Right-angle rotating cabinet
By designing a rotary translation mechanism including a rotary plate, a fixing plate, a pulley, a connecting plate and a resetter, the existing right-angle rotary cabinet is solved for the cumbersome problem when storing and accessing items, and realizes automatic translation of the rotary cabinet body while rotating, which facilitates the storage and access of items, and automatically returns to the initial position after the rotation is completed.
Patent Information
- Application Number
- CN202421842566.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-01
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-08-01
AI Technical Summary
When storing and receiving items, the existing right-angle rotary cabinet needs to rotate the rotary cabinet body to the opposite pick-up and release port, which makes it cumbersome and time-consuming to find items.
A right-angle rotary cabinet including a fixed cabinet body, a rotary cabinet body and a rotary translation mechanism is designed. The rotary translation mechanism consists of a rotary plate, a fixing plate, a pulley, a connecting plate and a resetter. The rotation of the rotary plate pushes the connecting plate to translate, so as to realize the rotation cabinet body to translate while rotating, avoid interference positions, and facilitate the storage and access of items.
It realizes that during the rotation of the rotating cabinet, it can automatically translate to a position that is easy to access, reduces the time to find items, improves the access efficiency, and automatically returns to the initial position after the rotation is completed.
Smart Images

Figure CN222853405U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of storage cabinets, in particular to a right-angle rotating cabinet. Background Art
[0002] As a type of storage cabinet, the right-angle rotating cabinet can cleverly utilize the space at the corner of the room for storage, which can effectively increase the storage space of the room, especially for rooms with small space. The current right-angle rotating cabinet generally includes a fixed cabinet embedded in the wall and a rotating cabinet that can rotate, but the rotating cabinet only rotates inside the fixed cabinet. When storing and retrieving items, it is necessary to rotate the rotating cabinet to the access port of the fixed cabinet, and then store the items in the cabinet for retrieval, which takes a lot of time and effort in the process of searching for items, and brings many inconveniences to life. Utility Model Content
[0003] In order to solve the above technical problems, the utility model provides a right-angle rotating cabinet.
[0004] The embodiment of the present application provides a right-angle rotating cabinet, comprising a fixed cabinet, a rotating cabinet, and a rotating and translating mechanism located between the fixed cabinet and the rotating cabinet; the rotating cabinet can be rotatably received inside the fixed cabinet; the rotating and translating mechanism comprises:
[0005] A fixing plate having a first mounting surface and a second mounting surface opposite to each other, wherein the first mounting surface is connected to the fixing cabinet;
[0006] A rotating plate, which is arranged on one side of the second mounting surface and connected to the rotating cabinet, and two slide grooves extending along the length direction of the rotating plate are arranged on the surface of the rotating plate facing the second mounting surface, and the two slide grooves are symmetrical and connected with each other about the first axis of the rotating plate;
[0007] a pulley rotatably disposed in the slide groove and abutting against an inner wall of the slide groove, and the pulley is connected to the second mounting surface via a connecting column;
[0008] A connecting plate, which is located between the fixed plate and the rotating plate, the connecting plate is connected to the rotating plate and is slidably connected to the fixed plate; when the rotating plate rotates, the connecting plate can move back and forth on the fixed plate along the length direction of the fixed plate;
[0009] A resetter, which is arranged on the second mounting surface and is used to pull the connecting plate back to an initial position;
[0010] Wherein, the slide groove includes a first groove and a second groove which are symmetrical and connected with the second axis of the rotating plate. When the rotating plate rotates 90 degrees, the pulley is located at the intersection of the first groove and the second groove; when the rotating plate rotates 180 degrees, the pulley is located at the intersection of the two pulleys; when the rotating plate rotates 360 degrees, the pulley is transferred from the first groove or the second groove of one slide groove to the first groove or the second groove of another slide groove.
[0011] In one embodiment, the intersection of the two slide grooves is an arc-shaped transition, and the thickness of the pulley is less than or equal to the depth of the slide groove.
[0012] In one embodiment, a damper is further included, wherein the damper is mounted on the second mounting surface and located on the movement path of the connecting plate, and is used to abut against the connecting plate returning to an initial position.
[0013] In one embodiment, the damper includes a damper body and a mounting plate, the upper end of the mounting plate is bent to form a mounting portion, the mounting portion is connected to the second mounting surface, and the damper body is fixed on the surface of the mounting plate.
[0014] In one embodiment, a slide rail assembly is further included, which includes a slide rail, a slider and a limit block. The slide rail is installed on the second mounting surface along the length direction of the fixed plate. The slider is slidably connected to the slide rail, and the slider is connected to the connecting plate. Limit blocks are provided at both ends of the slide rail, and the limit blocks are used to limit the sliding distance of the slider.
[0015] In one embodiment, the resetter includes a tension spring and a guide wheel, one end of the tension spring is connected to one end of the connecting column connected to the fixing plate, the other end of the tension spring is connected to the connecting plate, the guide wheel is installed on the second mounting surface and is located on the opposite side of the connecting column, and the tension spring is wound around the guide wheel.
[0016] In one embodiment, the second mounting surface is provided with a fixing plate, the fixing plate is located at one end of the fixing plate close to the connecting column, and a first bayonet is opened on the fixing plate, and one end of the tension spring is engaged with the first bayonet;
[0017] One end of the connecting plate away from the guide wheel is bent to form a bent portion, a second bayonet is provided on the bent portion, and the other end of the tension spring is engaged with the second bayonet.
[0018] In one embodiment, a partition is provided inside the rotating cabinet, which divides the interior of the rotating cabinet into multiple layers of storage compartments for storing items, and a front surface and a side surface of the rotating cabinet are provided with access openings connected to the interior of the rotating cabinet.
[0019] In one embodiment, it also includes a shaft column, a mounting hole is provided in the middle of the rotating plate, a receiving hole is provided on the connecting plate, the shaft column is embedded in the receiving hole, and the front end of the shaft column has a connecting portion extending out of the receiving hole, and the shaft column extends into the mounting hole through the connecting portion and is connected to the rotating plate.
[0020] In one embodiment, the top and bottom of the rotating cabinet are provided with recessed positions for accommodating the rotating and translating mechanism.
[0021] Compared with the prior art, the right-angle rotating cabinet provided in the embodiment of the present application has the following beneficial effects:
[0022] A rotating plate and a fixed plate are connected to the rotating cabinet and the fixed cabinet respectively, and two sliding grooves are cleverly arranged on the surface of the rotating plate, which are symmetrical and connected with the first axis of the rotating plate, so that the rotating plate can push the connecting plate to move along the length direction of the fixed plate when it rotates. Since the connecting plate is connected to the rotating plate, the rotating plate can follow the movement, and a rotation and translation offset effect can be generated during the rotation of the rotating cabinet, which can perfectly avoid the interference position and facilitate users to store and retrieve items. At the same time, a resetter is used to pull the connecting plate back to the initial position after the connecting plate moves to the maximum translation distance, so that the rotating plate can automatically rotate back to the original position while driving the rotating plate to return to the initial position, ensuring that the rotating cabinet can automatically return to the inside of the fixed cabinet after it is rotated out. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 This is a schematic diagram of the structure of a right-angle rotating cabinet of the present application;
[0024] Figure 2 It is an exploded schematic diagram of a right-angle rotating cabinet of the present application;
[0025] Figure 3 It is a structural schematic diagram of a rotation and translation mechanism in a right-angle rotation cabinet of the present application;
[0026] Figure 4 It is an exploded schematic diagram of a rotation and translation mechanism in a right-angle rotation cabinet of the present application;
[0027] Figure 5 It is a structural schematic diagram of another embodiment of a rotation and translation mechanism in a right-angle rotation cabinet of the present application;
[0028] Figure 6 This is a schematic diagram of the state of the pulley in the slide slot after the rotating cabinet body in the right-angle rotating cabinet of the present application rotates 90 degrees;
[0029] Figure 7 This is a schematic diagram of the state of the pulley in the slide slot after the rotating cabinet body in the right-angle rotating cabinet of the present application rotates 180 degrees;
[0030] Figure 8 This is a schematic diagram of the state of the pulley in the slide slot after the rotating cabinet body in the right-angle rotating cabinet of the present application rotates 360 degrees;
[0031] Fig. 9 It is a schematic diagram of a right-angle rotating cabinet in the process of opening in the present application;
[0032] Fig.10 It is a schematic diagram of a right-angle rotating cabinet in the closing process of the present application.
[0033] Numbers in the figure:
[0034] 10. Fixed cabinet; 20. Rotating cabinet; 20a. Concave position; 20b. Storage compartment; 30. Rotating and translating mechanism; 31. Fixed plate; 31a. First mounting surface; 31b. Second mounting surface; 32. Rotating plate; 32a. Mounting hole; 321. Slide groove; 321a. First channel; 321b. Second channel; 33. Resetter; 331. Tension spring; 342. Guide wheel; 34. Slide rail assembly; 341. Slide rail; 342. Slider; 343. Limit block; 35. Pulley; 36. Connecting plate; 361. Storage hole; 362. Bending portion; 362a. Second bayonet; 37. Damper; 371. Damper body; 372. Mounting plate; 372a. Mounting portion; 38. Connecting column; 39. Fixing plate; 39a. First bayonet; 310. Shaft column; 310a. Connecting portion; 40. Partition plate. DETAILED DESCRIPTION
[0035] In order to have a clearer understanding of the technical features, purposes and effects of the present invention, the specific implementation methods of the present invention are now described in detail with reference to the accompanying drawings. In the following description, it should be understood that the directions or positional relationships indicated by "front", "back", "up", "down", "left", "right", "longitudinal", "horizontal", "vertical", "horizontal", "top", "bottom", "inside", "outside", "head", "tail", etc. are based on the directions or positional relationships shown in the accompanying drawings, are constructed and operated in a specific direction, and are only for the convenience of describing the present technical solution, rather than indicating that the device or element referred to must have a specific direction, and therefore cannot be understood as a limitation to the present invention.
[0036] The following is a further detailed description of the specific implementation of the present invention in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.
[0037] The terms "first", "second" and the like in the present invention do not represent specific quantities and orders, but are merely used to distinguish names.
[0038] Please refer to Figures 1 to 5 The embodiment of the present application provides a right-angle rotating cabinet, which includes a fixed cabinet body 10, a rotating cabinet body 20, and a rotating and translating mechanism 30 located between the fixed cabinet body 10 and the rotating cabinet body 20. The rotating cabinet body 20 can be rotatably accommodated inside the fixed cabinet body 10. The rotating and translating mechanism 30 includes a fixed plate 31, a rotating plate 32, a pulley 35, a connecting plate 36, and a resetter 33. The fixed plate 31 has a first mounting surface 31a and a second mounting surface 31b opposite to each other, and the first mounting surface 31a is connected to the fixed cabinet body 10. The rotating plate 32 is arranged on one side of the second mounting surface 31b and is connected to the rotating cabinet body 20. Two slide grooves 321 extending along the length direction of the rotating plate 32 are provided on the surface of the rotating plate 32 facing the second mounting surface 31b, and the two slide grooves 321 are symmetrical and connected with the first axis of the rotating plate 32. The pulley 35 is rotatably disposed in the slide groove 321 and abuts against the inner wall of the slide groove 321, and the pulley 35 is connected to the second mounting surface 31b through the connecting column 38. The connecting plate 36 is located between the fixed plate 31 and the rotating plate 32. The connecting plate 36 is connected to the rotating plate 32 and is slidably connected to the fixed plate 31. When the rotating plate 32 rotates, the connecting plate 36 can move back and forth on the fixed plate 31 along the length direction of the fixed plate 31. The resetter 33 is disposed on the second mounting surface 31b, and is used to pull the connecting plate 36 back to the initial position.
[0039] Among them, the slide groove 321 includes a first groove 321a and a second groove 321b which are symmetrical with the second axis of the rotating plate 32 and are connected. When the rotating plate 32 rotates 90 degrees, the pulley 35 is located at the intersection of the first groove 321a and the second groove 321b; when the rotating plate 32 rotates 180 degrees, the pulley 35 is located at the intersection of the two pulleys 35; when the rotating plate 32 rotates 360 degrees, the pulley 35 is transferred from the first groove 321a or the second groove 321b of one slide groove 321 to the first groove 321a or the second groove 321b of another slide groove 321.
[0040] Exemplarily, the first mounting surface 31a and the second mounting surface 31b of the fixing plate 31 are determined according to the surface used to connect with the fixing cabinet 10, for example: Figure 2 The surface of the fixing plate 31 facing the fixed cabinet 10 is the first mounting surface 31a, and the surface of the fixing plate 31 opposite to the first mounting surface 31a is the second mounting surface 31b, which is set according to actual needs.
[0041] In addition, the first mounting surface 31a can be connected to the fixed cabinet 10 by welding, or by fasteners (such as screws, bolts, etc.), or by other fixing methods in the prior art, and it is only necessary to connect the first mounting surface 31a to the fixed cabinet 10, and there is no limitation on this. However, in order to facilitate subsequent disassembly and maintenance, in this embodiment, the first mounting surface 31a is connected to the fixed cabinet 10 by screw fixing.
[0042] Exemplarily, the fixed plate 31 is connected to the fixed cabinet 10, and the rotating plate 32 is used to connect to the rotating cabinet 20, so that the entire rotating and translating mechanism 30 is arranged between the rotating cabinet 20 and the fixed cabinet 10, so that the rotating cabinet 20 can rotate relative to the fixed cabinet 10, and the rotating plate 32 is connected to the connecting plate 36, so that the rotating cabinet 20 can translate while rotating, so as to extend the rotating cabinet 20 from the interior of the fixed cabinet 10 to facilitate the taking and placing of items.
[0043] Please refer to Figures 6 to 8For example, since the pulley 35 is connected to the fixed plate 31 through the connecting column 38, and the fixed plate 31 is in a fixed state during use, the pulley 35 will not move. The rotating plate 32 is only rotated so that the two slide grooves 321 on the rotating plate 32 can cause the pulley 35 to produce relative displacement, thereby realizing the change of the position of the pulley 35, so that the rotating plate 32 can produce a translation effect relative to the fixed plate 31. For example, when the pulley 35 is located at both ends of the slide groove 321, the rotating plate 32 is in a state parallel to the fixed plate 31. At this time, the angle of the rotating plate 32 relative to the fixed plate 31 is 0 degrees. When the rotating plate 32 is pushed to rotate, the pulley 35 will generate a relative displacement from one end to the other end in a slide groove 321 as the rotating plate 32 rotates 90 degrees (i.e., perpendicular to the fixed plate 31), and the pulley 35 is located at the intersection of the first groove 321a and the second groove 321b in a slide groove 321. At this time, the rotating cabinet 20 connected to the rotating plate 32 is in a state of being partially rotated out of the cabinet; when the rotating plate 32 rotates 180 degrees (i.e., parallel to the fixed plate 31), the pulley 35 is located at the intersection of the two slide grooves 321. At this time, The rotating cabinet 20 connected to the rotating plate 32 rotates back to the interior of the fixed cabinet 10, but is in an open state; when the rotating plate 32 rotates 270 degrees, the pulley 35 is located at the intersection of the first groove 321a and the second groove 321b in another slide groove 321, and the rotating cabinet 20 connected to the rotating plate 32 is in a state of being partially rotated out of the cabinet; when the rotating plate 32 rotates 360 degrees, the pulley 35 is transferred from the first groove 321a of one slide groove 321 to the first groove 321a of another slide groove 321, or from the second groove 321b of one slide groove 321 to the second groove 321b of another slide groove 321, and the rotating cabinet 20 connected to the rotating plate 32 rotates back to the interior of the fixed cabinet 10, but is in an open state.
[0044] In addition, since the two are symmetrical and connected with the first axis of the rotating plate 32, the rotating plate 32 can also perform reciprocating motion while being pushed to rotate 360°, that is, first rotate 180° to the left or right, so that the rotating cabinet 2020 is partially rotated out of the fixed cabinet 1010 and is in an open state. After the items are taken and placed, the rotating cabinet 2020 is further rotated 180°, and then the rotating cabinet 2020 is switched from the open state to the closed state. It should be noted that the "first axis" mentioned above refers to the horizontal axis passing through the center of the rotating plate 32, and the "second axis" refers to the vertical axis passing through the center of the rotating plate 32. Both are fictitious for the convenience of the positional relationship of the slide slot 321. For details, please refer to Figure 1 The X and Y segments in .
[0045] Here, it should be noted that the resetter 33 is used to pull the connecting plate 36 back to the initial position after the connecting plate 36 moves to the maximum translation distance, so that the rotating plate 32 can be driven to return to the initial position while the rotating plate 323 can be automatically rotated back to the original position, ensuring that the rotating cabinet 20 can automatically return to the interior of the fixed cabinet 10 after being rotated out. The specific structure of the resetter 33 can adopt the components commonly used in the prior art to pull back the moving connecting plate 36, and this is not limited.
[0046] The right-angle rotating cabinet based on the above technical features uses a rotating plate 32 and a fixed plate 31 to be connected to the rotating cabinet body 20 and the fixed cabinet body 10 respectively, and cleverly provides two sliding grooves 321 on the surface of the rotating plate 32 that are symmetrical and connected to the first axis of the rotating plate 32, so that the rotating plate 32 can push the connecting plate 36 to move along the length direction of the fixed plate 31 while rotating. Since the connecting plate 36 is connected to the rotating plate 32, the rotating plate 32 can follow the movement, thereby achieving a rotation and translation offset effect during the rotation of the rotating cabinet body 20, which can perfectly avoid the interference position and facilitate users to store and retrieve items. At the same time, the resetter 33 is used to pull the connecting plate 36 back to the initial position after moving to the maximum translation distance, so that the rotating plate 32 can be driven to return to the initial position while the rotating plate 32 can be automatically rotated back to the original position, ensuring that the rotating cabinet body 20 can automatically return to the inside of the fixed cabinet body 10 after being rotated out.
[0047] In one embodiment, the intersection of the two slide grooves 321 is in an arc-shaped transition, and the thickness of the pulley 35 is less than or equal to the depth of the slide groove 321 .
[0048] Exemplarily, the intersection of the two slide grooves 321 is set to an arc-shaped transition so that the pulley 35 can smoothly transition when switching from one slide groove 321 to another slide groove 321 to avoid the problem of jamming or inability to switch.
[0049] In addition, the thickness of the pulley 35 needs to be set to be less than or equal to the depth of the slide groove 321 to ensure that the pulley 35 is completely placed in the slide groove 321, so that it will not jump out during the process of being driven to move in the slide groove 321, thereby ensuring the normal rotation of the rotating plate 32. For example, if the thickness of the pulley 35 is greater than the depth of the pulley 35, the pulley 35 may jump out of the slide groove 321 during the process of the pulley 35 moving along the track of the slide groove 321, thereby causing the subsequent rotation 2 to be unable to rotate normally.
[0050] In one embodiment, a damper 37 is further included. The damper 37 is installed on the second installation surface 31 b and is located on the movement path of the connecting plate 36 for abutting against the connecting plate 36 returning to the initial position.
[0051] Here, it should be noted that the damper 37 is used to provide movement resistance, so that in the process of the connection plate 36 returning to the initial position, the movement energy can be consumed by the resistance provided by the damper 37 to avoid collision. The damper 37 can be a component commonly used in the prior art to apply a buffering force, and only needs to be a component that can provide a buffering force for the connection plate 3637 returning to the initial position, and there is no limitation on this.
[0052] Exemplarily, when the connecting plate 36 moves to a preset distance along the length direction of the fixing plate 31 and returns to the initial position, the connecting plate 36 will contact the damper 37, and the damper 37 will apply a force to the connecting plate 36, so as to reduce the collision phenomenon in the process of the connecting plate 36 returning to the initial position, thereby effectively solving the problem of force collision between accessories.
[0053] In one embodiment, the damper 37 includes a damper body 371 and a mounting plate 372 . The upper end of the mounting plate 372 is bent to form a mounting portion 372 a . The mounting portion 372 a is connected to the second mounting surface 31 b . The damper body 371 is fixed on the surface of the mounting plate 372 .
[0054] Exemplarily, the damper body 371 is first installed on the mounting plate 372, and then the mounting portion 372a formed by bending the upper end of the mounting plate 372 is connected to the second mounting surface 31b, thereby achieving the installation of the damper body 371 on the fixed plate 31, so that the damper body 371 is fixed on the movement path of the connecting plate 36, and a force can be applied to the connecting plate 36 to reduce the collision phenomenon when the connecting plate 36 returns to the initial position.
[0055] In addition, the mounting plate 372 can be connected to the second mounting surface 31b through the mounting portion 372a in a detachable manner. For example, a first fixing hole is opened on the second mounting surface 31b, and a second fixing hole is set on the mounting portion 372a. When the damper body 371 is fixed on the surface of the mounting plate 372, the first fixing hole is aligned with the second fixing hole, and then the fastener is used to pass through the second fixing hole and the first fixing hole in sequence, so that the damper 37 is detachably connected to the second mounting surface 31b, which facilitates the subsequent replacement of the damper 37.
[0056] In one embodiment, a slide rail assembly 34 is also included, and the slide rail assembly 34 includes a slide rail 341, a slider 342 and a limit block 343. The slide rail 341 is installed on the second mounting surface 31b along the length direction of the fixed plate 31, and the slider 342 is slidably connected to the slide rail 341, and the slider 342 is connected to the connecting plate 36. Limit blocks 343 are provided at both ends of the slide rail 341, and the limit blocks 343 are used to limit the sliding distance of the slider 342.
[0057] Exemplarily, a slide rail 341 extending along the length direction of the fixed plate 31 is provided on the second mounting surface 31b, and a slider 342 is slidably connected to the slide rail 341, and then the slider 342 is connected to the surface of the connecting plate 36 facing the fixed plate 31, so that when the connecting plate 36 is driven, the connecting plate 36 can move linearly on the slide rail 341341, thereby making the movement of the connecting plate 36 smoother.
[0058] In addition, the limit blocks 343 arranged at both ends of the slide rail 341 are used to limit the sliding distance of the slider 342, which can prevent the slider 342 from falling off the slide rail 341, resulting in subsequent inability to translate.
[0059] In one embodiment, the resetter 33 includes a tension spring 331 and a guide wheel 342, one end of the tension spring 331 is connected to one end of the fixing plate 31 connected to a connecting column 38, the other end of the tension spring 331 is connected to the connecting plate 36, the guide wheel 342 is installed on the second mounting surface 31b and is located on the opposite side of the connecting column 38, and the tension spring 331 is wound around the guide wheel 342.
[0060] Exemplarily, the tension spring 331 is elastic. After the connecting plate 36 is moved to the maximum translation distance, the tension spring 331 is in a stretched state, so that when the push on the rotating cabinet 20 is released, the tension spring 331 switches from the stretched state to the relaxed state. During this process, the connecting plate 36 is pulled back to the initial position, so that while driving the rotating plate 32 to return to the initial position, the rotating plate 32 can also automatically rotate back to the original position, ensuring that the rotating cabinet 20 can automatically return to the inside of the fixed cabinet 10 after rotating out.
[0061] Exemplarily, the guide wheel 342 is provided on the second mounting surface 31b so as to guide the tension spring 331 so that the tension spring 331 can be folded into two parts, thereby ensuring that after the connecting plate 36 moves to the maximum translation distance, the elasticity of the tension spring 331 can be used to pull the connecting plate 36 back to the initial position.
[0062] In one embodiment, the second mounting surface 31b is provided with a fixing plate 39, the fixing plate 39 is located at one end of the fixing plate 31 close to the connecting column 38, and a first bayonet 39a is provided on the fixing plate 39, and one end of the tension spring 331 is engaged with the first bayonet 39a. One end of the connecting plate 36 away from the guide wheel 342 is bent to form a bent portion 362, and a second bayonet 362a is provided on the bent portion 362, and the other end of the tension spring 331 is engaged with the second bayonet 362a.
[0063] Exemplarily, by respectively opening a first snap-in slot 39a and a second snap-in slot 362a on the bending portion 362 and the fixing plate 39, and then respectively inserting the two ends of the tension spring 331 into the first snap-in slot 39a and the second snap-in slot 362a, so that the tension spring 331 is connected to the connecting plate 36. The structure is simple and easy to disassemble and assemble, which is conducive to the subsequent rapid replacement of the tension spring 331.
[0064] Exemplarily, a bending portion 36237a is formed by bending one end of the connecting plate 3637 away from the guide wheel 342, so that after the connecting plate 36 is driven to move to the maximum translation distance, the tension spring 331 will pull the connecting plate 36 back to the initial position, and the bending portion 362 on the connecting plate 36 will contact the damper 37, thereby applying a reverse force to the bending portion 362, thereby reducing the collision of the connecting plate 36 in the process of returning to the initial position, thereby effectively solving the problem of force collision between accessories.
[0065] In one embodiment, it also includes a shaft column 310, a mounting hole 32a is provided in the middle of the rotating plate 32, a receiving hole 361 is provided on the connecting plate 36, the shaft column 310 is embedded in the receiving hole 361, and the front end of the shaft column 310 has a connecting portion 310a extending out of the receiving hole 361, and the shaft column 310 extends into the mounting hole 32a through the connecting portion 310a and is connected to the rotating plate 32.
[0066] For example, since the rotating plate 32 can rotate relative to the fixed plate 31, and the connecting plate 36 can move back and forth along the length direction of the fixed plate 31, in order to achieve the effect that the rotating plate 32 can translate while rotating, it is necessary to connect the rotating plate 32 and the connecting plate 36 to form a whole. In this embodiment, by setting a mounting hole 32a in the middle of the rotating plate 32, and inserting the shaft column 310 into the receiving hole 361 of the connecting plate 36, and then using the connecting portion 310a extending out of the receiving hole 361 at the front end of the shaft column 310 to pass through the mounting hole 32a, the rotating plate 32 is detachably connected to the connecting plate 36, and the structure is simple and easy to disassemble and assemble.
[0067] In one embodiment, a partition plate 40 is provided inside the rotating cabinet 20, which divides the interior of the rotating cabinet 20 into multiple layers of storage compartments 20b for storing items, and a front surface and a side surface of the rotating cabinet 20 are provided with access openings connected to the interior of the rotating cabinet 20.
[0068] Exemplarily, by setting partitions inside the rotating cabinet 20, the interior of the rotating cabinet 20 can be divided into multiple layers of storage compartments 20b, so that items can be stored in the storage compartments 20b in an orderly manner. Then, while pushing and rotating the rotating cabinet 20, the corresponding storage compartment 20b can be rotated to the access port, so that users can take items from the storage compartment 20b.
[0069] In one embodiment, the top and bottom of the rotating cabinet 20 are provided with a recessed position 20a for accommodating the rotating and translating mechanism 30. In this way, since the rotating and translating mechanism 30 is provided between the rotating cabinet 20 and the fixed cabinet 10, and the rotating cabinet 20 can rotate with the inside of the fixed cabinet 10. In this regard, in order to ensure that the rotating and translating mechanism 30 does not limit the rotation of the rotating cabinet 20 after installation, in this embodiment, the top and bottom of the rotating cabinet 20 are provided with recessed positions 20a, so that the rotating and translating mechanism 30 can be accommodated in the recessed positions 20a, so that the rotating cabinet 20 can rotate and translate relative to the fixed cabinet 10 without causing interference to the rotating cabinet 20.
[0070] Application Examples
[0071] For ease of understanding, the use principle of the right-angle rotating cabinet of this embodiment is described below, specifically as follows:
[0072] Reference Fig. 9 and Fig.10When the right-angle rotating cabinet needs to be opened, when the rotating cabinet body 20 is rotated to the left or right, two sliding grooves 321 are provided on the surface of the rotating plate 32, which are symmetrical with the first axis of the rotating plate 32 and connected to each other, so that when the rotating plate 32 is pushed to rotate, the connecting plate 36 can be pushed to move outward along the length direction of the fixed plate 31, and then the rotating plate 32 can be driven to translate toward the outside of the fixed cabinet body 10, so that the rotating cabinet body 20 is rotated out from the inside of the fixed cabinet body 10. When the rotating cabinet body 20 is rotated to 90 degrees, part of the rotating cabinet body 20 will be rotated out of the cabinet body; then the rotating cabinet body 20 is pushed again. After the body 20 rotates to 180°, the rotating cabinet 20 returns to the interior of the fixed cabinet 10, and the rotating cabinet 20 changes from a closed state to an open state; when the right-angle rotating cabinet needs to be closed, the rotating cabinet 20 continues to rotate, so that the rotating plate 32 can be pushed to rotate while pushing the connecting plate 36 to move inward along the length direction of the fixed plate 31, so that the rotating plate 32 translates toward the interior of the fixed cabinet 10, until the rotating cabinet 20 continues to rotate 180°, the rotating cabinet 20 returns to the interior of the fixed cabinet 10, and the rotating cabinet 20 changes from an open state to a closed state. The above is only a preferred embodiment of the utility model. It should be pointed out that for ordinary technicians in this technical field, without departing from the technical principles of the utility model, several improvements and replacements can be made, and these improvements and replacements should also be regarded as the protection scope of the utility model.
Claims
1. A right-angle rotating cabinet, characterized in that: It includes a fixed cabinet, a rotating cabinet, and a rotating and translating mechanism located between the fixed cabinet and the rotating cabinet; the rotating cabinet is rotatably received inside the fixed cabinet; The rotation and translation mechanism comprises: A fixing plate having a first mounting surface and a second mounting surface opposite to each other, wherein the first mounting surface is connected to the fixing cabinet; A rotating plate, which is arranged on one side of the second mounting surface and connected to the rotating cabinet, and two slide grooves extending along the length direction of the rotating plate are arranged on the surface of the rotating plate facing the second mounting surface, and the two slide grooves are symmetrical and connected with each other about the first axis of the rotating plate; a pulley rotatably disposed in the slide groove and abutting against an inner wall of the slide groove, and the pulley is connected to the second mounting surface via a connecting column; A connecting plate, which is located between the fixed plate and the rotating plate, the connecting plate is connected to the rotating plate and is slidably connected to the fixed plate; when the rotating plate rotates, the connecting plate can move back and forth on the fixed plate along the length direction of the fixed plate; A resetter, which is arranged on the second mounting surface and is used to pull the connecting plate back to an initial position; Wherein, the slide groove includes a first groove and a second groove which are symmetrical and connected with the second axis of the rotating plate. When the rotating plate rotates 90 degrees, the pulley is located at the intersection of the first groove and the second groove; when the rotating plate rotates 180 degrees, the pulley is located at the intersection of the two pulleys; when the rotating plate rotates 360 degrees, the pulley is transferred from the first groove or the second groove of one slide groove to the first groove or the second groove of another slide groove.
2. The right-angle rotating cabinet according to claim 1, characterized in that: The intersection of the two slide grooves is in an arc-shaped transition, and the thickness of the pulley is less than or equal to the depth of the slide groove.
3. The right-angle rotating cabinet according to claim 1, characterized in that: A damper is also included. The damper is installed on the second installation surface and is located on the movement path of the connecting plate, and is used to abut against the connecting plate returning to an initial position.
4. The right-angle rotating cabinet according to claim 3, characterized in that: The damper comprises a damper body and a mounting plate. The upper end of the mounting plate is bent to form a mounting portion, the mounting portion is connected to the second mounting surface, and the damper body is fixed on the surface of the mounting plate.
5. The right-angle rotating cabinet according to claim 1, characterized in that: It also includes a slide rail assembly, which includes a slide rail, a slider and a limit block. The slide rail is installed on the second mounting surface along the length direction of the fixed plate. The slider is slidably connected to the slide rail, and the slider is connected to the connecting plate. Limit blocks are provided at both ends of the slide rail, and the limit blocks are used to limit the sliding distance of the slider.
6. The right-angle rotating cabinet according to claim 1, characterized in that: The resetter includes a tension spring and a guide wheel, one end of the tension spring is connected to the fixing plate which is connected to one end of the connecting column, the other end of the tension spring is connected to the connecting plate, the guide wheel is installed on the second mounting surface and is located on the opposite side of the connecting column, and the tension spring is wound around the guide wheel.
7. The right-angle rotating cabinet according to claim 6, characterized in that: The second mounting surface is provided with a fixing plate, the fixing plate is located at one end of the fixing plate close to the connecting column, and a first bayonet is opened on the fixing plate, and one end of the tension spring is engaged with the first bayonet; One end of the connecting plate away from the guide wheel is bent to form a bent portion, a second bayonet is provided on the bent portion, and the other end of the tension spring is engaged with the second bayonet.
8. The right-angle rotating cabinet according to claim 1, characterized in that: It also includes a shaft column, a mounting hole is provided in the middle of the rotating plate, a receiving hole is provided on the connecting plate, the shaft column is embedded in the receiving hole, and the front end of the shaft column has a connecting portion extending out of the receiving hole, and the shaft column extends into the mounting hole through the connecting portion and is connected to the rotating plate.
9. The right-angle rotating cabinet according to claim 1, characterized in that: A partition is provided inside the rotating cabinet, and the partition divides the interior of the rotating cabinet into multiple layers of storage compartments for storing articles, and a front surface and a side surface of the rotating cabinet are provided with access openings communicating with the interior of the rotating cabinet.
10. The right-angle rotating cabinet according to claim 1, characterized in that: The top and bottom of the rotating cabinet are provided with recessed positions for accommodating the rotating and translating mechanism.