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    • 2. 发明申请
    • RADIAL COMPRESSION MECHANISM WITH HEATING AND/OR COOLING
    • 具有加热和/或冷却的径向压缩机构
    • US20170066040A1
    • 2017-03-09
    • US15179791
    • 2016-06-10
    • Tom Hyde
    • Tom Hyde
    • B21J9/06
    • B21J9/06A61F2/95A61F2/958A61F2002/9522B21D26/055B21D37/16B21J9/02
    • A radial compression mechanism includes a plurality of die, each of the plurality of die have a wedge shaped tip. The dies are arranged around a common central axis so that the wedge shaped tips form an elongated central cavity and move between an expanded position and a contracted position. Each die includes a fluid duct extending lengthwise through the die proximate the wedge-shaped tip. Each fluid duct includes an inlet fluid port and an outlet fluid port. The fluid ducts are connected in parallel by a fluid supply manifold connected to each inlet fluid port of each die by an inlet conduit, and a fluid return manifold connected to each outlet fluid port of each die by an outlet conduit.
    • 径向压缩机构包括多个模具,所述多个模具中的每一个具有楔形尖端。 模具围绕共同的中心轴线布置,使得楔形尖端形成细长的中心腔并且在扩张位置和收缩位置之间移动。 每个模具包括沿楔形尖端纵向延伸穿过模具的流体管道。 每个流体管道包括入口流体端口和出口流体端口。 流体管道由通过入口导管连接到每个管芯的每个入口流体端口的流体供应歧管并联,并且通过出口导管连接到每个管芯的每个出口流体端口的流体返回歧管。
    • 3. 发明授权
    • Hot upset forging method
    • 热镦锻法
    • US09427793B2
    • 2016-08-30
    • US14372753
    • 2013-01-23
    • HITACHI METALS, LTD.
    • Takashi TogaHideki MatsumotoYusuke Shigihara
    • B21J5/08B21J5/02B21J13/02B21J1/04B21J9/06
    • B21J5/08B21J1/04B21J5/02B21J5/025B21J9/06B21J13/02
    • Provided is a hot upset forging method enabling high shape precision to be obtained. The hot upset forging method includes inserting a workpiece (1), with a bottom face diameter d and a height h satisfying h/d>3, into an insertion hole provided passing through a mold (2) of a height H disposed on an anvil (4), and increasing the diameter of the workpiece (1) while decreasing the height of the workpiece (1) to form a forged material. The mold satisfies the following relationships (1) to (3). (1) A shape of the insertion hole and the cross-sectional shape of the workpiece are substantially similar shapes. (2) The height h of the workpiece (1)≦the height H of the mold (2). (3) A largest diameter dl of the workpiece 1, and the maximum inner diameter D of the insertion hole, in the height range of the workpiece (1), satisfy dl
    • 提供了一种能够获得高形状精度的热镦锻法。 热镦锻法包括将具有底面直径d和高度h满足h / d> 3的工件(1)插入穿过设置在砧座上的高度为H的模具(2)提供的插入孔中 (4),并且在减小工件(1)的高度以形成锻造材料的同时增加工件(1)的直径。 模具满足以下关系(1)〜(3)。 (1)插入孔的形状和工件的截面形状基本相同。 (2)工件(1)的高度h≤模具(2)的高度H. (3)工件1的最大直径d1和工件(1)的高度范围内的插入孔的最大内径D满足dl
    • 4. 发明授权
    • Apparatus and method for swaging needles
    • 用于锻造针的装置和方法
    • US08402623B2
    • 2013-03-26
    • US12878388
    • 2010-09-09
    • John J. PriceJerry W. StametzKenneth R. Barsch
    • John J. PriceJerry W. StametzKenneth R. Barsch
    • B25B27/02
    • A61B17/06004A61B2017/00526B21G1/006B21J9/06Y10T29/49826Y10T29/53709Y10T29/53787Y10T29/53791
    • A method and apparatus for making armed sutures has a pair of opposed die assemblies that may be driven by actuating surfaces of a swaging machine to hold and swage a needle on a suture. The dies grip and confine the needle in the area of the suture receptacle. A pair of opposed swaging elements with offset stakes insert through passageways in the dies and impinge on the captured needle making a plurality of indentations in the needle barrel and gripping the suture in the suture receptacle. The indentations are offset and aligned generally in alternating peak-to-valley relationship, causing the suture receptacle and the contained suture to assume a serpentine configuration. The stakes and the resulting indentations can be dimensioned to result in a converging suture receptacle, which exhibits increasing shear force being exerted on the suture with increasing depth into the suture receptacle. The apparatus and method permit reliable suture-needle attachment over a larger range of tolerances, such that a single die setup can be used on a plurality of needle and suture materials. The resulting product exhibits a serpentine suture/needle attachment interface with reliable attachment and smooth outer dimensions.
    • 用于制造武装缝合线的方法和装置具有一对相对的模具组件,其可由致动机器的致动表面驱动以在缝合线上保持并挤压针头。 模具握住并将针限制在缝合线接收器的区域中。 具有偏置桩的一对相对的锻造元件通过模具中的通道插入并冲击在捕获的针上,在针筒中形成多个凹陷并且夹紧缝合线槽中的缝合线。 凹痕通常以交替的峰 - 谷关系偏移和对准,导致缝合线接收器和所包含的缝合线呈现蛇形结构。 桩和所产生的凹痕的尺寸可以被设计成导致收敛的缝合线接收器,其呈现出增加的剪切力,其以更深的深度进入缝合线槽中施加在缝合线上。 该装置和方法允许在更大的公差范围内可靠地缝合针附接,使得可以在多个针和缝合材料上使用单个模具设置。 所得到的产品显示出具有可靠附接和光滑外形尺寸的蛇形缝合/针附接界面。
    • 5. 发明授权
    • Method and device for manufacturing fastenings or fasteners with radial outer contours, especially screws or threaded bolts
    • 用于制造具有径向外轮廓的紧固件或紧固件的方法和装置,特别是螺钉或螺栓
    • US08382601B2
    • 2013-02-26
    • US12543922
    • 2009-08-19
    • Hilmar Gensert
    • Hilmar Gensert
    • B21H3/00B21D22/00
    • B21K1/463B21J9/06B21K1/56B21K27/00
    • A method of manufacturing fastenings or fasteners with radial outer contours, especially screws or threaded bolts, made of solid metal is performed by a device. The method manufactures the fastenings or fasteners preferably on a multi-stage press. Several recesses running in an axial direction at a fixed radial distance are formed in the shank-shaped section of a blank. The prefabricated blank with the recesses is inserted into a multi-part split mold within a multi-stage press, whose die stocks have an inner profiling forming the outer contour, and are opened in the starting position, that at the places where the die stocks are opened, there are the recesses. During the closing movement of the die stocks, at least one radial outer contour is pressed on the shank-shaped section of the blank by radial action of forces, with the recesses preventing material from getting between the die stocks during the pressing process.
    • 制造具有径向外轮廓的紧固件或紧固件的方法,特别是由固体金属制成的螺钉或螺栓由装置执行。 该方法优选地在多级压机上制造紧固件或紧固件。 在空白的柄形部分中形成有在轴向方向上以固定的径向距离延伸的几个凹槽。 具有凹槽的预制坯料被插入到多级压机中的多部分模具中,其中模具库具有形成外部轮廓的内部轮廓,并且在起始位置打开,在模具库存 被打开,有凹槽。 在模具坯料的关闭运动期间,至少一个径向外部轮廓通过力的径向作用被压在坯料的柄形部分上,其中凹部防止材料在压制过程中在模具坯料之间进入。
    • 9. 发明授权
    • Swage presses
    • 压脚机
    • US07856861B2
    • 2010-12-28
    • US10597995
    • 2005-02-16
    • Fred Van Essen
    • Fred Van Essen
    • B21D41/00B21J9/18
    • B21J9/06B25B27/10
    • A swage or crimp press has a housing with a peripheral side wall and a front wall integrally formed with the side wall, the front wall defining an access opening providing access to a press zone arranged within the peripheral side wall, the housing having an open rear face and a rear wall secured by fastening means to the peripheral side wall to at least partially enclose the rear face of the housing, and a hydraulically operated press mechanism located within the housing at least partially surrounding the press zone.
    • 挤压或压接机具有壳体,其具有外围侧壁和与侧壁一体形成的前壁,前壁限定了进入开口,该通道开口设置在设置在周边侧壁内的冲压区域,壳体具有敞开的后部 面部和后壁通过紧固装置固定到周边侧壁以至少部分地封闭壳体的后表面;以及液压操作的压力机构,其位于壳体内至少部分地围绕压榨区域。
    • 10. 发明申请
    • SWAGING HOLD METHOD, SWAGING HOLD STRUCTURE, SWAGING ROLLER, SWAGING MACHINE, AND SWAGING HOLD WORKPIECE
    • 切换保持方式,移动保持结构,变换滚筒,切换机,切换保持工具
    • US20100071641A1
    • 2010-03-25
    • US12557784
    • 2009-09-11
    • Taro FURUKUBOTakeshi Ishida
    • Taro FURUKUBOTakeshi Ishida
    • F16H25/24B21D39/08F01L1/00F01L31/00
    • B23P11/005B21J9/06F16C35/067
    • In addition to the pressure for swaging applied when swaging is performed, a pressure in the direction the same as the direction of the holding force exerted by a swaged portion is applied to a pressure receiving edge portion of a bearing holder by the pressure applied by a swaging roller. As a result, the elastic deformation in a circumferential wall portion that is not bent is advanced and the amount of elastic deformation of the bearing holder in the axial direction is reduced, so that it is possible to increase the difference in the amount of elastic deformation between the bearing holder and an outer race. Thus, the axial residual stress in the bearing holder is increased after the swaging is completed, as compared to the case of the ordinary swaging. Accordingly, it is possible to increase the holding force for holding the outer race.
    • 除了在进行锻造时施加的模锻加压之外,与由加模部分施加的夹持力的方向相同的方向的压力通过施加在轴承座上的压力施加到轴承座的受压边缘部分 型锻辊。 结果,不弯曲的周壁部的弹性变形进行,轴承保持架的轴向弹性变形量减少,能够增加弹性变形量的差异 在轴承座和外圈之间。 因此,与普通型锻的情况相比,在锻模完成后,轴承座中的轴向残余应力增加。 因此,可以增加用于保持外圈的保持力。