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    • 2. 发明申请
    • STAMP-FORMED MUFFLER HAVING A UNITARY INNER CARTRIDGE
    • 具有单体内盒的冲压成型的打孔机
    • WO1998042965A1
    • 1998-10-01
    • PCT/US1997004955
    • 1997-03-24
    • ARVIN INDUSTRIES, INC.HEROLD, Andrew, J.
    • ARVIN INDUSTRIES, INC.
    • F01N07/18
    • F01N13/1872F01N1/08F01N1/083F01N2450/30F01N2470/04
    • A muffler assembly (10, 210, 350) includes top outer shell (12), bottom outer shell (14), and drop-in inner cartridge (16, 212, 352) positioned to lie between top and bottom outer shells (12, 14). Top outer shell (12) abuts bottom outer shell (14) to define seam (71). Seam (71) includes inner surface (73) facing into interior cartridge-receiving chamber (76) defined between top and bottom outer shells (12, 14). Drop-in inner cartridge (16, 212, 352) includes outer edge (75) abutting inner surface (73) of seam (71) to cause drop-in inner cartridge (16, 212, 352) to lie wholly within interior cartridge-receiving chamber (76). Drop-in inner cartridge (16, 212, 352) includes inlet and outlet tubes (86, 88, 214, 216, 354, 356) and baffle system (23, 215, 357) having first side (142, 272) connected to top side (91, 231) of inlet tube (86, 214, 354) and second side (150, 280) connected to bottom side (97, 237) of outlet tube (88, 216, 356). Baffle system (23, 215) includes baffle (20, 220) having perimeter edge (98, 239). Perimeter edge (98, 239) engages top wall (36) of top outer shell (12) and bottom wall (56) of bottom outer shell (14).
    • 消音器组件(10,210,350)包括顶部外部壳体(12),底部外部壳体(14)以及定位成位于顶部和底部外部壳体(12,212,352)之间的插入式内部盒体(16,212,352) 14)。 顶部外壳(12)邻接底部外壳(14)以限定接缝(71)。 接缝(71)包括面向限定在顶部和底部外部壳体(12,14)之间的内部容纳腔室(76)的内表面(73)。 入口内筒(16,212,352)包括邻接接缝(71)的内表面(73)的外边缘(75),以使落入的内筒(16,212,352)完全位于内盒内, 接收室(76)。 入口内筒(16,212,352)包括入口管和出口管(86,88,214,216,354,356)和挡板系统(23,215,357),其具有连接到 入口管(86,214,354)的顶侧(91,231)和连接到出口管(88,216,356)的底侧(97,237)的第二侧(150,280)。 挡板系统(23,215)包括具有周边边缘(98,239)的挡板(20,220)。 周边边缘(98,239)接合顶部外壳(12)的顶壁(36)和底部外壳(14)的底壁(56)。
    • 6. 发明专利
    • DE2201996C3
    • 1979-11-29
    • DE2201996
    • 1972-01-17
    • ARVIN INDUSTRIES, INC., COLUMBUS, IND. (V.ST.A.)
    • SCHEITLIN, GEORGE EDWARDLITTLE, RICHARD FREDERICK
    • F01N3/20F01N3/28F01N3/34F01N3/10
    • 1330961 Treating exhaust gas ARVIN INDUSTRIES INC 29 July 1971 [10 May 1971] 35666/71 Heading F1B Catalytic converter for purifying exhaust gas comprises an elongated shell 10 closed by end caps 12, 13, a conversion chamber 16 for holding catalytic material supported in the chamber by means 18 to form a by-pass passage around the chamber, a first gas inlet 40 opening into the chamber, a second gas inlet 55 opening into the by-pass passage, at least one gas outlet 57 opening into the chamber and the by-pass passage and valve means 61 for selectively directing the gas flow through the chamber or the by-pass passage. The chamber 16 consists of a sleeve partitioned by four perforated plates 25, 26, 27 and 28 into two compartments 29, 30 each adapted to hold catalytic material, which can be filled through openings 34 closable by plugs 36. The ends of the sleeve are closed by plates 44 and 51. An inlet conduit 40 passes through flanged openings 41, 42 in the end cap 12 and end plate 44 respectively, the gas entering through this conduit being distributed by a perforated baffle plate 46. A branch 55 from the conduit 40 passes through a flanged opening in the end cap 12, gas entering through this branch passing along the by-pass passage through holes in the supports 18. At the outlet end, a first conduit 57 leads from the space between the end cap 13 and the end plate 51, and a branch conduit leads from the space between end plate 51 and perforated plate 28. The gases in the chamber 29 are subjected to a reducing reaction and are subsequently subjected to an oxidizing reaction in the chamber 30. To assist in creating an oxidizing atmosphere in the chamber 30 a pipe 63 passes diametrally across the shell and has apertures 64 from which compressed air issues to mix with the gas stream. In a modification, Fig. 6 (not shown) the branch 55 is omitted and there is a hole through the end plate 44. The valve is transferred to the junction of the first conduit and branch conduit at the outlet end. In a second modification, Fig. 8 (not shown) the inlet conduits and valve are arranged as shown in Fig. 1 and there is a single outlet conduit which passes through a flanged opening in the end cap 13. In a third modification Fig. 8 (not shown) the inlet conduits are again as in Fig. 1 and the gas outlet consists of a conduit passing through flanged openings in the end cap 13 and end plate 51 and in addition an opening through the end plate 51.
    • 9. 发明专利
    • DE2201996B2
    • 1979-04-05
    • DE2201996
    • 1972-01-17
    • ARVIN INDUSTRIES, INC., COLUMBUS, IND. (V.ST.A.)
    • SCHEITLIN, GEORGE EDWARDLITTLE, RICHARD FREDERICK
    • F01N3/20F01N3/28F01N3/34F01N3/10
    • 1330961 Treating exhaust gas ARVIN INDUSTRIES INC 29 July 1971 [10 May 1971] 35666/71 Heading F1B Catalytic converter for purifying exhaust gas comprises an elongated shell 10 closed by end caps 12, 13, a conversion chamber 16 for holding catalytic material supported in the chamber by means 18 to form a by-pass passage around the chamber, a first gas inlet 40 opening into the chamber, a second gas inlet 55 opening into the by-pass passage, at least one gas outlet 57 opening into the chamber and the by-pass passage and valve means 61 for selectively directing the gas flow through the chamber or the by-pass passage. The chamber 16 consists of a sleeve partitioned by four perforated plates 25, 26, 27 and 28 into two compartments 29, 30 each adapted to hold catalytic material, which can be filled through openings 34 closable by plugs 36. The ends of the sleeve are closed by plates 44 and 51. An inlet conduit 40 passes through flanged openings 41, 42 in the end cap 12 and end plate 44 respectively, the gas entering through this conduit being distributed by a perforated baffle plate 46. A branch 55 from the conduit 40 passes through a flanged opening in the end cap 12, gas entering through this branch passing along the by-pass passage through holes in the supports 18. At the outlet end, a first conduit 57 leads from the space between the end cap 13 and the end plate 51, and a branch conduit leads from the space between end plate 51 and perforated plate 28. The gases in the chamber 29 are subjected to a reducing reaction and are subsequently subjected to an oxidizing reaction in the chamber 30. To assist in creating an oxidizing atmosphere in the chamber 30 a pipe 63 passes diametrally across the shell and has apertures 64 from which compressed air issues to mix with the gas stream. In a modification, Fig. 6 (not shown) the branch 55 is omitted and there is a hole through the end plate 44. The valve is transferred to the junction of the first conduit and branch conduit at the outlet end. In a second modification, Fig. 8 (not shown) the inlet conduits and valve are arranged as shown in Fig. 1 and there is a single outlet conduit which passes through a flanged opening in the end cap 13. In a third modification Fig. 8 (not shown) the inlet conduits are again as in Fig. 1 and the gas outlet consists of a conduit passing through flanged openings in the end cap 13 and end plate 51 and in addition an opening through the end plate 51.