Abstract:
A rim (10) is produced by a production process including a step (A) of bending a workpiece (11) to bring end faces of the workpiece into contact with each other, a step (B) of forming a circular cylinder body (12) by joining the end faces brought to be in contact with each other, a step (C) of inspecting a joint portion (13) of the circular cylinder body (12), a step (D) of forming a drop portion (16), subsiding toward the inner peripheral wall (15) side, in an outer peripheral wall (14) of the circular cylinder body (12), a by bending both end portions of the circular cylinder body (12), a step (F) of forming hump portions (20) by pressing the circular cylinder body (12) from the inner peripheral wall (15) side to raise the outer peripheral wall (14), and a step (G) for forming a valve hole (22) and water drain holes (24) in the drop portion (16) and the curl portions (18). The rim (10) and a disk (102) that is separately produced are welded to form a wheel (122).
Abstract:
A method for assembling a metal honeycomb catalyzer carrier includes the steps of winding corrugated belt plate materials into a substantially cylindrical shape, forming a wound structure into a predetermined cylindrical shape with a die 101 and pushing out a wound honeycomb body 12 obtained through the forming from the die and inserting the wound honeycomb body 12 into the interior of a tubular member 13. An assembling apparatus 31 includes a winding unit 42 which includes, in turn, a rotational holding shaft 167 and a press roller unit 38, a die unit 39 for forming a wound structure wound round the rotational holding shaft 167 into a wound honeycomb body 12 of a predetermined cylindrical shape (of an outside diameter Dp), a tube support unit 132 for setting a tubular member 13 at an edge of a die surface 126, and a honeycomb push-out and insertion unit 34 for pushing out a formed structure from a die 101 and inserting the formed structure so pushed out into the tubular member 13.
Abstract:
A workpiece having a first constant diameter portion, a tapered reduced-diameter portion, a concave portion, a tapered increased-diameter portion, and a second constant diameter portion is formed by machining the tapered reduced-diameter portion, and then machining the tapered increased-diameter portion and the concave portion.
Abstract:
A method of forming a hollow curled portion on a hollow body, the curled portion being oriented from one end to the other end of the hollow body. The method includes a bending step of curving an end of the hollow body toward another end of the hollow body, thereby forming a curled portion, an ironing step of ironing the curled portion with a die, and a recurving step of stopping the die from ironing the curled portion and allowing the curled portion to recurve under its own resiliency in a direction opposite to the direction in which the end of the hollow body has been curved. The ironing step and the recurving step are repeated.
Abstract:
A method of manufacturing a wheel rim by bringing end faces of a workpiece into abutment against each other to form a hollow cylindrical body and forming a circumferential recess which is depressed from an outer circumferential wall of said hollow cylindrical body toward an inner circumferential wall thereof, including providing protrusions disposed near ends of a joined area of the hollow cylindrical body and extending in a joining direction, and then pressing the outer circumferential wall of the hollow cylindrical body to form the recess.
Abstract:
A method for assembling a metal honeycomb catalyzer carrier includes the steps of winding corrugated belt plate materials into a substantially cylindrical shape, forming a wound structure into a predetermined cylindrical shape with a die 101 and pushing out a wound honeycomb body 12 obtained through the forming from the die and inserting the wound honeycomb body 12 into the interior of a tubular member 13. An assembling apparatus 31 includes a winding unit 42 which includes, in turn, a rotational holding shaft 167 and a press roller unit 38, a die unit 39 for forming a wound structure wound round the rotational holding shaft 167 into a wound honeycomb body 12 of a predetermined cylindrical shape (of an outside diameter Dp), a tube support unit 132 for setting a tubular member 13 at an edge of a die surface 126, and a honeycomb push-out and insertion unit 34 for pushing out a formed structure from a die 101 and inserting the formed structure so pushed out into the tubular member 13.
Abstract:
In a metal honeycomb-shaped catalyzer carrier 11, a corrugated portion 24 is formed on one side 33 in the longitudinal direction of a metallic thin belt plate 23. A plurality of belt plates 23, . . . are alternately stacked such that a flat plate portion 35 on the other side 34 of another belt plate 23 is superimposed on the corrugated portion 24, and are wound from their central flat portion 25 in the longitudinal direction thereby to form a wound honeycomb-shaped carrier body 12. The wound honeycomb carrier body 12 is fit in a hollow cylindrical member 13. The central flat portion 25 of the belt plate is wound so as to form a central cylindrical portion 17 having diameter of D, and length of the central flat portion in the longitudinal is at least 4.14 D.
Abstract translation:在金属蜂窝状催化剂载体11中,在金属薄带板23的长度方向的一侧33上形成有波纹状的部分24。 。 。 交替地层叠,使得另一个带板23的另一侧34上的平板部分35重叠在波纹部分24上,并且从其中心平坦部分25沿纵向卷绕,从而形成缠绕的蜂窝状载体 卷绕的蜂窝体主体12装配在中空的圆柱形构件13中。带板的中心平坦部分25被卷绕成形成直径为D的中心圆柱形部分17,中心平坦部分的长度 在纵向至少4.14 D.
Abstract:
A workpiece having a first constant diameter portion, a tapered reduced-diameter portion, a concave portion, a tapered increased-diameter portion, and a second constant diameter portion is formed by machining the tapered reduced-diameter portion, and then machining the tapered increased-diameter portion and the concave portion.
Abstract:
A method of forming a hollow curled portion on a hollow body, the curled portion being oriented from one end to the other end of the hollow body. The method includes a bending step of curving an end of the hollow body toward another end of the hollow body, thereby forming a curled portion, an ironing step of ironing the curled portion with a die, and a recurving step of stopping the die from ironing the curled portion and allowing the curled portion to recurve under its own resiliency in a direction opposite to the direction in which the end of the hollow body has been curved. The ironing step and the recurving step are repeated.
Abstract:
In a metal honeycomb-shaped catalyzer carrier 11, a corrugated portion 24 is formed on one side 33 in the longitudinal direction of a metallic thin belt plate 23. A plurality of belt plates 23, . . . are alternately stacked such that a flat plate portion 35 on the other side 34 of another belt plate 23 is superimposed on the corrugated portion 24, and are wound from their central flat portion 25 in the longitudinal direction thereby to form a wound honeycomb-shaped carrier body 12. The wound honeycomb carrier body 12 is fit in a hollow cylindrical member 13. The central flat portion 25 of the belt plate is wound so as to form a central cylindrical portion 17 having diameter of D, and length of the central flat portion in the longitudinal is at least 4.14 D.
Abstract translation:在金属蜂窝状催化剂载体11中,在金属薄带板23的长度方向的一侧33上形成有波纹状的部分24。 。 。 交替地层叠,使得另一个带板23的另一侧34上的平板部分35重叠在波纹部分24上,并且从其中心平坦部分25沿纵向卷绕,从而形成缠绕的蜂窝状载体 卷绕的蜂窝体主体12装配在中空的圆柱形构件13中。带板的中心平坦部分25被卷绕成形成直径为D的中心圆柱形部分17,中心平坦部分的长度 在纵向至少4.14 D.