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MODE OF TUBE MANUFACTURE OF THERMOPLASTIC MATERIAL AND EQUIPMENT FOR CARRYING OUT THIS MODE

机译:热塑性塑料管制造模式及实现该模式的设备

摘要

1456222 Extruding tube N G PETZETAKIS M G PETZETAKIS and I DIAPOULIS 29 Nov 1973 [29 Nov 1972 2 Dec 1972 9 March 1973] 55522/73 Heading B5A A thermoplastics, or natural or synthetic rubber tube 3, Fig. 1, is extruded from the can extrusion head 1 and drawn around an internal sizing mandrel 4 along which its passage is facilitated by a layer of hydraulic lubricant, (is) entrained by the tube 3 from an annular space 9, between the head 1 and mandrel 4, containing the lubricant at a pressure which does not inflate the tube 3, the layer of lubricant, Fig. 3 (not shown), being of progressively decreasing thickness and increasing pressure along the mandrel, produced by radially inwardly directed forces acting on the tube. The radial forces may be produced by cooling of the tube 3, by a widened portion of the mandrel, or by the pressure at extrusion of a further layer around the tube 3. The tube may be of circular or elliptical section. The lubricant 14 is introduced gravitationally from a reservoir 11, at atmospheric pressure, or vacuum, and via lines 7 in the Fig. 1 embodiment, to the space 9. Lubricant may be leaked from the space 9, via pressure relief boxes 12, as shown in Fig. 9. In the Fig. 1 embodiment, the tube 3 is not stretched in being drawn around the mandrel 4, which is cylindrical, and through a cooling means 8 comprising sequential chambers 13, at different temperatures, producing the radial forces on the tube by shrinkage thereof. In the Fig. 4 embodiment, the extruded tube is cooled to a biaxial stretching temperature during passage through a first heat exchanger 8, around an upstream cylindrical portion 4a of the mandrel which is internally cooled. Biaxial stretching is effected around a conically widened part 4b of the mandrel followed by cooling during passage through a second cooling heat exchanger around a cylindrical mandrel part 4c. The radial forces on the tube are produced by the stretching at 4b, and cooling at 4c. Lubricant may also be supplied between the mandrel parts 4a and 4b. In the Fig. 9 embodiment, the extruded tube comprises an internal extruded layer passing around a cylindrical mandrel 4 with lubricant supplied to the chamber 9, and the mandrel 4 being cooled by coolant circulated via passages 20, 21. circumferential, and/or crossed, and/or parallel filamentary reinforcements 19, are applied at 18 prior to extrusion therearound at die 16 of an external layer, at a pressure producing the radial force on the layer 3.
机译:1456222挤出管NG PETZETAKIS MG PETZETAKIS和I DIAPOULIS 1973年11月29日[1972年11月29日1972年12月2日1973年3月9日] 55522/73标题B5A从罐头挤出机中挤出热塑性塑料或天然或合成橡胶管3(图1)。头部1围绕内部施胶芯棒4抽出,内部润滑芯棒4沿通道通过一层液压润滑剂,由管3从头部1和芯棒4之间的环形空间9夹带,其中润滑剂在在不使管3膨胀的压力下,图3(未示出)的润滑剂层具有逐渐减小的厚度,并且通过作用在管上的径向向内的力而沿心轴逐渐增大压力。径向力可以通过管3的冷却,心轴的加宽部分或通过围绕管3的另一层的挤压时的压力来产生。管可以是圆形或椭圆形的。润滑剂14在大气压或真空下从容器11重力地引入,并通过图1实施例中的管线7引入空间9。润滑剂可能会通过泄压箱12从空间9泄漏出,这是因为如图9所示。在图1的实施例中,管3在被拉成圆筒形的心轴4时并没有通过拉伸,而通过包括连续的腔室13的冷却装置8在不同的温度下被拉伸,从而产生径向力。通过收缩而在管上。在图4的实施例中,在经过第一热交换器8的过程中,在内部冷却的心轴的上游圆柱形部分4a周围,将挤出的管冷却至双轴拉伸温度。在心轴的圆锥形加宽部分4b周围进行双轴拉伸,然后在穿过第二冷却热交换器的过程中围绕圆柱形心轴部分4c进行冷却。通过在4b处拉伸并在4c处冷却产生作用在管上的径向力。也可以在心轴部分4a和4b之间供应润滑剂。在图9的实施例中,挤压管包括内部挤压层,该内部挤压层围绕圆柱形心轴4通过,润滑剂被供应到腔室9,并且心轴4被经由通道20、21循环的冷却剂冷却,所述冷却剂沿圆周和/或交叉通过。和/或平行的丝状增强材料19,在外层的模具16周围挤出之前,在18处施加压力,压力在层3上产生径向力。

著录项

  • 公开/公告号CS181257B2

    专利类型

  • 公开/公告日1978-03-31

    原文格式PDF

  • 申请/专利权人 GEORGE ARISTOVOULOS PETZETAKISGR;

    申请/专利号CS19730008230

  • 发明设计人 PETZETAKISARISTOVOULOS G.GR;

    申请日1973-11-29

  • 分类号B29D23/05;

  • 国家 CS

  • 入库时间 2022-08-22 22:55:02

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