![]() Method of longitudinal sewing
专利摘要:
1503482 Piercing tubes NIPPON STEEL CORP 14 July 1976 [18 July 1975] 29277/76 Heading B3M A metal billet 3-1 of polygonal cross-section is rolled to a tube by pushing it between a pair of grooved rolls 4, 4<SP>1</SP> defining a circular pass, a plug 7 being located within the pass such that the billet contacts the grooves rolls before contacting the plug. The rolls therefore tend to grip and centre the billet before it is pierced. A polygonal guide 5, or guide rollers are used upstream of the rolls. 公开号:SU784743A3 申请号:SU762389403 申请日:1976-07-16 公开日:1980-11-30 发明作者:Есивара Сеисиро;Кавахарада Минору;Янагимото Самон 申请人:Ниппон Стил Корпорейшн (Фирма); IPC主号:
专利说明:
(54) METHOD FOR LONGITTED FIRMWARE one This invention relates to a pipe making industry and relates to a method for producing seamless hot rolled tubes by longitudinal rolling. There is a method of longitudinal piercing, including the forced feeding of a multi-faceted solid billet to rolls with a round caliber and its deformation by rolls on a mandrel with a tapered front end 1. sixteen For a known press-press firmware method, the simultaneous contact of the workpiece with the rollers and with the tapered front end of the mandrel is characteristic. This leads to the fact that, at the initial moment of flashing, the friction force on the surface of the contact of the metal with the rolls is insufficient, and the resistance of the mandrel is considerable, and reliable gripping of the metal with the rolls is not ensured. An increase in the pushing force causes the bending of the workpiece or the mandrel bar, resulting in an increased spacing of the sleeves. 25 The aim of the invention is to improve the conditions of capture and reduce the difference in wall thickness of the sleeves. The goal is achieved by creating a method of longitudinal firmware,, o including compulsory, feeding m of a foot-dipped solid workpiece to rollers with a round caliber and its deformation by rollers on a mandrel with a tapered front end, in which the mandrel is mounted with a forward tapered end at a distance equal to 0.4 - 0.15 of the diameter of the roll gauge from the contact section billet with rollers and is subjected to a blank of deformation on the ego site. Due to the fact that the contact of the metal with the mandrel takes place much later than with the caliber of the rolls, the conditions for gripping are improved and the spacing of the sleeves is reduced. FIG. 1 isobrgiken deformation; in fig. 2 is a section A-A in FIG. one; in fig. 3 - section BB on 4- section bb on FIG. one; in fig. 5 - section GGD in FIG. one; in fig. FIG. one; in fig. 6 is a graph showing the improvement in liner differences obtained by the proposed method in FIG. 7 is a cage, side view, in section in FIG. 8 - a stream of rolls, front view.
权利要求:
Claims (1) [1] The essence of the method lies in the fact that the multi-faceted workpiece 1 forcibly pushes to rolls 2 and 3: having a circular gauge, and the workpiece sequentially changes its profile, the passage through section AA, BV-B, for example, from a square in eight gon. Then, meeting in section B-B with the end of the mandrel 4, located at a distance of 0.15 of the cal diameter from section A-A, the blank is formed into a circle and acquires an internal opening. FIG. Figure 1 introduces the distance L from the section AA to the meeting of a rectangular billet with rollers to a front conical end of a mandrel of 0.15 of the diameter of the caliber equal to the diameter L of the outgoing sleeve. The ratio U / d and the difference of the obtained liner are reflected in the graph in FIG. s With L / d O, the clamping point and the end of the mandrel are in the same position, with the usual method, with L / d O, the clamping point is offset to the outlet from the end of the mandrel, and when U / d 7 O, the contact point is offset to the input. As the L / d ratio increases, the wall thickness gradually decreases, and the one-sided wall thickness reduction starts at L / d 0.1 L. The unevenness of the wall thickness in this process is about 25%, and at L / d / 0.1 H the wall thickness becomes less than 2%. In case L / d 70,15, the coal sections of the billet are rolled to such an extent as to prevent the end portion of the billet from bending due to the force of the backpressure, and the billet can be held by means of rolls. The U / d ratio can be further represented by the diameter of the caliber, the radius of the day, the roll of the roll (), the height h of the workpiece, width b of the workpiece, and the distance M from the center of the rolls to the beginning of the tapered end of the mandrel. In the case of a rectangular billet, the area that is in contact with the color of the roll in the first section A-A is the corner part (see Fig. 5). As shown in FIG. 8 ,, roll radius R in the corresponding position is equal to. A) One-sided reduction of DL pr by rolling in this position is equal to: The length K of the contact arc of the roll on the section is: Kd-and-ln - 12Ll ,, (3) also. () Accordingly, from equations (1), (2), ( 3), (M i- / i vr§M JK-fRF yd in case the workpiece has a polygonal shape or if the shape of the roll gauge is not round, the L / d ratio can be obtained in a similar way. As already mentioned, the L / d ratio can be represented by the quantities KO d, b, t) and M. It is advisable to choose 2.5, 0.7 b / d 0.96; 0,7 ti / d 1,2, O Namely, in the case of an increase in the internal diameter. Exits for the rear part from the center of the rolls, this increases the stiffness, the shape of the circumference surface. The more, the larger the values of Yad, b / b are set and the smaller the value of M is set, the greater the ratio L / d. Given the ratio U / d 0.15, the quality of the pipe was also satisfactory. With respect to the upper limit of the L / d value, it is 0.4 in terms of design and installation in a conventional mandrel stand, Example. The firmware was made using a roll diameter of 420 mm, a gap between the rolls of 4 mm, a stream diameter of 94.1 mm and L 14 mm and a L / d ratio of 0.15 in one case, and in the second case L - 28 mgl and a L / d ratio - 0.3. As a result, the flatness was 22% and 12% compared with the difference in 51% obtained by flashing the workpiece, which occurs simultaneously with the rollers and the mandrel. Thus, the proposed method can significantly reduce the wall thickness of the sleeves. Claims The method of longitudinal flashing, including the forced feeding of a continuous solid to the rolls with a round caliber and its deformation by the rolls on a mandrel with a tapered front end, characterized in that, in order to improve the conditions for gripping and reducing the thickness of the sleeves, the mandrel is mounted with a forward tapered end at a distance of 0.4 -. 0.15 diameter caliber rolls, from the cross section of the contact of the workpiece with the rollers and is subjected to this section of the workpiece without revising. deformations. Sources of information taken into account in the examination 1.. Author's certificate of the USSR 472702, cl. B 21 B 17/00, 1974 .. A .6 to G I i i A 5 in g
类似技术:
公开号 | 公开日 | 专利标题 EP0601932B1|1998-05-13|Method for elongating metal tubes by means of a mandrel mill SU784743A3|1980-11-30|Method of longitudinal sewing SU724078A3|1980-03-25|Sleeve for making seamless tubes EP0519705B2|2001-03-21|Mandrel mill capable of preventing stripping miss SU749469A1|1980-07-25|Technological tool for skew-roll piercer SU598666A1|1978-03-25|Production tool of three-high expanding mill SU623595A1|1978-08-20|Method of helical expansion of tubes in three-high mill SU1477485A1|1989-05-07|Two-roll pass for rolling mill SU670350A1|1979-06-30|Pass of roll for pilgrim-step tube-rolling SU1113193A1|1984-09-15|Method of rolling tubes SU1061864A1|1983-12-23|Pass for pilger tube rolling SU789171A1|1980-12-23|Piercing mill guard US2050236A|1936-08-04|Apparatus for forming tubular blanks SU549183A1|1977-03-05|The method of rolling on the rolling mill RU2048219C1|1995-11-20|Method for manufacture of pipes from nonferrous metals and alloys SU1225629A1|1986-04-23|Method of pilger rolling of tubes RU2232658C1|2004-07-20|Method for bending channel bar GB2099346A|1982-12-08|Tube rolling mill RU1807898C|1993-04-07|Method of screw rolling SU871857A1|1981-10-15|Support strip of roller mill for die rolling of tubes US2025147A|1935-12-24|Apparatus for expanding and elongating tubular work pieces SU1764726A1|1992-09-30|Method for longitudinal rolling of tubing SU1017396A1|1983-05-15|Pass of rolls for pilger rolling of tubes SU1268221A1|1986-11-07|Roll for three-high mill SU566640A1|1977-07-30|Billets for cross-helical tube rolling
同族专利:
公开号 | 公开日 JPS5211156A|1977-01-27| GB1503482A|1978-03-08| FR2317973B1|1980-11-14| FR2317973A1|1977-02-11| DE2631562C2|1985-01-24| DE2631562A1|1977-01-20| JPS5536001B2|1980-09-18| RO71341A|1982-05-10| US4052874A|1977-10-11| CA1036394A|1978-08-15| BR7604675A|1977-08-02| IT1062259B|1984-02-01|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 RU2721253C1|2019-09-09|2020-05-18|Общество с ограниченной ответственностью "ФБТ" |Method for manufacture of long hollow articles and device for its implementation|DE100452C| US721210A|1901-10-03|1903-02-24|Max Mannesmann|Art of rolling tubes.| FR1224904A|1958-02-05|1960-06-28|Method and piercing rolling mill, press, for the transformation of ingots or solid bars into hollow blanks intended for the manufacture of seamless tubes| DE1302427B|1963-07-04|1972-05-04|Calmes, Jean-Paul, Mont-sur-Lausanne |Process for the production of a cylindrical hollow body by press hole rolling|IT1115518B|1977-04-21|1986-02-03|Innocenti Santeustacchio Spa|ENTRANCE GUIDE FOR PERFORATOR-LAMINATE| EP0632752A4|1992-03-23|1997-04-23|George N Mosey|Piercing mill for seamless tube manufacture.| JP5459347B2|2012-04-18|2014-04-02|新日鐵住金株式会社|Round billet for seamless metal pipe and method for producing seamless metal pipe| DE102012107041B4|2012-08-01|2014-05-15|Benteler Deutschland Gmbh|Method and device for producing a metallic hollow block from a metallic block| JP2020112146A|2019-01-17|2020-07-27|三菱日立パワーシステムズ株式会社|Turbine rotor blade and gas turbine|
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申请号 | 申请日 | 专利标题 JP8803175A|JPS5536001B2|1975-07-18|1975-07-18| 相关专利
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