Slide rail assembly with handle
By independently setting handles and latches in the slide rail assembly and utilizing the shape design of the first rail, unlocking is achieved without the need for a server chassis handle, avoiding lateral stress, improving the efficiency and reliability of locking and unlocking, and solving the problem of not being able to lock.
Patent Information
- Application Number
- CN202422712146.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-07
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-11-07
AI Technical Summary
In the slide rail connection structure between the server chassis and the server rack, the heavy weight of the locking device causes lateral stress, affecting the locking effect and causing failure to lock.
The handle is independently mounted on the first rail, and the buckle is mounted on a different side of the first rail. The shape of the first rail is used to set the position of the handle and the buckle, avoiding the need to install a locking device. The actuating part of the handle drives the buckle to the locked or unlocked state. Combined with the design of the first and second modules, the effective cooperation between the buckle and the buckle body is ensured.
It enables unlocking without relying on server chassis handles, avoids lateral stress, improves the efficiency and reliability of locking and unlocking, and prevents locking or unlocking failures.
Smart Images

Figure CN223515179U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a slide rail assembly with a handle, which is used to lock or unlock. Background Technology
[0002] The server chassis and server rack are connected by a sliding rail structure. For example, the server chassis has a first rail on each side, and the server rack has a second rail on each side corresponding to the first rail. A locking device is installed between the first rail and the second rail. It is inconvenient to unlock the locking device by guiding it with the handle of the server chassis. In addition, the weight of the locking device is relatively heavy, which puts lateral stress on the first rail. This causes insufficient interference when locking the device, resulting in the failure of locking. Summary of the Invention
[0003] The main objective of this utility model is to provide a slide rail assembly with a handle, which has the handle independently located on the first rail for locking or unlocking, without relying on the handle of the server chassis for unlocking.
[0004] Another objective of this utility model is to provide a slide rail assembly with a handle, wherein the handle and the buckle are respectively located on different sides of the first rail, and the position of the handle and the buckle is set directly by utilizing the shape of the first rail, without the need to install a locking device, thus avoiding lateral stress on the first rail.
[0005] Another objective of this utility model is to provide a slide rail assembly with a handle, wherein the handle and the buckle are respectively disposed on different surfaces of the first rail to form a first module, and the buckle body is disposed on the second rail to form a second module, so that the buckle part and the buckle body can effectively cooperate and interfere with each other in relative position, and also avoid locking failure or unlocking failure.
[0006] To achieve the above objectives, the present invention employs a slide rail assembly with a handle, comprising: a first rail; a handle disposed on a first surface of the first rail and having an actuating part; and a latching piece disposed on a second surface of the first rail, having a latching part and a connecting part opposite to the latching part, the connecting part connecting to the actuating part. When the actuating part is in a first state, it drives the latching piece toward a first position, locking the latching part; or when the actuating part is in a second state, it drives the latching piece toward a second position, unlocking the latching part.
[0007] Based on the aforementioned features, the first track has an opening corresponding to the actuating part and the connecting part, and the connecting part is connected to the actuating part through the opening.
[0008] Based on the aforementioned features, the actuating part has a groove, and the connecting part is formed by bending the fastener. The connecting part has a fixing piece, which is inserted into the groove for fixation.
[0009] Based on the aforementioned features, the handle has an operating portion formed on the actuating part, the position of which is higher than the position of the first rail.
[0010] Based on the aforementioned features, the first track is provided with a fixing part, the fastener has an abutting part located above the fastener, and one end of an elastic member is connected to the fixing part, while the other end of the elastic member is connected to the abutting part.
[0011] To achieve the above objectives, this utility model employs a slide rail assembly with a handle, comprising: a first rail; a handle disposed on a first surface of the first rail and having an actuating part; and a latch plate disposed on a second surface of the first rail, having a latching part and a connecting part opposite to the latching part, the connecting part connecting to the actuating part. When the actuating part is in a first state, it drives the latch plate toward a first position, locking the latching part; or when the actuating part is in a second state, it drives the latch plate toward a second position, unlocking the latching part; and a second rail having a latching body. When the actuating part is in the first state, it drives the latch plate toward a first position, locking the latching part onto the latching body; or when the actuating part is in the second state, it drives the latch plate toward a second position, unlocking the latching part from the latching body.
[0012] Based on the aforementioned features, the fastener has an abutting portion located above the fastening portion, and the first surface and the second surface together extend upward to form a first transverse wall, and the first surface and the second surface together extend downward to form a second transverse wall, with the abutting portion relative to the first transverse wall and the fastening portion relative to the second transverse wall.
[0013] Based on the aforementioned features, it may further include a pivot member disposed on the fastener to the first track.
[0014] Based on the aforementioned features, the buckle has a first buckle surface and a first abutment surface formed on the side of the first buckle surface, and the buckle body has a second buckle surface and a second abutment surface formed on the side of the second buckle surface, with the first buckle surface opposite to the second buckle surface and the first abutment surface opposite to the second abutment surface.
[0015] Based on the aforementioned features, the first rail is relative to the second rail, the second rail includes a middle frame, an outer frame and a reinforcing frame, the middle frame is fixed to the outer frame relative to the outer frame and the reinforcing frame, and the buckle is located in the reinforcing frame.
[0016] Using the aforementioned technical means, the handle is independently positioned on the first rail for locking or unlocking, without relying on the server chassis handle for unlocking. The handle and the buckle are respectively positioned on different sides of the first rail, and the shape of the first rail is used directly to set the positions of the handle and the buckle, eliminating the need for a locking device and avoiding lateral stress on the first rail. The handle and the buckle are respectively positioned on different sides of the first rail to form a first module, and the buckle body is positioned on the second rail to form a second module. This allows the buckle portion of the buckle and the buckle body to effectively cooperate and prevent interference between their relative positions, thus avoiding locking or unlocking failures. Furthermore, the first module and the second module can be assembled separately, avoiding confusion between their respective parts and ensuring high efficiency. The first module and the second module can then be movably connected. Attached Figure Description
[0017] Figure 1 This is an exploded perspective view of the present invention.
[0018] Figure 2 This is a three-dimensional view of the combination of the present utility model.
[0019] Figure 3 This is an exploded view of the handle, fastener, and first rail of this utility model.
[0020] Figure 4A This is a perspective view of the combination of the handle, fastener and first rail of this utility model.
[0021] Figure 4B This is a perspective view of another combination of the handle, fastener, and first rail of this utility model.
[0022] Figure 5 This is a schematic diagram of the actuator of the present invention in the first state and the latch in the locked state.
[0023] Figure 6 This is a schematic diagram of the actuating part of the present invention in the second state and the latching part in the unlocked state.
[0024] Figure 7 This is an exploded view of the first and second tracks of this utility model.
[0025] Figure 8 This is a schematic diagram of the combination of the first and second tracks of this utility model.
[0026] Figure 9 This is a schematic diagram showing another angle combination of the first and second tracks of this utility model.
[0027] Figure 10 This is a side view of the buckle of this utility model in a locked state, with the buckle part fastened to the buckle body.
[0028] Figure 11This is a schematic diagram of the operating part of the present invention via the operating force.
[0029] Figure 12 This is a schematic diagram of the operating part of this utility model via the other side of the operating force.
[0030] Figure 13 This is a side view of the buckle of this utility model in an unlocked state, with the buckle detached from the buckle body.
[0031] In the figure, the reference numerals include:
[0032] 10: Track 1
[0033] 11A: Opening
[0034] 11B: Frontend
[0035] 12: First Page
[0036] 13: Second page
[0037] 14: Fixing part
[0038] 15: First transverse wall
[0039] 16: Second transverse wall
[0040] 17: Second pivot hole
[0041] 20: Handle
[0042] 21: Action Part
[0043] 211: Groove
[0044] 212: Second hole
[0045] 22: Operations Department
[0046] 30: Backing film
[0047] 31: Button
[0048] 311: First button face
[0049] 312: First encounter
[0050] 32: Joint
[0051] 321: Fixing plate
[0052] 322: First hole
[0053] 33: Reliance Department
[0054] 34: First pivot hole
[0055] 40: Accessories
[0056] 50: Pivot component
[0057] 60: Elastic element
[0058] 70: Track 2
[0059] 71: Button body
[0060] 711: Second button face
[0061] 712: Second Contact
[0062] 72: Mid-frame
[0063] 73: Outer frame
[0064] 731: Concave
[0065] 74: Reinforcing frame
[0066] 80: Buffer
[0067] 90: Fasteners
[0068] D1: First Position
[0069] D2: Second position
[0070] F1: Resilience
[0071] F2: Operating Force
[0072] H1: Height of the operating section
[0073] H2: Height of the actuator
[0074] K1: Locked state
[0075] K2: Unlocked
[0076] S1: First State
[0077] S2: Second State
[0078] T1: Thickness of the operating section
[0079] T2: Thickness of the actuator; O: Operating stroke Detailed Implementation
[0080] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit it. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the present invention, not the entire structure.
[0081] Example
[0082] Please refer to the following first. Figures 1 to 6As shown, the present invention is a slide rail assembly with a handle, comprising: a first rail 10; a handle 20, the handle 20 being disposed on a first surface 12 of the first rail 10, and the handle 20 having an actuating part 21; and a fastener 30, the fastener 30 being disposed on a second surface 13 of the first rail 10, and the fastener 30 having a fastening part 31 and a connecting part 32 opposite to the fastening part 31, the connecting part 32 being connected to the actuating part 21.
[0083] like Figure 3 As shown, the actuating part 21 has a groove 211, and the connecting part 32 is formed by bending the fastener 30. A fixing piece 321 is provided in the connecting part 32. The fixing piece 321 is inserted into the groove 211 for fixation. The fixing piece 321 has a first hole 322, which corresponds to a second hole 212 on the actuating part 21 that passes through the groove 211. The first hole 322 corresponds to the second hole 212. A fitting 40 passes through the first hole 322 to the second hole 212, fixing the fixing piece 321 to the groove 211. The fitting 40 can be a screw, rivet, etc., and may also include a pivot 50. The pivot 50 is located between the fastener 30 and the first rail 10. In this embodiment, as shown... Figure 4A As shown, the first track 10 has an opening 11A, which corresponds to the actuating part 21 and the connecting part 32. The connecting part 32 is connected to the actuating part 21 via the opening 11A. In another embodiment, as shown... Figure 4B As shown, the front end 11B of the first track 10 is retracted, so that the connecting part 32 is connected to the actuating part 21 by means of the retraction of the front end 11B of the first track 10, but this is not a limitation.
[0084] like Figure 5 , Figure 6As shown, when the actuating part 21 moves the latch 30 toward the first position D1 in the first state S1, the latch 31 is in the locked state K1; or when the actuating part 21 moves the latch 30 toward the second position D2 in the second state S2, the latch 31 is in the unlocked state K2. Further explanation: the handle 20 has an operating part 22 formed on the actuating part 21. The position of the operating part 22 is higher than the position of the first rail 10. An operating stroke O is provided between the first rail 10 and the operating part 22. When the operating part 22 is subjected to a downward force F1, the operating stroke O is shorter. Relatively speaking, In the first state S1, the actuator 21 moves the latch 30 toward the first position D1, locking the latch 31 to the locked state K1. Alternatively, when the operating part 22 is subjected to the operating force F2, the operating stroke O is longer. In the second state S2, the actuator 21 moves the latch 30 toward the second position D2, unlocking the latch 31 to the unlocked state K2. Since the height H1 of the operating part 22 is less than the height H2 of the actuator 21 and the thickness T1 of the operating part 22 is greater than the thickness T2 of the actuator 21, the operator can easily lock or unlock the device using the operating part 22, but this is not a limitation.
[0085] Continuing from the above, in this embodiment, the first track 10 is provided with a fixing part 14, the fastener 30 has an abutting part 33 located above the fastener 31, and one end of an elastic member 60 is connected to the fixing part 14, while the other end of the elastic member 60 is connected to the abutting part 33. The first surface 12 and the second surface 13 extend upward together to form a first transverse wall 15, and the first surface 12 and the second surface 13 extend downward together to form a second transverse wall 16. The abutting part 33 is positioned relative to the first transverse wall 15, and the first transverse wall 15 forms a constraint on the abutting part 33. The fastener 31 is positioned relative to the second transverse wall 16, and the second transverse wall 16 forms a constraint on the fastener 31, but this is not a limitation.
[0086] Cooperate Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 and Figure 13 As shown, a second rail 70 has a fastener 71. When the actuating part 21 moves the fastener 30 toward the first position D1 in the first state S1, the first position D1 is a horizontal position, so that the fastener 31 is fastened to the fastener 71 and is in a locked state K1. Or when the actuating part 21 moves the fastener 30 toward the second position D2 in the second state S2, the second position D2 is an angular position, so that the fastener 31 is disengaged from the fastener 71 and is in an unlocked state K2.
[0087] Continuing from the above, in this embodiment, the first track 10 is relative to the second track 70. The second track 70 includes a middle frame 72, an outer frame 73, and a reinforcing frame 74. The middle frame 72 is fixed to the outer frame 73 relative to the outer frame 73, and the reinforcing frame 74 can also be integrally formed with the outer frame 73. Further, the first track 10 can be an inner frame, relative to the middle frame 72, and the buckle 71 is located on the reinforcing frame 74. The reinforcing frame 74 is independently adjusted in position on the outer frame 73, and also adjusts the amount of interference between the buckle 71 and the buckle portion 31. In particular, the buckle 71 is located on the reinforcing frame 74. 4. The interference between the buckle body 71 and the buckle part 31 is relatively high, which can avoid the problem of buckling failure. The outer frame 73 is provided with a recess 731 corresponding to the buckle body 71 and the buckle part 31. The recess 731 facilitates the buckle body 71 and the buckle part 31 to have a movable space for locking state K1 or unlocking state K2. It may also include a buffer member 80, which is located between the reinforcing frame 74 and the outer frame 73. It can also adjust the interference between the buckle body 71 and the buckle part 31. A fastener 90 passes through the reinforcing frame 74 and the buffer member 80 and is fixed to the outer frame 73, but it is not limited to this.
[0088] Continuing from the above, in this embodiment, the buckle 31 has a first buckle surface 311 and a first abutment surface 312 formed on the side of the first buckle surface 311. The buckle body 71 has a second buckle surface 711 and a second abutment surface 712 formed on the side of the second buckle surface 711. The first buckle surface 311 is positioned relative to the second buckle surface 711 and the first abutment surface 312 is positioned relative to the second abutment surface 712, so that the buckle 31 and the buckle body 71 can limit the relative position of interference between them, and can reliably perform the locked state K1 or the unlocked state K2, but this is not a limitation.
Claims
1. A slide rail assembly with a handle, characterized in that, Include: Track 1 (10); A handle (20), the handle (20) being disposed on a first surface (12) of the first rail (10), and the handle (20) having an actuating part (21); and A fastener (30) is disposed on a second surface (13) of the first rail (10), and the fastener (30) has a fastening part (31) and a connecting part (32) opposite to the fastening part (31). The connecting part (32) is connected to the actuating part (21). When the actuating part (21) is in the first state, it drives the fastener (30) toward the first position (D1), so that the fastening part (31) is in the locked state; or when the actuating part (21) is in the second state, it drives the fastener (30) toward the second position (D2), so that the fastening part (31) is in the unlocked state.
2. A slide rail assembly with a handle, characterized in that, Include: Track 1 (10); A handle (20), the handle (20) being disposed on a first surface (12) of the first rail (10), and the handle (20) having an actuating part (21); and A latching piece (30) is disposed on a second surface (13) of the first rail (10), and the latching piece (30) has a latching portion (31) and a connecting portion (32) opposite to the latching portion (31). The connecting portion (32) is connected to the actuating part (21). When the actuating part (21) is in a first state, it drives the latching piece (30) toward a first position (D1), causing the latching portion (31) to be in a locked state; or when the actuating part (21) is in a second state, it drives the latching piece (30) toward a second position (D2), causing the latching portion (31) to be in an unlocked state. A second rail (70) has a fastener (71). When the actuating part (21) is in the first state, it drives the fastener (30) toward the first position (D1), causing the fastener (31) to fasten to the fastener (71) and be in a locked state. Or when the actuating part (21) is in the second state, it drives the fastener (30) toward the second position (D2), causing the fastener (31) to disengage from the fastener (71) and be in an unlocked state.
3. The slide rail assembly with a handle according to claim 1 or 2, characterized in that, The actuating part (21) has a groove (211) and the connecting part (32) is formed by bending the fastener (30). The connecting part (32) has a fixing piece (321) which is inserted into the groove (211) and fixed.
4. The slide rail assembly with a handle according to claim 1 or 2, characterized in that, The handle (20) has an operating part (22) formed on the actuating part (21), the position of which is higher than the position of the first rail (10).
5. The slide rail assembly with a handle according to claim 1 or 2, characterized in that, The handle (20) has an operating part (22) formed on the actuating part (21), the position of which is higher than the position of the first rail (10).
6. The slide rail assembly with a handle according to claim 1 or 2, characterized in that, The first rail (10) is provided with a fixing part (14), and the fastener (30) has an abutting part (33) located above the fastener (31), and one end of an elastic member (60) is connected to the fixing part (14), while the other end of the elastic member (60) is connected to the abutting part (33).
7. The slide rail assembly with a handle according to claim 1 or 2, characterized in that, The fastener (30) has an abutting portion (33) located above the fastener (31), and the first surface (12) and the second surface (13) extend upward together to form a first transverse wall (15), and the first surface (12) and the second surface (13) extend downward together to form a second transverse wall (16), with the abutting portion (33) relative to the first transverse wall (15) and the fastener (31) relative to the second transverse wall (16).
8. The slide rail assembly with a handle according to claim 1 or 2, characterized in that, It also includes a pivot (50) disposed on the fastener (30) to the first rail (10).
9. The slide rail assembly with a handle according to claim 2, characterized in that, The buckle (31) has a first buckle surface (311) and a first abutting surface (312) formed on the side of the first buckle surface (311). The buckle body (71) has a second buckle surface (711) and a second abutting surface (712) formed on the side of the second buckle surface (711). The first buckle surface (311) is opposite to the second buckle surface (711) and the first abutting surface (312) is opposite to the second abutting surface (712).
10. The slide rail assembly with a handle according to claim 2, characterized in that, The first rail (10) is relative to the second rail (70), the second rail (70) includes a middle frame (72), an outer frame (73) and a reinforcing frame (74), the middle frame (72) is fixed to the outer frame (73) relative to the outer frame (73) and the reinforcing frame (74), and the buckle (71) is located in the reinforcing frame (74).