A storage energy pressing and rebounding structure
Through the design of the energy-storage press rebound structure, the automatic sliding and reset of the fixed bracket and thrust parts are used to solve the complexity and stability of the furniture press rebound structure, and the effect of simplifying assembly, reducing costs and improving safety is achieved.
Patent Information
- Application Number
- CN202210044926.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-01-14
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2042-01-14
AI Technical Summary
The existing furniture has a complex structure of pressing and rebound, high assembly process requirements, poor use stability, and is prone to damage to components or injury to users due to incorrect operation.
The energy storage type press rebound structure is adopted, including a fixed bracket, a push member, a reset member and a linkage assembly. Through the cooperation of the heart-shaped groove part and the sliding part, the automatic sliding and reset of the push member is realized, simplifying the assembly process and improving the connection compactness.
It simplifies the assembly process, reduces production costs, improves the stability and safety of use, avoids damage to components and user injuries, and ensures smooth opening and closing of furniture.
Smart Images

Figure CN114439334B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a storage type pressing and rebounding structure. Background Art
[0002] Chinese Patent Document CN210493316U discloses an adjusting structure for furniture pressing and rebounding on May 12, 2020. It includes a moving slide rail and a fixed slide rail that are slidably opened and closed in cooperation with each other. An active part and a pressing action part are provided on the moving slide rail, and a pressing and rebounding device is provided on the fixed slide rail. Alternatively, a pressing and rebounding device is provided on the moving slide rail, and an active part and a pressing action part are provided on the fixed slide rail. The moving slide rail is slidably opened on the fixed slide rail at least when opened through the mutual pressing and rebounding action between the pressing action part and the pressing and rebounding device. A lever assembly is further provided on the pressing and rebounding device. The active part acts on the lever assembly when the moving slide rail is closed or opened at least for a certain stroke, and drives the pressing and rebounding device to reset to the terminal initial position through the lever assembly. An adjusting part is further provided between the pressing and rebounding device and the pressing action part, and the position adjustment of the mutual pressing and rebounding action is realized between the pressing and rebounding device and the pressing action part through the adjusting part. In order to realize the pressing and opening of the moving slide rail, the above structure respectively sets a plurality of components on the moving slide rail and the fixed slide rail, and the structure is quite complex. At the same time, the assembly process requirements of the plurality of components are high. If there is an error in the assembly position, the pressing and opening of the moving slide rail cannot be realized, which is not convenient for production and assembly, and the use stability is relatively poor. Therefore, it is necessary to further improve. Summary of the Invention
[0003] The purpose of the present invention is to provide a storage type pressing and rebounding structure to overcome the deficiencies in the prior art.
[0004] A storage type pressing and rebounding structure designed according to this purpose includes a fixed bracket and a movable buckle part, and is characterized in that: a heart-shaped groove part, a pushing part, a pushing elastic part, a reset part, and a reset elastic part are provided on the fixed bracket.
[0005] A sliding part is provided on the pushing part and is elastically connected to the pushing elastic part, and is slidably arranged on the fixed bracket. The sliding part stays and slides along the track of the heart-shaped groove part when the pushing part slides.
[0006] An expansion and contraction part is further provided on the pushing part. One end of the expansion and contraction part is provided with a buckling and separating part and is buckled or separated from the movable buckle part through the buckling and separating part. The other end of the expansion and contraction part slides and expands and contracts on the pushing part, and a linkage assembly is arranged between the other end and the reset part.
[0007] The reset part is elastically connected to the reset elastic part and is slidably arranged on the fixed bracket, and is mutually driven and connected to the expansion and contraction part through the linkage assembly when sliding.
[0008] The linkage assembly includes a linkage member and a steering member; one end of the linkage member is cooperatively connected to the telescopic member, and the other end is cooperatively connected to the reset member after bypassing the steering member; the reset member and the telescopic member are mutually driven and connected through the cooperation of the linkage member and the steering member.
[0009] The pushing member is provided with a first socket portion and a second socket portion, and the first socket portion and the second socket portion are independently arranged; one end of the pushing elastic member elastically acts on the fixed bracket, and the other end is elastically sleeved on the first socket portion; one end of the telescopic member at least partially extends out of the second socket portion, and the other end is sleeved and slidably telescoped within the second socket portion.
[0010] The pushing member is provided with a sliding member and a sliding-out positioning portion; the fixed bracket is provided with a sliding-out positioning cooperation portion; the heart-shaped groove portion is provided with a staying area and a sliding area; the sliding member is rotatably or swingably arranged on the pushing member and stays on the staying area or slides on the sliding area to realize the positioning and retraction of the pushing member into the fixed bracket or the sliding and extension of the pushing member out of the fixed bracket.
[0011] When the movable buckle portion is pressed towards the fixed bracket, it is buckled with the buckling-off portion and drives the pushing member to slide towards the fixed bracket, and drives the sliding portion to slide out of the staying area and slide on the sliding area. When the sliding portion of the pushing member slides on the sliding area, the pushing member slides a certain distance in the opposite direction of the fixed bracket through the pushing elastic member, and at the same time drives the telescopic member and the movable buckle portion to follow and slide, and is positioned and acts on the sliding-out positioning cooperation portion through the sliding-out positioning portion; wherein, when the telescopic member slides out a certain distance, it drives the reset member to slide a certain distance on the fixed bracket through the cooperation of the linkage member and the steering member and is positioned on the pushing member.
[0012] The reset member is provided with a reset driving portion; the pushing member is provided with a reset cooperation portion.
[0013] When the reset member slides a certain distance on the fixed bracket, it is positioned on the reset cooperation portion through the reset driving portion. When the movable buckle portion drives the telescopic member to continue sliding in the opposite direction of the fixed bracket, it drives the reset member to continue sliding on the fixed bracket. When the reset member continues to slide, it drives the pushing member to reset and slide towards the fixed bracket through the cooperation of the reset driving portion and the reset cooperation portion. When the pushing member resets and slides, it drives the sliding portion to slide from the sliding area and stay on the staying area to realize the reset and sliding of the pushing member and the positioning and retraction of the pushing member into the fixed bracket.
[0014] One end of the reset elastic member elastically acts on the fixed bracket, and the other end elastically acts on the reset member.
[0015] When the movable buckle part is positioned and indented on the fixing bracket of the pushing part and continues to slide in the opposite direction of the fixing bracket, it separates from the releasing part. When the movable buckle part and the releasing part are separated, the reset part is reset and slides on the fixing bracket through the reset elastic part, and when resetting and sliding, it drives the telescopic part to reset and slide towards the fixing bracket and indent the pushing part through the cooperation of the linkage part and the steering part, so as to realize the reset sliding of the telescopic part and the reset part and position them on the fixing bracket.
[0016] The elastic force generated by the pushing elastic part on the pushing part is greater than the elastic force generated by the reset elastic part on the reset part, so that when the pushing part is pressed by the movable buckle part, it overcomes the elastic force of the reset elastic part through the pushing elastic part and slides out a certain distance in the opposite direction of the fixing bracket. Among them, the telescopic part and the movable buckle part slide in the same direction when the pushing part slides out of the fixing bracket, and the reset part slides in the opposite direction when the pushing part slides out of the fixing bracket.
[0017] At least a part of one end of the telescopic part extends out of the fixing bracket and / or the telescopic part, and is provided with a releasing part and a releasing elastic part; one end of the releasing elastic part acts on the telescopic part elastically, and the other end acts on the releasing part elastically; the releasing part is arranged on the releasing part; the releasing part rotates or swings elastically on the telescopic part through the releasing elastic part, and the releasing part is mutually buckled or separated from the movable buckle part when the releasing part rotates or swings elastically.
[0018] The releasing part is provided with a buckling guiding part and / or a separating guiding part, and is guided to be mutually buckled and / or separated from the movable buckle part through the buckling guiding part and / or the separating guiding part.
[0019] The fixing bracket is provided with a sliding groove for the pushing part and a sliding groove for the reset part, and the sliding groove for the pushing part and the sliding groove for the reset part are arranged independently of each other; the pushing part is positioned and slides on the sliding groove for the pushing part; the reset part is positioned and slides on the sliding groove for the reset part.
[0020] Through the improvement of the above structure, the present invention has the following advantages compared with the prior art:
[0021] 1. By utilizing the cooperation between the sliding part and the staying area and the sliding area on the heart-shaped groove part, the user can directly press the movable buckle part with any part of the body to make the pushing part slide out a certain distance in the opposite direction of the fixing bracket, so as to achieve the automatic opening of the furniture, effectively avoiding the problems of increased production cost and affecting the appearance beauty of the furniture caused by installing handles on the furniture.
[0022] 2. The pusher and the reset member are respectively assembled using the pusher sliding groove and the reset member sliding groove. At the same time, the pusher elastic member and the telescopic member are also assembled on the pusher using the first socket portion and the second socket portion, effectively simplifying the assembly process and reducing production costs. Moreover, through the linkage function of the linkage member and the steering function of the steering member, an effective driving connection is formed between the telescopic member and the reset member. At the same time, the internal space of the fixed bracket can be reasonably utilized, effectively simplifying the structure of the entire product, reducing the volume, and improving the connection compactness between components.
[0023] 3. When the telescopic member slides alone in the opposite direction of the fixed bracket, it can drive the reset member to slide on the fixed bracket through the cooperation of the linkage member and the steering member. Thus, the reset member drives the pusher to reset and slide through the cooperation of the reset driving portion and the reset mating portion, and is positioned and retracted into the fixed bracket to ensure that the pusher can automatically reset, avoiding problems such as component damage or user injury caused by the pusher being unable to reset and being easily touched by the user, making the user's use safer and more convenient.
[0024] 4. When the telescopic member extends out of the pusher and the movable buckle portion is separated from the buckle release portion, the reset member can reset and slide on the fixed bracket through the reset elastic member. At the same time, it can also drive the telescopic member to follow the reset through the cooperation of the linkage member and the steering member to ensure that the telescopic member and the reset member can automatically reset and wait for the next pressing operation. This not only improves the working stability of the entire product, enabling it to meet the pressing opening of furniture, but also reduces the problems of component damage or injury caused by the user's accidental touch, further improving the user's use safety and convenience. At the same time, since the pusher and the telescopic member automatically reset and retract into the fixed bracket after the furniture is opened, it will not obstruct the closing of the furniture, allowing the furniture to close smoothly.
[0025] Generally speaking, it has the characteristics of simple and reasonable structure, reliable performance, compact connection between components, low manufacturing cost, convenient, stable and highly flexible use. It can also be widely applied to furniture such as side-opening doors of furniture, or upward-opening doors of furniture, or furniture drawers, etc., with a wide range of uses and strong practicality. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 、 Figure 2 is an exploded structural schematic diagram of an embodiment of the present invention.
[0027] Figure 3 、 Figure 4 is an assembled structural schematic diagram of an embodiment of the present invention.
[0028] Figure 5 、 Figure 6 is an assembled sectional structural schematic diagram of an embodiment of the present invention.
[0029] Figure 7For Figure 6 The enlarged structural schematic diagram of position A in
[0030] Figures 8 - 15 It is a schematic diagram of the pressing and rebounding process. Specific embodiments
[0031] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.
[0032] Refer to Figures 1 - 15 , this energy storage type pressing and rebounding structure includes a fixed bracket 1 and a movable buckle part 2. A heart-shaped groove part 3, a pushing member 4, a pushing elastic member 5, a reset member 6, and a reset elastic member 7 are provided on the fixed bracket 1.
[0033] A sliding part 8 is provided on the pushing member 4, and it is elastically connected to the pushing elastic member 5 and slidably arranged on the fixed bracket 1. The sliding part 8 stays and slides along the track of the heart-shaped groove part 3 when the pushing member 4 slides.
[0034] An expansion member 9 is further provided on the pushing member 4. One end of the expansion member 9 is provided with a buckling and separating part 10, and it is buckled or separated from the movable buckle part 2 through the buckling and separating part 10. The other end of the expansion member 9 slides telescopically on the pushing member 4, and a linkage assembly is provided between the other end and the reset member 6.
[0035] The reset member 6 is elastically connected to the reset elastic member 7 and slidably arranged on the fixed bracket 1, and is mutually driven and connected to the expansion member 9 through the linkage assembly when sliding.
[0036] The linkage assembly includes a linkage member 11 and a steering member 12; one end of the linkage member 11 is cooperatively connected to the expansion member 9, and the other end is cooperatively connected to the reset member 6 after bypassing the steering member 12; the reset member 6 and the expansion member 9 are mutually driven and connected through the cooperation of the linkage member 11 and the steering member 12.
[0037] A first socket part 13 and a second socket part 14 are provided on the pushing member 4, and the first socket part 13 and the second socket part 14 are independently arranged; one end of the pushing elastic member 5 elastically acts on the fixed bracket 1, and the other end is elastically sleeved on the first socket part 13; one end of the expansion member 9 at least partially extends outside the second socket part 14, and the other end is sleeved and slidably telescopically arranged inside the second socket part 14.
[0038] A sliding member 15 and a sliding-out positioning part 16 are provided on the pushing member 4; a sliding-out positioning cooperation part 17 is provided on the fixed bracket 1; a staying area and a sliding area are provided on the heart-shaped groove part 3; the sliding member 15 is rotatably or swingably arranged on the pushing member 4 and stays on the staying area or slides on the sliding area to realize the positioning and retraction of the pushing member 4 into the fixed bracket 1 or the sliding and extension of the pushing member 4 out of the fixed bracket 1.
[0039] When the movable buckle part 2 is pressed towards the fixed bracket 1, it engages with the engaging and disengaging part 10, drives the pushing member 4 to slide towards the fixed bracket 1, drives the sliding part 8 to slide out of the staying area and slide on the sliding area. When the sliding part 8 slides on the sliding area, the pushing member 4 slides out a certain distance in the opposite direction of the fixed bracket 1 through the pushing elastic member 5, and at the same time drives the telescopic member 9 and the movable buckle part 2 to slide accordingly, and is positioned on the sliding-out positioning and mating part 17 through the sliding-out positioning part 16; among them, when the telescopic member 9 slides out a certain distance, it drives the reset member 6 to slide a certain distance on the fixed bracket 1 through the cooperation of the linkage member 11 and the steering member 12, and is positioned on the pushing member 4.
[0040] A reset driving part 18 is arranged on the reset member 6; a reset mating part 19 is arranged on the pushing member 4.
[0041] When the reset member 6 slides a certain distance on the fixed bracket 1, it is positioned on the reset mating part 19 through the reset driving part 18. When the movable buckle part 2 drives the telescopic member 9 to continue sliding in the opposite direction of the fixed bracket 1, it drives the reset member 6 to continue sliding on the fixed bracket 1. When the reset member 6 continues to slide, it drives the pushing member 4 to slide back towards the fixed bracket 1 through the cooperation of the reset driving part 18 and the reset mating part 19. When the pushing member 4 slides back, it drives the sliding part 8 to slide from the sliding area and stay in the staying area, so as to realize the reset sliding of the pushing member 4 and its positioning and retraction into the fixed bracket 1.
[0042] One end of the reset elastic member 7 elastically acts on the fixed bracket 1, and the other end elastically acts on the reset member 6.
[0043] When the movable buckle part 2 is separated from the engaging and disengaging part 10 when the pushing member 4 is positioned and retracted into the fixed bracket 1 and continues to slide in the opposite direction of the fixed bracket 1, the reset member 6 slides back on the fixed bracket 1 through the reset elastic member 7 when the movable buckle part 2 and the engaging and disengaging part 10 are separated, and drives the telescopic member 9 to slide back towards the fixed bracket 1 and retract into the pushing member 4 through the cooperation of the linkage member 11 and the steering member 12 when sliding back, so as to realize the reset sliding of the telescopic member 9 and the reset member 6 and their positioning on the fixed bracket 1.
[0044] The elastic force generated by the pushing elastic member 5 on the pushing member 4 is greater than the elastic force generated by the reset elastic member 7 on the reset member 6, so that the pushing member 4 slides out a certain distance in the opposite direction of the fixed bracket 1 by overcoming the elastic force of the reset elastic member 7 through the pushing elastic member 5 when the movable buckle part 2 is pressed. Among them, the telescopic member 9 and the movable buckle part 2 slide accordingly in the same direction when the pushing member 4 slides out of the fixed bracket 1, and the reset member 6 slides accordingly in the opposite direction when the pushing member 4 slides out of the fixed bracket 1.
[0045] This structural product can be widely used in furniture such as furniture with side-opening doors, furniture with flip-up doors, or furniture with drawers. This embodiment is described using furniture with side-opening doors, which also includes a furniture cabinet X and a furniture door Y. A hinge is provided between the furniture cabinet X and the furniture door Y, and the two cabinets X and the furniture door Y cooperate with each other in side opening and closing via the hinge.
[0046] Here's how it works:
[0047] The furniture door Y is closed on the furniture cabinet X. The user presses the furniture door Y to make the movable buckle 2 move toward the fixed bracket 1 and engage with the buckle 10. At the same time, the movable buckle 2 will also drive the pusher 4 to slide in the direction of the fixed bracket 1. When sliding, the pusher 4 will drive the sliding part 8 to slide out of the stop area and slide on the sliding area. At this time, the pusher 4 will slide a certain distance in the opposite direction of the fixed bracket 1 by pushing the elastic part 5, and at the same time drive the telescopic part 9 and the movable buckle 2 to follow the sliding, and position the slide-out positioning part 16 on the slide-out positioning matching part 17, that is, the furniture door Y will automatically open a certain angle relative to the furniture cabinet X; wherein, when the telescopic part 9 slides out a certain distance, it drives the reset part 6 to slide a certain distance on the fixed bracket 1 through the cooperation of the linkage part 11 and the steering part 12, and is positioned on the reset matching part 19 through the reset driving part 18. Its state change process is as follows Figures 8 - 11 shown.
[0048] The user opens the furniture door Y and drives the telescopic member 9 to continue sliding in the opposite direction of the fixed bracket 1 through the movable buckle 2, and drives the reset member 6 to continue sliding on the fixed bracket 1. When the reset member 6 continues to slide, the reset driving part 18 and the reset matching part 19 cooperate to drive the push member 4 to reset and slide in the direction of the fixed bracket 1. When the push member 4 resets and slides, it drives the sliding part 8 to slide from the sliding area and stay on the staying area, so that the push member 4 resets and slides and is positioned and retracted into the fixed bracket 1. Its state change process is as follows: Figures 10 - 13 shown.
[0049] The user continues to pull open the furniture door Y. At this time, the positioning function of the telescopic member 9 cannot continue to slide, so the movable buckle part 2 will separate from the buckle part 10. When the movable buckle part 2 and the buckle part 10 are separated, the reset member 6 is reset and slid on the fixed bracket 1 through the reset elastic member 7. During the reset sliding, the telescopic member 9 is driven to reset and slide in the direction of the fixed bracket 1 through the cooperation of the linkage member 11 and the steering member 12, and the push member 4 is retracted, so that the telescopic member 9 and the reset member 6 are reset and slid and positioned on the fixed bracket 1. Its state change process is as follows. Figures 12 - 15 shown.
[0050] in, Figure 9 、 Figure 11 、 Figure 13 、 Figure 15 They areFigure 8 , Figure 10 , Figure 12 , Figure 14 The relationship state of the fixed bracket 1 and the movable buckle part 2.
[0051] One end of the telescopic member 9 at least partially extends out of the fixed bracket 1 and / or the telescopic member 9, and is provided with a disengaging member 20 and a disengaging elastic member 21; one end of the disengaging elastic member 21 elastically acts on the telescopic member 9, and the other end elastically acts on the disengaging member 20; the disengaging portion 10 is provided on the disengaging member 20; the disengaging member 20 elastically rotates or swings on the telescopic member 9 through the disengaging elastic member 21, and the disengaging portion 10 is engaged with or separated from the movable buckle part 2 when the disengaging member 20 elastically rotates or swings.
[0052] The disengaging member 20 is provided with an engaging guiding portion 22 and / or a separating guiding portion 23, and is guided to engage with and / or separate from the movable buckle part 2 through the engaging guiding portion 22 and / or the separating guiding portion 23.
[0053] The fixed bracket 1 is provided with a sliding groove 24 for the pushing member and a sliding groove 25 for the resetting member, and the sliding groove 24 for the pushing member and the sliding groove 25 for the resetting member are independently arranged; the pushing member 4 is positioned and slides on the sliding groove 24 for the pushing member; the resetting member 6 is positioned and slides on the sliding groove 25 for the resetting member.
[0054] The above is the preferred solution of the present invention, which shows and describes the basic principle, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.
Claims
1. A storage type pressing and rebounding structure, comprising a fixed bracket (1) and a movable buckle part (2), characterized in that: A fixing bracket (1) is provided with a heart-shaped groove part (3), a pushing member (4), a pushing elastic member (5), a reset member (6), and a reset elastic member (7); The pushing member (4) is provided with a sliding part (8), is elastically connected to the pushing elastic member (5), and is slidably arranged on the fixing bracket (1). The sliding part (8) stays and slides along the track of the heart-shaped groove part (3) when the pushing member (4) slides; The pushing member (4) is further provided with a telescopic member (9). One end of the telescopic member (9) is provided with a buckling and separating part (10), and is buckled or separated from the movable buckling part (2) through the buckling and separating part (10). The other end of the telescopic member (9) slides telescopically on the pushing member (4), and a linkage assembly is arranged between the other end and the reset member (6); The reset member (6) is elastically connected to the reset elastic member (7), is slidably arranged on the fixing bracket (1), and is mutually driven and connected to the telescopic member (9) through the linkage assembly when sliding; The linkage assembly includes a linkage member (11) and a steering member (12); one end of the linkage member (11) is cooperatively connected with the telescopic member (9), and the other end is cooperatively connected with the reset member (6) after bypassing the steering member (12); the reset member (6) and the telescopic member (9) are mutually driven and connected through the cooperation of the linkage member (11) and the steering member (12); The pushing member (4) is provided with a first socket part (13) and a second socket part (14), and the first socket part (13) and the second socket part (14) are independently arranged; one end of the pushing elastic member (5) elastically acts on the fixing bracket (1), and the other end is elastically sleeved on the first socket part (13); one end of the telescopic member (9) at least partially extends out of the second socket part (14), and the other end is sleeved and slidably telescoped in the second socket part (14); The pushing member (4) is provided with a sliding member (15) and a sliding-out positioning part (16); the fixing bracket (1) is provided with a sliding-out positioning cooperation part (17); the heart-shaped groove part (3) is provided with a staying area and a sliding area; the sliding member (15) is rotatably or swingably arranged on the pushing member (4), and stays on the staying area or slides on the sliding area to realize that the pushing member (4) is positioned and indented into the fixing bracket (1) or slides out of the fixing bracket (1); When the movable buckling part (2) is pressed towards the fixing bracket (1), it is buckled with the buckling and separating part (10), and drives the pushing member (4) to slide towards the fixing bracket (1), and drives the sliding part (8) to slide out of the staying area and slide on the sliding area. When the pushing member (4) slides on the sliding area, the pushing member (4) slides out a certain distance in the opposite direction of the fixing bracket (1) through the pushing elastic member (5), and simultaneously drives the telescopic member (9) and the movable buckling part (2) to follow and slide, and is positioned and acts on the sliding-out positioning cooperation part (17) through the sliding-out positioning part (16); wherein, when the telescopic member (9) slides out a certain distance, the reset member (6) is driven to slide a certain distance on the fixing bracket (1) through the cooperation of the linkage member (11) and the steering member (12), and is positioned on the pushing member (4).
2. The energy storage type pressing and rebounding structure according to claim 1, wherein: The reset member (6) is provided with a reset driving part (18); the pushing member (4) is provided with a reset cooperation part (19); When the reset member (6) slides a certain distance on the fixed bracket (1), it is positioned on the reset mating portion (19) through the reset driving portion (18). When the movable buckle portion (2) drives the telescopic member (9) to continue sliding in the opposite direction of the fixed bracket (1), it drives the reset member (6) to continue sliding on the fixed bracket (1). When the reset member (6) continues to slide, it drives the pushing member (4) to reset and slide in the direction of the fixed bracket (1) through the cooperation of the reset driving portion (18) and the reset mating portion (19). When the pushing member (4) resets and slides, it drives the sliding portion (8) to slide out of the sliding area and stay in the staying area, so as to realize the reset sliding of the pushing member (4) and its positioning and retracting into the fixed bracket (1).
3. The energy storage type pressing and rebounding structure according to claim 2, characterized in that: One end of the reset elastic member (7) elastically acts on the fixed bracket (1), and the other end elastically acts on the reset member (6). When the movable buckle portion (2) is positioned and retracted into the fixed bracket (1) and continues to slide in the opposite direction of the fixed bracket (1), it separates from the detaching portion (10). When the movable buckle portion (2) and the detaching portion (10) are separated, the reset member (6) resets and slides on the fixed bracket (1) through the reset elastic member (7), and when resetting and sliding, it drives the telescopic member (9) to reset and slide in the direction of the fixed bracket (1) and retract into the pushing member (4) through the cooperation of the linkage member (11) and the steering member (12), so as to realize the reset sliding of the telescopic member (9) and the reset member (6) and their positioning on the fixed bracket (1).
4. The energy storage type pressing and rebounding structure according to claim 3, characterized in that: The elastic force generated by the pushing elastic member (5) on the pushing member (4) is greater than the elastic force generated by the reset elastic member (7) on the reset member (6), so that when the movable buckle portion (2) presses, the pushing member (4) overcomes the elastic force of the reset elastic member (7) through the pushing elastic member (5) and slides out a certain distance in the opposite direction of the fixed bracket (1). Among them, the telescopic member (9) and the movable buckle portion (2) slide in the same direction when the pushing member (4) slides out of the fixed bracket (1), and the reset member (6) slides in the opposite direction when the pushing member (4) slides out of the fixed bracket (1).
5. The energy storage type pressing and rebounding structure according to claim 1, wherein: One end of the telescopic member (9) at least partially extends out of the fixed bracket (1) and / or the telescopic member (9), and is provided with a detaching member (20) and a detaching elastic member (21); one end of the detaching elastic member (21) elastically acts on the telescopic member (9), and the other end elastically acts on the detaching member (20); the detaching portion (10) is arranged on the detaching member (20); the detaching member (20) elastically rotates or swings on the telescopic member (9) through the detaching elastic member (21), and the detaching portion (10) is mutually engaged or separated from the movable buckle portion (2) when the detaching member (20) elastically rotates or swings.
6. The energy storage type pressing and rebounding structure according to claim 5, wherein: The detaching member (20) is provided with an engaging guiding portion (22) and / or a separating guiding portion (23), and is guided to be mutually engaged and / or separated from the movable buckle portion (2) through the engaging guiding portion (22) and / or the separating guiding portion (23).
7. The energy storage type pressing and rebounding structure according to claim 1, characterized in that: The fixed bracket (1) is provided with a sliding groove (24) for the pushing member and a sliding groove (25) for the resetting member. The sliding groove (24) for the pushing member and the sliding groove (25) for the resetting member are independently arranged. The pushing member (4) is positioned and slides on the sliding groove (24) for the pushing member. The resetting member (6) is positioned and slides on the sliding groove (25) for the resetting member.
Citation Information
Patent Citations
Adjusting structure for furniture pressing rebound
CN210493316U
Energy storage type pressing rebound structure
CN217106613U