AIR DAMPER
20220221018 ยท 2022-07-14
Assignee
Inventors
Cpc classification
F16F2226/041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F9/0227
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F9/3214
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F9/0218
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F9/3242
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F9/3221
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An air damper is provided. A piston member includes a stopper portion configured to come into contact with a cap in a state that a rod is pulled out to a maximum extent, and a deflection regulating portion configured to be positioned inside the engagement claw in the state to regulate an inward deflection of the engagement claw. An attachment portion rotatably attached to an attachment target portion is provided at an end portion of the rod. A contact surface is formed on the inner side of the engagement claw when viewed in an axial direction of the cylinder, the contact surface being capable of coming into contact with the deflection regulating portion when the rod swings in a direction of a rotation axis of the attachment portion with respect to the attachment target portion or in a direction intersecting the rotation axis.
Claims
1. An air damper, comprising: a cylinder having one end closed and another end opened; a piston member which includes a piston inserted into the cylinder and a rod connected to the piston and protruding from the opening; and a cap having an insertion hole for the rod and attached to the opening, wherein a plurality of engagement holes are formed in an edge portion of the opening of the cylinder, the cap is formed with an engagement claw which is inserted into the opening and is fitted into the engagement hole from an inner side of the engagement hole, the piston member includes a stopper portion configured to come into contact with the cap in a state that the rod is pulled out to a maximum extent, and a deflection regulating portion configured to be positioned inside the engagement claw in the state of being pulled out to the maximum extent and to regulate an inward deflection of the engagement claw, an attachment portion configured to be rotatably attached to an attachment target portion is provided at an end portion of the rod that protrudes from the opening, and a contact surface is formed on the inner side of the engagement claw when viewed in an axial direction of the cylinder, the contact surface being capable of coming into contact with the deflection regulating portion when the rod swings in a direction of a rotation axis of the attachment portion with respect to the attachment target portion or in a direction intersecting the rotation axis.
2. The air damper according to claim 1, wherein the contact surface on the inner side of the engagement claw forms an inclined surface inclined with respect to the rotation axis of the attachment portion with respect to the attachment target portion when viewed in the axial direction of the cylinder.
3. The air damper according to claim 2, wherein four or more contact surfaces on the inner side of the engagement claw are formed so as to be line-symmetric with respect to a line of the rotation axis of the attachment portion with respect to the attachment target portion and a line passing through an axis of the cylinder and orthogonal to the rotation axis when viewed in the axial direction of the cylinder.
4. The air damper according to claim 2, wherein the contact surface on the inner side of the engagement claw is formed so as to face an axial side of the cylinder when viewed in the axial direction of the cylinder.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
[0017] Hereinafter, an embodiment of an air damper according to the present invention will be described with reference to the drawings.
[0018] As shown in
[0019] One end of the cylinder 200 forms a closing end portion 202, and the other end of the cylinder 200 forms an opening end portion 203. A plurality of, in this embodiment, a total of four engagement holes 204 are formed at predetermined intervals along a peripheral direction in an opening edge portion of the opening end portion 203. Further, a pair of cutout portions 205 are formed at positions facing each other in a radial direction.
[0020] A plate-like bracket 206 extending along an axial direction is formed on an outer periphery of the cylinder 200, and attachment holes 207 are formed in both end portions of the bracket 206, respectively. The attachment hole 207 is used for attachment to one side of an opening and closing member such as a glove box.
[0021] The piston rod 300 includes a piston 301 that is inserted into the cylinder 200, and a rod 302 that is connected to the piston 301 and protrudes from the opening end portion 203 of the cylinder 200. The piston rod 300 constitutes a piston member in the present invention. The piston 301 includes a first flange 303 and a second flange 304, and an annular groove 305 is formed between the first flange 303 and the second flange 304. A seal ring 311 is attached to the annular groove 305, and a space between an inner periphery of the cylinder 200 and an outer periphery of the piston 301 is sealed by the seal ring 311.
[0022] Referring also to
[0023] The rod 302 includes a plate portion 306 extending from a back surface side of the second flange 304 of the piston 301, a pair of parallel reinforcing ribs 307 formed on both surfaces of the plate portion 306, and an attachment hole 308 formed in a protruding side end portion of the plate portion 306. The attachment hole 308 is used for attachment to the other side of the opening and closing member such as a glove box. In this case, the attachment hole 308 is attached so as to be rotatable about an axis of the attachment hole 308.
[0024] A plurality of stopper portions 313 are formed on a surface of the second flange 304 opposite to the annular groove 305. When the piston rod 300 is pulled out to the maximum extent, the stopper portions 313 come into contact with an end surface 413 on a protruding side of a cylindrical portion 410 of the cap 400 shown in
[0025] Further, on both sides of the columnar portion 309, ribs are formed by further increasing a diameter of a connection portion between the reinforcing rib 307 and the second flange 304 in two stages so as to protrude, and the diameter-increased portion provided continuously with the second flange 304 constitutes a part of the stopper portion 313. Further, the lower diameter-increased portion slightly away from the second flange 304 is disposed inside an engagement claw 408 of the cap 400, which will be described later, and forms the deflection regulating portion 310 that prevents inward deflection of the engagement claw 408. In this embodiment, the deflection regulating portion 310 is formed by four ribs protruding parallel to each other at predetermined intervals on both surfaces of the plate portion 306.
[0026] Referring also to
[0027] For the same purpose, on a front surface side of the end plate 401, a pair of guide pieces 411, which are erected along a longitudinal direction of the insertion hole 402 and disposed so as to face each other with the insertion hole 402 interposed therebetween, and a pair of guide pieces 412, which are erected on both end portions in the longitudinal direction of the insertion hole 402 and similarly disposed so as to face each other with the insertion hole 402 interposed therebetween, are provided. The guide pieces 411 and 412 also contribute to guiding the slide of the rod 302.
[0028] Further, the cylindrical portion 410 having an outer diameter adapted to an inner periphery of the cylinder 200 is formed on the inner surface side of the end plate 401. When the rod 302 of the piston rod 300 is pulled out, the stopper portion 313 of the piston rod 300 comes into contact with the end surface 413 of the cylindrical portion 410, and further pulling out of the rod 302 is regulated. The engagement claws 408 that are deflectable via slits 407 are formed at a plurality of positions in a peripheral direction of the cylindrical portion 410, that is, at four positions in this embodiment. The engagement claw 408 has a tapered surface whose thickness gradually increases toward a base portion side in an insertion direction into the cylinder 200, and a back surface side thereof is engaged with the engagement hole 204 of the cylinder 200 such that the cap 400 is prevented from coming off. Further, a protrusion portion 406 is formed at a portion of the cylindrical portion 410 facing in the radial direction, and the protrusion portion 406 is fitted into the cutout portion 205 of the cylinder 200 to position the cap 400 in a rotation direction. Then, by fitting the protrusion portion 406 into the cutout portion 205, the engagement claw 408 is aligned and engaged with the engagement hole 204.
[0029] By the way, the rod 302 is rotatably attached to the other side of the opening and closing member such as a glove box via the attachment hole 308. Referring also to
[0030] Next, an operation of the air damper 100 will be described.
[0031] The air damper 100 is attached to an opening and closing member such as a glove box, and is used to apply a braking force to the opening and closing member when the opening and closing member is opened, for example. In this case, the bracket 206 of the cylinder 200 is rotatably attached to one side of the opening and closing member via the attachment hole 207, and the end portion on the protruding side of the rod 302 of the piston rod 300 is rotatably attached to the other side of the opening and closing member via the attachment hole 308.
[0032] Then, when the opening and closing member is opened, the rod 302 is pulled out from the cylinder 200, and the piston 301 slides in the cylinder 200 toward the cap 400. At this time, the seal ring 311 moves to an inner surface side of the first flange 303 (see
[0033] On the other hand, for maintenance, repair, and the like of the vehicle, it may be necessary to remove the opening and closing member such as a glove box or to open the opening and closing member largely. In such a case, it may be necessary to remove the air damper 100 and the like attached to the opening and closing member or to largely pull out the rod 302, and the rod 302 of the piston rod 300 may largely swing with respect to the cylinder 200 in accordance with such an operation.
[0034] However, according to the air damper 100, as shown in
[0035] Further, as shown in
[0036] Further, as shown in
REFERENCE SIGNS LIST
[0037] 100: air damper [0038] 200: cylinder [0039] 201: cylinder body [0040] 202: closing end portion [0041] 203: opening end portion [0042] 204: engagement hole [0043] 205: cutout portion [0044] 206: bracket [0045] 207: attachment hole [0046] 300: piston rod [0047] 301: piston [0048] 302: rod [0049] 308: attachment hole [0050] 309: columnar portion [0051] 310: deflection regulating portion [0052] 311: seal ring [0053] 313: stopper portion [0054] 400: cap [0055] 402: insertion hole [0056] 408: engagement claw [0057] 409: inclined surface