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    • 21. 发明申请
    • DIGITAL DIAGNOSTI VIDEO SYSTEM FOR MANUFACTURING AND INDUSTRIAL PROCESS
    • 数字诊断视频系统的制造和工业过程
    • WO2004038643A2
    • 2004-05-06
    • PCT/US0333991
    • 2003-10-24
    • MCPHEELY BERNARD MCANTRELL J BRUCE JRO'DEA MICHAEL S
    • MCPHEELY BERNARD MCANTRELL J BRUCE JRO'DEA MICHAEL S
    • G05B19/418G06K
    • G05B19/4184G05B23/0264G05B2219/31434G05B2219/35081Y02P90/14Y02P90/265Y02P90/28
    • A diagnostic system for assisting in the diagnosis of a malfunction and other errors in manufacturing machinery is disclosed wherein a plurality of sensors are associated with the machinery at monitoring zones for detecting errors and generating sensor signals representing the errors. The system includes a central control unit having a computer processor in communication with a computer readable medium with a permanent memory. A temporary computer memory communicates with the processor, and a plurality of video cameras are located at the monitoring zones associated with specific sensors. The processor is in communication with the cameras for receiving video output depicting the operation of the manufacturing process continuously in real time. A set of computer readable instructions are embodied within the computer readable medium executable by the processor including set-up instructions for receiving input selecting a first preset duration for a pre-event video and a second preset duration for a post-event video from said video cameras, receiving input selecting machine sensors and cameras triggering and producing the pre-event and post-event videos for the trigger signals, Operating instructions executable by the processor are embodied in computer readable code in the computer medium for continuously storing video output in the temporary memory, continuously receiving available sensor signals, processing the sensor signals to determine if a trigger signal is required, and continuing the preceding operating instructions if a trigger signal is not required. Upon occurrence of a trigger signal the processor executes instructions copying video from the temporary memory into the permanent memory to provide the pre-event video, and begin the recording of the post-event video and storing the post-event video in the permanent memory after completion.
    • 公开了一种用于辅助诊断制造机械中的故障和其他错误的诊断系统,其中多个传感器与监视区域处的机器相关联,用于检测错误并产生表示错误的传感器信号。 该系统包括具有与具有永久存储器的计算机可读介质通信的计算机处理器的中央控制单元。 临时计算机存储器与处理器通信,并且多个摄像机位于与特定传感器相关联的监视区域。 处理器与相机通信,用于接收视频输出,描述制造过程的操作,实时连续进行。 一组计算机可读指令体现在由处理器执行的计算机可读介质内,包括用于接收输入的设置指令,该输入选择用于事件前视频的第一预设持续时间和来自所述视频的后事件视频的第二预设持续时间 相机,接收输入选择机器传感器和摄像机触发并产生用于触发信号的事件前和事件后视频,由处理器执行的操作指令体现在计算机介质中的计算机可读代码中,用于将视频输出连续地存储在临时 存储器,连续接收可用的传感器信号,处理传感器信号以确定是否需要触发信号,并且如果不需要触发信号,则继续前述操作指令。 在发生触发信号时,处理器执行将视频从临时存储器复制到永久存储器中的指令,以提供事件前视频,并且开始记录事件后视频,并且将事件后视频存储在永久存储器中 完成。
    • 22. 发明申请
    • OBJECT PRODUCTION USING AN ADDITIVE MANUFACTURING PROCESS
    • 使用添加剂制造过程的对象生产
    • WO2014111707A1
    • 2014-07-24
    • PCT/GB2014/050108
    • 2014-01-15
    • BAE SYSTEMS PLC
    • POTTER, Mark Alfred
    • G05B19/4099G06F17/50
    • G05B15/02B33Y10/00B33Y50/02G05B19/4099G05B2219/35017G05B2219/35081G05B2219/49023Y02P90/265
    • A method and apparatus for producing an object (2) comprising providing a digital model (14) of the object (2) that is to be produced; using the digital model, identifying one or more parts (8) of the object (2) that satisfy certain criteria; for each identified part (8), adjusting, in the digital model (14), the thickness of that part (8) to satisfy further criteria, thereby producing an updated model; performing a first production process to produce the part or parts (4, 6) of the object (2) that do not satisfy the criteria, thereby producing an initial object (17); performing an Additive Manufacturing process to add, to the initial object (17), the one or more identified parts (8), thereby producing the object (2). The initial object (17) and identified parts (8) are made of the same material. The first production process is different to the Additive Manufacturing process.
    • 一种用于生产物体(2)的方法和装置,包括提供待生产的物体(2)的数字模型(14); 使用数字模型,识别满足某些标准的物体(2)的一个或多个部分(8); 对于每个识别的部分(8),在数字模型(14)中调整该部分(8)的厚度以满足进一步的标准,从而产生更新的模型; 执行第一生产过程以生产不满足标准的物体(2)的部分(4,6),由此产生初始物体(17); 执行添加剂制造过程以向所述初始对象(17)添加所述一个或多个识别的部分(8),从而产生所述对象(2)。 初始物体(17)和识别的部分(8)由相同的材料制成。 第一个生产过程与添加剂制造过程不同。
    • 29. 发明授权
    • Method for fabricating a prosthetic limb socket
    • 假肢插座的制造方法
    • US5824111A
    • 1998-10-20
    • US791934
    • 1997-01-31
    • Scott R. SchallTracy C. Slemker
    • Scott R. SchallTracy C. Slemker
    • A61F2/00A61F2/50A61F2/80G05B19/4099A61F2/60A61F2/78
    • A61F2/5046A61F2/80G05B19/4099A61F2002/505A61F2002/5053A61F2210/0071G05B2219/35081G05B2219/35119G05B2219/35123G05B2219/37365G05B2219/45172G05B2219/49008Y10S623/901
    • A system and method for fabricating a thermoplastic prosthetic limb socket from a thermoplastic preform cone involves the steps of: obtaining a digital or physical positive representation of a patient's residual limb; determining a desired thickness for the thermoplastic socket; selecting a thermoplastic preform cone; calculating the dimensions of a proximate extension to be added to the proximate end of the digital or physical representation of the patient's residual limb based upon the dimensions of the patient's residual limb, the dimensions of the preform cone, and the desired thickness of the thermoplastic socket; forming a positive socket mold based upon the combined dimensions of the patient's residual limb and the extension; heating the preform cone; and stretching the preform cone over the positive cast. Preferably the method is performed on a CAD tool. The processing unit in the CAD tool has access to the dimensions of the residual limb, the desired thickness of the socket and the dimensions of the preform cone; and is thus able to compute the dimensions of the proximate extension based upon a set of algorithms stored in the form of a software package (or program) accessible and executable by the CAD's processing unit.
    • 一种用于从热塑性预成型锥体制造热塑性假肢支座的系统和方法包括以下步骤:获得患者残肢的数字或物理正面表现; 确定热塑性插座的期望厚度; 选择热塑性预制棒锥体; 基于患者残肢的尺寸,预制锥的尺寸和热塑性插座的期望厚度来计算要添加到患者残肢的数字或物理表示的近端的邻近延伸部的尺寸 ; 基于患者残肢和延伸部的组合尺寸形成正插座模具; 加热预成型锥; 并将预制棒锥体拉伸在正极上。 优选地,该方法在CAD工具上执行。 CAD工具中的处理单元可以访问残肢的尺寸,插座的期望厚度和预制锥的尺寸; 并且因此能够基于以可由CAD处理单元访问和执行的软件包(或程序)的形式存储的算法集合来计算邻近扩展的维度。