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    • 74. 发明申请
    • CONTROL VALVES FOR WATERJET SYSTEMS AND RELATED DEVICES, SYSTEMS, AND METHODS
    • 用于水系统的控制阀和相关设备,系统和方法
    • US20150360344A1
    • 2015-12-17
    • US14745061
    • 2015-06-19
    • OMAX Corporation
    • Chidambaram RaghavanJohn H. OlsenDouglas KelleyOlivier L. Tremoulet, JR.Rick MarksAndre Kashierski
    • B24C7/00B24C1/04
    • B24C7/0023B24C1/00B24C1/045
    • Control valves for waterjet systems, control-valve actuators, waterjet systems, methods for operating waterjet systems, and associated devices, systems, and methods are disclosed. A control valve configured in accordance with a particular embodiment includes a first seat having a tapered inner surface, a second seat having a contact surface, and an elongated pin having a shaft portion and an end portion. The pin is movable relative to the first and second seats between a shutoff position and one or more throttling positions. When the pin is at the shutoff position, the end portion of the pin is in contact with the contact surface. When the pin is at the throttling position, the end portion of the pin is spaced apart from the contact surface and the tapered inner surface and the shaft portion of the pin at least partially define a throttling gap.
    • 公开了用于喷水系统,控制阀致动器,喷水系统,操作喷水系统的方法以及相关设备,系统和方法的控制阀。 根据特定实施例配置的控制阀包括具有锥形内表面的第一座椅,具有接触表面的第二座椅和具有轴部分和端部部分的细长销。 销可在关闭位置和一个或多个节流位置之间相对于第一和第二座椅移动。 当销处于关闭位置时,销的端部与接触表面接触。 当销处于节流位置时,销的端部与接触表面间隔开,并且锥形内表面和销的轴部分至少部分地限定节流间隙。
    • 75. 发明授权
    • Fluid jet system
    • 流体喷射系统
    • US09168544B2
    • 2015-10-27
    • US13855628
    • 2013-04-02
    • Cobra North America, LLC
    • Casparus Jan Hendrik SeyffertAndrey D. Atanassov
    • B24C5/02B24C3/06B05B7/04A62C31/22B24C1/04
    • B05B7/0408A62C31/22B24C1/045B24C5/02
    • A fluid jet system providing a hydraulic induction manifold for at least two valves. The manifold is positioned “upstream” of an abrasives holding tank, so that no abrasive material flows through the valves and the manifold. The valves and the manifold provide pressurized fluid for at least two different flows: (1) a primary fluid flow and (2) an abrasive material flow through the abrasives holding tank. The two flows are merged again at a junction to provide a fluid flow having a predetermined abrasive-to-fluid mixture ratio. The manifold balances the pressure of the two different flows using a preset geometric relationship between the two different output flow paths associated with the valves.
    • 一种为至少两个阀提供液压感应歧管的流体喷射系统。 歧管位于磨料储存箱的“上游”,使得没有研磨材料流过阀和歧管。 阀和歧管为至少两个不同的流提供加压流体:(1)初级流体流动和(2)研磨材料流过磨料储存罐。 两个流在接合处再次合并,以提供具有预定的磨料与流体混合比的流体流。 歧管使用与阀相关联的两个不同输出流动路径之间的预设几何关系来平衡两个不同流量的压力。
    • 78. 发明申请
    • METHOD AND APPARATUS FOR WATER JET CUTTING
    • 水射流切割的方法和装置
    • US20150266161A1
    • 2015-09-24
    • US14627622
    • 2015-02-20
    • Sugino Machine Limited
    • Koichi NODATakuya AOKINaotsugu TERASAKI
    • B24C1/04G05B19/18
    • B24C1/045G05B19/182G05B19/416G05B2219/43129G05B2219/45036
    • To control cutting process with cutting quality to obtain product without any uncut portion on a corner portion, and to respond to a change in cutting speed. Water jet cutting performed by: inputting a cutting program, set cutting speed, cutting parameters; calculating cutting speed matching the cutting quality; calculating cutting shape from the cutting program and dividing the cutting shape into a linear portion and a corner portion; calculating a corner cutting speed for the corner portion on the basis of a shape of the corner portion within range from the calculation cutting speed to the set cutting speed, set cutting speed equal to or higher than the calculation cutting speed; set cutting speed and the corner cutting speed to the linear portion and the corner portion, respectively, in the cutting program; moving the nozzle relative to the workpiece on the basis of the cutting program assigned with cutting speeds.
    • 为了控制具有切割质量的切割工艺以获得在角部上没有任何未切割部分的产品,并且响应于切割速度的变化。 喷水切割通过以下方式进行:输入切割程序,设定切割速度,切割参数; 计算切割速度匹配切割质量; 从切割程序计算切割形状并将切割形状分割成直线部分和拐角部分; 基于从计算切割速度到设定切割速度的范围内的拐角部分的形状来计算拐角部分的拐角切割速度,设定切割速度等于或高于计算切割速度; 在切割程序中分别将切割速度和角切割速度设置到直线部分和拐角部分; 基于分配有切割速度的切割程序,相对于工件移动喷嘴。
    • 80. 发明授权
    • Method for the design of a technology for the abrasive waterjet cutting of materials
    • 用于磨料水刀切割材料的技术设计方法
    • US09073175B2
    • 2015-07-07
    • US13177439
    • 2011-07-06
    • Jan ValicekAlois BorovickaSergej HlochPetr Hlavacek
    • Jan ValicekAlois BorovickaSergej HlochPetr Hlavacek
    • G06G7/48G06G7/56B24C1/04G06F17/50G06F17/13
    • B24C1/045G06F17/13G06F17/50G06F17/5009
    • Method for abrasive waterjet cutting of materials determines a constant of cuttability using an abrasive waterjet Kawj, according to version A, where three deformation parameters are measured on a test cut/sample, version B, where two deformation parameters are measured, version C where one parameter is measured, or a version D where the design is carried out by calculating Kawj according to Young's modulus or according to an ultrasonic wave speed of the cut material. This constant is subsequently input to an algorithm. The result of a calculation using the algorithm acquires sufficient numerical and graphical data to an optimum setting of parameters and are generally valid for all engineering materials, and further of data on cut quality, limit depth of cuts and economical parameters, and also on mechanical properties of the cut material with regard to classification of the material into cuttability class.
    • 用于磨料水射流切割材料的方法根据A版,使用磨料水刀Kawj确定切割性能的常数,其中在测试切片/样品B上测量三个变形参数,其中测量两个变形参数,版本C,其中一个 或通过根据杨氏模量计算Kawj或根据切割材料的超声波速度来进行设计的版本D. 该常数随后被输入到算法中。 使用该算法进行计算的结果获得足够的数值和图形数据以达到参数的最佳设置,并且对于所有工程材料通常是有效的,还有关于切割质量,限制切割深度和经济参数的数据以及机械性能 关于材料分类为切割等级的切割材料。