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    • 3. 发明公开
    • VORRICHTUNG ZUM VERBINDEN VON AUFEINANDERFOLGEND IN EINE BANDBEHANDLUNGSANLAGE EINLAUFENDEN METALLFLACHPRODUKTEN
    • 紫罗兰UM EN V ON ON TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN TEN
    • EP2948259A1
    • 2015-12-02
    • EP14700661.3
    • 2014-01-15
    • ANDRITZ Sundwig GmbH
    • BOGUSLAWSKY, KlausSTÖRMER, Patrick
    • B21C47/24B21D39/03B21B15/00
    • B21D35/001B21C47/247B21D39/031B21D39/035Y10T29/49915Y10T29/49936Y10T29/53709Y10T29/53996
    • An apparatus according to the invention for connecting metal strips (M1, M2) running successively into a strip treatment installation (A) comprises two cutting punches (4, 5) with in each case a cutting edge (18-20), which is assigned to a cutting edge (18-20) of the other cutting punch (4, 5) respectively. The cutting punches (4, 5) are movable in a cutting movement along a cutting axis (S), in order to introduce a cut into two successive end portions of the metal strips (M1, M2) and establish an undetachable connection in an adjacent region by deformation. In the same position with respect to the cutting axis (S), the cutting edges (18-21) of the cutting punches (4, 5) delimit a cutting gap (22, 23), which extends in the transverse direction (Q) and assumes a gap width (BS) in a width direction (B) aligned at right angles in relation to the transverse direction (Q) and to the cutting axis (S). According to the invention, optimal guidance of the cut is achieved by the cutting edges (18, 20; 19, 21) forming an acute angle (β) with the transverse direction (Q), as seen from the cutting direction (S), and by the cutting punches (4, 5) being adjustable in relation to one another in the transverse direction (Q) of the cutting gap (22, 23) for changing the gap width (BS).
    • 用于连接连续进入条带处理设备的金属条的装置包括两个切割冲头,其具有与相应的另一个切割冲头的切割边缘相关联的相应的切割边缘。 切割冲头在切割运动中可沿着切割轴线移动,以通过变形在相邻区域中产生不可脱离的连接。 在相对于切割轴线相同的位置,切割冲头的切割边缘限定了沿横向延伸的切割间隙,并且占据与横向方向成直角定向的宽度方向上的间隙宽度和切割 轴。 从切割方向看,切削刃包括与横向方向的锐角,并且切割冲头可在切割间隙的横向方向上相对于彼此移动以改变间隙宽度。
    • 7. 发明公开
    • ACOUSTIC EMISSION INDICATIONS OF DEFECTS FORMED DURING ELONGATED METAL MATERIALS MANUFACTURING PROCESSES
    • 新浪微博腾讯微博人人网腾讯微博人人网开心网人人网腾讯微博人人网开心网人人网腾讯微博
    • EP3108234A1
    • 2016-12-28
    • EP15709852.6
    • 2015-02-16
    • ANDRITZ Sundwig GmbH
    • AURA, KariHAASE, Hartmut
    • G01N29/14
    • G01N29/14G01N29/48G01N2291/0234G01N2291/0258
    • A method of detection of defects in a manufacturing process of an elongated metallic material (1) which manufacturing process is accomplished by rolls (3, 6) which rolls (3, 6) reduce the cross section of the elongated metallic material (1) thinner and/or divert or guide the path of the elongated metallic material (1). The formation and/or existence of defects of the elongated metallic material (1) is detected by sensing acoustic emission transmitted by origination or advance of the defects and the detection is accomplished by at least one acoustic emission (AE) sensor (9) having direct or indirect contact with the elongated metallic material (1) which AE sensor (9) transduces the sensed acoustic emission to electric signals and the signals are received by an analyzing unit (21) which is capable of detecting the indication and reporting time coded indication and/or the indicative amplitude of the originated or advanced defects.
    • 一种在细长金属材料(1)的制造过程中检测缺陷的方法,其制造过程由辊(3,6)完成,辊(3,6)使辊(3,6)减少细长金属材料(1)的横截面变薄 和/或转移或引导细长金属材料(1)的路径。 细长金属材料(1)的缺陷的形成和/或存在通过感测由缺陷的发生或进展而发射的声发射来检测,并且该检测是由至少一个具有直接的声发射(AE)传感器 或者与AE传感器(9)将检测到的声发射转换成电信号的细长金属材料(1)的间接接触,并且该信号由能够检测指示和报告时间编码指示的分析单元(21)接收, /或起始或高级缺陷的指示性幅度。