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    • 11. 发明授权
    • Apparatus for transporting parts
    • 运输零件的装置
    • US06733228B2
    • 2004-05-11
    • US09953161
    • 2001-09-17
    • Shigeki TakahashiNihei KaishitaAkira Nemoto
    • Shigeki TakahashiNihei KaishitaAkira Nemoto
    • B65G5900
    • H05K13/0434
    • A part transporting apparatus comprises: a guiding groove for lining up parts in one row and guiding the parts; a transporting member which is provided at the base of the guiding groove and transports the parts in a forward direction by itself moving forwards and backwards along the groove; and a driving means for reciprocally driving the transporting member in the forward and backward directions; wherein the transporting member is advanced slowly and retracted rapidly, so as to transport the parts forwards. Provided to this arrangement are: a stopper which operates so as to open and close in the width direction of the guiding groove, and hold the second part from the front of the row of parts being transported on the upper plane of the transporting member; and a shutter for opening and closing at the tip of the guiding groove, so as to cover the space above the first part in the row so as to prevent the part from flying out. The shutter is opened synchronously with the transporting member immediately before forward movement of the transporting member is completed, thereby extracting the first part separated from the second part. Such an arrangement provides for an apparatus for transporting parts, wherein the first part and second part can be separated in a sure manner even in the event that the parts are non-magnetic material, and wherein ease and stability of extracting of the first part is facilitated.
    • 一种部件传送装置包括:引导槽,用于排列一排中的部件并引导部件; 传送构件,其设置在引导槽的基部并通过其沿着槽向前和向后沿向前方向传送部件; 以及用于沿前后方向往复驱动传送部件的驱动装置; 其中传送构件缓慢前进并且迅速地缩回,以便将部件向前运送。 提供这样一种装置:一个在引导槽的宽度方向上打开和关闭的止动器,并且从传送部件的上平面上被传送的部分行的前部保持第二部分; 以及用于在引导槽的顶端打开和关闭的挡板,以便覆盖行中的第一部分上方的空间,以防止该部件飞出。 在完成传送部件的向前移动之前,快门与传送部件同步地打开,从而提取与第二部分分离的第一部分。 这种布置提供了用于运输部件的装置,其中即使在部件是非磁性材料的情况下,第一部分和第二部分可以以可靠的方式分离,并且其中第一部分的提取的容易性和稳定性是 方便了
    • 13. 发明授权
    • Component feeder
    • 组件馈线
    • US06189733B1
    • 2001-02-20
    • US09358428
    • 1999-07-22
    • Akira NemotoShigeki TakahashiNihei Kaishita
    • Akira NemotoShigeki TakahashiNihei Kaishita
    • B23Q712
    • H05K13/028
    • A component feeder minimizes damage to chip components and efficiently discharges chip components aligned in a line. A bulk case is attached on the top portion of an external storage housing capable of being supplied with a large number of chip components. A predetermined number of the chip components is supplied at a time from the external storage housing to an inner housing of a component storage housing via a supplying path. The chip components in the inner housing enter into the outer housing from the reception inlet via a guide path by being scooped up by pockets in accordance with rotation of a rotary drum. The chip components are dropped into an aligning groove to be aligned and are discharged aligned in a line via a gate and a discharge path. The chip components slide down on the aligning groove to be discharged to a discharge path, via the gate, aligned in a line. Since excess components in the outer housing are returned to the inner housing via the return path by raking them up by a raking-up portion formed in the rotary drum, the number of chip components in the outer housing is small, resulting in maintaining increased alignment efficiency.
    • 元件馈线最大限度地减少了芯片组件的损坏,并有效地排放了一条线对齐的芯片组件。 散装壳体附着在能够供应大量芯片部件的外部存储壳体的顶部上。 预定数量的芯片部件经由供给路径一次从外部存储壳体供给到部件储存壳体的内部壳体。 内壳体中的芯片部件通过根据旋转滚筒的旋转而由凹槽舀取而通过引导路径从接收入口进入外壳体。 芯片部件落入对准槽中以对准,并且经由栅极和放电路径排列成一行。 芯片部件在对准槽上向下滑动,通过门排列到排出路径,排成一行。 由于外壳中的多余部件经由返回路径通过由形成在旋转滚筒中的上升部分向上突出而返回到内壳体,所以外壳体中的芯片部件的数量小,导致维持增加的对准 效率。
    • 14. 发明授权
    • Component conveying device and method
    • 部件输送装置及方法
    • US6152671A
    • 2000-11-28
    • US434164
    • 1999-11-04
    • Nihei KaishitaAkira NemotoShigeki Takahashi
    • Nihei KaishitaAkira NemotoShigeki Takahashi
    • B65G47/78H05K13/02
    • H05K13/021Y10T29/53178Y10T29/53261
    • A component conveying device is provided in which a lead component and a second component behind the lead component can be reliably separated and the lead component can be readily extracted with reduced error. The device includes a guide groove 6 for guiding and aligning the components P in a single line. A blade 5 is provided which moves back and forth in the groove. The components P are conveyed forward by moving the blade 5 forward at a low speed and then moving the blade backward in a high speed. A first stopper 31 holds a second component at the distal end of the device. A second stopper 41 stops the lead component P1 from moving back and forth, and a shutter 43 includes a magnet 49 for attracting the lead component. The second stopper is provided at a distal end portion of the guide groove 6. After the first stopper 31 holds the second component P2, the blade 5 moves forward by a predetermined distance, thereby conveying the lead component P1 forward with the blade 5 while the lead component P1 is attracted and held by the magnet 49 of the shutter 43. Thus, the lead component P1 is separated from the second component P2. Further, extraction of the lead component can be made easier by pulling the magnet 49 away from the lead component P1 just before the completion of the forward movement of the blade 5.
    • 提供一种部件传送装置,其中可以可靠地分离引导部件后面的引导部件和第二部件,并且可以容易地以较小的误差提取引导部件。 该装置包括用于在单线中引导和对准组件P的引导槽6。 设置有在槽内前后移动的叶片5。 通过以低速向前移动叶片5然后高速地将叶片向后移动,将部件P向前方传送。 第一止动件31在装置的远端处保持第二部件。 第二止动件41阻止引导部件P1来回移动,并且挡板43包括用于吸引引导部件的磁体49。 第二止动件设置在引导槽6的远端部分。在第一止动件31保持第二部件P2之后,刀片5向前移动预定距离,从而将引导部件P1向前传送到刀片5,同时 引导部件P1被活门43的磁体49吸引并保持。因此,引导部件P1与第二部件P2分离。 此外,在叶片5的向前移动完成之前,通过将磁体49远离引导部件P1,可以更容易地提取引导部件。
    • 15. 发明授权
    • Apparatus and method for aligning parts
    • 对准零件的装置和方法
    • US6112937A
    • 2000-09-05
    • US095652
    • 1998-06-11
    • Shigeki TakahashiNihei Kaishita
    • Shigeki TakahashiNihei Kaishita
    • B65G65/44B65G47/14B65G47/256B65G65/40H05K13/02B23Q7/12
    • H05K13/022H05K13/028
    • A part-aligning apparatus is simple in structure, causes less damage to chip parts, and operates well even if its chip discharge passage is clogged or overflows. The apparatus has a part-holding chamber for accommodating a number of chip parts. An arc-shaped chute groove is formed in the inner surface of the bottom of the part-holding chamber to orient the chip parts in a given direction and to guide the sliding chips. A gate port is formed at the lower end of the chute groove to pass the sliding chip parts in series out of the apparatus. The discharge passage is formed tangent to the chute groove to align the passed chip parts in a row and to deliver the chip parts in sequence. A swingable plate having a blade is mounted inside the part-holding chamber. This blade urges any chip part which is stopped in the gate port due to an abnormal orientation toward a direction different from the direction in which the chip parts are discharged, thus removing clogging.
    • 部件对齐装置结构简单,对芯片部件造成的损坏较小,即使其芯片排出通道堵塞或溢出,也能够良好地运行。 该装置具有容纳多个芯片部件的部分保持室。 在所述部件保持室的底部的内表面上形成有弧形的斜槽,以使所述芯片部件沿给定方向定向并引导所述滑动芯片。 门槽形成在滑槽的下端,将滑动芯片部件串联通过设备。 排出通道形成为与滑槽相切,以将经过的芯片部分排成一行并依次传送芯片部件。 具有刀片的摆动板安装在部件保持室内部。 该叶片由于向与芯片部件排出方向不同的方向的异常取向而促使在门口中停止的任何芯片部分,从而消除堵塞。
    • 16. 发明授权
    • Resin molding machine
    • 树脂成型机
    • US07059847B2
    • 2006-06-13
    • US10485754
    • 2003-07-15
    • Takeshi TakedaShigeki TakahashiKunihito SetaNihei Kaishita
    • Takeshi TakedaShigeki TakahashiKunihito SetaNihei Kaishita
    • B29C45/32
    • B29C45/1759B29C45/14655
    • To provide a resin molding machine that can reduce cost by eliminating the need for a residual-material remover, and can reduce cycle time and the amount of residual material, the resin molding machine includes a stationary cavity plate that has a gate communicating with a cavity, a sprue bushing in which a sprue is formed for feeding a molding material through the gate into the cavity, a runner plate disposed between the stationary cavity plate 13 and the sprue bushing, a cylinder unit (runner-plate driving mechanism) for rectilinearly reciprocating the runner plate between ejecting positions and via a molding position, the ejecting positions being separated from the molding position A and provided for ejecting the residual material, and an ejecting channel (residual-material ejecting mechanism) for ejecting the residual material at the ejecting positions.
    • 为了提供能够通过不需要残留材料去除剂来降低成本的树脂成型机,并且可以减少周期时间和剩余材料的量,树脂成型机包括具有与腔连通的门的固定腔板 浇口套管,其中形成有用于将成型材料通过浇口进入空腔的浇道;设置在固定腔板13和浇口衬套之间的流道板,用于直线往复运动的缸单元(流道板驱动机构) 排出位置之间的流道板和模制位置,排出位置与模制位置A分离并被设置用于喷射剩余材料,以及用于将残留材料排出在排出位置的排出通道(残留材料排出机构) 。
    • 17. 发明授权
    • Apparatus and method for aligning parts
    • 对准零件的装置和方法
    • US06691855B1
    • 2004-02-17
    • US09097013
    • 1998-06-15
    • Shigeki TakahashiNihei Kaishita
    • Shigeki TakahashiNihei Kaishita
    • B65G4714
    • H05K13/028B65G47/1407
    • There is disclosed a part-aligning apparatus that is simple in structure, less damages chip parts, and operates well even if its chip discharge passage is clogged or overflows. The apparatus has a part-holding chamber for accommodating a number of chip parts. An arc-shaped chute groove is formed in the inner surface of the bottom of the part-holding chamber to orient the chip parts in a given direction and to guide the sliding chips. A gate port is formed at the lower end of the chute groove to pass the sliding chip parts one by one. The discharge passage is formed tangent to the chute groove to align the passed chip parts in a row and to deliver them. Claw portions for removing clogging are formed on the inner surface of a rotary drum that forms the part-holding chamber. The claw portions urge any chip part halted in the gate port in an abnormal posture toward an opposite direction different from the direction in which the chips are delivered.
    • 公开了一种结构简单,损坏芯片部件的部件对齐装置,即使其芯片排出通道堵塞或溢出也能够良好地运行。 该装置具有容纳多个芯片部件的部分保持室。 在所述部件保持室的底部的内表面上形成有弧形的斜槽,以使所述芯片部件沿给定方向定向并引导所述滑动芯片。 在滑槽的下端形成有一个门口,一个接一个地通过滑动片。 排出通道形成为与滑槽相切,以使经过的芯片部分成一排排列并将其输送。 在形成部分保持室的旋转鼓的内表面上形成用于除去堵塞的爪部。 爪部将异常姿势的任何芯片部分阻止在门口中的任何芯片部分朝向与输送芯片的方向不同的相反方向。
    • 18. 发明授权
    • Apparatus and method for aligning parts
    • 对准零件的装置和方法
    • US06513644B1
    • 2003-02-04
    • US09109407
    • 1998-07-02
    • Shigeki TakahashiNihei Kaishita
    • Shigeki TakahashiNihei Kaishita
    • B65G4714
    • H05K13/003
    • A subject part-aligning apparatus has a simple structure and causes less damage to chip parts, and operates well even if a chip discharge passage thereof is clogged or overflows with the chip parts. The apparatus has a part-holding chamber for accommodating a number of chip parts. An arc-shaped chute groove is formed in the inner surface of the bottom of the part-holding chamber to orient the chip parts in a given direction and to slidably guide the chips. A gate port is formed at the lower end of the chute groove to permit the chip parts sliding downward in a given orientation along the chute groove to pass in series (e.g., one by one). The discharge passage is formed to be tangential to the chute groove to align the passed chip parts in a line and to discharge the chip parts. A rotary impeller having blades is mounted in the part-holding chamber. The blades urge any chip part halted in an abnormal orientation in the gate port toward a direction opposite to the direction in which the chips are discharged.
    • 对象零件调整装置具有简单的结构,对芯片部件造成的损坏较小,即使其芯片排出通道堵塞或芯片部件溢出,也能够良好地运行。 该装置具有容纳多个芯片部件的部分保持室。 在所述部件保持室的底部的内表面中形成弧形斜槽,以沿着给定方向定位所述芯片部件,并且可滑动地引导所述芯片。 门槽口形成在斜槽槽的下端,以允许芯片部件沿着斜槽沿给定方向向下滑动以串联(例如一个接一个地)通过。 排出通道形成为与滑槽相切,以使经过的芯片部分在一条线上对准并排出芯片部件。 具有叶片的旋转叶轮安装在部分保持室中。 叶片促使任何芯片部分在门口中朝向与芯片排出方向相反的方向以异常方向停止。
    • 19. 发明授权
    • Apparatus for aligning parts
    • 用于对准零件的装置
    • US6019212A
    • 2000-02-01
    • US102877
    • 1998-06-24
    • Shigeki TakahashiNihei Kaishita
    • Shigeki TakahashiNihei Kaishita
    • B65G65/40B65G47/14B65G47/28H05K13/02B65G1/00
    • H05K13/028
    • A part-aligning apparatus is provided which is not overly complex in structure, which reduces the damage to chip parts, and which operates well even if its chip discharge passage is clogged or overflows. The apparatus has a part-holding chamber for accommodating a number of chip parts. The chamber is formed between a stationary drum and a rotary drum. The rotary drum has an annular portion forming an outer wall of the part-holding chamber. An arc-shaped chute groove is formed in the inner surface of the annular portion. At least one gate hole extends through the annular portion and is in communication with the chute groove. An arc-shaped guide groove corresponding in position to the outer opening of the gate hole is formed in the inner surface of the stationary drum. A discharge passage is formed at the lower end of the guide groove. The rotary drum is rotated to align the chip parts and to deliver the chip parts into the discharge passage via the chute groove, the gate hole and guide groove.
    • 提供了一种结构不过分复杂的部件对齐装置,其减少了对芯片部件的损坏,并且即使其芯片排出通道堵塞或溢出也能够良好地运行。 该装置具有容纳多个芯片部件的部分保持室。 腔室形成在固定鼓和旋转鼓之间。 旋转鼓具有形成部分保持室的外壁的环形部分。 在环状部的内表面形成有弧形的斜槽。 至少一个门孔延伸穿过环形部分并且与滑槽沟槽连通。 在静止鼓的内表面上形成有与门孔的外部开口相对应的弧形引导槽。 排出通道形成在引导槽的下端。 旋转鼓旋转以对准芯片部分并且经由滑槽,门孔和引导槽将芯片部件输送到排出通道中。