Slide Rail Assembly
The slide rail assembly addresses the lack of versatility in braking effects by using an auxiliary member to engage and disengage the braking device based on rail movement, providing a direct and obvious braking effect and smooth operation.
Patent Information
- Application Number
- JP2024107110
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2023-11-09
- Filing Date
- 2024-07-03
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2044-07-03
AI Technical Summary
Existing slide rail assemblies lack versatility in providing a braking effect when one slide rail moves a predetermined distance relative to another, failing to meet diverse market requirements.
A slide rail assembly with a braking device and an auxiliary member that switches states to engage and disengage the braking effect based on the relative movement of the rails, using an elastic member to directly drive the braking device and provide a direct and obvious braking effect.
The solution allows for a clear and direct braking effect during rail movement, informing the user of the predetermined position and reducing impact, while ensuring smooth operation by disengaging the braking effect when necessary.
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Abstract
Description
[Technical Field]
[0001] The present invention relates to a slide rail assembly, and more particularly to a slide rail assembly that has a braking effect when one slide rail is moved a predetermined distance relative to the other slide rail. [Background technology]
[0002] Patent Document 1 discloses a three-section slide rail assembly including a first rail, a second rail, a third rail, and a braking device. The third rail (e.g., an intermediate rail) is movably mounted between the first rail (e.g., an outer rail) and the second rail (e.g., an inner rail). The braking device is mounted to the first rail. The third rail includes a first pressing portion and a second pressing portion, respectively, disposed on both sides of the braking device. When the third rail is moved to open along a first direction or retract along a second direction relative to the first rail, the braking device can provide a braking effect for a bidirectional braking function.
[0003] Patent Document 2 discloses a slide rail assembly including a first rail (such as an intermediate rail), a ball bearing assembly, a second rail (such as an inner rail), and a braking device. The ball bearing assembly is movably mounted on the first rail. The ball bearing assembly includes a ball retainer and a plurality of balls. The ball retainer includes a stop. The braking device is mounted on the first rail. The braking device corresponds to the stop on the ball retainer and is configured to provide a braking force. The ball retainer is configured to be driven and moved by the second rail so that the stop on the ball retainer contacts the braking device. The slide rail assembly further includes a third rail (such as an outer rail), and the first rail is movable relative to the third rail. The second rail (such as an inner rail) disclosed in the patent document is configured to drive the ball retainer to move into contact with the braking device to provide a braking effect. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] U.S. Patent No. 10,398,228 [Patent Document 2] U.S. Patent No. 10,781,855 Summary of the Invention [Problem to be solved by the invention]
[0005] Patent Documents 1 and 2 disclose slide rail assemblies equipped with braking devices to provide a braking effect. However, it is important to develop various slide rail products to meet different market requirements.
[0006] The present invention provides a slide rail assembly that has a braking effect when one slide rail is moved a predetermined distance relative to the other slide rail.
[0007] According to an embodiment of the present invention, a slide rail assembly includes a first rail, a second rail, a brake device, and an auxiliary member. The first rail includes a predetermined portion. The second rail is movable relative to the first rail. The brake device is disposed on the first rail. The auxiliary member is disposed on the second rail and configured to switch between a first predetermined state and a second predetermined state relative to the second rail. During the process of moving the second rail along a first direction relative to the first rail, the auxiliary member in the first predetermined state is configured to abut against the brake device so that the brake device provides a braking effect to the second rail. When the second rail is further moved along the first direction relative to the first rail, the predetermined portion is configured to abut against the auxiliary member to disengage the auxiliary member from the brake device, driving the auxiliary member to switch from the first predetermined state to the second predetermined state so that the brake device no longer provides a braking effect to the second rail.
[0008] According to another embodiment of the present invention, a slide rail assembly includes a first rail, a second rail, a brake device, a predetermined portion, and an auxiliary member. The second rail is movable relative to the first rail. The brake device and the predetermined portion are disposed on one of the first rail and the second rail. The auxiliary member is disposed on the other of the first rail and the second rail, and the auxiliary member is an elastic member. During the process of moving the second rail in an opening direction relative to the first rail, the auxiliary member is configured to abut against the brake device to drive the brake device and provide a braking effect. When the second rail is further moved in the opening direction relative to the first rail, the predetermined portion is configured to abut against the auxiliary member to elastically deform the auxiliary member and disengage from the brake device so that the auxiliary member no longer drives the brake device to provide a braking effect.
[0009] These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various drawing figures. [Brief explanation of the drawings]
[0010] [Figure 1] FIG. 1 is a diagram showing a slide rail assembly according to one embodiment of the present invention. [Figure 2] FIG. 2 is an exploded view of a slide rail assembly including a first rail, a second rail, and a third rail according to an embodiment of the present invention. [Figure 3] FIG. 3 is a diagram showing a first rail according to an embodiment of the present invention. [Figure 4] FIG. 4 is a diagram showing a second rail according to an embodiment of the present invention. [Figure 5] FIG. 5 illustrates a slide rail assembly in a retracted position according to an embodiment of the present invention. [Figure 6] FIG. 6 illustrates an embodiment of the present invention in which a first rail is in an open position relative to a third rail, and a second rail is moved along a first direction relative to the first rail. [Figure 7] FIG. 7 illustrates an embodiment of the present invention in which the first rail is in an open position relative to the third rail, and the second rail is further moved along the first direction relative to the first rail. [Figure 8] FIG. 8 illustrates an embodiment of the invention in which the first rail is in an open position relative to the third rail, and the second rail is locked in place relative to the first rail. [Figure 9] FIG. 9 illustrates another perspective of an embodiment of the invention in which the first rail is in an open position relative to the third rail, and the second rail is locked in place relative to the first rail. [Figure 10] FIG. 10 illustrates an embodiment of the present invention in which the second rail is positioned relative to the first rail, and the first acting member is actuated to move the second rail away from the position along a first direction. [Figure 11] FIG. 11 illustrates an embodiment of the present invention in which the second rail is positioned relative to the first rail, and the first acting member is actuated to move the second rail away from the position in a second direction. DETAILED DESCRIPTION OF THE INVENTION
[0011] As shown in FIGS. 1 and 2 , according to one embodiment of the present invention, a slide rail assembly 20 includes a first rail 22, a second rail 24, a braking device 26, at least one predetermined portion 28, and an auxiliary member 30. The second rail 24 is movable longitudinally relative to the first rail 22. In the drawings, the X axis is the longitudinal direction (or the length or movement direction of the slide rail), the Y axis is the lateral direction (or the lateral direction of the slide rail), and the Z axis is the vertical direction (or the height direction of the slide rail). The slide rail assembly 20 preferably further includes a third rail 32, and the first rail 22 is movably mounted between the third rail 32 and the second rail 24. In this embodiment, the third rail 32 is an outer rail, the first rail 22 is an intermediate rail, and the second rail 24 is an inner rail; however, the present invention is not limited to such a configuration.
[0012] A braking device 26 and at least one predetermined portion 28 are disposed on one of the first rail 22 and the second rail 24, and an auxiliary member 30 is disposed on the other of the first rail 22 and the second rail 24. In this embodiment, the braking device 26 and the at least one predetermined portion 28 are disposed on the first rail 22, and the auxiliary member 30 is disposed on the second rail 24.
[0013] The third rail 32 includes a first wall 34a, a second wall 34b, and a longitudinal wall 36 connected between the first wall 34a and the second wall 34b of the third rail 32. A passageway 38 is defined by the first wall 34a, the second wall 34b, and the longitudinal wall 36 of the third rail 32 and is configured to accommodate the first rail 22. The third rail 32 has opposite first and second ends 32a, 32b (e.g., front and rear ends).
[0014] The first rail 22 includes a first wall 40a, a second wall 40b, and a longitudinal wall 42 connected between the first wall 40a and the second wall 40b of the first rail 22. A passageway 44 is defined by the first wall 40a, the second wall 40b, and the longitudinal wall 42 of the first rail 22 and is configured to accommodate the second rail 24.
[0015] The first rail 22 preferably has opposite first and second ends 22a, 22b (e.g., front and rear ends). A braking device 26 is disposed adjacent the first end 22a of the first rail 22.
[0016] The braking device 26 preferably includes a first braking portion 46 and a second braking portion 48 that are movable relative to one another. The first braking portion 46 may be a cylinder, and the second braking portion 48 may be a rod. The cylinder contains a damping medium and / or an elastic member (such as a spring), and the rod is expandable and contractible relative to the cylinder. Such configurations are well known to those skilled in the art, and will not be described further for the sake of brevity. In an alternative embodiment, the first braking portion 46 may be a rod, and the second braking portion 48 may be a cylinder.
[0017] The first brake 46 is preferably fixed to the longitudinal wall 42 of the first rail 22 via at least one connection base 50. The second brake 48 is movable relative to the first brake 46.
[0018] An actuating member 52 is preferably arranged (fixedly connected) at one end of the second brake part 48 remote from the first brake part 46. The actuating member 52 and the second brake part 48 can be seen as one unit.
[0019] At least one predetermined portion 28 is preferably a protrusion, and the slide rail assembly 20 can include one or more predetermined portions 28. In this embodiment, the slide rail assembly 20 includes two predetermined portions 28, but the present invention is not limited to this configuration. The predetermined portion 28 is disposed on a longitudinal wall 42 of the first rail 22, and the predetermined portion 28 is located between both ends of the braking device 26 (a first end 26a and a second end 26b, such as the front end and rear end shown in FIG. 3 ). In this embodiment, the predetermined portion 28 is disposed adjacent to a second braking portion 48 of the braking device 26. The predetermined portion 28 and the second braking portion 48 are disposed at different positions on the longitudinal wall 42 of the first rail 22 along the height direction of the slide rail.
[0020] Preferably, first rail 22 further includes a block portion 54 adjacent first end 22a of first rail 22 (see also FIG. 3). Block portion 54 protrudes (transversely) relative to longitudinal wall 42 of first rail 22, although the invention is not limited to such a configuration.
[0021] The second rail 24 has a first end 24a and a second end 24b (e.g., a front end and a rear end) that are opposite each other. The slide rail assembly 20 further includes a first action member 56 and / or a second action member 58 movably attached to the second rail 24. In this embodiment, the first action member 56 and the second action member 58 are pivotally connected to the second rail 24 via a first shaft member 60 and a second shaft member 62, respectively. The second rail 24 includes an auxiliary elastic member. The auxiliary elastic member includes a first elastic portion 66a and a second elastic portion 66b configured to provide an elastic force to the first action member 56 and the second action member 58, respectively (see also FIGS. 4 and 9).
[0022] The second rail 24 preferably includes a first wall 68a, a second wall 68b, and a longitudinal wall 70 connected between the first wall 68a and the second wall 68b of the second rail 24. The auxiliary member 30 is disposed on the longitudinal wall 70 of the second rail 24. The auxiliary member 30 is an elastic member such as an elastic piece, but the present invention is not limited to this configuration. The auxiliary member 30 includes a first connecting portion 31a, a second connecting portion 31b, and an intermediate portion 33 located between the first connecting portion 31a and the second connecting portion 31b. For example, the intermediate portion 33 extends between the first connecting portion 31a and the second connecting portion 31b (see also FIG. 4). The first connecting portion 31a and the second connecting portion 31b are connected (e.g., fixed) to the longitudinal wall 70 of the second rail 24. The intermediate portion 33 stands transversely relative to the longitudinal wall 70 of the second rail 24. A space 35 (such as an opening, but the present invention is not limited to such a configuration) is formed between the intermediate portion 33 and the first connection portion 31a, and the intermediate portion 33 has a predetermined wall 37 located at the end of the space 35 (see also Figure 4).
[0023] Preferably, a first guide segment G1 is disposed between the intermediate portion 33 and the first connecting portion 31a, and a second guide segment G2 is disposed between the intermediate portion 33 and the second connecting portion 31b. The first guide segment G1 and the second guide segment G2 may be inclined or arcuate surfaces.
[0024] Preferably, slide rail assembly 20 further includes at least one operating member. In this embodiment, slide rail assembly 20 includes a first operating member 72 and a second operating member 74 configured to drive and move first acting member 56 and second acting member 58, respectively. First acting member 72 and second acting member 74 are operably connected to first acting member 56 and second acting member 58, respectively.
[0025] Preferably, slide rail assembly 20 further includes at least one first slide assist device 76. At least one first slide assist device 76 includes a plurality of first balls B1. At least one first slide assist device 76 is movably attached to passageway 38 of third rail 32 to improve smoothness of movement between first rail 22 and third rail 32. Meanwhile, slide rail assembly 20 further includes second slide assist device 78. Second slide assist device 78 includes a plurality of second balls B2. Second slide assist device 78 is movably attached to passageway 44 of first rail 22 to improve smoothness of movement between second rail 24 and first rail 22.
[0026] As shown in FIG. 5 , the slide rail assembly 20 is in a retracted state. Furthermore, the first rail 22 is retracted relative to the third rail 32, and the second rail 24 is in a retracted position R relative to the first rail 22. The auxiliary member 30 is spaced apart from the braking device 26 along the longitudinal direction. The auxiliary member 30 is in a first predetermined state K1 relative to the second rail 24, and the braking device 26 is in a braking-ready state (e.g., the second braking portion 48 is extended relative to the first braking portion 46). The first acting member 56 and the second acting member 58 are spaced apart from the block portion 54 along the longitudinal direction. An auxiliary space M is defined between the first acting member 56 and the second acting member 58. The predetermined portion 28 has a first predetermined end and a second predetermined end that are opposite to each other. A guide portion is provided on at least one of the first predetermined end and the second predetermined end. In this embodiment, the first predetermined end and the second predetermined end are provided with a first guide portion 29a and a second guide portion 29b, respectively, and the first guide portion 29a and the second guide portion 29b may be inclined surfaces or arcuate surfaces.
[0027] 5 to 7, during the process of moving the second rail 24 along a first direction D1 (such as the opening direction) from the retracted position R (as shown in FIG. 5) relative to the first rail 22, the auxiliary member 30 is configured to drive the brake device 26. Specifically, the auxiliary member 30 in the first predetermined state K1 is configured to abut against and drive the brake device 26 to provide a braking effect F, for example, to provide a braking effect F on the second rail 24 (as shown in FIG. 6).
[0028] Furthermore, when the first rail 22 is positioned in the open position J relative to the third rail 32, the first end 22 a of the first rail 22 extends beyond the first end 32 a of the third rail 32, and the first rail 22 is configured to be locked in the open position J relative to the third rail 32. Such a configuration is well known to those skilled in the art, and further description will be omitted for the sake of brevity. During the process of moving the second rail 24 along the first direction D1 relative to the first rail 22 positioned in the open position J, the predetermined wall 37 of the auxiliary member 30 in the first predetermined state K1 is configured to abut against the actuating member 52 of the second brake portion 48 (as shown in FIG. 6 ) to provide a braking effect F, thereby retracting the second brake portion 48 relative to the first brake portion 46 (as shown in FIG. 7 ) and actuating the brake device 26.
[0029] As shown in FIG. 8 , when the second rail 24 is further moved along the first direction D1 relative to the first rail 22, the predetermined portion 28 (such as the first guide portion 29a of the predetermined portion 28) is configured to abut against the auxiliary member 30 (such as the first guide segment G1 of the auxiliary member 30) to drive the auxiliary member 30 and switch it from the first predetermined state K1 to the second predetermined state K2. For example, the auxiliary member 30 elastically deforms so that the operating member 52 of the second braking portion 48 of the braking device 26 no longer blocks the movement path of the predetermined wall 37 of the auxiliary member 30 to remove the predetermined wall 37 of the auxiliary member 30 from the operating member 52 of the second braking portion 48 of the braking device 26. In other words, the auxiliary member 30 no longer drives the braking device 26, and therefore the braking device 26 no longer provides the braking effect F to the second rail 24. Meanwhile, the second braking portion 48 is again extended relative to the first braking portion 46.
[0030] As shown in FIGS. 8 and 9 , when the second rail 24 is further moved to a predetermined position P (e.g., an extended position) along the first direction D1 relative to the first rail 22, the first acting member 56 and the second acting member 58 in the first acting state S1 are configured to be positioned adjacent to the rear and front ends, respectively, of the block portion 54 to block the block portion 54, and the block portion 54 is accommodated in the auxiliary space M to prevent the second rail 24 from moving away from the predetermined position P. For example, the second rail 24 is prevented from moving away from the predetermined position P along the first direction D1 or the second direction D2 (e.g., a retracted direction). When the second rail 24 is positioned at the predetermined position P relative to the first rail 22, the first end 24 a of the second rail 24 extends beyond the first end 22 a of the first rail 22. Therefore, the slide rail assembly 20 is in an extended state. Such a configuration is well known to those skilled in the art, and further description thereof will be omitted for the sake of brevity.
[0031] As shown in Figures 9 and 10, when the second rail 24 is positioned at a predetermined position P relative to the first rail 22 and the user applies a first force F1 to the first operating member 72, the first drive portion 72a of the first operating member 72 is configured to drive and move (e.g., rotate) the first acting member 56 so that the second rail 24 can move away from the predetermined position P along the first direction D1, and switch from the first acting state S1 (shown in Figure 9) to the second acting state S2 (shown in Figure 10) so that the rear ends of the first acting member 56 and the block portion 54 do not block each other.
[0032] 9 and 11 , when the second rail 24 is located at a predetermined position P relative to the first rail 22 and the user applies a second force F2 to the first operating member 72, the second drive unit 74a of the second operating member 74 is configured to drive and move (e.g., rotate) the second acting member 58 to switch from the first acting state S1 (shown in FIG. 9 ) to the second acting state S2 (shown in FIG. 11 ) so that the second acting member 58 and the tip of the blocking portion 54 no longer block each other, so that the second rail 24 can move away from the predetermined position P along the second direction D2. Furthermore, because the braking device 26 no longer provides the braking effect F to the second rail 24, the second acting member 58 in the first acting state S1 is prevented from adhering to the tip of the blocking portion 54, and the second acting member 58 can be easily driven and moved to switch from the first acting state S1 to the second acting state S2.
[0033] Therefore, the slide rail assembly according to the embodiment of the present invention has the following technical features.
[0034] 1) When the user moves the second rail 24 along the first direction D1 relative to the first rail 22 so as to approach the predetermined position P, the auxiliary member 30 is configured to abut against the braking device 26 to provide a braking effect to the second rail 24. This allows the user to be aware that the second rail 24 is about to reach the predetermined position P. Furthermore, the impact until the second rail 24 reaches the predetermined position P can be reduced.
[0035] 2) When the second rail 24 is moved along the first direction D1 relative to the first rail 22 to approach the predetermined position P, the braking effect F of the braking device 26 is provided. When the second rail 24 is further moved along the first direction D1 relative to the first rail 22 to reach the predetermined position P, the braking device 26 no longer provides the braking effect F to the second rail 24. Therefore, one of the first acting member 56 and the second acting member 58 in the first acting state S1 comes into close contact with the block portion 54, preventing the first acting member 56 or the second acting member 58 from being driven and moved.
[0036] 3) The braking device 26 is disposed adjacent to the first end 22a of the first rail 22. When the second rail 24 is moved along the first direction D1, the braking device 26 is directly driven by the auxiliary member 30 to provide a braking effect F. In contrast to the prior art, the braking effect in the embodiment of the present invention is more direct and obvious.
[0037] Those skilled in the art will readily appreciate that numerous modifications and variations of the apparatus and method may be made while retaining the teachings of the present invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Claims
1. a first rail having a predetermined portion; a second rail movable relative to the first rail; a braking device disposed on the first rail, the braking device including a first braking portion and a second braking portion movable relative to each other; an auxiliary member disposed on the second rail, the auxiliary member configured to be switched between a first predetermined state and a second predetermined state relative to the second rail; 1. A slide rail assembly comprising: During a process in which the second rail is moved along a first direction relative to the first rail, the auxiliary member in the first predetermined state is configured to abut against the braking device so that the braking device provides a braking effect to the second rail; wherein, when the second rail is further moved along the first direction relative to the first rail, the predetermined portion is configured to abut against the auxiliary member to disengage the auxiliary member from the braking device so that the braking device no longer provides a braking effect to the second rail, thereby driving the auxiliary member to switch from the first predetermined state to the second predetermined state.
2. a third rail, the first rail being movably mounted between the third rail and the second rail; 2. The slide rail assembly of claim 1, wherein the first rail has opposed first and second ends, and the damping device is disposed adjacent the first end of the first rail.
3. the first rail further comprises a block portion, and the slide rail assembly further comprises a first acting member and a second acting member movably mounted to the second rail; 2. The slide rail assembly of claim 1, wherein when the second rail is further moved to a predetermined position along the first direction relative to the first rail, the first acting member and the second acting member are configured to be positioned adjacent opposite ends of the block portion to prevent the second rail from moving away from the predetermined position.
4. the first acting member and the second acting member are pivotally connected to the second rail, and the second rail includes a first elastic portion and a second elastic portion configured to provide an elastic force to the first acting member and the second acting member, respectively; The slide rail assembly of claim 3 , further comprising at least one operating member configured to drive the first and second working members to move.
5. 2. The slide rail assembly of claim 1, wherein the predetermined portion is a protrusion, the predetermined portion has a first predetermined end and a second predetermined end, and at least one of the first predetermined end and the second predetermined end includes a guide portion.
6. a first rail; a second rail movable relative to the first rail; a braking device and a predetermined portion disposed on one of the first rail and the second rail, the braking device including a first braking portion and a second braking portion movable relative to each other; an auxiliary member disposed on the other of the first rail and the second rail, the auxiliary member being an elastic component; and 1. A slide rail assembly comprising: During the process of moving the second rail along the opening direction relative to the first rail, the auxiliary member is configured to abut against the braking device to drive the braking device and provide a braking effect; When the second rail is further moved along the opening direction relative to the first rail, the specific portion is configured to abut against the auxiliary member, elastically deforming the auxiliary member and causing it to disengage from the braking device so that the auxiliary member no longer drives the braking device to provide a braking effect.
7. a third rail, the first rail being movably mounted between the third rail and the second rail, the third rail being an outer rail, the first rail being an intermediate rail, and the second rail being an inner rail; 7. The slide rail assembly of claim 6, wherein the first rail has opposed first and second ends, and the damping device is disposed adjacent the first end of the first rail.
8. the first rail further comprises a block portion, and the slide rail assembly further comprises a first acting member movably mounted to the second rail; 7. The slide rail assembly of claim 6, wherein when the second rail is further moved to a predetermined position along the opening direction relative to the first rail, the first acting member is configured to be positioned adjacent to the block portion to prevent the second rail from moving away from the predetermined position along the opening direction, the first acting member is pivotally connected to the second rail, the second rail comprises a first elastic portion configured to provide an elastic force to the first acting member, and the slide rail assembly further includes an operating member configured to drive and move the first acting member.
9. 7. The slide rail assembly of claim 6, wherein the predetermined portion is a protrusion, the predetermined portion having a first predetermined end and a second predetermined end, and at least one of the first predetermined end and the second predetermined end includes a guide portion.
Citation Information
Patent Citations
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