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    • 33. 发明授权
    • CNC controlled rotating work piece holding fixtures for a horizontal mill
    • 卧式铣床CNC控制旋转工件夹具
    • US08977381B1
    • 2015-03-10
    • US13607797
    • 2012-09-09
    • Jerome MezzasalmaKevin Liboon
    • Jerome MezzasalmaKevin Liboon
    • G05B19/18B23Q1/25
    • B23Q1/25B23C1/027B23Q39/028G05B19/4144G05B2219/45145G05B2219/49292G05B2219/50367G05B2219/50398
    • A CNC controlled rotating workpiece holding fixture is attached to a tombstone of a horizontal mill. The rotating workpiece holding fixture(s) allows workpieces to be independently rotated to allow milling of various surface of the workpiece thereby providing a five axis CNC capability. As many as eight rotating workpiece holding fixtures may be attached to a single tombstone. Each rotating workpiece holding fixture may be formed by a harmonic drive driven by a servo motor which provides a compact configuration and a very low gear ratio in the harmonic drive combined with the inherent braking of the servo motor provides stability. The rotating workpiece holding fixtures may be controlled using existing auxiliary outputs (e.g., M-Codes), present in CNC milling machines. The M-Codes are preferably created by an operator, multiplexed, sent to the tombstone, de-multiplexed, and used to control each rotating workpiece holding fixture.
    • CNC控制的旋转工件夹具固定在卧式磨机的墓碑上。 旋转的工件保持夹具允许工件独立地旋转以允许铣削工件的各个表面,从而提供五轴CNC能力。 多达八个旋转工件固定夹具可以附接到单个墓碑。 每个旋转的工件保持夹具可以由伺服电动机驱动的谐波驱动形成,其提供紧凑的构造,并且谐波驱动中的非常低的传动比与伺服电动机的固有制动相结合提供稳定性。 可以使用CNC铣床中存在的现有辅助输出(例如,M代码)来控制旋转的工件固定夹具。 M代码优选地由操作者创建,多路复用,发送到墓碑,去多路复用,并用于控制每个旋转的工件保持夹具。
    • 35. 发明授权
    • S-shape detection test piece and a detection method for detecting the precision of the numerical control milling machine
    • S型检测试验片及检测数控铣床精度的检测方法
    • US08061052B2
    • 2011-11-22
    • US12523062
    • 2008-01-11
    • Zhiyong SongYawen Cui
    • Zhiyong SongYawen Cui
    • B23Q17/00G01B3/30
    • B23Q17/22B23Q1/5406B23Q1/626G05B19/401G05B2219/37398G05B2219/37605G05B2219/45145
    • The present invention relates to an “S” shaped detection test piece for comprehensively detecting the precision of the numerical control milling machine and the detection method thereof. The detection test piece consists of an “S” shaped equal thickness edge strip (1) and a rectangular base (2), respectively forming two “S” shaped curves in two different planes and the projections of which in the base plane (3) cross each other and have open and close angle (α) states formed at the intersection. The tube vernier calipers is directly used in the detection method to measure the thickness of the “S” shaped edge strip (1) and analyze and decide the five-axis coordinated precision according to the thickness of the upper and lower parts and different areas of edge strip (1); and the RTCP function of machine tool, the validity of post-processing programs and the spatial motion precision of machine tool are further analyzed and decided according to smoothness of the tool path of the combining site of the detection base plane (3) and the edge strip (1) and smoothness of the edge strip profile.
    • 本发明涉及一种全面检测数控铣床精度的“S”型检测试件及其检测方法。 检测试片由“S”形的等厚边缘条(1)和矩形基座(2)组成,分别在两个不同的平面上形成两个“S”形曲线,并在基面(3)中形成两个“S”形曲线, 交叉并且在交叉点处形成开闭角(α)状态。 管子游标卡尺直接用于测量“S”形边条(1)厚度的检测方法,并根据上下部分厚度和不同区域的厚度分析和确定五轴协调精度 边缘条(1); 和机床的RTCP功能,后处理程序的有效性和机床的空间运动精度进一步根据检测基板(3)和边缘的组合位置的刀具路径的平滑度进行分析和确定 条带(1)和边缘条带轮廓的平滑度。
    • 37. 发明授权
    • Apparatus for detecting manufacturing parameters of a machine tool
    • 用于检测机床的制造参数的装置
    • US07853350B2
    • 2010-12-14
    • US11878416
    • 2007-07-24
    • Shin-Hung JouYung-Feng NienJan-Hao Chen
    • Shin-Hung JouYung-Feng NienJan-Hao Chen
    • G06F19/00G05B11/01G05B19/18G05B19/25
    • B23Q15/12G05B2219/33221G05B2219/37351G05B2219/37375G05B2219/45145
    • An apparatus for detecting manufacturing parameters of a machine tool is provided, which comprises at least a sensing and transmitting module, and a receiving module. The sensing and transmitting module has a sensor and a wireless transmitting module. The sensor generates a sensing signal with respect to processing parameter of the machine tool. The wireless transmitting module converts the sensing signal into a wireless signal and transmits the wireless signal to the receiving module. Then the wireless signal is decoded and sent to a processing unit for compensating the machine tool. In the present invention, it is not necessary to consider wiring arrangement so that the sensors can be disposed at positions that are close to the mechanism whose operating status could affect the machining process and the compensation, generated according to the foregoing sensing data, for machine tool will be more effective to improve the machining accuracy.
    • 提供了一种用于检测机床的制造参数的装置,其包括至少一个感测和发送模块以及一个接收模块。 感测和发射模块具有传感器和无线发射模块。 传感器产生相对于机床加工参数的检测信号。 无线发射模块将感测信号转换成无线信号,并将无线信号发送到接收模块。 然后将无线信号解码并发送到用于补偿机床的处理单元。 在本发明中,不需要考虑布线布置,使得传感器可以布置在靠近其运行状态可能影响加工过程的机构的位置和根据上述感测数据生成的用于机器的补偿 刀具将更有效地提高加工精度。
    • 39. 发明申请
    • CNC control unit with learning ability for machining centers
    • 具有加工中心学习能力的CNC控制单元
    • US20050251284A1
    • 2005-11-10
    • US11120018
    • 2005-05-02
    • Joze Balic
    • Joze Balic
    • G05B19/4099G06F19/00
    • G05B19/4099G05B2219/33034G05B2219/45145Y02P90/265
    • A computer numerical control unit with learning ability solves the problem of automatic and intelligent generating of numerical control programs for computer numerical control machining centers for milling, drilling and similar operations. The key module of the computer numerical control unit is a neural network (NN) device that learns to generate the numerical control programs through an neural network teaching module. Upon completion of learning process the neural network device can generate automatically, without any intervention of the operator, merely on the basis of the CAD 2D, 2,5D or 3D part models, taken from a conventional CAD/CAM system, various new numerical control programs for different parts, which have not been in the machining process before. The computer numerical control control unit with learning ability is suitable especially for machining centers intended for milling, including face milling (rough), contour milling (rough), final milling following the contour and in Z-plane, final contour 3D milling, contour final milling, milling in Z-plane, final contour milling on the equidistant, and milling of pockets; drilling, including normal drilling, deep drilling, and center drilling; and reaming, sinking and threading.
    • 具有学习能力的计算机数字控制单元,解决了铣床,钻孔和类似操作的计算机数控加工中心自动智能生成数控程序的问题。 计算机数字控制单元的关键模块是通过神经网络教学模块学习生成数控程序的神经网络(NN)装置。 完成学习过程后,神经网络设备可以在没有任何操作人员干预的情况下自动生成,仅基于从传统CAD / CAM系统中获取的CAD 2D,2,5D或3D零件模型,各种新的数字控制 不同部件的程序,以前没有在加工过程中。 具有学习能力的计算机数字控制单元特别适用于铣削加工中心,包括铣削(粗铣),轮廓铣削(粗铣),轮廓和Z平面后的最终铣削,最终轮廓3D铣削,轮廓最终 在Z平面铣削,铣削,等距铣削,口袋铣削, 钻井,包括正常钻孔,深钻和中心钻孔; 和扩孔,下沉和线程。
    • 40. 发明申请
    • System and method for manufacturing a material using concurrent dimension certification
    • 使用并行维度认证制造材料的系统和方法
    • US20030093170A1
    • 2003-05-15
    • US10045370
    • 2001-11-09
    • Benjamin Angeles Escobar JR.
    • G06F019/00
    • G05B19/401G05B2219/37345G05B2219/37573G05B2219/45145G05B2219/50074
    • A system and method for cutting material, adaptable for use with existing manufacturing devices, where the system can be adapted to work with existing controllable manufacturing processors, obtain one or more predetermined dimensions during a manufacturing process, and use those dimensions to simultaneously control the manufacturing process while generating a concurrent certification of the predetermined dimensions. In an exemplary embodiment the device comprises a milling line; a stepper motor; a mainframe; a protected real-time sensor; a controller; and a computer in communication with the controller and sensor. It is emphasized that this abstract is provided to comply with the rules requiring an abstract which will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope of meaning of the claims.
    • 一种用于切割材料的系统和方法,适用于现有的制造装置,其中系统可以适应于现有的可控制造处理器,在制造过程中获得一个或多个预定尺寸,并使用这些尺寸来同时控制制造 同时生成预定维度的并发证书。 在示例性实施例中,该装置包括铣削线; 步进电机 大型机 受保护的实时传感器; 控制器 以及与控制器和传感器通信的计算机。 要强调的是,该摘要被提供以符合要求摘要的规则,这将允许搜索者或其他读者快速确定技术公开的主题。 提交的理由是,它不会用于解释或限制权利要求的含义范围。