WO2012070583A1 - Damper device - Google Patents

Damper device Download PDF

Info

Publication number
WO2012070583A1
WO2012070583A1 PCT/JP2011/076935 JP2011076935W WO2012070583A1 WO 2012070583 A1 WO2012070583 A1 WO 2012070583A1 JP 2011076935 W JP2011076935 W JP 2011076935W WO 2012070583 A1 WO2012070583 A1 WO 2012070583A1
Authority
WO
WIPO (PCT)
Prior art keywords
support
protrusion
damper
recess
slider
Prior art date
Application number
PCT/JP2011/076935
Other languages
French (fr)
Japanese (ja)
Inventor
寿久 佐藤
瀬戸 康彦
Original Assignee
株式会社ニフコ
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 株式会社ニフコ filed Critical 株式会社ニフコ
Priority to JP2012545769A priority Critical patent/JP5836281B2/en
Publication of WO2012070583A1 publication Critical patent/WO2012070583A1/en

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F9/00Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium
    • F16F9/10Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium using liquid only; using a fluid of which the nature is immaterial
    • F16F9/12Devices with one or more rotary vanes turning in the fluid any throttling effect being immaterial, i.e. damping by viscous shear effect only

Definitions

  • the present invention relates to an improvement of a damper device that applies a braking force only to movement in one direction or relative movement of a braking object.
  • a so-called rotary damper comprising a braking rotor provided with a pinion and a first housing in which the braking rotor is rotatably accommodated so as to apply a braking force to the rotation of the braking rotor by a viscous fluid filled in the first housing.
  • Patent Document 1 In such a one-way braking device, it is difficult to reduce the size of the braking device in the diameter direction of the rotary damper because the locking portion is formed outside the rotary damper. It was difficult to reduce the sliding resistance at the time of idling of the rotary damper when the stop was released.
  • the main problem to be solved by the present invention is that, in this type of damper device, the size of the rotary damper body in the diameter direction can be made as small as possible without complicating the structure of the damper device. It is in.
  • a damper device is filled between a first part, a second part that is rotatably or relatively rotatable with the first part, and a space between both parts.
  • a rotating damper body that is configured to apply a braking force to the rotation by the viscous fluid, and includes a pinion portion in one of the first part and the second part.
  • the recesses and the protrusions are engaged with each other by movement of the rotating damper body in the same direction as the rack body during movement in one direction or relative movement of the rack body combined with the pinion portion, and At the time of movement in the other direction of the rack body or relative movement, the engagement is released by moving the rotary damper body in the same direction as the rack body, and an engagement portion is formed.
  • the part provided with the recess is integrated with the support body among the first part and the second part by the engagement. Only the parts provided with the pinion part are rotated by the movement, and the braking force by the viscous fluid is applied to this rotation, and this braking force is applied to the movement of the rack body.
  • the part provided with the recess is separated from the support body, and the first part and the first part are separated by the movement of the rack body.
  • the two parts are rotated together, and the braking force due to the viscous fluid is not applied to this rotation, and the braking force is not applied to the movement of the rack body.
  • the function that the braking force of the rotary damper body is applied to the rack body only during the movement in one direction of the rack body is that the protrusion having the engaging portion is placed in the recess having the engaging portion. Therefore, the size of the rotating damper body in the diametrical direction is sufficient, and the rotating damper body and thus the damper device can be made as small as possible.
  • the rack The rotary damper body can be rotatably supported as a whole in a state in which the slide movement of the rotary damper body in the same direction as the movement direction of the body is possible, that is, can be pivotally supported.
  • the dynamic resistance can be made as small as possible.
  • the internal gear-shaped portion is formed in the recess by teeth provided on the side wall of the concave portion of the rotary damper body, and the internal gear-shaped portion functions as an engaging portion on the rotary damper body side, At the time of the movement of the rack body in the one direction, the engaging portion on the protrusion side is immediately engaged with the engaging portion on the rotary damper side so that a braking force is applied to the movement of the rack body. it can.
  • the engaging part on the support side protrudes from the side wall of the protrusion toward the side wall of the recess, and is integrated with the surface part of the support body that goes around the protruding base part of the protrusion, and is directed in one direction of the rack body. It is one of the preferred embodiments that it is configured as a claw-like body that enters between adjacent teeth of the internal gear-like portion that functions as an engaging portion of the rotary damper body during movement or relative movement. Further, it is one of preferred embodiments that the support-side engaging portions are provided at least at two locations with a gap between adjacent engaging portions in the direction of circling the protrusion. When it does in this way, the engaging part by the side of a support body can be made hard to break as much as possible.
  • the engaging portion on the support side is provided at two positions with an interval between adjacent engaging portions in the direction of circling the protrusion, and one of the two engaging portions.
  • One of the preferred embodiments is that the protruding end of each of them is located closer to the side wall of the recess of the rotary damper body than the other protruding end.
  • the rack body is provided on the slider, and a guide groove is provided on one of the support body and the slider, and the guide groove is provided in the other of the support body and accommodates a protrusion along the moving direction of the slider. Is one of the preferred embodiments.
  • ribs are formed on both sides of the slider, which has a long strip shape in the moving direction, along the length direction, and the rack body is formed on one of the two ribs.
  • One preferred embodiment is to allow the pinion portion of the rotary damper body to fit between the two ribs.
  • a protrusion that is in sliding contact with one surface of the slider is formed at the rotation center of the pinion portion of the rotary damper body.
  • the protruding dimension of the rib from one surface of the slider is equal to or greater than the thickness of the pinion portion of the rotary damper body.
  • the dimensions in the diameter direction of the rotary damper body constituting the damper device that applies the braking force to the movement only during the movement in one direction of the rack body can be reduced without complicating the structure. Can be as small as possible. That is, the present invention contributes to the compactness of this type of damper device.
  • FIG. 1 is an exploded perspective view of a damper device according to an embodiment of the present invention.
  • FIG. 2 is an exploded perspective view showing the damper device according to the embodiment as viewed from the opposite direction to FIG.
  • FIG. 3 is a side view of the damper device according to the embodiment.
  • FIG. 4 is a side view of the damper device according to the embodiment, and shows a state where the slider is moving in the opposite direction to FIG.
  • FIG. 5 is a cross-sectional view of the main part of the damper device in the state of FIG. 6 is a cross-sectional view of the main part of the damper device in the state of FIG.
  • FIG. 7 is a perspective view of the damper device according to the embodiment.
  • FIG. 8 is a perspective view showing the remaining members of the damper device, omitting the description of the rotary damper body constituting the damper device according to the embodiment.
  • FIG. 9 is a side view of the damper device according to the embodiment, and shows the damper device viewed from the right side of FIG.
  • FIG. 10 is a cross-sectional view of a rotary damper body constituting the damper device according to the embodiment.
  • FIG. 11 is a main part configuration diagram showing a modification of a part of the configuration of the damper device shown in FIG. 1 to FIG.
  • FIG. 12 is a main part configuration diagram of the damper device for explaining the significance of the modified example of FIG. FIG.
  • FIG. 13 is a main part configuration diagram showing still another modified example of a part of the configuration of the damper device shown in FIG. 1 to FIG.
  • FIG. 14 is a perspective view of a rotary damper body constituting the damper device shown in FIG.
  • FIG. 15 is a perspective view of a support constituting the damper device shown in FIG.
  • FIG. 16 is a perspective view of a slider constituting the damper device shown in FIG.
  • the damper device applies a braking force only to movement in one direction or relative movement of a braking object, and functions as a so-called one-way damper.
  • Such a damper device includes a rotary damper body D provided with a pinion portion 3 and a support body F of the rotary damper body D.
  • the pinion unit 3 is engaged with and combined with a rack body R linked to a braking object (not shown) or a rack body R formed on the braking object.
  • the support F is fixed to an object (not shown) on the fixed side with respect to the braking object.
  • the storage device is part of the storage device.
  • the lid is the object to be braked
  • the main body of the storage device is the object to be fixed.
  • a rotational force is applied to the rotating damper body D through the pinion portion 3 by the movement of the rack body R.
  • the pinion portion 3 in the rotating damper body D is provided. Only a part (second part described later in the illustrated example) is rotated and the other part (first part described later in the illustrated example) is fixed via the support F, while rotating when the lid is closed.
  • the damper body D can be made free from the support body F and rotated as a whole. In this way, the braking force is applied to the lid as the braking object only when a part of the rotary damper body D having the pinion portion 3 is rotated.
  • the rotating damper body D includes a first part 1, a second part 2 combined with the first part 1 so as to be rotatable or relatively rotatable, and a viscous fluid filled between both parts 1 and 2.
  • the viscous fluid is configured to apply a braking force to the rotation, and one of the first part 1 and the second part 2 is provided with a pinion portion 3.
  • the first part 1 is configured to have a short cylindrical shape. More specifically, the first part 1 includes a case 1a having a bottomed cylindrical shape and a lid 1g that closes an opening opposite to the bottom side of the case 1a.
  • the outer surface of the bottom portion of the case 1a is surrounded by a circumferential wall portion 1b formed so as to border a corner portion between the outer surface and the side portion of the case 1a.
  • a recess 1c described later is formed in the first part 1 by the circumferential wall portion 1b.
  • a shaft portion 1d is formed at the center of the recess 1c so as to protrude from the outer surface of the bottom portion of the case 1a by the same dimension as that of the circumferential wall portion 1b.
  • the shaft portion 1d is configured so that the outline of the cross section in the direction perpendicular to the protruding direction is positioned on the virtual circular arc.
  • the lid 1g is configured to liquid-tightly close the opening of the case 1a.
  • An insertion hole 1h of a shaft portion 2b described later of the second part 2 is formed in the center of the lid 1g.
  • the second part 2 includes a rotor part 2a that is rotatably accommodated in the case 1a of the first part 1, and one end integrally connected to the rotation center of the rotor part 2a. And a shaft portion 2b protruding from the rotor portion 2a along the line x.
  • the pinion part 3 is provided in the second part 2 by inserting and fixing the other end side of the shaft part 2b of the second part 2 into the through hole 3b of the gear body 3a having the through hole 3b in the center.
  • the first part 1 and the second part 2 include a rotor part 2a of the second part 2 such that the shaft part 2b of the second part 2 is positioned outside the first part 1 through the insertion hole 1h of the lid 1g. Are combined in the first part 1.
  • the rotation center of the pinion part 3 and the shaft part 1d formed at the center of the recess 1c are substantially positioned. (Fig. 10)
  • Viscous fluid (not shown) is enclosed in the first part 1 and applies a braking force to the rotation or relative rotation of the rotor part 2a of the second part 2.
  • a viscous fluid silicone oil or grease oil is typically used.
  • the support body F is provided with a protrusion 4 for the recess 1c provided on the other of the first part 1 and the second part 2 of the rotary damper body D.
  • the protrusion 4 is placed in the recess 1c and rotated.
  • the damper body D is rotatably supported.
  • the protrusion 4 of the support F is placed in the recess 1 c of the first part 1.
  • the protrusion 4 of the support body F is configured to have a size that can be accommodated in a substantially circular recess 1c formed by the circumferential wall portion 1b.
  • a support hole 5 for the shaft portion 1d is formed in the center of the protrusion 4 in the shape of a long hole that is long in the moving direction of the rack body R.
  • the width of the support hole 5 is substantially equal to the diameter of the shaft portion 1d, while the length of the support hole 5 is larger than the diameter of the shaft portion 1d.
  • the protrusion 4 is also configured to have a length and a width.
  • the length of the protrusion 4 is aligned with the moving direction of the rack body R (the direction indicated by the arrow in FIGS. 3 and 4).
  • the length and width of the protrusion 4 are both smaller than the diameter of the recess 1c.
  • the recess 1c and the protrusion 4 are the same as the rack body R when the rack body R combined with the pinion portion 3 is moved in one direction or relatively moved. Engage with each other by movement of the rotary damper body D in the direction, and at the time of movement of the rack body R in the other direction or relative movement, it is engaged by movement of the rotary damper body D in the same direction as the rack body R. Engagement portions 1e and 4a are formed to solve the problem.
  • the rotary damper body D that engages the pinion portion 3 with the rack body R moved in this way is in the support hole 5 having a long hole shape.
  • the rack body R is moved so that the shaft portion 1d abuts against the hole end portion (the left hole end portion in FIG. 3) located on the movement destination side of the rack body R, and at this time, the rack body R is directed to the rear side of the movement.
  • the engaging portion 4a formed at the end of the protruding portion 4 is engaged with the engaging portion 1e formed on the circumferential wall portion 1b of the recess 1c.
  • the first part 1 provided with the recess 1c is integrated with the support F, so that only the second part 2 is rotated by the movement of the rack body R.
  • a braking force by the viscous fluid is applied, and this braking force is applied to the movement of the rack body R.
  • a stopper 8 formed in a support body F comes into contact with the first part 1 of the rotary damper body D on the movement destination side of the rack body R. (Fig. 5)
  • the rotary damper body D that engages the pinion portion 3 with the rack body R thus moved is the rack body R in the support hole 5 having a long hole shape. 4 is moved so that the shaft portion 1d abuts against the hole end portion (the right-side hole end portion in FIG. 4) positioned on the movement destination side of the rack body R, and at this time, the protrusion directed toward the movement destination side of the rack body R 4 is disengaged between the engaging portion 4a formed at the end of 4 and the engaging portion 1e formed at the circumferential wall portion 1b of the recess 1c, and the protrusion directed toward the moving rear side of the rack body R.
  • a space is formed between the end of the place 4 and the circumferential wall 1b of the recess 1c.
  • the function that the braking force of the rotary damper body D is applied to the rack body R only during the movement in one direction of the rack body R is that the engaging portion 4a is provided in the recess 1c provided with the engaging portion 1e. Therefore, the size of the rotary damper body D in the diametrical direction can be minimized, and the rotary damper body D and the damper device can be made as small as possible. Can be configured.
  • the shaft portion 1d formed at the center of the recess 1c of the rotary damper body D is moved in the moving direction of the rack body R formed at the center of the protrusion 4 of the support F.
  • the rotary damper body D is supported as a whole in a state where the rotary damper body D can be slid in the same direction as the movement direction of the rack body R by being placed in the support hole 5 having a long slot shape. That is, it is pivotally supported, and the sliding resistance of this sliding movement and rotation is made as small as possible.
  • the internal gear-like portion 1f is formed in the recess 1c by the teeth provided on the side wall of the recess 1c of the rotary damper body D, that is, the circumferential wall portion 1b.
  • the internal gear-shaped portion 1f functions as the engaging portion 1e on the rotary damper body D side.
  • the support F has a short rectangular tube shape in which both ends of the tube are open.
  • a mounting portion 7 for the object on the fixed side is formed on one outer surface portion of the four side surface portions 6.
  • the mounting portion 7 includes a central shaft 7a and wing portions 7b projecting laterally from both diametrical sides of the central shaft 7a, and the support body F is formed on an object that is a fixed side (not shown) having a long hole shape. After inserting the attachment portion 7 over the attached attachment hole, it is twisted approximately 90 degrees, so that the wing portion 7b is hooked on the surface of the object to be fixed on the insertion destination side of the attachment hole, and the fixed side and It can be attached to the target object with a single touch.
  • the protrusion 4 and the support hole 5 are provided on one of the side surface portions 6 adjacent to the side surface portion 6 on which the mounting portion 7 of the support body F is formed.
  • the protrusion 4 is formed so as to protrude from the inner surface of the side surface portion 6.
  • the rotary damper body D is accommodated in the support body F so that the rotation center line x of the rotor portion 2a is orthogonal to the side surface portion 6 where the protrusion 4 is formed. That is, the rotary damper body D faces the bottom portion constituting the first part 1 to the side surface portion 6 of the support F where the protrusion 4 is formed, and the protrusion 4 is accommodated in the recess 1c. 6, the other end of the shaft portion 2 b of the second part 2 faces the side surface portion 6 facing the side 6, and is housed in the support body F.
  • the rack body R is formed on a slider S having a long strip shape in the moving direction.
  • a fixing portion 9 for the object to be braked is formed at one end of the slider S.
  • the width of the slider S is such that there is little clearance between the side surface portion 6 where the mounting portion 7 of the support F is formed and the side surface portion 6 facing this.
  • ribs 11 are formed at both edges along the length direction so as to extend along the length direction of the slider S with a slight space between the edge 10. ing.
  • the slider S is combined with the support body F so that the other surface is in contact with the side surface portion 6 of the support body F facing the side surface portion 6 where the protrusions 4 are formed.
  • a guide groove 6a for receiving the edge 10 of the slider S is formed on the side surface portion 6 of the support F where the mounting portion 7 is formed and on the side surface portion 6 facing this.
  • the rack body R is formed on the inner side of the rib 11 positioned on the slider S on the side where the mounting portion 7 of the support body F is formed.
  • the pinion portion 3 of the rotary damper body D accommodated in the support body F is accommodated between the pair of ribs 11, 11 of the slider S and meshes with the rack body R as described above. . Then, the rack body R is moved by the movement of the slider S, and the rotary damper body D rotates only the second part 2 through the pinion portion 3 or is rotated as a whole.
  • the engaging portion 4a on the support F side protrudes from the side wall 4b of the protrusion 4 toward the side wall (the circumferential wall portion 1b) of the recess 1c. 4 is integrated with the surface portion of the support body F that goes around the protruding base portion, that is, the inner surface 6b of the side surface portion 6, and the rotation damper body D is engaged when moving in one direction or relative movement of the rack body R. It is configured as a claw-like body that enters between adjacent teeth of the internal gear-like portion 1f that functions as the portion 1e.
  • the engaging portions 4a on the support F side are provided at two locations with a space between the engaging portions 4a adjacent to each other in the direction in which the protrusion 4 circulates. As a result, in this embodiment, the engaging portion 4a on the support F side is made as hard as possible to break.
  • FIG. 11 shows that the engaging portion 4a on the support F side is provided at two locations with a space between the engaging portions 4a and 4a adjacent to each other in the direction in which the protrusion 4 circulates.
  • One protruding end 4c of the engaging portions 4a, 4a is located closer to the side wall (the circumferential wall portion 1b) of the recess 1c of the rotary damper body D than the other protruding end 4c.
  • the example of a change is shown.
  • the two engaging portions 4a and 4a enter in a complementary manner between adjacent teeth of the internal gear-shaped portion 1f functioning as the engaging portion 1e of the rotary damper body D, and the two engaging portions. Between 4a and 4a, it has the shape which receives one tooth
  • FIG. 13 shows an example in which the support F is formed with a guide groove 6c provided in the slider S on which the rack R is formed and which accommodates the protrusion 12 along the moving direction of the slider S.
  • the other surface of the slider S (the surface opposite to the side on which the ribs 11 are formed) protrudes from the other surface at a position approximately in the middle of the width direction of the slider S and the moving direction of the slider S. That is, the protrusion 12 which continues in the length direction is formed.
  • the guide groove 6c which accommodates this protrusion 12 is formed inside the side part 6 which opposes the side part 6 in which the protrusion 4 was formed in the said support body F. As shown in FIG. In such a case, it is possible to suppress the rattling of the slider S in the width direction during the operation of the damper device, and to operate the damper device smoothly and with minimal operating noise.
  • the ribs 11 are provided on one side of the slider S having a long strip shape in the sliding movement direction and at both edge portions along the length direction.
  • a rack body R is formed on one of the two ribs 11, 11, and the pinion portion 3 of the rotary damper body D is accommodated between the two ribs 11, 11. . That is, the slider S and the rotary damper body D are combined in a state where the thickness side where the teeth of the pinion portion 3 of the rotary damper body D are formed faces the inner surface of the rib 11 of the slider S.
  • the pinion portion of the rotating damper body D is moved from the state in which the rotating damper body D is accommodated in the supporting body F so that the protrusion 4 of the supporting body F is accommodated in the recess 1c of the rotating damper body D.
  • the damper device is assembled by inserting a slider S between the support member 3 and the side surface portion 6 of the support body F facing the side surface portion 6 where the protrusion 4 is formed.
  • the protrusion 2 c that is in sliding contact with the one surface of the slider S is further provided at the rotation center of the pinion portion 3 of the rotary damper body D, in the illustrated example, at the tip of the shaft 2 b of the second part 2. Is formed.
  • the protruding dimension of the rib 11 from one surface of the slider S is equal to or greater than the thickness of the pinion portion 3 of the rotary damper body D.
  • the teeth of the pinion portion 3 of the rotary damper body D can be firmly engaged with the pinion portion 3 of the slider S in a wide range in the rotation axis direction.

Abstract

Disclosed is a damper device provided with: a support body which is provided with a projection corresponding to a recess provided on a first part of a rotational damper body and places the projection in the recess to rotatably support the rotational damper body, wherein engaging portions which engage with each other by movement of the rotational damper body in the same direction as a rack body combined with a pinion section at the time of movement or relative movement in one direction of the rack body and disengage from each other by movement of the rotational damper body in the same direction as the rack body at the time of movement or relative movement in the other direction of the rack body are formed on the recess and the projection.

Description

ダンパー装置Damper device
 この発明は、制動対象物の一方向に向けた移動又は相対的な移動にのみ制動力を作用させるダンパー装置の改良に関する。 The present invention relates to an improvement of a damper device that applies a braking force only to movement in one direction or relative movement of a braking object.
 ピニオンを備えた制動用ロータとこれを回転可能に納めた第1ハウジングとよりなりこの制動用ロータの回転に第1ハウジングに充填した粘性流体によって制動力を作用させるように構成されたいわゆる回転ダンパーを、さらに、第2ハウジングに浮動状態に納め、第1ハウジングが一方向に移動されたときに両ハウジングの係止部分を係止させ、第1ハウジングがこれとは逆向きの他方向に移動されたときには両ハウジングの係止部分の係止を解くように構成された一方向制動装置がある。(特許文献1)しかるに、かかる一方向制動装置では、前記回転ダンパーの外側に前記係止部分を形成させる関係上、この回転ダンパーの直径方向において制動装置の寸法を小さくし難く、また、前記係止が解かれた状態での回転ダンパーのいわば空転時の摺動抵抗を減少させ難いものであった。 A so-called rotary damper comprising a braking rotor provided with a pinion and a first housing in which the braking rotor is rotatably accommodated so as to apply a braking force to the rotation of the braking rotor by a viscous fluid filled in the first housing. In a floating state in the second housing, and when the first housing is moved in one direction, the locking portions of both housings are locked, and the first housing moves in the other direction opposite to this. There is a one-way braking device that is configured to unlock the locking portions of both housings when done. (Patent Document 1) However, in such a one-way braking device, it is difficult to reduce the size of the braking device in the diameter direction of the rotary damper because the locking portion is formed outside the rotary damper. It was difficult to reduce the sliding resistance at the time of idling of the rotary damper when the stop was released.
特許第4080921号公報Japanese Patent No. 4080921
 この発明が解決しようとする主たる問題点は、この種のダンパー装置における、その回転ダンパー体の直径方向での寸法を、ダンパー装置の構造の複雑化を招くことなく、できるだけ小さくできるようにする点にある。 The main problem to be solved by the present invention is that, in this type of damper device, the size of the rotary damper body in the diameter direction can be made as small as possible without complicating the structure of the damper device. It is in.
 前記課題を達成するために、この発明にあっては、ダンパー装置を、第一パーツと、この第一パーツに回転又は相対的に回転可能に組み合わされた第二パーツと、両パーツ間に充填された粘性流体とを備え、この粘性流体により前記回転に制動力を作用させるように構成されると共に、前記第一パーツ及び第二パーツのいずれか一方にピニオン部を備えさせてなる回転ダンパー体と、
 この回転ダンパー体の前記第一パーツ及び第二パーツの他方に設けられた凹所に対する突所を備え、この凹所に突所を納めてこの回転ダンパー体を回転可能に支持する支持体とを備えてなり、
 この凹所及び突所に、前記ピニオン部に組み合わされるラック体の一方向に向けた移動又は相対的な移動時にこのラック体と同じ方向への回転ダンパー体の移動により係合し合うと共に、このラック体の他方向に向けた移動又は相対的な移動時にはこのラック体と同じ方向への回転ダンパー体の移動により係合を解く、係合部を形成させてなるものとした。
In order to achieve the above object, according to the present invention, a damper device is filled between a first part, a second part that is rotatably or relatively rotatable with the first part, and a space between both parts. A rotating damper body that is configured to apply a braking force to the rotation by the viscous fluid, and includes a pinion portion in one of the first part and the second part. When,
A support for a recess provided in the other of the first part and the second part of the rotary damper body, and a support for rotatably supporting the rotary damper body by placing the protrusion in the recess; Prepared
The recesses and the protrusions are engaged with each other by movement of the rotating damper body in the same direction as the rack body during movement in one direction or relative movement of the rack body combined with the pinion portion, and At the time of movement in the other direction of the rack body or relative movement, the engagement is released by moving the rotary damper body in the same direction as the rack body, and an engagement portion is formed.
 ラック体の一方向に向けた前記移動時には、前記係合によって、第一パーツ及び第二パーツのうち前記凹所の備えられているパーツは支持体と一体化されることから、ラック体の前記移動により前記ピニオン部の備えられているパーツのみが回転されこの回転には前記粘性流体による制動力が作用され、ラック体の前記移動にこの制動力が作用されることとなる。 During the movement in one direction of the rack body, the part provided with the recess is integrated with the support body among the first part and the second part by the engagement. Only the parts provided with the pinion part are rotated by the movement, and the braking force by the viscous fluid is applied to this rotation, and this braking force is applied to the movement of the rack body.
 一方、ラック体の他方向に向けた前記移動時には、前記係合が解かれることから、前記凹所の備えられているパーツは支持体と分離され、ラック体の前記移動により第一パーツと第二パーツは一緒になって回転されこの回転には前記粘性流体による制動力は作用されず、ラック体の前記移動には制動力が作用されないこととなる。 On the other hand, since the engagement is released during the movement in the other direction of the rack body, the part provided with the recess is separated from the support body, and the first part and the first part are separated by the movement of the rack body. The two parts are rotated together, and the braking force due to the viscous fluid is not applied to this rotation, and the braking force is not applied to the movement of the rack body.
 かかるラック体の一方向に向けた前記移動時にのみこのラック体に回転ダンパー体の制動力が作用される機能は、前記係合部を備えた凹所内に係合部を備えた突所を納めることで実現される構成となっていることから、回転ダンパー体の直径方向の大きさは必要最小限で足り、この回転ダンパー体ひいてはダンパー装置をできるだけ小型に構成させることができる。 The function that the braking force of the rotary damper body is applied to the rack body only during the movement in one direction of the rack body is that the protrusion having the engaging portion is placed in the recess having the engaging portion. Therefore, the size of the rotating damper body in the diametrical direction is sufficient, and the rotating damper body and thus the damper device can be made as small as possible.
 前記回転ダンパー体の凹所の中央に、支持体の突所の中央に形成されたラック体の移動方向に長い長穴状をなす支持穴に納まる軸部を形成させるようにしておけば、ラック体の移動方向と同じ方向への回転ダンパー体のスライド移動を可能とした状態でこの回転ダンパー体を全体として回転可能に支持、つまり軸支することができ、さらに、このスライド移動及び回転の摺動抵抗ができるだけ小さくなるようにすることができる。 If a shaft portion that fits in a support hole having a long hole shape in the moving direction of the rack body formed in the center of the protrusion of the support body is formed in the center of the recess of the rotary damper body, the rack The rotary damper body can be rotatably supported as a whole in a state in which the slide movement of the rotary damper body in the same direction as the movement direction of the body is possible, that is, can be pivotally supported. The dynamic resistance can be made as small as possible.
 前記回転ダンパー体の凹所の側壁に設けられた歯によってこの凹所内に内歯車状部を形成させて、この内歯車状部を回転ダンパー体側の係合部として機能させるようにしておけば、ラック体の前記一方向に向けた前記移動時は直ちに突所側の係合部を回転ダンパー側の係合部に係合させてこのラック体の移動に制動力を作用させるようにすることができる。 If the internal gear-shaped portion is formed in the recess by teeth provided on the side wall of the concave portion of the rotary damper body, and the internal gear-shaped portion functions as an engaging portion on the rotary damper body side, At the time of the movement of the rack body in the one direction, the engaging portion on the protrusion side is immediately engaged with the engaging portion on the rotary damper side so that a braking force is applied to the movement of the rack body. it can.
 前記支持体側の係合部は、前記突所の側壁から凹所の側壁側に突き出すと共に、この突所の突きだし基部を巡る支持体の面部に一体化されて、ラック体の一方向に向けた移動又は相対的な移動時に回転ダンパー体の係合部として機能する内歯車状部の隣り合う歯間に入り込む爪状体として構成させておくことが好ましい態様の一つである。また、この支持体側の係合部を、突所を周回する方向において隣り合う係合部との間に間隔を開けて少なくとも二箇所に設けるようにすることが好ましい態様の一つである。このようにした場合、支持体側の係合部をできるだけ破損し難くすることができる。また、かかる支持体側の係合部を、前記突所を周回する方向において隣り合う係合部との間に間隔を開けて二箇所に設けさせると共に、この二箇所の係合部のうちの一方の突きだし端がこれらの他方の突きだし端よりも回転ダンパー体の凹所の側壁に近い位置にあるようにすることが好ましい態様の一つとされる。 The engaging part on the support side protrudes from the side wall of the protrusion toward the side wall of the recess, and is integrated with the surface part of the support body that goes around the protruding base part of the protrusion, and is directed in one direction of the rack body. It is one of the preferred embodiments that it is configured as a claw-like body that enters between adjacent teeth of the internal gear-like portion that functions as an engaging portion of the rotary damper body during movement or relative movement. Further, it is one of preferred embodiments that the support-side engaging portions are provided at least at two locations with a gap between adjacent engaging portions in the direction of circling the protrusion. When it does in this way, the engaging part by the side of a support body can be made hard to break as much as possible. In addition, the engaging portion on the support side is provided at two positions with an interval between adjacent engaging portions in the direction of circling the protrusion, and one of the two engaging portions. One of the preferred embodiments is that the protruding end of each of them is located closer to the side wall of the recess of the rotary damper body than the other protruding end.
 また、前記ラック体をスライダに備えさせると共に、前記支持体及びこのスライダのいずれか一方に、これらの他方に設けたこのスライダの移動方向に沿った突条を納める案内溝を形成させておくことが、好ましい態様の一つとされる。 The rack body is provided on the slider, and a guide groove is provided on one of the support body and the slider, and the guide groove is provided in the other of the support body and accommodates a protrusion along the moving direction of the slider. Is one of the preferred embodiments.
 また、移動方向に長い帯板状をなす前記スライダの一面側であって、その長さ方向に沿った両縁部にそれぞれリブを形成させると共に、二箇所のリブの一方に前記ラック体を形成させ、この二箇所のリブ間に回転ダンパー体のピニオン部が納まるようにしておくことが、好ましい態様の一つとされる。この場合、さらに、前記回転ダンパー体のピニオン部の回転中心に前記スライダの一面に摺接する突起を形成させておくことが好ましい。また、この場合さらに、前記スライダの一面からの前記リブの突きだし寸法を、回転ダンパー体のピニオン部の厚さと同じか、それ以上にしておくことが好ましい。 In addition, ribs are formed on both sides of the slider, which has a long strip shape in the moving direction, along the length direction, and the rack body is formed on one of the two ribs. One preferred embodiment is to allow the pinion portion of the rotary damper body to fit between the two ribs. In this case, it is preferable that a protrusion that is in sliding contact with one surface of the slider is formed at the rotation center of the pinion portion of the rotary damper body. In this case, it is further preferable that the protruding dimension of the rib from one surface of the slider is equal to or greater than the thickness of the pinion portion of the rotary damper body.
 この発明によれば、ラック体の一方向に向けた前記移動時にのみこの移動に制動力を作用させるダンパー装置を構成する回転ダンパー体の直径方向での寸法を、構造の複雑化を招くことなく、できるだけ小さくすることができる。すなわち、この発明はこの種のダンパー装置のコンパクト化に資するものである。 According to the present invention, the dimensions in the diameter direction of the rotary damper body constituting the damper device that applies the braking force to the movement only during the movement in one direction of the rack body can be reduced without complicating the structure. Can be as small as possible. That is, the present invention contributes to the compactness of this type of damper device.
図1は本発明の一実施の形態に係るダンパー装置の分解斜視図である。FIG. 1 is an exploded perspective view of a damper device according to an embodiment of the present invention. 図2は実施の形態に係るダンパー装置を図1と反対の向きから見て示した分解斜視図である。FIG. 2 is an exploded perspective view showing the damper device according to the embodiment as viewed from the opposite direction to FIG. 図3は実施の形態に係るダンパー装置の側面図である。FIG. 3 is a side view of the damper device according to the embodiment. 図4は実施の形態に係るダンパー装置の側面図であり、図3と反対の向きにスライダが移動しているときの様子を示している。FIG. 4 is a side view of the damper device according to the embodiment, and shows a state where the slider is moving in the opposite direction to FIG. 図5は図3の状態のときのダンパー装置の要部断面図である。FIG. 5 is a cross-sectional view of the main part of the damper device in the state of FIG. 図6は図4の状態のときのダンパー装置の要部断面図である。6 is a cross-sectional view of the main part of the damper device in the state of FIG. 図7は実施の形態に係るダンパー装置の斜視図である。FIG. 7 is a perspective view of the damper device according to the embodiment. 図8は実施の形態に係るダンパー装置を構成する回転ダンパー体の記載を省略してかかるダンパー装置のその余の部材を示した斜視図である。FIG. 8 is a perspective view showing the remaining members of the damper device, omitting the description of the rotary damper body constituting the damper device according to the embodiment. 図9は実施の形態に係るダンパー装置の側面図であり、図3の右側からダンパー装置を見て示している。FIG. 9 is a side view of the damper device according to the embodiment, and shows the damper device viewed from the right side of FIG. 図10は実施の形態に係るダンパー装置を構成する回転ダンパー体の断面図である。FIG. 10 is a cross-sectional view of a rotary damper body constituting the damper device according to the embodiment. 図11は図1~図10に示されるダンパー装置の構成の一部の変更例を示した要部構成図である。FIG. 11 is a main part configuration diagram showing a modification of a part of the configuration of the damper device shown in FIG. 1 to FIG. 図12は図11の変更例の有意性を説明するためのダンパー装置の要部構成図である。FIG. 12 is a main part configuration diagram of the damper device for explaining the significance of the modified example of FIG. 図13は図1~図10に示されるダンパー装置の構成の一部のさらに他の変更例を示した要部構成図である。FIG. 13 is a main part configuration diagram showing still another modified example of a part of the configuration of the damper device shown in FIG. 1 to FIG. 図14は図13に示されるダンパー装置を構成する回転ダンパー体の斜視図である。FIG. 14 is a perspective view of a rotary damper body constituting the damper device shown in FIG. 図15は図13に示されるダンパー装置を構成する支持体の斜視図である。FIG. 15 is a perspective view of a support constituting the damper device shown in FIG. 図16は図13に示されるダンパー装置を構成するスライダの斜視図である。FIG. 16 is a perspective view of a slider constituting the damper device shown in FIG.
 以下、図1~図16に基づいて、この発明の典型的な実施の形態について、説明する。この実施の形態にかかるダンパー装置は、制動対象物の一方向に向けた移動又は相対的な移動にのみ制動力を作用させるものであり、いわゆるワンウェイダンパーとして機能するものである。 Hereinafter, a typical embodiment of the present invention will be described with reference to FIGS. The damper device according to this embodiment applies a braking force only to movement in one direction or relative movement of a braking object, and functions as a so-called one-way damper.
 かかるダンパー装置は、ピニオン部3を備えた回転ダンパー体Dと、この回転ダンパー体Dの支持体Fとを備えてなる。ピニオン部3は図示しない制動対象物に連係されたラック体Rないしはかかる制動対象物に形成されたラック体Rに噛み合わされて組み合わされる。支持体Fはかかる制動対象物に対し固定側となる対象物(図示は省略する。)に固定される。 Such a damper device includes a rotary damper body D provided with a pinion portion 3 and a support body F of the rotary damper body D. The pinion unit 3 is engaged with and combined with a rack body R linked to a braking object (not shown) or a rack body R formed on the braking object. The support F is fixed to an object (not shown) on the fixed side with respect to the braking object.
 例えば、かかるダンパー装置は、収納装置の本体の開口を塞ぐリッドが開くときはこれに制動力を作用させてこのリッドの開き動作をゆっくりとしたものとする一方で、開かれたリッドを閉じる操作をするときはかかる制動力を作用させないようにしてこの操作をスムースに行えるように、かかる収納装置に組み込まれてかかる収納装置の一部をなす。この場合、典型的にはリッドが前記制動対象物となり、収納装置の本体が前記固定側となる対象物となる。このような場合、ラック体Rをリッド側に備えさせれば、ラック体Rはリッドの可動により移動するものとなり、一方、支持体Fは収納装置の本体に固定されることとなる。こうするとリッドが開くときも閉じるときもラック体Rの移動によりピニオン部3を通じて回転ダンパー体Dには回転力が作用されるが、リッドが開くときは回転ダンパー体Dにおけるピニオン部3を備えた一部(図示の例では後述の第二パーツ)のみが回転されその他の箇所(図示の例では後述の第一パーツ)は支持体Fを介して固定側となり、一方、リッドが閉じるときは回転ダンパー体Dは支持体Fからフリーになって全体として回転されるようにすることができる。このようにすれば、前記制動力は回転ダンパー体Dにおけるピニオン部3を備えた一部が回転される場合に限って制動対象物としてのリッドに作用されるようになる。 For example, in the damper device, when a lid that closes the opening of the main body of the storage device is opened, a braking force is applied to the lid to slow the opening operation of the lid, while the lid is opened. In order to perform this operation smoothly without applying such a braking force when performing the operation, the storage device is part of the storage device. In this case, typically, the lid is the object to be braked, and the main body of the storage device is the object to be fixed. In such a case, if the rack body R is provided on the lid side, the rack body R is moved by the movement of the lid, while the support body F is fixed to the main body of the storage device. When the lid is opened and closed, a rotational force is applied to the rotating damper body D through the pinion portion 3 by the movement of the rack body R. When the lid is opened, the pinion portion 3 in the rotating damper body D is provided. Only a part (second part described later in the illustrated example) is rotated and the other part (first part described later in the illustrated example) is fixed via the support F, while rotating when the lid is closed. The damper body D can be made free from the support body F and rotated as a whole. In this way, the braking force is applied to the lid as the braking object only when a part of the rotary damper body D having the pinion portion 3 is rotated.
 前記回転ダンパー体Dは、第一パーツ1と、この第一パーツ1に回転又は相対的に回転可能に組み合わされた第二パーツ2と、両パーツ1、2間に充填された粘性流体とを備え、この粘性流体により前記回転に制動力を作用させるように構成されると共に、前記第一パーツ1及び第二パーツ2のいずれか一方にピニオン部3を備えさせてなる。 The rotating damper body D includes a first part 1, a second part 2 combined with the first part 1 so as to be rotatable or relatively rotatable, and a viscous fluid filled between both parts 1 and 2. In addition, the viscous fluid is configured to apply a braking force to the rotation, and one of the first part 1 and the second part 2 is provided with a pinion portion 3.
 図示の例では、第一パーツ1は、短寸の円筒状をなすように構成されている。より具体的には、第一パーツ1は有底筒状をなすケース1aと、このケース1aの底側と反対の開口を閉塞する蓋体1gとから構成されている。ケース1aの底部の外面はこの外面とケース1aの側部との隅部を縁取るように形成された周回壁部1bにより囲繞されている。この周回壁部1bにより第一パーツ1に後述の凹所1cが形成されている。また、この凹所1cの中央にはケース1aの底部の外面から前記周回壁部1bと同じ寸法分突き出すように軸部1dが形成されている。軸部1dはその突きだし方向に直交する向きの断面の外郭を仮想の円の円弧上に位置させるように構成されている。蓋体1gはケース1aの開口を液密に閉塞するように構成されている。蓋体1gの中央には第二パーツ2の後述のシャフト部2bの挿通穴1hが形成されている。 In the illustrated example, the first part 1 is configured to have a short cylindrical shape. More specifically, the first part 1 includes a case 1a having a bottomed cylindrical shape and a lid 1g that closes an opening opposite to the bottom side of the case 1a. The outer surface of the bottom portion of the case 1a is surrounded by a circumferential wall portion 1b formed so as to border a corner portion between the outer surface and the side portion of the case 1a. A recess 1c described later is formed in the first part 1 by the circumferential wall portion 1b. Further, a shaft portion 1d is formed at the center of the recess 1c so as to protrude from the outer surface of the bottom portion of the case 1a by the same dimension as that of the circumferential wall portion 1b. The shaft portion 1d is configured so that the outline of the cross section in the direction perpendicular to the protruding direction is positioned on the virtual circular arc. The lid 1g is configured to liquid-tightly close the opening of the case 1a. An insertion hole 1h of a shaft portion 2b described later of the second part 2 is formed in the center of the lid 1g.
 一方、図示の例では、第二パーツ2は、第一パーツ1のケース1a内に回転可能に納められるローター部2aと、このローター部2aの回転中心に一端を一体に連接させてこの回転中心線xに沿ってローター部2aから突き出すシャフト部2bとを備えている。ピニオン部3は中央に貫通孔3bを備えた歯車体3aのこの貫通穴3bに第二パーツ2のシャフト部2bの他端側を挿通固定させることで、第二パーツ2に備えられている。 On the other hand, in the illustrated example, the second part 2 includes a rotor part 2a that is rotatably accommodated in the case 1a of the first part 1, and one end integrally connected to the rotation center of the rotor part 2a. And a shaft portion 2b protruding from the rotor portion 2a along the line x. The pinion part 3 is provided in the second part 2 by inserting and fixing the other end side of the shaft part 2b of the second part 2 into the through hole 3b of the gear body 3a having the through hole 3b in the center.
 第一パーツ1と第二パーツ2とは、第二パーツ2のシャフト部2bを前記蓋体1gの挿通穴1hを通じて第一パーツ1外に位置させるようにしてこの第二パーツ2のローター部2aを第一パーツ1内に納めることで組み合わされている。ローター部2aの回転中心線x上にピニオン部3の回転中心、凹所1cの中央に形成された軸部1dが略位置されるようになっている。(図10) The first part 1 and the second part 2 include a rotor part 2a of the second part 2 such that the shaft part 2b of the second part 2 is positioned outside the first part 1 through the insertion hole 1h of the lid 1g. Are combined in the first part 1. On the rotation center line x of the rotor part 2a, the rotation center of the pinion part 3 and the shaft part 1d formed at the center of the recess 1c are substantially positioned. (Fig. 10)
 粘性流体(図示は省略する。)は、第一パーツ1内に封入され、第二パーツ2のローター部2aの回転又は相対的な回転に制動力を作用させるようになっている。かかる粘性流体としては、典型的にはシリコンオイルやグリスオイルが用いられる。 Viscous fluid (not shown) is enclosed in the first part 1 and applies a braking force to the rotation or relative rotation of the rotor part 2a of the second part 2. As such a viscous fluid, silicone oil or grease oil is typically used.
 支持体Fは、この回転ダンパー体Dの前記第一パーツ1及び第二パーツ2の他方に設けられた凹所1cに対する突所4を備え、この凹所1cに突所4を納めてこの回転ダンパー体Dを回転可能に支持する。図示の例では、支持体Fの突所4は、第一パーツ1の前記凹所1cに納まるようになっている。 The support body F is provided with a protrusion 4 for the recess 1c provided on the other of the first part 1 and the second part 2 of the rotary damper body D. The protrusion 4 is placed in the recess 1c and rotated. The damper body D is rotatably supported. In the example shown in the drawing, the protrusion 4 of the support F is placed in the recess 1 c of the first part 1.
 支持体Fの突所4は、前記周回壁部1bにより形成される略円形の凹所1c内に収まる大きさを持つように構成されている。突所4の中央には前記ラック体Rの移動方向に長い長穴状をなす前記軸部1dに対する支持穴5が形成されている。 The protrusion 4 of the support body F is configured to have a size that can be accommodated in a substantially circular recess 1c formed by the circumferential wall portion 1b. A support hole 5 for the shaft portion 1d is formed in the center of the protrusion 4 in the shape of a long hole that is long in the moving direction of the rack body R.
 この支持穴5の幅は軸部1dの径と略等しく、一方、この支持穴5の長さは軸部1dの径よりも大きくなっている。 The width of the support hole 5 is substantially equal to the diameter of the shaft portion 1d, while the length of the support hole 5 is larger than the diameter of the shaft portion 1d.
 また、前記突所4も長さと幅を持つように構成されている。突所4は前記ラック体Rの移動方向(図3及び図4で矢印で示す方向)にその長さ方向を揃わせている。突所4の長さ及び幅はいずれも前記凹所1cの径よりも小さくなっている。 The protrusion 4 is also configured to have a length and a width. The length of the protrusion 4 is aligned with the moving direction of the rack body R (the direction indicated by the arrow in FIGS. 3 and 4). The length and width of the protrusion 4 are both smaller than the diameter of the recess 1c.
 そして、この実施の形態にあっては、かかる凹所1c及び突所4に、前記ピニオン部3に組み合わされるラック体Rの一方向に向けた移動又は相対的な移動時にこのラック体Rと同じ方向への回転ダンパー体Dの移動により係合し合うと共に、このラック体Rの他方向に向けた移動又は相対的な移動時にはこのラック体Rと同じ方向への回転ダンパー体Dの移動により係合を解く、係合部1e、4aを形成させている。 In this embodiment, the recess 1c and the protrusion 4 are the same as the rack body R when the rack body R combined with the pinion portion 3 is moved in one direction or relatively moved. Engage with each other by movement of the rotary damper body D in the direction, and at the time of movement of the rack body R in the other direction or relative movement, it is engaged by movement of the rotary damper body D in the same direction as the rack body R. Engagement portions 1e and 4a are formed to solve the problem.
 図示の例では、ラック体Rの一方向に向けた前記移動時には、このように移動されるラック体Rにピニオン部3を噛み合わせている回転ダンパー体Dは長穴状をなす支持穴5におけるラック体Rの移動先側に位置される穴端部(図3における左側の穴端部)にその軸部1dを突き当てるように連れ移動され、このときラック体Rの移動後方側に向けられた突所4の端部に形成された係合部4aと凹所1cの周回壁部1bに形成された係合部1eとが係合されるようになっている。(図3)これによりこの凹所1cの備えられている第一パーツ1は支持体Fと一体化されることから、ラック体Rの前記移動により第二パーツ2のみが回転されこの回転には前記粘性流体による制動力が作用され、ラック体Rの前記移動にこの制動力が作用されることとなる。図示の例ではこのとき、後述する支持体F内に形成されたストッパ8が回転ダンパー体Dの第一パーツ1にラック体Rの前記移動先側において突き当たるようになっている。(図5) In the illustrated example, during the movement in one direction of the rack body R, the rotary damper body D that engages the pinion portion 3 with the rack body R moved in this way is in the support hole 5 having a long hole shape. The rack body R is moved so that the shaft portion 1d abuts against the hole end portion (the left hole end portion in FIG. 3) located on the movement destination side of the rack body R, and at this time, the rack body R is directed to the rear side of the movement. The engaging portion 4a formed at the end of the protruding portion 4 is engaged with the engaging portion 1e formed on the circumferential wall portion 1b of the recess 1c. (FIG. 3) As a result, the first part 1 provided with the recess 1c is integrated with the support F, so that only the second part 2 is rotated by the movement of the rack body R. A braking force by the viscous fluid is applied, and this braking force is applied to the movement of the rack body R. In the illustrated example, at this time, a stopper 8 formed in a support body F, which will be described later, comes into contact with the first part 1 of the rotary damper body D on the movement destination side of the rack body R. (Fig. 5)
 一方、ラック体Rの他方向に向けた前記移動時には、このように移動されるラック体Rにピニオン部3を噛み合わせている回転ダンパー体Dは長穴状をなす支持穴5におけるラック体Rの移動先側に位置される穴端部(図4における右側の穴端部)にその軸部1dを突き当てるように連れ移動され、このときラック体Rの移動先側に向けられた突所4の端部に形成された係合部4aと凹所1cの周回壁部1bに形成された係合部1eとの係合が解かれると共に、ラック体Rの移動後方側に向けられた突所4の端部と凹所1cの周回壁部1bとの間には間隔が形成されるようになっている。これによりこの凹所1cの備えられている第一パーツ1は支持体Fと分離されることから、ラック体Rの前記移動により第一パーツ1と一緒に第二パーツ2も回転されこの回転には前記粘性流体による制動力は作用されず、ラック体Rの前記移動には制動力が作用されないこととなる。 On the other hand, during the movement in the other direction of the rack body R, the rotary damper body D that engages the pinion portion 3 with the rack body R thus moved is the rack body R in the support hole 5 having a long hole shape. 4 is moved so that the shaft portion 1d abuts against the hole end portion (the right-side hole end portion in FIG. 4) positioned on the movement destination side of the rack body R, and at this time, the protrusion directed toward the movement destination side of the rack body R 4 is disengaged between the engaging portion 4a formed at the end of 4 and the engaging portion 1e formed at the circumferential wall portion 1b of the recess 1c, and the protrusion directed toward the moving rear side of the rack body R. A space is formed between the end of the place 4 and the circumferential wall 1b of the recess 1c. As a result, the first part 1 provided with the recess 1c is separated from the support body F, so that the second part 2 is rotated together with the first part 1 by the movement of the rack body R, and this rotation is performed. No braking force is applied by the viscous fluid, and no braking force is applied to the movement of the rack body R.
 かかるラック体Rの一方向に向けた前記移動時にのみこのラック体Rに回転ダンパー体Dの制動力が作用される機能は、前記係合部1eを備えた凹所1c内に係合部4aを備えた突所4を納めることで実現される構成となっていることから、回転ダンパー体Dの直径方向の大きさは必要最小限で足り、この回転ダンパー体Dひいてはダンパー装置をできるだけ小型に構成させることができる。 The function that the braking force of the rotary damper body D is applied to the rack body R only during the movement in one direction of the rack body R is that the engaging portion 4a is provided in the recess 1c provided with the engaging portion 1e. Therefore, the size of the rotary damper body D in the diametrical direction can be minimized, and the rotary damper body D and the damper device can be made as small as possible. Can be configured.
 また、この実施の形態にあっては、回転ダンパー体Dの凹所1cの中央に形成された軸部1dを、支持体Fの突所4の中央に形成されたラック体Rの移動方向に長い長穴状をなす支持穴5に納めることで、ラック体Rの移動方向と同じ方向への回転ダンパー体Dのスライド移動を可能とした状態でこの回転ダンパー体Dを全体として回転可能に支持、つまり軸支しており、このスライド移動及び回転の摺動抵抗ができるだけ小さくなるようにしている。 In this embodiment, the shaft portion 1d formed at the center of the recess 1c of the rotary damper body D is moved in the moving direction of the rack body R formed at the center of the protrusion 4 of the support F. The rotary damper body D is supported as a whole in a state where the rotary damper body D can be slid in the same direction as the movement direction of the rack body R by being placed in the support hole 5 having a long slot shape. That is, it is pivotally supported, and the sliding resistance of this sliding movement and rotation is made as small as possible.
 また、この実施の形態にあっては、回転ダンパー体Dの凹所1cの側壁、すなわち、前記周回壁部1bに設けられた歯によってこの凹所1c内に内歯車状部1fが形成されており、この内歯車状部1fが回転ダンパー体D側の係合部1eとして機能するようになっている。これにより、ラック体Rの一方向に向けた前記移動時は直ちに突所4側の係合部4aを回転ダンパー体D側の係合部1eに係合させてこのラック体Rの移動に制動力を作用させるようにすることができる。 In this embodiment, the internal gear-like portion 1f is formed in the recess 1c by the teeth provided on the side wall of the recess 1c of the rotary damper body D, that is, the circumferential wall portion 1b. The internal gear-shaped portion 1f functions as the engaging portion 1e on the rotary damper body D side. Thus, at the time of the movement in one direction of the rack body R, the engagement portion 4a on the protrusion 4 side is immediately engaged with the engagement portion 1e on the rotary damper body D side to restrain the movement of the rack body R. Power can be applied.
 図示の例では、支持体Fは、筒両端を共に開放させた短寸の角筒状を呈している。支持体Fの四つの側面部6…6のうちの一つの外面部に、前記固定側となる対象物に対する取付部7が形成されている。取付部7は中心軸7aとこの中心軸7aの直径方向両側からそれぞれ側方に突き出すウイング部7bとを備えており、支持体Fは長穴状を呈する図示しない固定側となる対象物に形成された取付穴にかかる取付部7を差し込んだ後に略90度捻回することで、かかる取付穴の差し込み先側において固定側となる対象物の面に前記ウイング部7bを引っ掛けてこの固定側となる対象物にワンタッチで取り付けられるようになっている。 In the example shown in the figure, the support F has a short rectangular tube shape in which both ends of the tube are open. A mounting portion 7 for the object on the fixed side is formed on one outer surface portion of the four side surface portions 6. The mounting portion 7 includes a central shaft 7a and wing portions 7b projecting laterally from both diametrical sides of the central shaft 7a, and the support body F is formed on an object that is a fixed side (not shown) having a long hole shape. After inserting the attachment portion 7 over the attached attachment hole, it is twisted approximately 90 degrees, so that the wing portion 7b is hooked on the surface of the object to be fixed on the insertion destination side of the attachment hole, and the fixed side and It can be attached to the target object with a single touch.
 図示の例では、前記突所4及び支持穴5は、支持体Fにおけるこの取付部7が形成されている側面部6に隣り合う側面部6の一方に設けられている。突所4はこの側面部6の内面から突き出すように形成されている。前記回転ダンパー体Dはそのローター部2aの回転中心線xをこの突所4の形成された側面部6に直交させるようにして支持体F内に納められている。すなわち、回転ダンパー体Dは第一パーツ1を構成する底部を支持体Fにおける突所4の形成された側面部6に向き合わせ、その凹所1cに突所4を納め、かつ、この側面部6に対向する側面部6に第二パーツ2のシャフト部2bの他端を向き合わせるようにして、支持体F内に納められている。 In the illustrated example, the protrusion 4 and the support hole 5 are provided on one of the side surface portions 6 adjacent to the side surface portion 6 on which the mounting portion 7 of the support body F is formed. The protrusion 4 is formed so as to protrude from the inner surface of the side surface portion 6. The rotary damper body D is accommodated in the support body F so that the rotation center line x of the rotor portion 2a is orthogonal to the side surface portion 6 where the protrusion 4 is formed. That is, the rotary damper body D faces the bottom portion constituting the first part 1 to the side surface portion 6 of the support F where the protrusion 4 is formed, and the protrusion 4 is accommodated in the recess 1c. 6, the other end of the shaft portion 2 b of the second part 2 faces the side surface portion 6 facing the side 6, and is housed in the support body F.
 ラック体Rは、図示の例では、その移動方向に長い帯板状をなすスライダSに形成されている。このスライダSの一端には制動対象物に対する固定部9が形成されている。このスライダSの幅は支持体Fの取付部7の形成された側面部6とこれに対向する側面部6との間に隙間少なく納まる寸法となっている。このスライダSの一面側には、その長さ方向に沿った両縁部のそれぞれにおいて、縁端10との間にやや間隔を開けてスライダSの長さ方向に沿って続くリブ11が形成されている。スライダSは、その他面を支持体Fにおける突所4の形成された側面部6に対向する側面部6に接しさせるようにして、支持体Fに組み合わされている。支持体Fにおける取付部7の形成された側面部6とこれに対向する側面部6とにはそれぞれスライダSの前記縁端10を納める案内溝6aが形成されている。ラック体Rは、かかるスライダSにおける支持体Fの取付部7の形成側に位置されるリブ11の内側に形成されている。 In the illustrated example, the rack body R is formed on a slider S having a long strip shape in the moving direction. At one end of the slider S, a fixing portion 9 for the object to be braked is formed. The width of the slider S is such that there is little clearance between the side surface portion 6 where the mounting portion 7 of the support F is formed and the side surface portion 6 facing this. On one side of the slider S, ribs 11 are formed at both edges along the length direction so as to extend along the length direction of the slider S with a slight space between the edge 10. ing. The slider S is combined with the support body F so that the other surface is in contact with the side surface portion 6 of the support body F facing the side surface portion 6 where the protrusions 4 are formed. A guide groove 6a for receiving the edge 10 of the slider S is formed on the side surface portion 6 of the support F where the mounting portion 7 is formed and on the side surface portion 6 facing this. The rack body R is formed on the inner side of the rib 11 positioned on the slider S on the side where the mounting portion 7 of the support body F is formed.
 図示の例では、前記のように支持体Fに納められた回転ダンパー体Dのピニオン部3がスライダSの一対のリブ11、11間に納まり、かつ、ラック体Rに噛み合うようになっている。そして、このスライダSの移動によりラック体Rが移動され、ピニオン部3を介して回転ダンパー体Dは第二パーツ2のみを回転させ、又は全体として回転されるようになっている。 In the illustrated example, the pinion portion 3 of the rotary damper body D accommodated in the support body F is accommodated between the pair of ribs 11, 11 of the slider S and meshes with the rack body R as described above. . Then, the rack body R is moved by the movement of the slider S, and the rotary damper body D rotates only the second part 2 through the pinion portion 3 or is rotated as a whole.
 また、この実施の形態にあっては、支持体F側の係合部4aは、前記突所4の側壁4bから凹所1cの側壁(前記周回壁部1b)側に突き出すと共に、この突所4の突きだし基部を巡る支持体Fの面部、すなわち、前記側面部6の内面6bに一体化されて、ラック体Rの一方向に向けた移動又は相対的な移動時に回転ダンパー体Dの係合部1eとして機能する内歯車状部1fの隣り合う歯間に入り込む爪状体として構成されている。また、この支持体F側の係合部4aは、突所4を周回する方向において隣り合う係合部4aとの間に間隔を開けて二箇所に設けられている。これにより、この実施の形態にあっては、支持体F側の係合部4aをできるだけ破損し難い性状のものとしている。 In this embodiment, the engaging portion 4a on the support F side protrudes from the side wall 4b of the protrusion 4 toward the side wall (the circumferential wall portion 1b) of the recess 1c. 4 is integrated with the surface portion of the support body F that goes around the protruding base portion, that is, the inner surface 6b of the side surface portion 6, and the rotation damper body D is engaged when moving in one direction or relative movement of the rack body R. It is configured as a claw-like body that enters between adjacent teeth of the internal gear-like portion 1f that functions as the portion 1e. In addition, the engaging portions 4a on the support F side are provided at two locations with a space between the engaging portions 4a adjacent to each other in the direction in which the protrusion 4 circulates. As a result, in this embodiment, the engaging portion 4a on the support F side is made as hard as possible to break.
 図11は、前記支持体F側の係合部4aを、前記突所4を周回する方向において隣り合う係合部4a、4aとの間に間隔を開けて二箇所に設けると共に、この二箇所の係合部4a、4aのうちの一方の突きだし端4cがこれらの他方の突きだし端4cよりも回転ダンパー体Dの凹所1cの側壁(前記周回壁部1b)に近い位置にあるようにした変更例を示したものである。 FIG. 11 shows that the engaging portion 4a on the support F side is provided at two locations with a space between the engaging portions 4a and 4a adjacent to each other in the direction in which the protrusion 4 circulates. One protruding end 4c of the engaging portions 4a, 4a is located closer to the side wall (the circumferential wall portion 1b) of the recess 1c of the rotary damper body D than the other protruding end 4c. The example of a change is shown.
 かかる二箇所の係合部4a、4aはそれぞれ、前記回転ダンパー体Dの係合部1eとして機能する内歯車状部1fの隣り合う歯間に相補状に入り込むと共に、かかる二箇所の係合部4a、4aの間に前記回転ダンパー体Dの係合部1eとして機能する内歯車状部1fの一つの歯を相補状に受け入れる形状となっている。 The two engaging portions 4a and 4a enter in a complementary manner between adjacent teeth of the internal gear-shaped portion 1f functioning as the engaging portion 1e of the rotary damper body D, and the two engaging portions. Between 4a and 4a, it has the shape which receives one tooth | gear of the internal gear-shaped part 1f which functions as the engaging part 1e of the said rotation damper body D complementarily.
 前記突所4の中心から係合部4aの突きだし端4cまでの距離が二箇所の係合部4a、4aにおいて等しいと、支持体F側の係合部4aと回転ダンパー体Dの係合部1eとが噛み合うときに、支持体F側の二箇所の係合部4a、4aの間に回転ダンパー体Dの係合部1eとして機能する内歯車状部1fを構成する二つの歯が同時に入り込んでしまうような状態が生じ得る。(図12)前記支持体F側の係合部を、図11に示される変更例のようにしておけば、このような状態が生じることを回避して、ダンパー装置をスムースに且つ作動音を最小限にして動作させることができる。 When the distance from the center of the protrusion 4 to the protruding end 4c of the engaging portion 4a is equal in the two engaging portions 4a and 4a, the engaging portion 4a on the support F side and the engaging portion of the rotary damper body D When engaging with 1e, two teeth constituting the internal gear-shaped portion 1f functioning as the engaging portion 1e of the rotary damper body D are simultaneously inserted between the two engaging portions 4a, 4a on the support F side. This can cause a situation. (FIG. 12) If the engaging portion on the side of the support body F is set as in the modified example shown in FIG. 11, such a situation is avoided, and the damper device is made smooth and the operation sound is reduced. It can be operated with a minimum.
 図13は、前記支持体Fに、前記ラック体Rの形成されたスライダSに設けたこのスライダSの移動方向に沿った突条12を納める案内溝6cを形成させた例を示している。図示の例では、スライダSの他面(リブ11の形成側と反対の側の面)であって、スライダSの幅方向略中程の位置に、この他面から突きだし且つスライダSの移動方向、すなわち、長さ方向に続く突条12が形成されている。そして、この例では、前記支持体Fにおける突所4の形成された側面部6に対向する側面部6の内側に、かかる突条12を納める案内溝6cを形成させている。このようにした場合、ダンパー装置の動作時にスライダSの幅方向のがたつきを抑止させてダンパー装置をスムースに且つ作動音を最小限にして動作させることができる。 FIG. 13 shows an example in which the support F is formed with a guide groove 6c provided in the slider S on which the rack R is formed and which accommodates the protrusion 12 along the moving direction of the slider S. In the illustrated example, the other surface of the slider S (the surface opposite to the side on which the ribs 11 are formed) protrudes from the other surface at a position approximately in the middle of the width direction of the slider S and the moving direction of the slider S. That is, the protrusion 12 which continues in the length direction is formed. And in this example, the guide groove 6c which accommodates this protrusion 12 is formed inside the side part 6 which opposes the side part 6 in which the protrusion 4 was formed in the said support body F. As shown in FIG. In such a case, it is possible to suppress the rattling of the slider S in the width direction during the operation of the damper device, and to operate the damper device smoothly and with minimal operating noise.
 また、この実施の形態にあっては、前記のように、スライド移動方向に長い帯板状をなすスライダSの一面側であって、その長さ方向に沿った両縁部にそれぞれリブ11が形成されていると共に、二箇所のリブ11、11の一方にラック体Rが形成されており、この二箇所のリブ11、11間に回転ダンパー体Dのピニオン部3が納まるようになっている。すなわち、回転ダンパー体Dのピニオン部3の歯が形成された厚さ側が、スライダSのリブ11の内面に向き合った状態で、スライダSと回転ダンパー体Dとは組み合わされるようになっている。より具体的には、支持体Fの突所4を回転ダンパー体Dの凹所1cに納めるようにして支持体F内に回転ダンパー体Dを納めた状態から、この回転ダンパー体Dのピニオン部3と支持体Fにおける前記突所4の形成された側面部6に対向する側面部6との間にスライダSを差し込み状に納めてダンパー装置の組み立てがなされるようになっている。 Further, in this embodiment, as described above, the ribs 11 are provided on one side of the slider S having a long strip shape in the sliding movement direction and at both edge portions along the length direction. At the same time, a rack body R is formed on one of the two ribs 11, 11, and the pinion portion 3 of the rotary damper body D is accommodated between the two ribs 11, 11. . That is, the slider S and the rotary damper body D are combined in a state where the thickness side where the teeth of the pinion portion 3 of the rotary damper body D are formed faces the inner surface of the rib 11 of the slider S. More specifically, the pinion portion of the rotating damper body D is moved from the state in which the rotating damper body D is accommodated in the supporting body F so that the protrusion 4 of the supporting body F is accommodated in the recess 1c of the rotating damper body D. The damper device is assembled by inserting a slider S between the support member 3 and the side surface portion 6 of the support body F facing the side surface portion 6 where the protrusion 4 is formed.
 図13に示される例では、さらに、かかる回転ダンパー体Dのピニオン部3の回転中心、図示の例では、第二パーツ2のシャフト2bの先端部に、スライダSの前記一面に摺接する突起2cが形成されている。これにより、この例では、回転ダンパー体Dのピニオン部とスライダSとの摺接抵抗をできるだけ減少させた状態で、前記組み立てのためのクリアランスに起因したダンパー装置の作動時のがたつきを可及的に減少させている。 In the example shown in FIG. 13, the protrusion 2 c that is in sliding contact with the one surface of the slider S is further provided at the rotation center of the pinion portion 3 of the rotary damper body D, in the illustrated example, at the tip of the shaft 2 b of the second part 2. Is formed. Thereby, in this example, rattling at the time of operation of the damper device due to the clearance for the assembly is possible with the sliding contact resistance between the pinion portion of the rotary damper body D and the slider S reduced as much as possible. As much as possible.
 また、この実施の形態にあっては、前記スライダSの一面からのリブ11の突きだし寸法が、回転ダンパー体Dのピニオン部3の厚さと同じか、それ以上となるようにしてある。これにより、この実施の形態にあっては、回転ダンパー体Dのピニオン部3の歯をその回転軸方向の広い範囲でスライダSのピニオン部3にしっかりと噛み合わせることができるようになっている。
 なお、2010年11月24日に出願された日本特許出願第2010-261231号の明細書、特許請求の範囲、図面及び要約書の全内容をここに引用し、本発明の明細書の開示として、取り入れるものである。
In this embodiment, the protruding dimension of the rib 11 from one surface of the slider S is equal to or greater than the thickness of the pinion portion 3 of the rotary damper body D. Thereby, in this embodiment, the teeth of the pinion portion 3 of the rotary damper body D can be firmly engaged with the pinion portion 3 of the slider S in a wide range in the rotation axis direction. .
The entire contents of the specification, claims, drawings and abstract of Japanese Patent Application No. 2010-261231 filed on November 24, 2010 are cited herein as disclosure of the specification of the present invention. Incorporate.

Claims (10)

  1.  第一パーツと、この第一パーツに回転又は相対的に回転可能に組み合わされた第二パーツと、両パーツ間に充填された粘性流体とを備え、この粘性流体により前記回転に制動力を作用させるように構成されると共に、前記第一パーツ及び第二パーツのいずれか一方にピニオン部を備えさせてなる回転ダンパー体と、
     この回転ダンパー体の前記第一パーツ及び第二パーツの他方に設けられた凹所に対する突所を備え、この凹所に突所を納めてこの回転ダンパー体を回転可能に支持する支持体とを備えてなり、
     この凹所及び突所に、前記ピニオン部に組み合わされるラック体の一方向に向けた移動又は相対的な移動時にこのラック体と同じ方向への回転ダンパー体の移動により係合し合うと共に、このラック体の他方向に向けた移動又は相対的な移動時にはこのラック体と同じ方向への回転ダンパー体の移動により係合を解く、係合部を形成させてなることを特徴とするダンパー装置。
    A first part, a second part that is combined with the first part so as to be rotatable or relatively rotatable, and a viscous fluid filled between both parts are provided, and a braking force is applied to the rotation by the viscous fluid. A rotating damper body comprising a pinion portion on one of the first part and the second part,
    A support for a recess provided in the other of the first part and the second part of the rotary damper body, and a support for rotatably supporting the rotary damper body by placing the protrusion in the recess; Prepared
    The recesses and the protrusions are engaged with each other by movement of the rotating damper body in the same direction as the rack body during movement in one direction or relative movement of the rack body combined with the pinion portion, and A damper device comprising: an engaging portion that is disengaged by moving the rotating damper body in the same direction as the rack body during movement in the other direction of the rack body or relative movement;
  2.  回転ダンパー体の凹所の中央に、支持体の突所の中央に形成されたラック体の移動方向に長い長穴状をなす支持穴に納まる軸部が形成されていることを特徴とする請求項1に記載のダンパー装置。 A shaft portion is formed in the center of the recess of the rotary damper body so as to be accommodated in a support hole having a long hole shape in the moving direction of the rack body formed in the center of the protrusion of the support body. Item 2. The damper device according to Item 1.
  3.  回転ダンパー体の凹所の側壁に設けられた歯によってこの凹所内に内歯車状部が形成されており、この内歯車状部が回転ダンパー体側の係合部として機能するようになっていることを特徴とする請求項1又は請求項2に記載のダンパー装置。 An internal gear-shaped portion is formed in the recess by teeth provided on the side wall of the recess of the rotary damper body, and the internal gear-shaped portion functions as an engaging portion on the rotary damper body side. The damper device according to claim 1 or 2, characterized by the above.
  4.  支持体側の係合部が、突所の側壁から凹所の側壁側に突き出すと共に、この突所の突きだし基部を巡る支持体の面部に一体化されて、ラック体の一方向に向けた移動又は相対的な移動時に回転ダンパー体の係合部として機能する内歯車状部の隣り合う歯間に入り込む爪状体として構成されていることを特徴とする請求項3に記載のダンパー装置。 The support side engaging portion protrudes from the side wall of the protrusion to the side wall of the recess, and is integrated with the surface portion of the support body around the protruding base portion of the protrusion to move in one direction of the rack body or The damper device according to claim 3, wherein the damper device is configured as a claw-like body that enters between adjacent teeth of an internal gear-like portion that functions as an engaging portion of the rotary damper body during relative movement.
  5.  支持体側の係合部が、突所を周回する方向において隣り合う係合部との間に間隔を開けて少なくとも二箇所に設けられていることを特徴とする請求項4に記載のダンパー装置。 5. The damper device according to claim 4, wherein the support-side engaging portions are provided at least at two locations with a space between adjacent engaging portions in a direction of circling the protrusion.
  6.  支持体側の係合部が、突所を周回する方向において隣り合う係合部との間に間隔を開けて二箇所に設けられていると共に、この二箇所の係合部のうちの一方の突きだし端がこれらの他方の突きだし端よりも回転ダンパー体の凹所の側壁に近い位置にあるようにしてあることを特徴とする請求項4に記載のダンパー装置。 The engaging portion on the support side is provided at two positions with a gap between adjacent engaging portions in the direction of circling the protrusion, and one of the two engaging portions protrudes. The damper device according to claim 4, wherein the end is located closer to the side wall of the recess of the rotary damper body than the other protruding end.
  7.  ラック体はスライダに備えられていると共に、支持体及びこのスライダのいずれか一方に、これらの他方に設けたこのスライダの移動方向に沿った突条を納める案内溝が形成されていることを特徴とする請求項1に記載のダンパー装置。 The rack body is provided in the slider, and a guide groove is provided in either one of the support body and the slider to receive a protrusion along the moving direction of the slider provided on the other of the support body and the slider. The damper device according to claim 1.
  8.  移動方向に長い帯板状をなすスライダの一面側であって、その長さ方向に沿った両縁部にそれぞれリブが形成されていると共に、二箇所のリブの一方にラック体が形成されており、この二箇所のリブ間に回転ダンパー体のピニオン部が納まるようになっていることを特徴とする請求項1に記載のダンパー装置。 Ribs are formed on one side of the slider, which has a long strip shape in the moving direction, on both edges along the length direction, and a rack body is formed on one of the two ribs. The damper device according to claim 1, wherein a pinion portion of the rotary damper body is accommodated between the two ribs.
  9.  回転ダンパー体のピニオン部の回転中心にスライダの一面に摺接する突起が形成されていることを特徴とする請求項8に記載のダンパー装置。 The damper device according to claim 8, wherein a protrusion that is in sliding contact with one surface of the slider is formed at the rotation center of the pinion portion of the rotary damper body.
  10.  スライダの一面からのリブの突きだし寸法が、回転ダンパー体のピニオン部の厚さと同じか、それ以上であることを特徴とする請求項8に記載のダンパー装置。 The damper device according to claim 8, wherein the protruding dimension of the rib from one surface of the slider is equal to or greater than the thickness of the pinion portion of the rotating damper body.
PCT/JP2011/076935 2010-11-24 2011-11-22 Damper device WO2012070583A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2012545769A JP5836281B2 (en) 2010-11-24 2011-11-22 Damper device

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2010261231 2010-11-24
JP2010-261231 2010-11-24

Publications (1)

Publication Number Publication Date
WO2012070583A1 true WO2012070583A1 (en) 2012-05-31

Family

ID=46145924

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2011/076935 WO2012070583A1 (en) 2010-11-24 2011-11-22 Damper device

Country Status (2)

Country Link
JP (1) JP5836281B2 (en)
WO (1) WO2012070583A1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020241518A1 (en) * 2019-05-28 2020-12-03 株式会社パイオラックス Damper device
JPWO2020241519A1 (en) * 2019-05-28 2020-12-03

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3604850A4 (en) 2017-03-31 2020-12-23 Nifco Inc. One-way damper mechanism

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002242978A (en) * 2001-01-25 2002-08-28 Julius Blum Gmbh Shock absorber for furniture movable piece
JP2009516132A (en) * 2005-11-14 2009-04-16 イリノイ トゥール ワークス インコーポレイティド Viscous strand damper assembly

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002242978A (en) * 2001-01-25 2002-08-28 Julius Blum Gmbh Shock absorber for furniture movable piece
JP2009516132A (en) * 2005-11-14 2009-04-16 イリノイ トゥール ワークス インコーポレイティド Viscous strand damper assembly

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020241518A1 (en) * 2019-05-28 2020-12-03 株式会社パイオラックス Damper device
JPWO2020241519A1 (en) * 2019-05-28 2020-12-03
JPWO2020241518A1 (en) * 2019-05-28 2020-12-03
WO2020241519A1 (en) * 2019-05-28 2020-12-03 株式会社パイオラックス Damper device

Also Published As

Publication number Publication date
JP5836281B2 (en) 2015-12-24
JPWO2012070583A1 (en) 2014-05-19

Similar Documents

Publication Publication Date Title
JP6598124B2 (en) Opening and closing body locking device
JP3741999B2 (en) Corrugated tube rotation holder
JP6038136B2 (en) Opening and closing body locking device
JP2002052970A (en) Braking structure of rotor and assist grip furnished with the braking structure of rotor
US9752356B2 (en) Lock release apparatus and lock apparatus having the same
JP5836281B2 (en) Damper device
JP5236014B2 (en) Tilt hinge
JP4565698B2 (en) Folding handle
JP3966842B2 (en) Open / close braking device
JP6920728B2 (en) Rotating damper device with one-way clutch and one-way clutch
JP5570525B2 (en) Hinge device
JP3933969B2 (en) Rotating damper
JP5481120B2 (en) Assist grip
JP7133709B2 (en) damper device
KR101114136B1 (en) Operating mechanism of rotor
JP5436325B2 (en) Assist grip
JP4440495B2 (en) Rotating device
JP2005023951A (en) Free stop hinge device
JP2016216927A (en) Lock device
JP5690237B2 (en) Assist grip
JP6325387B2 (en) Door operation assist device
JP7269372B2 (en) unlocking device
JP3818953B2 (en) Sheet winding device
JP2018105395A (en) Clutch mechanism and speed reducer with clutch
JP3750818B2 (en) Damper with rotation resistance

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 11842971

Country of ref document: EP

Kind code of ref document: A1

ENP Entry into the national phase

Ref document number: 2012545769

Country of ref document: JP

Kind code of ref document: A

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 11842971

Country of ref document: EP

Kind code of ref document: A1