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    • 1. 发明授权
    • Locating structure for slide rail
    • 滑轨定位结构
    • US07731313B2
    • 2010-06-08
    • US11507893
    • 2006-08-22
    • Chung Wei Chen
    • Chung Wei Chen
    • A47B88/04
    • H04M1/0237
    • The present invention discloses a locating structure for slide rail, comprising a guide rail which is a rectangular plate disposed with a respective inward-turn slide groove on both sides of its bottom plate, wherein at least two locating holes at the predetermined locating positions are machined to form on the surface of the bottom plate; a slider which is a short frame whose slide plate on top extends to form a respective slide wing on its both sides corresponding to the slide grooves to form a socketingly connection, wherein a respective receiving hole is manufactured to form on both sides of the slide plate, a spring frame, disposed on the bottom of the slide plate and manufactured to form a ball hole on its bottom to socketingly connected with a rolling ball, extends upward an predetermined length from its both sides, respectively, and then bends inward to form a turn portion, respectively, one of which connects downward with a spring plate whose bottom contacts with the rolling ball and the other of which maintains a gap with the spring plate; when the slider slides, the two slide wings slide along the two slide grooves, respectively, and thus the rolling ball compresses the spring plate and moves along the bottom plate until the rolling ball reaches the locating hole to stretch the spring plate, such that the rolling ball falls into the locating hole to form a snapping engagement.
    • 本发明公开了一种用于滑轨的定位结构,其包括导轨,该导轨是在其底板的两侧上设置有相应的内转滑动槽的矩形板,其中在预定定位位置处至少两个定位孔被加工 在底板的表面上形成; 一个滑块,它是一个滑块,它的顶板上的滑板延伸,在与滑动槽对应的两侧上形成一个相应的滑动翼,形成一个横向连接,其中相应的容纳孔被制成形成在滑板两侧 设置在滑动板的底部并制造成在其底部形成球孔以与滚珠纵向连接的弹簧框架,分别从其两侧向上延伸预定长度,然后向内弯曲形成一个 转向部分分别与底部与滚动球接触的弹簧板向下连接,另一个弹簧板与弹簧板保持间隙; 当滑块滑动时,两个滑动翼分别沿着两个滑动槽滑动,因此滚珠压缩弹簧板并沿着底板移动,直到滚珠到达定位孔以拉伸弹簧板,使得 滚珠落入定位孔以形成咬合接合。
    • 2. 发明授权
    • Sliding module and its axle structure
    • 滑动模块及其轴结构
    • US07613485B2
    • 2009-11-03
    • US11500102
    • 2006-08-07
    • Chia-Cheng ChenChung Wei ChenHua Feng Hsu
    • Chia-Cheng ChenChung Wei ChenHua Feng Hsu
    • H04M1/00
    • H05K5/0204H04M1/0212H04M1/0237
    • A sliding module comprises a sliding member having a transversal plate disposed transversally and coupled vertically at a substantially middle position of two sliding plates, and the transversal plate includes a rectangular transversal groove, and the transversal groove includes a through hole disposed at an external side of the transversal groove; a spindle member being a rectangular spindle plate and includes a spindle hole disposed separately on both sides of the spindle member, and a spindle bolt passes through one of said spindle holes and is coupled to the transversal groove; a tension spring with both ends separately including a spring hook and one of the spring hooks is latched into the through hole, and another spring hook is latched into a bolt aperture of a spindle bolt above the transversal groove; and a slid member being a driven plate with both lateral sides bent into a sliding groove for embedding an external side of the sliding plate, and the driven plate includes a plate aperture for passing a spindle bolt through another spindle hole and coupling the spindle bolt; thereby, the tension spring stores energy if pushed, and the slid member continues sliding all the way to a position of releasing energy after the slid member is pushed more than half of the traveling path. The sliding module further connects an axle structure, and the axle structure comprises a vertical first pivotal axle and a horizontal second pivotal axle, and by means of the installation of the two pivotal axles, the sliding module provides the multi-directional pivotal rotating, idling and positioning functions.
    • 滑动模块包括滑动构件,该滑动构件具有横向设置并垂直于两个滑动板的大致中间位置并且横向板包括矩形横向槽,并且横向槽包括设置在外部侧的通孔 横向槽; 主轴构件是矩形主轴板,并且包括分别设置在所述主轴构件的两侧上的主轴孔,并且心轴螺栓穿过所述主轴孔中的一个并且联接到所述横向槽; 分别包括弹簧钩和弹簧钩之一的拉伸弹簧被锁定在通孔中,另一个弹簧钩被锁定在横向槽上方的主轴螺栓的螺栓孔中; 滑动构件是从动板,其两侧弯曲成滑动槽,用于嵌入滑动板的外侧,并且从动板包括用于使主轴螺栓穿过另一主轴孔并联接主轴螺栓的板孔; 因此,拉伸弹簧如果被按压则存储能量,并且滑动构件在滑动构件被推动超过行进路径的一半以上之后继续滑动到释放能量的位置。 滑动模块进一步连接轴结构,轴结构包括垂直的第一枢转轴和水平的第二枢转轴,并且借助于两个枢转轴的安装,滑动模块提供多方向的枢转旋转,空转 和定位功能。
    • 4. 发明授权
    • Method for preparing ion source from nanoparticles
    • 从纳米颗粒制备离子源的方法
    • US08283638B2
    • 2012-10-09
    • US12560451
    • 2009-09-16
    • Gou-Chung ChiPing-Jung HuangChung-Wei ChenChing-Jen PanYu-Lun LiuFu-Chun Tsao
    • Gou-Chung ChiPing-Jung HuangChung-Wei ChenChing-Jen PanYu-Lun LiuFu-Chun Tsao
    • H01J27/02
    • H01J27/26H01J37/08H01J37/3171
    • A method for preparing an ion source from nanoparticles is provided. The method includes the steps of: providing nanoparticles, vaporizing the nanoparticles from a solid state to a gaseous state, and ionizing the gas to form the ion source. The ion source is prepared by placing solid nanoparticles in a stainless tube, heating and vaporizing the solid nanoparticles into a gaseous state, and ionizing the gas. The gas can be formed at a lower heating temperature than when solid lumps are used because solid nanoparticles have a lower melting point than solid lumps. Thus, the heating temperature is lowered, and the preparing time of the ion source is shortened. Besides, under the same temperature, an ion source prepared from nanoparticles provides higher vapor pressure and allows a higher implantation dose than when the ion source is prepared from solid lumps, thus expanding the applicability of ion implantation technology.
    • 提供了一种从纳米颗粒制备离子源的方法。 该方法包括以下步骤:提供纳米颗粒,将纳米颗粒从固体状态汽化成气态,并使气体离子化形成离子源。 离子源通过将固体纳米颗粒置于不锈钢管中,将固体纳米颗粒加热并汽化成气态并使气体离子化来制备。 气体可以在比使用固体块时低的加热温度下形成,因为固体纳米颗粒具有比固体块更低的熔点。 因此,加热温度降低,离子源的制备时间缩短。 此外,在相同温度下,从纳米颗粒制备的离子源提供更高的蒸气压力,并且允许比从固体块制备离子源时更高的注入剂量,从而扩大了离子注入技术的适用性。
    • 5. 发明申请
    • Method for Preparing Ion Source From Nanoparticles
    • 从纳米颗粒制备离子源的方法
    • US20110012024A1
    • 2011-01-20
    • US12560451
    • 2009-09-16
    • Gou-Chung ChiPing-Jung HuangChung-Wei ChenChing-Jen PanYu-Lun LiuFu-Chun Tsao
    • Gou-Chung ChiPing-Jung HuangChung-Wei ChenChing-Jen PanYu-Lun LiuFu-Chun Tsao
    • H01J27/02
    • H01J27/26H01J37/08H01J37/3171
    • A method for preparing an ion source from nanoparticles is provided. The method includes the steps of: providing nanoparticles, vaporizing the nanoparticles from a solid state to a gaseous state, and ionizing the gas to form the ion source. The ion source is prepared by placing solid nanoparticles in a stainless tube, heating and vaporizing the solid nanoparticles into a gaseous state, and ionizing the gas. The gas can be formed at a lower heating temperature than when solid lumps are used because solid nanoparticles have a lower melting point than solid lumps. Thus, the heating temperature is lowered, and the preparing time of the ion source is shortened. Besides, under the same temperature, an ion source prepared from nanoparticles provides higher vapor pressure and allows a higher implantation dose than when the ion source is prepared from solid lumps, thus expanding the applicability of ion implantation technology.
    • 提供了一种从纳米颗粒制备离子源的方法。 该方法包括以下步骤:提供纳米颗粒,将纳米颗粒从固体状态汽化成气态,并使气体离子化形成离子源。 离子源通过将固体纳米颗粒置于不锈钢管中,将固体纳米颗粒加热并汽化成气态并使气体离子化来制备。 气体可以在比使用固体块时低的加热温度下形成,因为固体纳米颗粒具有比固体块更低的熔点。 因此,加热温度降低,离子源的制备时间缩短。 此外,在相同温度下,从纳米颗粒制备的离子源提供更高的蒸气压力,并且允许比从固体块制备离子源时更高的注入剂量,从而扩大了离子注入技术的适用性。
    • 6. 发明申请
    • STOPPING AND POSITIONING MECHANISM FOR PIVOTAL DEVICE
    • 装置的停止和定位机制
    • US20090083943A1
    • 2009-04-02
    • US12147614
    • 2008-06-27
    • Chung Wei CHEN
    • Chung Wei CHEN
    • E05C17/64
    • G06F1/1681E05D11/082E05Y2900/606G06F1/1616Y10T16/54038
    • The present invention discloses a stopping and positioning mechanism for pivotal device, comprising a fixing part having a notch; a positioning part having a through hole and a protrusion; and a pivoting axle having a positioning portion; wherein the fixing part is disposed with a wrapping part therein, the protrusion of the positioning part is securingly fixed onto the notch of the fixing part, and the pivoting axle is passing through the through hole of the positioning part and pivoted within the wrapping part; when the pivoting axle is rotating, the positioning portion of the pivoting axle is abutted against the stop portion of the positioning part, thereby limiting the rotation angle of the pivoting axle.
    • 本发明公开了一种用于枢转装置的止动和定位机构,包括具有凹口的固定部分; 具有通孔和突起的定位部件; 以及具有定位部分的枢转轴; 其特征在于,所述固定部在其内设置有包裹部,所述定位部的突起被固定地固定在所述固定部的所述切口上,所述枢转轴穿过所述定位部的通孔,并且在所述包装部中枢转; 当枢转轴旋转时,枢转轴的定位部分抵靠定位部件的止动部分,从而限制了转动轴的旋转角度。
    • 7. 发明申请
    • Locating structure for slide rail
    • 滑轨定位结构
    • US20070278920A1
    • 2007-12-06
    • US11507893
    • 2006-08-22
    • Chung Wei Chen
    • Chung Wei Chen
    • A47B88/00
    • H04M1/0237
    • The present invention discloses a locating structure for slide rail, comprising a guide rail which is a rectangular plate disposed with a respective inward-turn slide groove on both sides of its bottom plate, wherein at least two locating holes at the predetermined locating positions are machined to form on the surface of the bottom plate; a slider which is a short frame whose slide plate on top extends to form a respective slide wing on its both sides corresponding to the slide grooves to form a socketingly connection, wherein a respective receiving hole is manufactured to form on both sides of the slide plate, a spring frame, disposed on the bottom of the slide plate and manufactured to form a ball hole on its bottom to socketingly connected with a rolling ball, extends upward an predetermined length from its both sides, respectively, and then bends inward to form a turn portion, respectively, one of which connects downward with a spring plate whose bottom contacts with the rolling ball and the other of which maintains a gap with the spring plate; when the slider slides, the two slide wings slide along the two slide grooves, respectively, and thus the rolling ball compresses the spring plate and moves along the bottom plate until the rolling ball reaches the locating hole to stretch the spring plate, such that the rolling ball falls into the locating hole to form a snapping engagement.
    • 本发明公开了一种用于滑轨的定位结构,其包括导轨,该导轨是在其底板的两侧上设置有相应的内转滑动槽的矩形板,其中在预定定位位置处至少两个定位孔被加工 在底板的表面上形成; 一个滑块,它是一个滑块,它的顶板上的滑板延伸,在与滑动槽对应的两侧上形成一个相应的滑动翼,形成一个横向连接,其中相应的容纳孔被制成形成在滑板两侧 设置在滑动板的底部并制造成在其底部形成球孔以与滚珠纵向连接的弹簧框架,分别从其两侧向上延伸预定长度,然后向内弯曲形成一个 转向部分分别与底部与滚动球接触的弹簧板向下连接,另一个弹簧板与弹簧板保持间隙; 当滑块滑动时,两个滑动翼分别沿着两个滑动槽滑动,因此滚珠压缩弹簧板并沿着底板移动,直到滚珠到达定位孔以拉伸弹簧板,使得 滚珠落入定位孔以形成咬合接合。