Damper and method for manufacturing damper
10337582 ยท 2019-07-02
Assignee
Inventors
Cpc classification
F16F9/54
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B21/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29D24/001
PERFORMING OPERATIONS; TRANSPORTING
F16F2234/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C45/4407
PERFORMING OPERATIONS; TRANSPORTING
B29C45/16
PERFORMING OPERATIONS; TRANSPORTING
F16F9/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2226/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2232/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F9/145
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16D57/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F9/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29D24/00
PERFORMING OPERATIONS; TRANSPORTING
F16J15/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B21/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F9/54
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F9/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F9/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A damper is formed by a housing member wherein an outer cylinder portion and an inner cylinder portion that are cylindrically formed are concentrically disposed, and respective lower ends are connected to each other at a bottom portion, and at an upper end of the outer cylinder portion, an open end portion is formed, and a groove portion is formed on an inner periphery; and a lid member provided with a rotor inserted from the open end portion, and housed in the housing member, and formed with a projection portion engaging the groove portion. A thin wall portion which is thinner than the outer cylinder portion is formed in a vicinity of a groove portion side in the outer cylinder portion.
Claims
1. A damper, comprising: a housing member including an outer cylinder portion formed in a cylinder shape, an inner cylinder portion formed inside the outer cylinder portion, a bottom portion connecting bottoms of the outer and inner cylinder portions, an open end portion formed at an upper end of the outer cylinder portion, a groove portion formed on an inner periphery of the outer cylinder portion adjacent the open end portion, and a thin wall portion of the outer cylinder portion which is thinner than a remaining portion of the outer cylinder portion, formed in a vicinity of the groove portion so that an outer surface of the outer cylinder portion is recessed inwardly between an upper outer surface and a lower outer surface forming the outer cylinder portion; a lid member having a movable member housed in the housing member between the inner and outer cylinder portions and including a lid step portion formed at an upper end portion of the movable member and annularly recessed from an outer surface of the movable member, and a lid main member portion connected to the upper end portion of the movable member to cover the open end portion, and including a projection portion projecting annularly outwardly from the lid main member portion above the lid step portion and engaging the groove portion; and an O-ring housed in the lid step portion and contacting an inner surface of the thin wall portion to seal between the housing member and the lid member, wherein the outer surface of the outer cylinder portion is a flat surface in section cut in an axial direction of the housing member at the thin wall portion, and an inner surface of the outer cylinder portion is a flat surface in section cut in the axial direction of the housing member between the bottom portion and the groove portion.
2. A damper according to claim 1, wherein the movable member is a rotor or a piston inserted from the open end portion and housed in the housing member.
3. A damper according to claim 1, wherein the movable member is a rotor inserted from the open end portion and housed in the housing member, and having a through path passing through the housing member and the lid member.
4. A damper according to claim 1, wherein the groove portion and the projection portion are annularly formed, and along the groove portion, the thin wall portion is annularly formed.
5. A method for manufacturing a damper, comprising: a process of molding a housing member including an outer cylinder portion in a cylinder shape, an inner cylinder portion inside the outer cylinder portion, a bottom portion connecting bottoms of the outer and inner cylinder portions, an open end portion at an upper end of the outer cylinder portion, a groove portion on an inner periphery of the outer cylinder portion adjacent the open end portion, and a thin wall portion of the outer cylinder portion which is thinner than a remaining portion of the outer cylinder portion, located in a vicinity of the groove portion so that an outer surface of the outer cylinder portion is recessed inwardly between an upper outer surface and a lower outer surface forming the outer cylinder portion; a process of molding a lid member having a movable member to be housed in the housing member between the inner and outer cylinder portions, the movable member including a lid step portion formed at an upper end portion of the movable member and annularly recessed from an outer surface of the movable member, and a lid main member portion connected to an upper end portion of the movable member to cover the open end portion, the lid main member portion including a projection portion projecting annularly outwardly from the lid main member above the lid step portion and engaging the groove portion; and a process of housing an O-ring in the lid step portion and integrating the housing member and the lid member by contacting the O-ring and an inner surface of the thin wall portion to seal between the housing member and the lid member, to form a damper, wherein the outer surface of the outer cylinder portion is a flat surface in section cut in an axial direction of the housing member at the thin wall portion, and an inner surface of the outer cylinder portion is a flat surface in section cut in the axial direction of the housing member between the bottom portion and the groove portion.
6. A method for manufacturing a damper according to claim 5, wherein when the open end portion is demolded from a die on an inside of the outer cylinder portion, the outer cylinder portion is elastically deformed at the thin wall portion.
7. A damper according to claim 1, wherein the thin wall portion is recessed between the upper outer surface and the lower outer surface of the outer cylinder portion, and the groove portion is located laterally inside the upper outer surface.
8. A damper according to claim 7, wherein the lid step portion is located under the projection portion and laterally inside the thin wall portion.
9. A damper according to claim 1, wherein the lid main member portion includes an upper portion annularly outwardly projecting to be formed in a disk shape and arranged on a top surface of the outer cylinder portion, and the projection portion projects from the lid main member portion between the upper portion and the lid step portion, and the top surface of the outer cylinder portion and a lower surface of the upper portion are flats surfaces, respectively, to appropriately fit each other.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
BEST MODES OF CARRYING OUT THE INVENTION
(7) Hereinafter, a damper according to an embodiment of the present invention will be explained based on the drawings.
(8) <Damper>
(9) As shown in
(10) <Housing Member>
(11) As shown in
(12) As shown in
(13) In the inner cylinder portion 22, there is formed an inner cylinder step portion 29 which is thinner than the inner cylinder portion 22, and is recessed in a stepwise manner on the open end portion 24 side. The inner cylinder step portion 29 continues annularly along the outer periphery.
(14) <Lid Member>
(15) As shown in
(16) The rotor 31 is formed in a size which can be housed in the housing area 25 of the housing member 20, and is housed in the housing area 25. On the upper side of the rotor 31, there is connected the lid main member portion 32. The lid main member portion 32 is formed in a disk shape, and there is formed a projection portion 33 engaging the groove portion 27 of the housing member 20 (outer cylinder portion 21) (see
(17) In a case wherein the lid member 30 and the housing member 20 are integrated to form the damper 10, first, O-rings 1 are attached to the inner cylinder step portion 29 of the housing member 20 and the lid step portion 34 of the lid member 30 (see
(18) Incidentally, in a case wherein, for example, the damper is a cylinder-type damper (not shown in the drawings), the inner cylinder portion is not formed in the housing member. Namely, the damper is formed by the housing member wherein the bottom portion is formed at one end of the outer cylinder portion formed in the cylinder shape, the open end portion is formed at the other end of the outer cylinder portion, and the groove portion is formed on the inner periphery; and the lid member wherein a cylinder as the movable member housed in the housing member is provided, and the projection portion engaging the groove portion is formed.
(19) Next, a forming die (not shown in the drawings) for forming the housing member 20 of the damper 10 according to the embodiment of the present invention will be explained. Incidentally, a forming die and a molding method of the lid member are the same as conventional ways, so that an explanation thereof is omitted.
(20) The forming die for forming the housing member 20 is formed by, for example, in
(21) In the fixed side plate, there is formed a disk-shaped recess for forming the bottom portion 23, and at a center of the recess, there is provided the fixed side core pin. The fixed side core pin is movable in an up-and-down direction relative to the fixed side plate through the center of the disk-shaped recess formed in the fixed side plate, and forms the through path 2 of the outer cylinder portion 21. The slider is formed by two members, and the two members are integrated so as to form a columnar space for forming an external shape of the outer cylinder portion 21. In the slider, an annular convexity portion for forming the thin wall portion 28 is formed on the inner periphery. The movable side core pin is formed in a column shape, and the annular convexity portion for molding the groove portion 27 is formed on an outer periphery, and a receiving hole into which the fixed side core pin is inserted is formed in an axial direction. The movable side core pin is disposed in the columnar space formed by the slider, so that the outer cylinder portion 21 is formed between the slider and the movable side core pin, the inner cylinder portion 22 is formed between the movable side core pin and the fixed side core pin, and together with those, the housing area 25 is formed.
(22) Next, a molding method for molding the housing member 20 of the damper 10 according to the embodiment of the present invention will be explained.
(23) Each forming die is disposed at a predetermined position, and in a state wherein a cavity having the same shape as the housing member 20 is formed, a predetermined material such as a molten resin or the like is injected into the cavity. When the molten resin is cooled and hardened, before the resin is completely hardened, the die is open to mold the housing member 20.
(24) Specifically, when the die is open, first, the fixed side core pin is pulled out to the lower side, and next, the slider is detached and open to the outside. At that time, the outer peripheral face is recessed along the outer periphery of the outer cylinder portion 21 by the convexity portion formed in the slider, and in the outer cylinder portion 21, the thin wall portion 28 which is thinner than the outer cylinder portion 21 is molded on the outer peripheral face in the vicinity of the groove portion 27 on the groove portion 27 side more than the intermediate portion which is between the groove portion 27 and the bottom portion 23.
(25) Next, the stripper plate is applied to the outer cylinder upper end portion 26 of the housing member 20 (outer cylinder portion 21), and further, the stripper plate pushes out the housing member 20 attached to the movable side core pin in such a way as to strip off so as to be demolded. When the groove portion 27 of the outer cylinder portion 21 is demolded from the convexity portion of the movable side core pin, the open end portion 24 side of the outer cylinder portion 21 is pressed open by the convexity portion, and the open end portion 24 elastically deforms toward the outside as a base point of the thin wall portion 28, and the open end portion 24 temporarily enlarges a diameter. After the convexity portion of the movable side core pin passes through the open end portion 24, and the housing member 20 is demolded, the outer cylinder portion 21 is restored.
(26) The housing member 20 molded as described above, and the lid member 30 are concentrically integrated, and the damper 10 shown in
(27) Incidentally, a position of the thin wall portion 28 is arbitrary between the groove portion 27 and the bottom portion 23 provided that the following operation can be provided, wherein when the convexity portion of the movable side core pin is pulled out of the groove portion 27 of the outer cylinder portion 20, the open end portion 24 side of the outer cylinder portion 21 is pressed open by the convexity portion, the open end portion 24 elastically deforms toward the outside as the base point of the thin wall portion 28, and after the convexity portion passes through the open end portion 24, and is pulled out of the housing member 20, the outer cylinder portion 21 is restored. However, it is necessary for avoiding a position of a rib 3 of the outer cylinder portion 21.
(28) Next, effects of the damper 10 according to the embodiment of the present invention will be explained.
(29) As described above, with respect to the damper 10 according to the present embodiment, in the outer cylinder portion 21, the thin wall portion 28 which is thinner than the outer cylinder portion 21 is formed on the outer peripheral face in the vicinity of the groove portion 27 on the groove portion 27 side more than the intermediate portion which is between the groove portion 27 and the bottom portion 23. According to the structure, in molding the housing portion 20, when the convexity portion of the movable side core pin is demolded from the groove portion 27 of the outer cylinder portion 21, the open end portion 24 side of the outer cylinder portion 21 is pressed open by the convexity portion, the open end portion 24 elastically deforms toward the outside as the base point of the thin wall portion 28, and the open end portion 24 temporarily enlarges a diameter. After the convexity portion of the movable side core pin passes through the open end portion 24, and is demolded from the housing member 20, the outer cylinder portion 21 is restored. Thereby, curling does not occur, and the open end portion 24 becomes flat, so that the housing member 20 and the lid member 30 fit to each other to precise measure. Therefore, a shearing torque can be stabilized, which is determined by an interval with the rotor 31 disposed mainly in a gap (housing area 25) between an inner face of the outer cylinder portion 21 and an outer face of the inner cylinder portion 22 through the silicone oil.
(30) With respect to the damper 10 according to the present embodiment, when the molten resin is cooled and hardened, before the resin is completely hardened, the die is opened, and the housing member 20 is molded. Namely, before being hardened, the housing member 20 is demolded from the movable side core pin, so that the outer cylinder portion 21 is easily elastically deformed as the base point of the thin wall portion 28. Therefore, precision of a molded article can be improved, and a cost can be suppressed by reducing a molding time.
(31) The embodiment of the present invention has been described above in detail, and the present invention is not limited to the embodiment described hereinabove, and can be variously modified provided that they do not exceed the subject of the present invention.
EXPLANATION OF SYMBOLS
(32) 1 O-rings 2 a through path 3 a rib 10 a damper 20 a housing member 21 an outer cylinder portion 22 an inner cylinder portion 23 a bottom portion 24 an open end portion 25 a housing area 26 an outer cylinder upper end portion 27 a groove portion 28 a thin wall portion 29 an inner cylinder step portion 30 a lid member 31 a rotor (movable member) 32 a lid main member portion 33 a projection portion 34 a lid step portion
(33) Incidentally, all contents of the specification, claims, drawings, and abstract of Japanese Patent Applications No. 2015-031605 filed on Feb. 20, 2015 are cited in their entireties herein and are incorporated as a disclosure of the specification of the present invention.