without tilting being necessary, it is proposed that for shape measurement of the respectively measured area the beam (measuring beam) reflected therefrom, which describes an angle α to a surface normal corresponding to the respective area, is taken into account, said angle being equal to or smaller than a predefined critical angle αGR relative to the surface normal.
    • 本发明涉及一种用于通过使用包括光束源的光学传感器装置扫描非接触距离测量的身体或其一部分,特别是诸如模型的牙科物体的三维形状测量的方法,其中 身体的形状以各种入射角(入射光束)再现区域到光束,并且测量相对于光学传感器装置调节身体的反射光束(测量光束)。 为了允许以高精度的身体和底切进行测量,不需要倾斜,提出对于从其反射的光束(测量光束)对分别测量的面积进行形状测量,其描述与对应于 考虑到相应的区域,所述角度等于或小于相对于表面法线的预定临界角度αGR。
    • 9. 发明授权
    • Invalid hoist
    • 起重机无效
    • US06718573B2
    • 2004-04-13
    • US10260336
    • 2002-10-01
    • Philip Von Schroeter
    • Philip Von Schroeter
    • A61G710
    • A61G7/1017A61G7/1046A61G7/1061A61G7/1067
    • A mobile invalid hoist comprises a non-rectilinear lifting arm pivotably connected about first horizontal axis to the upper end of mast, a housing pivotably connected about second horizontal axis to one end of the lifting arm and supporting a vertical bearing, a sling hanger support pivotably supported about a vertical or substantially vertical axis by the bearing, and a sling hanger pivotably supported about a third horizontal axis by the sling hanger support. A flexible elongate element is connected between the mast and housing, and is guided through the lifting arm to effectively form with the lifting arm a parallelogram linkage. Thus, as the lifting arm pivots, the housing pivots in relation to the lifting arm and the bearing is kept vertical or substantially vertical.
    • 移动式无效升降机包括可绕第一水平轴线枢转地连接到桅杆上端的非直线提升臂,围绕第二水平轴线可枢转地连接到提升臂的一端并支撑垂直轴承的壳体,可枢转地支撑吊架支架 通过轴承围绕垂直或基本垂直的轴线支撑;以及悬吊架,其通过吊索支架枢转地支撑在第三水平轴线周围。 柔性细长元件连接在桅杆和壳体之间,并被引导通过提升臂,以与起重臂有效地形成平行四边形连杆。 因此,当提升臂枢转时,壳体相对于提升臂枢转,并且轴承保持垂直或基本垂直。
    • 10. 发明授权
    • Invalid lifting device
    • 提升装置无效
    • US6161232A
    • 2000-12-19
    • US321723
    • 1999-05-28
    • Philip Von SchroeterJohn Greaves
    • Philip Von SchroeterJohn Greaves
    • A61G7/10A61G7/14
    • A61G7/1019A61G7/1046A61G7/1061A61G7/1067A61G7/1074
    • The invalid lifting device comprises a first mast upstanding from a first elongate chassis member and a second mast upstanding from a second elongate chassis member which is parallel or substantially parallel to the first chassis member. The lifting device also comprises a lifting arm supported by and extending between the first and second masts, the lifting arm comprising two parts pivotable relative to one another so that the distance between the masts can be varied. One part is supported by the first mast and the other part is supported by the second mast. Power operated means are provided for moving the two chassis members towards and away from one another. Each part of the lifting arm comprises a parallelogram linkage to maintain the chassis members in parallel or substantially parallel relationship as the two chassis members are moved towards and away from one another. Each mast may be telescopically extendible/retractable and power operated means may be provided for extending and retracting the two masts in synchronism with one another.
    • 无效提升装置包括从第一细长底盘构件直立的第一桅杆和从第二细长底盘构件直立的第二桅杆,所述第二细长底盘构件平行或基本上平行于第一底盘构件。 提升装置还包括由第一和第二桅杆支撑并在其之间延伸的提升臂,提升臂包括相对于彼此枢转的两个部件,使得桅杆之间的距离可以改变。 一部分由第一桅杆支撑,另一部分由第二桅杆支撑。 提供动力装置用于使两个底盘构件朝向彼此和远离彼此移动。 提升臂的每个部分包括平行四边形连杆机构,以便当两个底盘部件朝着彼此和远离彼此移动时将底盘部件保持平行或基本上平行的关系。 每个桅杆可以是可伸缩的可伸缩的,并且可以提供动力操作的装置,用于彼此同步地延伸和缩回两个桅杆。