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    • 34. 发明公开
    • CENTRIFUGAL PROJECTOR AND BLADE
    • ZENTRIFUGALPROJEKTOR UND SCHAUFEL
    • EP3064320A4
    • 2017-05-31
    • EP14858828
    • 2014-09-26
    • SINTOKOGIO LTD
    • SUZUKI HIROAKIUMEOKA MASATO
    • B24C5/06
    • B24C5/06B24C5/062
    • The present invention is a centrifugal projector (1) for projecting projection material (2) toward a processing target, comprising a side plate (11), a plurality of blades (3) attached to the side plate, a rotary shaft (14) for rotating the side plate and the blades, and an introducing part (32) for introducing the projection material between the blades; wherein the blades (3) includes a projection surface (3a) for projecting the projection material, and the projection surface (3a) has a first part (3b) being a radial inner part of the blade and a second part (3c) being a radial outer part of the blade; the first part (3b) is formed to be pitched so that a radial outer side (3e) of the first part is positioned to a rear in the rotational direction (R1) compared to a radial inner side (3f) of the first part, and the second part (3c) of the blade is formed to be positioned to a front in the rotational direction (R1) of an imaginary line (L1) which extends the first part (3b) of the blade toward a radial outer side of the projector.
    • 本发明是一种用于将投影材料(2)投向加工对象的离心式投影仪(1),包括侧板(11),安装在该侧板上的多个叶片(3),旋转轴(14) 旋转侧板和叶片;以及引入部分(32),用于将投射材料引入叶片之间; 其中所述叶片包括用于投射所述投射材料的投射表面,并且所述投射表面具有作为所述叶片的径向内部的第一部分和作为第二部分的第二部分, 叶片的径向外部; 第一部分(3b)形成为倾斜的,使得与第一部分的径向内侧(3f)相比,第一部分的径向外侧(3e)定位在旋转方向(R1)的后方, 并且叶片的第二部分(3c)形成为定位在将叶片的第一部分(3b)朝向叶片的径向外侧延伸的假想线(L1)的旋转方向(R1) 投影机。
    • 35. 发明公开
    • SIDE PLATE UNIT AND CENTRIFUGAL PROJECTOR
    • 二苯卡巴肼
    • EP3064319A4
    • 2017-05-31
    • EP14858759
    • 2014-09-26
    • SINTOKOGIO LTD
    • SUZUKI HIROAKIUMEOKA MASATO
    • B24C5/06
    • B24C5/06B24C5/062
    • The present invention is a side plate unit (10) used in a centrifugal projector (1) which projects projection material (2) toward a processing target by rotating a plurality of blades (3), and the side plate unit (10) being provided to attach the plurality of blades thereto, the side plate unit (10) comprising: a pair of side plates (11); and a joining member (12) for joining the pairs of side plates; wherein guide channel portions (13) are respectively formed on mutually opposing surfaces of the pair of side plates (11); and the side plate guide channel portions (13) are formed to be pitched so that the radial outer side thereof is positioned to a rear in the rotational direction (R1) compared to the radial inner side thereof.
    • 本发明是一种用于通过旋转多个叶片(3)将投射材料(2)投射到处理目标的离心投影仪(1)中的侧板单元(10),并且提供侧板单元(10) (10)包括:一对侧板(11);以及一对侧板(11)。 和用于连接所述成对侧板的连接构件(12) 其中引导通道部分(13)分别形成在所述一对侧板(11)的相互相对的表面上; 和侧板引导通道部分(13)形成为倾斜的,使得其径向外侧比其径向内侧位于旋转方向(R1)的后方。
    • 36. 发明公开
    • SHOT PROCESSING DEVICE AND PROJECTOR
    • SCHUSSVERARBEITUNGSVORRICHTUNG UND PROJEKTOR
    • EP3162501A1
    • 2017-05-03
    • EP15810805
    • 2015-06-08
    • SINTOKOGIO LTD
    • KAGA HIDEAKISUZUKI HIROAKIYAMAMOTO SHOICHIUMEOKA MASATOKOYAMA TAKUYA
    • B24C5/06B24C3/14B24C9/00
    • B24C3/14B24C5/06B24C5/062B24C9/00B24C9/003
    • The purpose of the present invention is to provide a shot processing device and a projector such that the projection amount of a projection material can be minimized. The present invention provides a shot processing device (1) equipped with a centrifugal projector (20) for projecting a projection material onto a workpiece and a support mechanism for supporting the workpiece at a processing position where surface processing by the projector can be carried out, wherein the projector is equipped with: a cylindrical control cage (92) which the projection material is supplied into and which has an opening formed on a side wall as a projection material discharge port; and an impeller (100) that has a plurality of blades (104), which are arranged outside of the control cage and extend outward in the radial direction of the control cage, and rotates about the central axis of the control cage, wherein each blade has, disposed on a front-side surface in the rotation direction, a rearward inclined section (110) inclining toward the rear-side in the rotation direction.
    • 本发明的目的在于提供一种喷丸处理装置和投影仪,使得投射材料的突出量可以最小化。 本发明提供一种喷丸处理装置(1),该喷丸处理装置(1)具备:将投影材料投影到被加工物上的离心式投影仪(20);以及支撑机构,该支撑机构在能够进行投影仪的表面处理的加工位置支撑工件, 其特征在于,所述投影机具备:向所述投射材料供给的圆筒状的控制保持架(92),在作为投射材料吐出口的侧壁上形成有开口部; 和具有多个叶片(104)的叶轮(100),所述叶片布置在所述控制笼的外部并沿所述控制笼的径向方向向外延伸并且围绕所述控制笼的中心轴线旋转,其中每个叶片 在旋转方向上的前侧表面上布置有朝向旋转方向上的后侧倾斜的后倾斜部分(110)。
    • 37. 发明公开
    • SANDSTRAHLANLAGE MIT OSZILLIERENDEM SCHLEUDERRAD
    • 晶粒厂与振荡风机
    • EP3132895A1
    • 2017-02-22
    • EP16184144.0
    • 2016-08-15
    • STP Strahltechnik Pliezhausen GmbH & Co. KG
    • BURGMAIER, Hugo Mathias
    • B24C3/04B24C5/06B24C3/06
    • B24C3/14B24C3/04B24C3/06B24C3/24B24C5/066
    • Eine Sandstrahlanlage (10) mit einem Schleuderrad (11), welches mittels eines axialen Antriebsmotors (12) angetrieben und um eine erste Drehachse (13), die senkrecht zu einer zur Motorachse des Antriebsmotors (12) parallelen Achse verläuft, schwenkbar auf einem Strahlsattel (14) montiert ist, zeichnet sich dadurch aus, dass die erste Drehachse (13) auf dem Strahlsattel (14) unterhalb des Schleuderrads (11) angeordnet ist, und dass eine erste elektromechanische Verstellvorrichtung (15) vorhanden ist, mittels derer das Schleuderrad (11) in verschiedene gewünschte Verschwenkwinkel bezüglich der ersten Drehachse (13) verfahrbar ist. Damit kann ein erheblich größerer Winkelbereich auf dem zu bearbeitenden Werkstück simultan sandgestrahlt werden. Außerdem besitzt die erfindungsgemäß verbesserte Konstruktion eine erhöhte mechanische Stabilität und ermöglicht schließlich auch noch einen zumindest ferngesteuerten, normalerweise sogar einen vollautomatisierten Betrieb der Sandstrahlanlage.
    • 具有离心轮(11),其通过轴向驱动马达(12)驱动的喷丸设备(10),并围绕旋转的第一轴线(13)垂直于平行延伸到所述驱动马达(12)轴,可枢转地(在光束的马达轴半 14)被安装时,其特征在于,在横梁鞍座(14)的纺丝器下方的第一旋转轴(13)(11)布置,并且第一电 - 机械调节装置(15)的存在,借助叶轮其中的(11 )可以在期望的相对转动角度的不同被移动到旋转(13的第一轴)。 因此,角度的一个相当大的范围,可以同时喷砂在工件上进行加工。 此外,本发明改进的设计具有增大的机械稳定性,并最终也允许甚至至少远程控制通常甚至完全自动化的爆破处理系统的操作。
    • 38. 发明公开
    • ABRASIVE GRAIN JET GRINDING DEVICE
    • 研磨装置的研磨喷嘴
    • EP2974830A4
    • 2016-10-19
    • EP14765126
    • 2014-02-14
    • KAMEI TEKKOUSHO LTD
    • KAMEI HARUO
    • B24C5/06
    • B24C5/06B24C1/08B24C3/12B24C3/14B24C5/066B24C5/068
    • Proposed are an impeller and a nozzle suited for causing abrasive grains to collide as a continuous dense mass with a workpiece and grinding the workpiece surface. Proposed is an abrasive grain jet grinding device comprising a belt wrapped around an impeller comprising blades held between a shaft-side disc and an open disc, the peripheral surface between the blades being an open surface, the impeller being caused to rotate to impart a centrifugal force to the abrasive grains, a nozzle being provided in the disk tangential direction that passes through the point of separation between the belt and the peripheral surface of the impeller, and the abrasive grains being sprayed onto the workpiece, wherein the blades held between the shaft-side disc and the open disc are formed from thin plates to finely partition the circumference of the discs, are inclined forward in the direction of rotation of the discs, are provided densely so that multiple adjacent blades overlap each other, and are set with narrow gaps between the blades to form a large number of storage chambers for the abrasive grains. In addition, a large number of first flow-straightening blades inclined so that the height thereof decreases towards the outer periphery are provided radially around the drive shaft of the shaft-side disc, and a large number of second flow-straightening blades inclined so that the height thereof decreases towards the inner periphery are radially provided to the inside surface of the open disc so as to face the first flow-straightening blades.
    • 提出了一种叶轮和喷嘴,适用于使磨粒与工件作为连续致密的质量碰撞并研磨工件表面。 提出了一种磨粒喷射研磨装置,其包括缠绕在包括轴侧盘和开放盘之间的叶片的叶轮的带轮上,叶片之间的周边表面是开放的表面,叶轮被旋转以赋予离心力 沿磨盘的切线方向设置喷嘴,该喷嘴通过带与叶轮的周面之间的分离点,并且将磨粒喷射到工件上,其中保持在轴之间的叶片 侧盘和开盘由薄板形成,以细分圆盘的圆周,在盘的旋转方向上向前倾斜,密集地设置,使得多个相邻的叶片彼此重叠,并且设置为窄 叶片之间的间隙形成用于磨料颗粒的大量储存室。 此外,在轴侧盘的驱动轴周围径向地设置大量第一流动整流叶片,其高度朝向外周侧减小,并且大量第二流动矫直叶片倾斜,使得 朝向内周的高度减小径向设置在开放盘的内表面上,以便面对第一流动矫直叶片。