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    • 3. 发明申请
    • 스파이럴 파이프 가공장치
    • 螺旋管加工设备
    • WO2013141557A1
    • 2013-09-26
    • PCT/KR2013/002223
    • 2013-03-19
    • 한보교지성알미늄주식회사
    • 한보교
    • B21H3/04B21H9/00
    • B21D11/06B21D43/006
    • 본 발명은 스파이럴 파이프 가공장치에 관한 것으로, 보다 상세하게는, 파이프의 소정의 간격내에 스파이럴을 가공함에 있어 투입부와 가공부 및 배출부를 일괄적으로 자동화하여 리드 각이 일정한 나선형 홈을 갖는 스파이럴 파이프를 효율좋게 제조할 수 있도록 함은 물론이고 전체공정인 투입부터 배출까지 자동화하여 제조공정의 효율성과 불량품의 최소화 및 작업의 신속성 및 경제성을 도모할 수 있도록 한 스파이럴 파이프 가공장치에 관한 것으로, 피가공물 파이프의 공급에서 가공을 거쳐 배출까지 자동 일괄적으로 처리함으로서 작업공정의 간편성과 함께 이로 인한 안전사고의 예방을 물론이고 기존의 불량률 발생을 현저히 저하함에 따른 제품의 안전성과 신뢰성을 향상시킬 수 있고 적은 인원을 가지고도 짧은 시간 내에 작업효율을 높일 수 있는 것이다.
    • 螺旋管加工装置技术领域本发明涉及一种螺旋管加工装置,更具体地说,涉及一种螺旋管加工装置,用于在预定间隙内处理用于管道的螺旋管,其中,批输出单元,处理单元和输出单元自动化 有效地制造具有均匀导程角的螺旋槽的螺旋管; 自动化从馈送到送出的整个过程,以提高制造过程的效率,最大限度地减少缺陷产品,提高工作的速度和经济性; 并自动批量处理从加工管道进料到加工到出料的一切,以简化工作过程,从而预防事故,大大减少现有方法产生的缺陷发生率,从而改善产品 安全可靠,即使人力较少,也能在短时间内提高工作效率。
    • 5. 发明申请
    • ROLL FORGING MACHINE AND ROLL FORGING METHOD
    • 滚压锻造机和滚压锻造方法
    • WO2016207016A1
    • 2016-12-29
    • PCT/EP2016/063544
    • 2016-06-14
    • MANYO CO., LTD.SCHULER PRESSEN GMBH
    • OCHI, ToshioBERGLAR-BARTSCH, KlausFRIZ, Reinhard
    • B21H1/22B21H9/00B21J9/02B21J13/10B25J9/04
    • B21H1/22B21H9/00B21J9/025B21J13/10B25J9/0096B25J15/0033B25J15/0266
    • The roll forging machine of this invention comprises a pair of roll dies (4) and (6) that are provided on a pair of roll driving axles (3) and (5) rotated by a driver and have a plurality of shaping dies (4a1-4a4; 6a1-6a4) formed thereon respectively, and carrying units for carrying materials to be shaped to a position for shaping with the dies, to a receiving position and to a carrying out position. The carrying units comprise a first robot (10) that has a robot hand (25) moving along a first rectangular route for movement (50A) including a straight route for movement in shaping (51) connecting the positions corresponding to the shaping positions with the plurality of shaping dies and a first route for turning aside (52) spaced apart on one side by a predetermined amount (L1) from the straight route for movement in shaping (51), and a second robot (30) that has a robot hand (45) moving along a second rectangular route for movement (50B) including the straight route for movement in shaping (51) and a second route for turning aside (53) spaced apart on the other side by a predetermined amount (L2) from the straight route for movement in shaping (51). A roll forging machine and a roll forging method are obtained in which materials to be shaped are fed to a pair of roll dies with two carrying units alternately and shaping with dies is performed successively.
    • 本发明的辊锻机包括一对辊模(4)和(6),其设置在由驱动器旋转的一对辊驱动轴(3)和(5)上,并具有多个成形模(4a1 -4a4; 6a1-6a4)和用于承载待成形材料的承载单元到用于与模具成形的位置到接收位置和执行位置。 携带单元包括具有机器人手(25)的第一机器人(10),其沿着第一矩形路线移动(50A)移动(50A),包括用于在成形(51)中移动的直线路线,其将与成形位置相对应的位置与 多个成形模具和第一路径,用于在一侧与所述直线路径间隔开预定量(L1),以便在成形(51)中移动;以及第二机器人(30),其具有机器人手 (45)沿着用于移动的第二矩形路线(50B)移动(50B),所述第二矩形路线包括用于在成形(51)中移动的直线路线和用于在另一侧间隔开预定量(L2)的第二路线(53) 直线运动路线(51)。 获得了一种辊锻造机和辊锻法,其中待成形的材料被交替地供给到具有两个承载单元的一对辊模,并且连续地进行与模具的成形。
    • 6. 发明申请
    • METHOD AND DEVICE FOR PRODUCING METAL ITEMS FROM METAL BLANKS
    • 方法和设备金属制品金属坯料生产
    • WO0160537A3
    • 2003-04-10
    • PCT/DE0100661
    • 2001-02-15
    • KAN TECH GMBHBOGUSLAVSKIJ BORIS
    • BOGUSLAVSKIJ BORIS
    • B21H7/00B21H7/10B21H9/00B21J9/02B21K11/02B21J7/18
    • B21K11/02B21H7/00B21H7/10B21H9/00B21J9/025
    • The invention relates to a method for producing metal items from metal blanks (1). The metal blank is positioned between two roller surfaces of two rollers (5), these roller surfaces being opposed and having means for being rolled out against each other from a starting position to an end position. A negative mold of the metal item to be produced is created with at least one recess in a roller surface. The process of positioning the metal blank in the starting position of the rollers takes place in the area of the recess. The rollers are then rolled out against each other from the starting position to the end position, the metal blank being shaped into the metal item by cold-forming as the rollers roll out; and the formed metal item is removed from the rollers. The invention is characterized in that the recess is configured with a variable depth curve in the directions parallel to a roller axis, at least in a partial area, and in the rolling-out direction of the rollers.
    • 本发明涉及一种方法,用于制造由金属坯料的金属制品(1),其特征在于,相对的和之间从初始位置到针对两个辊(5)的彼此可卷曲辊面的最终位置的金属坯件被定位,其特征在于,由在辊表面上的至少一个凹部中,所述负的形式 生产的金属制品适于将金属坯件的定位是在滚子的在凹部的区域中的初始位置,其特征在于,然后抵靠彼此辊从初始位置退绕到最终位置,在通过冷变形成形于金属制品的方式滚动的过程中,金属坯料, 并且其中,所述形金属制品除去辊。 它的特征在于,方向平行于轧辊轴线至少在一个部分区域以及与所述深度的变量过程中轧辊的轧制方向在所述凹部形成。
    • 7. 发明申请
    • METHOD AND DEVICE FOR PRODUCING METAL ITEMS FROM METAL BLANKS
    • 方法和设备金属制品金属坯料生产
    • WO01060537A2
    • 2001-08-23
    • PCT/DE2001/000661
    • 2001-02-15
    • B21H7/00B21H7/10B21H9/00B21J9/02B21K11/02B21B
    • B21K11/02B21H7/00B21H7/10B21H9/00B21J9/025
    • The invention relates to a method for producing metal items from metal blanks (1). The metal blank is positioned between two roller surfaces of two rollers (5), these roller surfaces being opposed and having means for being rolled out against each other from a starting position to an end position. A negative mold of the metal item to be produced is created with at least one recess in a roller surface. The process of positioning the metal blank in the starting position of the rollers takes place in the area of the recess. The rollers are then rolled out against each other from the starting position to the end position, the metal blank being shaped into the metal item by cold-forming as the rollers roll out; and the formed metal item is removed from the rollers. The invention is characterized in that the recess is configured with a variable depth curve in the directions parallel to a roller axis, at least in a partial area, and in the rolling-out direction of the rollers.
    • 本发明涉及一种用于制造由金属坯料的金属制品的方法,其特征在于,相对的和之间从初始位置到针对两个辊的相互可卷曲辊面的最终位置的金属坯件将被定位,其特征在于,通过至少一个凹槽具有的金属制品的负形状被设置在辊表面上, 金属坯料在滚子的在凹部的区域中的初始位置时,定位其中然后对彼此辊从初始位置到最终位置,通过冷变形到金属制品的方法的轧制成形过程中的金属坯件,并且其中,退绕的成形金属制品 辊被去除。 它的特征在于,方向平行于轧辊轴线至少在一个部分区域以及与所述深度的变量过程中轧辊的轧制方向在所述凹部形成。