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    • 1. 发明公开
    • V자형 궤도면 연삭 방법
    • 用于V形形状表面的研磨装置和研磨方法
    • KR1020110045369A
    • 2011-05-04
    • KR1020090101918
    • 2009-10-26
    • (주)원에스티
    • 이택원
    • B24B19/00E01B31/12
    • B24B19/00B24B13/01B24B27/0069E01B31/12
    • PURPOSE: An apparatus and a method for grinding a V-shaped rail surface are provided to prevent scratches on a rail surface by rapidly discharging grinding chips and to reduce the quantity of dressing works. CONSTITUTION: An apparatus for grinding a V-shaped rail surface comprises a cup-shaped frame(115) and a cup-shaped grinding tool(100). One side of the cup-shaped frame is opened, and the other side is closed. A socket is formed in the center of the closed side of the cup-shaped frame and is coupled to a rotary shaft(135). An annular grindstone(125) of the cup-shaped grinding tool is coupled to the end of the opened side of the cup-shaped frame. The rotary shaft of the cup-shaped grinding tool is vertically installed on a first rail surface, which is dented in a V-shape, or a second rail surface which is protruded in a V-shape.
    • 目的:提供一种用于研磨V形导轨表面的设备和方法,以通过快速排出磨屑并减少敷料的数量来防止轨道表面上的划痕。 构成:用于研磨V形轨道表面的装置包括杯形框架(115)和杯形研磨工具(100)。 杯形框架的一侧打开,另一侧关闭。 在杯形框架的封闭侧的中心形成有插座,并且连接到旋转轴(135)。 杯形研磨工具的环形磨石(125)联接到杯形框架的敞开侧的端部。 杯状研磨工具的旋转轴垂直地安装在V形凹陷的第一轨道表面或V形突出的第二轨道表面上。
    • 2. 发明公开
    • 안경 렌즈 가공장치
    • 加工眼镜镜片的设备
    • KR1020180010450A
    • 2018-01-31
    • KR1020160092555
    • 2016-07-21
    • 주식회사 휴비츠
    • 견병우
    • B24B13/01B24B55/00
    • B24B13/01B24B9/146B24B55/00
    • 캐리지의이송부하에영향을끼치지않으면서렌즈가공시 가공챔버내에서분사되는물이가공챔버의외측으로누수되지않도록차단할수 있는안경렌즈가공장치가개시된다. 본발명에따른안경렌즈가공장치는, 가공될렌즈의양면을고정하는한 쌍의렌즈고정샤프트를지지하면서렌즈고정샤프트의위치를변동시키는캐리지와, 렌즈고정샤프트가관통하도록설치되며렌즈가가공되는내부공간을형성하는가공챔버와, 가공챔버에슬라이딩이동가능하게설치되며렌즈고정샤프트가관통하는샤프트홀이형성되는슬라이더를포함하되, 슬라이더는렌즈가공시 가공챔버내측에서분사되는물이렌즈고정샤프트의표면을타고샤프트홀을통과하면서모세관현상에의해가공챔버의외측으로누수되지않도록유도하는모세관현상유도부를구비할수 있다.
    • 水在处理腔室处理多达透镜而不影响可泄漏到处理腔室的外部公开被阻止滑架负荷眼镜透镜加工装置的运送期间注入。 根据本发明的眼镜透镜加工装置,同时支持在一对透镜的对的两个表面固定固定轴被加工透镜与滑架,以改变透镜固定轴的位置,它被设置在透镜固定轴,以穿过一个透镜加工 一个滑块,所述透镜的轴孔是贯通形成固定轴,所述滑动件是水的透镜固定轴透镜处理期间将处理室内部注入:与处理腔室限定的内部空间,在该处理腔室,其包括可滑动地安装 以及毛细管现象感应单元,用于在通过轴孔时通过毛细管现象将毛细管引导到处理腔室的外部。
    • 4. 发明公开
    • 비구면 렌즈 연마 장치
    • 非球面透镜抛光装置
    • KR1020150028922A
    • 2015-03-17
    • KR1020130107287
    • 2013-09-06
    • 인하대학교 산학협력단
    • 조명우이정원하석재조용규김병민
    • B24B13/00B24B13/01
    • B24B13/00B24B13/01
    • 본 발명의 비구면 렌즈 연마 장치는 비구면 렌즈를 연마하는 림(Rim)을 구비하는 휠부재; 상기 휠부재와 연결되어 상기 휠부재에 자기장을 형성시키는 자기장 공급수단; 상기 휠부재에 인접하게 배치되어, 상기 휠부재의 림 표면으로 MR유체를 공급하는 MR유체 공급수단; 상기 휠부재에 인접하게 배치되어, 상기 MR유체 표면으로 연마재를 공급하는 연마재 공급수단; 및 상기 비구면 렌즈의 가공면과 상기 휠부재의 회전면을 수직하게 유지하면서 상기 비구면 렌즈를 회전시키는 비구면 렌즈 틸팅부를 포함한다.
      본 발명에 비구면 렌즈 연마 장치에 의하면, 연마된 비구면 렌즈의 표면 거칠기 및 형상의 정도를 개선하여, 연마가 완료된 비구면 렌즈의 광 투과율을 향상 시킬 수 있을 뿐 아니라, 모든 비구면 렌즈의 연마지점에서의 재료 제거율을 동일하게 유지하여 연마 가공에 따른 형상의 오차를 최소화 할 수 있다.
    • 本发明涉及一种用于抛光非球面透镜的设备,包括:轮构件,其具有用于抛光非球面透镜的边缘; 与所述车轮构件连接以在所述车轮构件中形成磁场的磁场供给装置; 布置成与所述车轮构件相邻以将MR流体供应到所述车轮构件的轮缘表面的MR流体供应装置; 研磨材料供给装置,布置成与所述轮构件相邻以向所述MR流体的表面提供研磨材料; 以及非球面透镜倾斜部,其使非球面透镜旋转,同时保持非球面透镜的工作表面垂直于轮构件的旋转表面。 本发明提高了非球面透镜的光透射率,其中通过提高抛光非球面透镜的表面粗糙度和形状度来完成抛光,并且通过在抛光点保持相同的材料去除率来最小化由抛光引起的形状的误差 的所有非球面透镜。
    • 6. 发明公开
    • 다이아몬드 접시형 숫돌 및 구면렌즈의 연삭방법
    • 金刚石碟形磨石和球面镜片研磨方法
    • KR1020110125568A
    • 2011-11-21
    • KR1020100063698
    • 2010-07-02
    • 카부시키가이샤하루치카세이미쯔
    • 가스가요이치
    • B24D7/06B24B13/02B24D3/10B24B13/01
    • B24B13/01B24B13/02B24D3/10B24D7/06
    • PURPOSE: A diamond dish-shaped grind stone and a method of grinding spherical lens are provided to increase the precision of a cut surface since the cut scratch of a grinding surface due to grind stone decreases without decrease in the cutting speed of the grind stone. CONSTITUTION: A diamond dish-shaped grind stone(60) comprises a body(62), a stone layer(63), and stone particles(65). The body comprises a spherical surface(61) complementary to the spherical surface of a lens. A given thickness of stone layer is stacked on the spherical surface. The stone particles are protruded from the surface(63a) of the stone layer. The frictional correction between grind stones is performed on the stone particles and the difference(ΔH) between the maximum protrusion(H1) and minimum protrusion(H2) of the stone particles is below a given value.
    • 目的:提供一种金刚石碟形磨石和球面透镜的研磨方法,以提高切削面的精度,因为研磨表面由于磨石而产生的切割痕迹降低,而磨削石的切割速度却不降低。 构成:金刚石碟形磨石(60)包括主体(62),石层(63)和石颗粒(65)。 主体包括与透镜的​​球面互补的球面(61)。 给定厚度的石层堆叠在球面上。 石颗粒从石层的表面(63a)突出。 研磨石之间的摩擦校正在石颗粒上进行,并且石颗粒的最大突起(H1)和最小突起(H2)之间的差(ΔH)低于给定值。
    • 7. 发明授权
    • 자유곡면가공공구
    • KR100448249B1
    • 2004-12-08
    • KR1019970062906
    • 1997-11-25
    • 이가가쿠겐큐쇼이케가미 금형고교가부시키가이샤
    • 오오모리,히토시
    • B23Q15/00
    • B24B53/07B24B13/01B24D7/10
    • In a free form machining tool 10 for machining a surface to be machined while bringing the lower end into contact with the surface to be machined by a rotation around an axis z, the tool comprises a spherical tool 12 having a spherical surface machining section 13 on the lower portion, and a bearing 14 for supporting the spherical tool by an axis a of rotation which passes through the center O of the spherical surface and is different from the axis. The tool also includes rotating means 16 (for example, a turbine) for rotating the spherical tool around the axis of rotation. Thus, even if the spherical surface machining section comes into contact with the surface to be machined on the axis (radius: 0) of the tool, the spherical surface machining section is rotated around the axis a of rotation which is different from the axis z. Therefore, a peripheral speed of the axis is not zero (0). It is possible to efficiently work a freely curved surface with high accuracy and high quality by the use of a conventional three-axial NC machining apparatus.
    • 在自由曲面加工工具10中,加工要加工的表面,同时通过围绕轴线z的旋转使下端与要加工的表面接触,该工具包括球形工具12,球形工具12具有在其上的球面加工部分13 下部以及用于通过穿过球面的中心O且与轴线不同的旋转轴线a来支撑球形工具的轴承14。 该工具还包括用于围绕旋转轴线旋转球形工具的旋转装置16(例如涡轮机)。 因此,即使球面加工部与刀具的轴线(半径:0)上的被加工面接触,球面加工部以与轴线z不同的旋转轴线a为中心旋转 。 因此,轴的圆周速度不为零(0)。 通过使用传统的三轴数控加工设备,可以高精度和高质量地高效地加工自由曲面。 <图像>
    • 8. 发明授权
    • 형상제어방법과이방법에의한NC가공장치
    • KR100393740B1
    • 2003-11-20
    • KR1019960706915
    • 1996-08-14
    • 리까가쿠 켄큐쇼
    • 모리야수세이오오모리히토시나카가와타케오야마구치이치로우카토쥰이치
    • B23Q15/00
    • B24B13/01B24B51/00B24B53/001B24B57/00G05B19/4166G05B2219/34048G05B2219/37365G05B2219/37574G05B2219/37576G05B2219/40166G05B2219/45156G05B2219/45157G05B2219/49251G05B2219/50063
    • An electrode (4) is disposed spaced away from and in facing relation with an electrically conductive grinding wheel (2). There is applied a voltage across the grinding wheel and the electrode with making electrically conductive fluid (7) flow between the grinding wheel and the electrode. A position of the grinding wheel is numerically controlled with the grinding wheel being dressed by electrolysis to thereby grind a work with the grinding wheel. The work is ground in accordance with command data Zx , and then a shape of a ground surface is measured by means of a measuring device (12). The measurement data is filtered to thereby record shape error data ex . There is established new command data Zx by adding compensation, and then the work is ground again with the thus established new command data. The compensation refers to past command data, and determines new command data to be equal to an expected value of the past command data. In accordance with the present invention, it is possible to obtain higher shape accuracy with the less number of processing steps, extract real shape indicating signals out of measurement data, and avoid misregistration of a work which would be caused by fixing/removing.
    • 电极(4)与导电研磨轮(2)间隔开并与其面对面地设置。 在砂轮和电极之间施加电压,使得导电流体(7)在砂轮和电极之间流动。 砂轮的位置通过电解修整砂轮的数值来控制,从而用砂轮磨削工件。 根据指令数据Zx <(i)研磨该工件,然后借助测量装置(12)测量地表的形状。 测量数据被过滤以由此记录形状误差数据ex(i)。 建立了新的命令数据Zx&lt;(i + 1)&gt; 通过增加补偿,然后用这样建立的新的指令数据重新进行工作。 补偿参考过去的命令数据,并且确定新的命令数据等于过去的命令数据的期望值。 根据本发明,能够以较少的处理步骤获得较高的形状精度,从测量数据中提取实际形状指示信号,并且避免由于固定/去除而导致的工件的定位不准。 &lt;图像&GT;
    • 10. 发明授权
    • 렌즈 표면 정밀도 향상을 위한 자동정압 폴리싱장치
    • 自动恒压抛光装置
    • KR100771114B1
    • 2007-10-29
    • KR1020060112910
    • 2006-11-15
    • 한국기초과학지원연구원(주)그린광학
    • 김건희양순철김동균김영주박학주
    • B24B13/00
    • B24B13/01B24B41/002B24B49/16
    • An automatic constant pressure polishing device for improving lens surface processing accuracy is provided to perform a delicate polishing process by maintaining its pressure constant. An automatic constant pressure polishing device for improving lens surface processing accuracy comprises a housing(10), a rubber pad(20), a pressure fixing unit(30), a slider(40), and a polishing pad(70). An inner part of the housing is hollow, and the flexible rubber pad is mounted at an inside of the housing. An outer peripheral surface of the pressure fixing unit is formed in a shape of a male screw(31) to push and fasten the rubber pad, and a center hole(33) is positioned at the center portion of the pressure fixing unit. The slider is screwed to the inside of the housing to control pressure of the inside for the housing according to a rotation degree. The polishing pad is mounted at a front end of the housing. The housing includes a polishing pad rest(11), a pressure fixing unit rest(13), and a slide rest(15) from its front end.
    • 提供了一种用于提高透镜表面加工精度的自动恒压抛光装置,以通过保持其压力恒定来执行精细的抛光工艺。 一种用于提高透镜表面加工精度的自动恒压抛光装置,包括壳体(10),橡胶垫(20),压力固定单元(30),滑块(40)和抛光垫(70)。 壳体的内部是中空的,并且柔性橡胶垫安装在壳体的内部。 压力定影单元的外周面形成为外螺纹(31)的形状,以推压和紧固橡胶垫,并且中心孔(33)位于压力定影单元的中心部分。 滑块被拧到壳体的内部,以根据旋转程度控制壳体的内部压力。 抛光垫安装在壳体的前端。 壳体包括从其前端的抛光垫座(11),压力固定单元支架(13)和滑动支架(15)。