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    • 2. 发明授权
    • Energy absorber for bumpers of motor vehicles
    • 机动车保险杠能量吸收器
    • US06290272B1
    • 2001-09-18
    • US09483243
    • 2000-01-14
    • Stefan Braun
    • Stefan Braun
    • B60R1903
    • B60R19/18B60R2019/186
    • Provided in an energy absorber (1) for bumpers (2, 3) of motor vehicles are stiffening elements (5), which have free-standing front sides (6) facing away from a rear mounting structure (4). The stiffening elements (5) have in the longitudinal direction a lateral center-to-center distance from one another that corresponds to the standard dimensions of a human leg. Side faces of the stiffening elements (5) which face one another are designed such that, in the event of collision with a leg, the stiffening elements (5) are deformable independently of one another, and in the event of collision with an object larger than a leg, the stiffening elements (5) engage one another at their side faces in a manner hindering deformation with an abrupt increase in the stiffness of the energy absorber (1). By this means, braking with a relatively low deceleration is achieved in a collision with the leg, whereas the energy absorber (1) is adequately stiff in a collision with a larger object.
    • 在用于机动车辆的缓冲器(2,3)的能量吸收器(1)中设置有加强元件(5),其具有面向后安装结构(4)的独立的前侧(6)。 加强元件(5)在纵向上具有彼此相对于人腿的标准尺寸的横向中心到中心的距离。 相互面对的加强元件(5)的侧面被设计成使得在与腿部碰撞的情况下,加强元件(5)彼此独立地变形,并且在与物体碰撞的情况下更大 加强元件(5)在其侧面以妨碍变形的方式彼此接合,同时能量吸收器(1)的刚度突然增加。 通过这种方式,在与腿部的碰撞中实现具有相对较低减速度的制动,而能量吸收器(1)在与较大物体的碰撞中足够刚性。
    • 3. 发明授权
    • Measured value visualization
    • 测量值可视化
    • US08347233B2
    • 2013-01-01
    • US12627795
    • 2009-11-30
    • Vladimir PreysmanStefan BraunMartin Dittmer
    • Vladimir PreysmanStefan BraunMartin Dittmer
    • G06F3/048G06G7/50
    • G01D7/00G09G2340/04
    • The embodiments of the present invention provide novel techniques for visualizing parameter values, such as parameter values measured in an industrial measurement process. In particular, the disclosed embodiments provide visualization techniques for re-scaling a representation of a target parameter range with respect to an overall parameter range for a parameter value. Re-scaling the representation of the target parameter range effectively provides continuous dynamic zooming for the measured parameter value. This allows for better visualization as well as providing continuous feedback to an operator of the industrial measurement process regarding the current measured parameter value, thereby facilitating faster and more accurate operation of the industrial measurement process.
    • 本发明的实施例提供了用于可视化参数值的新颖技术,例如在工业测量过程中测量的参数值。 特别地,所公开的实施例提供可视化技术,用于相对于参数值的整个参数范围重新缩放目标参数范围的表示。 重新缩放目标参数范围的表示可以有效地为测量的参数值提供连续的动态缩放。 这允许更好的可视化以及向工业测量过程的操作者提供关于当前测量的参数值的连续反馈,从而促进工业测量过程的更快和更准确的操作。
    • 4. 发明申请
    • MEASURED VALUE VISUALIZATION
    • 测量值可视化
    • US20100313162A1
    • 2010-12-09
    • US12627795
    • 2009-11-30
    • Vladimir PreysmanStefan BraunMartin Dittmer
    • Vladimir PreysmanStefan BraunMartin Dittmer
    • G06F3/048
    • G01D7/00G09G2340/04
    • The embodiments of the present invention provide novel techniques for visualizing parameter values, such as parameter values measured in an industrial measurement process. In particular, the disclosed embodiments provide visualization techniques for re-scaling a representation of a target parameter range with respect to an overall parameter range for a parameter value. Re-scaling the representation of the target parameter range effectively provides continuous dynamic zooming for the measured parameter value. This allows for better visualization as well as providing continuous feedback to an operator of the industrial measurement process regarding the current measured parameter value, thereby facilitating faster and more accurate operation of the industrial measurement process.
    • 本发明的实施例提供了用于可视化参数值的新颖技术,例如在工业测量过程中测量的参数值。 特别地,所公开的实施例提供可视化技术,用于相对于参数值的整个参数范围重新缩放目标参数范围的表示。 重新缩放目标参数范围的表示可以有效地为测量的参数值提供连续的动态缩放。 这允许更好的可视化以及向工业测量过程的操作者提供关于当前测量的参数值的连续反馈,从而促进工业测量过程的更快和更准确的操作。
    • 5. 发明申请
    • Method for the manufacture of a molding as well as a sensor unit for the application thereof
    • 用于制造模制件的方法以及用于其应用的传感器单元
    • US20070037509A1
    • 2007-02-15
    • US11444909
    • 2006-05-31
    • Bernd RenzJohannes BauerStefan BraunNicole Weller
    • Bernd RenzJohannes BauerStefan BraunNicole Weller
    • F24F7/007
    • B22F3/1055B22F3/003B22F2003/1056B22F2998/00B29C64/153B33Y10/00B33Y30/00Y02P10/295B22F2203/03
    • The invention relates to a method for the manufacture of a molding through generative processing methods, in particular through selective laser melting, wherein a model of a molding is built from a powder material according to CAD data, wherein an application unit is used to apply a powder layer and the powder layer applied is fixed to a layer arranged there under or a base plate by means of radiation, characterized in that prior to applying a first layer onto a build platform or a base plate, a sensor assembly having a sensor level which is located in relation to the levelling level of a levelling assembly for the applied powder layer is allocated to the build platform or the base plate, the build platform or the base plate is moved in relation to the sensor assembly until the sensor assembly emits a signal for stopping the build platform to a drive in an intermediate position, and starting from the intermediate position, the build platform or the base plate is moved by a distance to adjust the layer thickness of the first powder layer and is positioned in a starting position.
    • 本发明涉及一种通过生成加工方法制造成型的方法,特别是通过选择性激光熔化,其中根据CAD数据从粉末材料构建模制件的模型,其中使用施加单元来施加 粉末层和施加的粉末层通过辐射固定到布置在其下面或底板上的层,其特征在于,在将第一层施加到构建平台或基板之前,具有传感器级别的传感器组件 相对于用于施加的粉末层的调平组件的调平水平被分配到构建平台或基板,构建平台或基板相对于传感器组件移动,直到传感器组件发出信号 用于将构建平台停止在中间位置的驱动器上,并且从中间位置开始,将构建平台或基板移动一段距离 调整第一粉末层的层厚度并且位于起始位置。
    • 6. 发明授权
    • Energy absorber for motor vehicle bumpers
    • 机动车保险杠能量吸收器
    • US06443511B2
    • 2002-09-03
    • US09901330
    • 2001-07-09
    • Stefan Braun
    • Stefan Braun
    • B60R1903
    • B60R19/18B60R2019/186
    • Provided in an energy absorber (1) for bumpers (2, 3) of motor vehicles are stiffening elements (5), which have front sides (6) facing away from a rear mounting structure (4). The stiffening elements (5) have in the longitudinal direction a lateral center-to-center distance from one another that corresponds to the standard dimensions of a human leg. Side faces of the stiffening elements (5) which face one another are designed such that, in the event of collision with a leg, the stiffening elements (5) are deformable independently of one another, and in the event of collision with an object larger than a leg, the stiffening elements (5) engage one another at their side faces in a manner hindering deformation with an abrupt increase in the stiffness of the energy absorber (1). By this means, braking with a relatively low deceleration is achieved in a collision with the leg, whereas the energy absorber (1) is adequately stiff in a collision with a larger object.
    • 在用于机动车辆的缓冲器(2,3)的能量吸收器(1)中设置有加强元件(5),其具有面向背面安装结构(4)的前侧(6)。 加强元件(5)在纵向上具有彼此相对于人腿的标准尺寸的横向中心到中心的距离。 相互面对的加强元件(5)的侧面被设计成使得在与腿部碰撞的情况下,加强元件(5)彼此独立地变形,并且在与物体碰撞的情况下更大 加强元件(5)在其侧面以妨碍变形的方式彼此接合,同时能量吸收器(1)的刚度突然增加。 通过这种方式,在与腿部的碰撞中实现具有相对较低减速度的制动,而能量吸收器(1)在与较大物体的碰撞中足够刚性。
    • 10. 发明申请
    • Substrate sheet for a 3d-shaping method
    • 三维成形方法的基板
    • US20070023977A1
    • 2007-02-01
    • US10572136
    • 2004-09-10
    • Stefan BraunBernd Renz
    • Stefan BraunBernd Renz
    • B29C35/08
    • B22F3/1055B22F2003/1056B22F2999/00B29C64/153Y02P10/295B22F2203/05B22F2203/11
    • The invention relates to a substrate sheet for the application of at least one layer of a laying-up material (57), for the production of a three-dimensional moulded body (52), by the serial attachment of layers of a powder laying-up material (57), hardened by means of electromagnetic, or particle radiation in the positions corresponding to a cross-section of the moulded body (52) and provided for positioning on a support (43) in a process chamber (21, 24), whereby a mounting section (186) is provided with a mounting surface (188) for the mounting of layers and a support section (181) is provided which comprises a support surface (185), facing the support and with at least one recess (182), running from the support surface (185) of the support section (181), at least in a direction towards the mounting section (186).
    • 本发明涉及一种用于施加至少一层铺设材料层(57)的基片,用于生产三维成型体(52),通过将粉末敷设材料的层串联连接, 在对应于模制体(52)的横截面的位置中通过电磁或粒子辐射硬化并提供用于定位在处理室(21,24)中的支撑件(43)上的材料(57) ,其中安装部分(186)设置有用于安装层的安装表面(188),并且提供支撑部分(181),所述支撑部分(181)包括支撑表面(185),所述支撑表面面向支撑件并且具有至少一个凹部 至少在朝向安装部分(186)的方向上从支撑部分(181)的支撑表面(185)延伸。