Damper
11230869 · 2022-01-25
Assignee
Inventors
Cpc classification
F16F2230/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2228/066
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E05F3/12
FIXED CONSTRUCTIONS
F16F2222/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2230/0005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2234/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F13/007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E05F5/006
FIXED CONSTRUCTIONS
F16F2232/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
E05F3/12
FIXED CONSTRUCTIONS
Abstract
A damper for fittings for furniture or household appliances has a housing in which a piston connected to a piston rod is guided in a linearly displaceable manner, the piston dividing an interior space in the housing into two chambers, wherein at least one flow channel is formed on or in the piston, which flow channel connects the two chambers to one another, wherein a throttle element is provided, which, in a damping position, keeps the cross-section of the at least one flow channel small when the piston moves in a first direction in order to generate high damping forces, and when the piston moves in the second direction opposite to the first direction, increases the cross-section of the at least one flow channel for reducing the damping forces by a movement of the throttle element.
Claims
1. A damper (1) for fittings for furniture or domestic appliances, comprising a housing (2) in which a piston which is connected to a piston rod (3) is guided in a linearly displaceable manner and divides an interior space (20) in the housing (2) into two chambers, wherein at least one flow channel (9) which connects the two chambers to one another is formed on or in the piston, wherein a throttle element (6) in the form of a piston ring is provided, which, in a damping position, reduces the cross-section of the at least one flow channel (9) when the piston moves in a first direction in order to generate increased damping forces, and when the piston moves in the second second direction opposite to the first direction, increases the cross-section of the at least one flow channel (9) for reducing the damping forces by a movement of the throttle element (6), wherein the throttle element (6) is pretensioned into the damping position by at least one spring element (72) and the piston (3) is pretensioned via a spring (8) into a position with extended piston rod (3), wherein the throttle element (6) is fixed in a clamping manner between a holder (30) connected to the piston rod (3) and the at least one spring element (72), wherein the at least one spring element (72) is integrally formed with a fixing element (7) fixed to the piston rod (3), and wherein the throttle element (6) is pretensioned by means of the at least one spring element (72) against the holder (30).
2. The damper according to claim 1, wherein the throttle element (6) and the at least one spring element (72) are made of different materials.
3. The damper according to claim 1, wherein the fixing element (7) is fixed with a pin (70) in the sleeve-shaped piston rod (3) and is held by clamping forces.
4. The damper according to claim 1, wherein the housing (2) is pot-shaped and has, at an area adjacent to an opening, a seal (4) which has an inner opening (40) for the piston rod (3) to pass through.
5. The damper according to claim 4, wherein the seal (4) is displaceably mounted on the housing (2) for volume compensation by the insertion or withdrawal of the piston rod (3).
6. The damper according to claim 4, wherein the seal (4) is held in the housing (2) via a cover (5).
7. The damper according to claim 6, wherein the cover (5) has an outer part (50) fixed to the housing (2) and an inner part (51) lying on the seal (4), wherein the outer part (50) is connected to the inner part (51) via at least one spring arm (52).
8. The damper according claim 1, wherein least one step (21, 22) for receiving a displaceable seal (4) and/or a cover (5) is provided on the pot-shaped housing (2) on the side opposite a base (23).
9. The damper according to claim 1, wherein the maximum stroke of the piston rod (3) is less than 6 mm.
10. The damper according to claim 1, wherein the throttle element (6) is provided a flow channel (61) having a first orifice (62) on an inside and a second orifice (63) on an outside as seen in a radial direction.
11. The damper according to claim 10, wherein a step (65) is provided as a recess at at least one orifice (62, 63).
12. A hinge, in particular for furniture or household appliances, having a damper (1) according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWING FIGURES
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
DETAILED DESCRIPTION OF THE EMBODIMENTS
(15) A damper 1 is designed as a linear damper and comprises a pot-shaped housing 2 on which a piston rod 3 is linearly displaceable. The piston rod 3 is connected to a piston in the interior space and passed at an opening in the housing 2 through a cover 5, which has an annular outer part 50 fixed to the housing 2 and an inner part 51. The inner part 51 holds a seal 4 in the housing 2, wherein the seal 4 can be displaced in the longitudinal direction of the piston rod 3 and the inner part 51 can be moved relative to the outer part 50 via spring arms 52.
(16) In
(17) The piston rod 3 is formed integrally with or connected to a disc-shaped holder 30 on which a throttle element 6 in the form of a piston ring is held. The throttle element 6 is arranged between a section of a fixing element 7 and the holder 30.
(18) The fixing element 7 comprises a pin 70 which is inserted into the sleeve-shaped piston rod 3 and fixed there, in particular by clamping forces, via bonding or other fastening means. The fixing element comprises a base 71 connected to the pin 70, on which spring elements 72 protrude, which serve for the elastic mounting of the throttle element 6.
(19) In addition, a spring 8 is provided which is supported by a first end 80 on a base of the pot-shaped housing 2 and which pretensions the fixing element 7 and thus the piston rod 3 into an extended position by an opposite end 81. The spring 8 is spiral-shaped with a continuously different winding diameter, so that it can be pressed flat against a base of housing 2 when compressed.
(20) In
(21) A first step 21 with a cylindrical section larger in diameter than the section 24 in which the seal 4 is received is formed on the housing 2. The seal 4 rests with the outer sealing lip 41 on the cylindrical section of step 21 and with an inner sealing lip 42 on the outer circumference of the piston rod 3.
(22) A second step 22, having a cylindrical section with a slightly larger diameter than the first step 21, is formed on the housing 2 adjacent to the first step 21. The cover 5 is fixed to the second step 22, wherein the annular outer part 50 is fixed to the transition between the first step 21 and the second step 22 and is connected to the annular inner part 51 via spring arms 52. Thus the seal 4 is held over the inner part 51 and optionally also pretensioned towards the interior space of the housing 2.
(23)
(24) If a movement is to be damped, for example a movement of a fitting such as a hinge or an pull-out guide, the piston rod 3 is pushed into the pot-shaped housing 2, as shown in
(25) In
(26) For a return movement, the piston rod 3 can now be moved back to an extended position, wherein the extension movement should occur in a smoother way, i.e. with lower damping forces than when the piston rod 3 is retracted. As shown in
(27) When the extension movement of the piston rod 3 is completed, as shown in
(28) In the embodiment example shown, a single flow channel 9 is recessed in the holder 30. The flow channel 9 can extend radially, helically or with other geometry and is closed at least over a section by the throttle element 6. It is of course possible to provide several flow channels 9 on the holder 30 and/or the throttle element 6. The throttle element 6 is held on the fixing element 7, wherein a projection 74 is formed on the spring element 72 to center the throttle element 6. It is also possible to fix the throttle element 6 to the spring arms 72 via fastening means or to glue it directly. The material of the throttle element 6 is preferably hard and can be coated on the side facing the flow channel 9.
(29) In
(30) The damper 1 according to the invention can also be used in other fittings instead of a hinge 101, e.g. in seven-link hinges, pull-out guides, sliding doors or all other fittings where a compact damper is required. The damper 1 preferably has a maximum stroke of the piston rod 3 of less than 5 mm, in particular 3 to 4.5 mm, and the longitudinal extension of the damper 1 is preferably less than 20 mm, in particular less than 18 mm, so that the design is very compact.
(31)
(32) The throttle element 6 is moved by the piston rod 3 which has a ring- or disc-shaped holder 30. Furthermore, a ring 32, which engages in the throttle element 6, is integrally formed with the piston rod 3. In the ring 32 there is a receptacle 33, into which a shortened pin 70 of a fixing element can engage.
(33) When the damper is acted upon by a force from the piston rod 3 in the axial direction, the medium flows through the flow channel 61 as shown in
(34) In
(35)
(36) A misalignment of the holder 30 to the throttle element 6 is also possible, so that, not shown here, the inner orifice 62 of the flow channel 61 is partially or completely covered by the ring 32. This changes the damping forces, since the additional flow resistance at the orifice 62, 63 to the holder 30 or ring 32 requires increased forces to move the piston 3.
(37) In order to reduce the influence of an off-center arrangement of the holder 30, the throttle element 6 of
(38) In order to eliminate the bottleneck at orifice 62, a step can also be formed here, which is designed as an angular recess that extends over the entire circumference of the throttle element 6. It is obviously also possible to provide for this step only in one area of orifice 62 and not over the entire circumference. Thus the orifice 62 is arranged radially offset to the outside, and the flow channel ends at the orifice 62 in the recess or step.
(39) As shown in
LIST OF REFERENCE SIGNS
(40) 1 Damper 2 Housing 3 Piston rod 4 Seal 5 Cover 6 Throttle element 7 Fixing element 8 Spring 9 Flow channel 20 Interior space 21 Step 22 Step 23 Base 24 Section 30 Holder 31 Surface 32 Ring 33 Receptacle 40 Opening 41 Sealing lip 42 Sealing lip 50 Outer part 51 Inner part 52 Spring arm 60 Gap 61 Flow channel 62 Orifice 63 Orifice 35 Step 70 Pin 71 Base 72 Spring element 73 Contact surface 74 Projection 80 End 81 End 101 Hinge 102 Side part 103 Hinge part 104 Lever 105 Lever 106 Rotational axis 107 Rotational axis 108 Rotational axis 109 Rotational axis 110 Pin 111 Cam guide 130 Mounting plate 131 Intermediate piece 140 Height adjustment 150 Depth adjustment