support device

By designing a locking mechanism and sliding components for the support equipment, the workpiece can be adjusted and fixed, solving the problem of workpiece fixing difficulties for repairers in daily environments and improving the processing efficiency and stability of the workpiece.

CN119238442BActive Publication Date: 2026-02-06HONOR DEVICE CO LTD
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Patent Information

Application Number
CN202410396143.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-03-30
Publication Date
2026-02-06
Estimated Expiration
2044-03-30

AI Technical Summary

Technical Problem

Repair technicians often find it difficult to hold workpieces in place for processing in their daily work. Existing fixtures or robotic arms are not suitable for personal use, making it difficult to hold workpieces in place.

Method used

A support device is designed, including a mounting base, a processing table, a boss, and a support device. Through the cooperation of a locking mechanism and a sliding component, the workpiece can be adjusted and fixed. The rotation of the processing table is used to switch the locking state, which facilitates the support and handling of the workpiece.

Benefits of technology

It provides a solution that makes it easy for repairers to fix and process workpieces in everyday environments, improving workpiece stability and processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a support device for supporting a fixed workpiece, the workpiece comprising a first workpiece, the support device comprising a mounting base, a machining table, a boss and a first support device, the machining table being mounted on the mounting base and being rotatable relative to the mounting base between a first position and a second position, the boss being arranged on a surface of the mounting base facing the machining table, and the first support device being mounted on the machining table; the first support device comprising a fixing frame and a locking mechanism, the fixing frame being mounted on the machining table, and the locking mechanism being mounted on the fixing frame and being used for locking the first workpiece, the locking mechanism having a first state and a second state; when the machining table is located at the first position, the boss is in abutment with the locking mechanism, and the locking mechanism is in the first state; and when the machining table is located at the second position, the boss is arranged in a spaced manner relative to the locking mechanism, and the locking mechanism is in the second state. The support device is used for conveniently supporting and fixing the workpiece, thereby facilitating a repair business to process and handle the workpiece.
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Description

Technical Field

[0001] This application relates to the field of repair and processing technology, and in particular to a support device. Background Technology

[0002] Repair technicians typically work on their everyday workbenches, such as on batteries, mid-frames, and outer casings, where securing the workpieces is difficult. Furthermore, the fixtures or robotic arms used in factory production are clearly unsuitable for repair technicians. Therefore, there is a need for a support device that repair technicians can easily use in their daily work environments to support and secure the workpieces, thus facilitating their processing. Summary of the Invention

[0003] The purpose of this application embodiment is to provide a support device that facilitates the support and fixation of workpieces, thereby making it easier for repairers to process the workpieces.

[0004] This application provides a support device for supporting and fixing a workpiece. The workpiece includes a first workpiece. The support device includes a mounting base, a processing table, a boss, and a first support device. The processing table is mounted on the mounting base and can rotate relative to the mounting base between a first position and a second position. The boss is disposed on the surface of the mounting base facing the processing table. The first support device is mounted on the processing table and can rotate relative to the mounting base under the drive of the processing table.

[0005] The first support device includes a fixed frame and a locking mechanism. The fixed frame is installed on the processing table, and the locking mechanism is installed on the fixed frame and is used to lock the first workpiece. The locking mechanism has a first state and a second state, wherein the first state is an unlocked state and the second state is a locked state, or the first state is a locked state and the second state is an unlocked state.

[0006] When the processing table is in the first position, the boss abuts against the locking mechanism, and the locking mechanism is in the first state. When the processing table is in the second position, the boss and the locking mechanism are spaced apart, and the locking mechanism is in the second state.

[0007] This application provides a support device. By installing a first support device on a processing table, a first workpiece is supported and fixed, facilitating processing of the workpiece by repair technicians in everyday environments. Specifically, the processing table in the support device is rotatable relative to a mounting base. By adjusting the processing table to a first position relative to the mounting base, a boss on the mounting base can abut against a locking mechanism in the first support device, thus placing the locking mechanism in a first state. By adjusting the processing table to a second position relative to the mounting base, the boss on the mounting base and the locking mechanism are spaced apart, thus placing the locking mechanism in a second state. This application utilizes the cooperation between the first support device and the boss to easily support and fix the first workpiece to the first support device, thereby facilitating processing of the first workpiece by repair technicians.

[0008] In one possible implementation, the locking mechanism includes a first sliding component, a second sliding component, and a locking component. The first sliding component, the second sliding component, and the locking component are all mounted on a fixed frame. The first sliding component can slide relative to the fixed frame. The second sliding component abuts against the first sliding component and can slide relative to the fixed frame under the abutment of the first sliding component. The locking component abuts against the second sliding component and can slide relative to the fixed frame under the abutment of the second sliding component.

[0009] During the process of the processing table rotating to the first position, the boss abuts against the first sliding component and pushes the first sliding component to slide relative to the fixed frame in the first direction. The first sliding component abuts against and pushes the second sliding component to slide relative to the fixed frame in the second direction. The second sliding component abuts against and pushes the locking component to slide relative to the fixed frame in the third direction.

[0010] During the rotation of the processing table to the second position, the boss disengages from the first sliding assembly, the first sliding assembly slides in the opposite direction of the first direction, the second sliding assembly slides in the opposite direction of the second direction, and the locking assembly slides in the opposite direction of the third direction. By setting a locking mechanism including a first sliding assembly, a second sliding assembly, and a locking assembly, the second sliding assembly is mounted between the first sliding assembly and the locking assembly. When the boss abuts against the first sliding assembly sliding relative to the fixed frame in the first direction, the first sliding assembly can abut against the second sliding assembly to convert the sliding of the first sliding assembly in the first direction into the sliding of the second sliding assembly relative to the fixed frame in the second direction. This allows the second sliding assembly to abut against and push the locking assembly to slide in the third direction, thereby unlocking the first workpiece and putting the locking mechanism in an unlocked state, or locking the first workpiece and putting the locking mechanism in a locked state.

[0011] In one possible implementation, the locking assembly includes a movable rod, an abutment, and a first elastic member. The movable rod passes through the fixed frame and is slidable relative to the fixed frame and abuts against a second sliding assembly. The abutment is connected to the end of the movable rod away from the second sliding assembly and is used to abut against a first workpiece. The first elastic member is installed between the fixed frame and the abutment.

[0012] During the rotation of the processing table to the first position, the second sliding component abuts against and pushes the moving rod to slide along a third direction. The moving rod causes the abutting member to move away from the fixed frame. During the rotation of the processing table to the second position, the moving rod slides in the opposite direction of the third direction, and the first elastic element causes the abutting member to move towards the fixed frame. By using the sliding of the moving rod relative to the fixed frame along a third direction, the abutting member is moved away from the fixed frame, thus achieving the first state of the locking mechanism. Simultaneously, by using the sliding of the moving rod relative to the fixed frame in the opposite direction of the third direction, the first elastic element causes the abutting member to move towards the fixed frame, thus achieving the second state of the locking mechanism.

[0013] In one possible implementation, the fixed frame is provided with a guide groove, and the locking assembly further includes a guide bracket connected to the movable rod. When the movable rod slides relative to the fixed frame, it drives the guide bracket to slide along the extension direction of the guide groove. The guide bracket acts as a buffer, reducing the resistance between the movable rod and the fixed frame when the movable rod slides relative to the fixed frame. It also prevents the first elastic element from being suddenly subjected to force, thus improving the service life of the first elastic element.

[0014] In one possible implementation, there are multiple locking components, including a first locking component and a second locking component. The moving rods of the first locking component and the second locking component both abut against the second sliding component. A guide is connected to the periphery of the moving rod of the first locking component, and the end of the guide away from the moving rod is located in the guide groove.

[0015] In one possible implementation, the first locking assembly includes at least two, wherein the moving rods of the two first locking assemblies are located on opposite sides of the second sliding assembly, so that the abutting parts of the two first locking assemblies can abut against opposite sides of the first workpiece from opposite directions, thereby securing the first workpiece to the fixing frame.

[0016] The second locking assembly includes at least two components, wherein the moving rods of the two second locking assemblies are located on opposite sides of the second sliding assembly, so that the abutting parts of the two second locking assemblies can abut against opposite sides of the first workpiece from opposite directions, thereby securing the first workpiece to the fixing frame.

[0017] In one possible implementation, the second sliding component includes a movable member that can slide relative to the fixed frame in a second direction. The movable member includes a connecting rod, a first abutting end, and a second abutting end. The connecting rod is connected between the first abutting end and the second abutting end. The first abutting end abuts against the first sliding component, and the second abutting end abuts against the locking component.

[0018] In one possible implementation, the second sliding assembly further includes a fixing member and a second elastic member. The fixing member is mounted on the fixing frame, the connecting rod passes through the fixing member and can slide relative to the fixing member in a second direction, and the second elastic member is sleeved on the periphery of the connecting rod and installed between the fixing member and the first abutting end.

[0019] In one possible implementation, the first sliding assembly includes a third elastic element and a sliding rod. The third elastic element is installed between the fixed frame and the sliding rod. The sliding rod is movable relative to the fixed frame in a first direction and is used to abut against the boss.

[0020] In one possible implementation, the workpiece includes a second workpiece, the processing table is rotatable relative to the mounting base between a third position and a fourth position, and the support device further includes a second support device mounted on the processing table and rotatable relative to the mounting base under the drive of the processing table.

[0021] The second support device includes a placement table and a supporting component. The placement table is installed on the processing table and is used to place the second workpiece. The supporting component is installed on the processing table and is used to support the second workpiece against the placement table. The supporting component has a supporting state and a non-supporting state.

[0022] When the processing table is in the third position, the boss abuts against the supporting component, and the supporting component is in the abutting state;

[0023] When the processing table is in the fourth position, the boss disengages from the supporting component, and the supporting component is in a non-supporting state.

[0024] In the support device provided in this application embodiment, a second support device is installed on the processing table to support and fix the second workpiece, facilitating the processing of the second workpiece by repairmen in daily life environments. Specifically, the processing table in the support device can rotate relative to the mounting base. By adjusting the processing table to a third position relative to the mounting base, the boss on the mounting base can abut against the abutting component of the second support device, thereby placing the abutting component in a abutting state. The abutting component holds the second workpiece against the placement table, thus fixing the second workpiece on the placement table. By adjusting the processing table to a fourth position relative to the mounting base, the boss disengages from the abutting component, placing the abutting component in a non-abutting state. The abutting component disengages from the second workpiece, thereby allowing the second workpiece to be removed from the placement table.

[0025] In one possible implementation, the holding component includes a slider and a pusher. The slider is mounted on the processing table and is movable relative to the processing table. The pusher is connected to the slider and is used to hold the second workpiece against the placement table.

[0026] During the rotation of the processing table to the third position, the boss abuts against the sliding member, which slides relative to the processing table in the fourth direction, driving the pushing member to move towards the placement table to hold the second workpiece against the placement table. During the rotation of the processing table to the fourth position, the boss disengages from the sliding member, which slides in the opposite direction of the fourth direction, driving the pushing member to move away from the placement table, thus detaching the pushing member from the second workpiece. By providing a second support device with a supporting assembly including a sliding member and a pushing member, the boss abuts against and pushes the sliding member to slide relative to the processing table in the fourth direction. The sliding member drives the pushing member to move towards the placement table, thereby holding the second workpiece against the placement table and fixing it there. Simultaneously, the sliding member can slide in the opposite direction of the fourth direction relative to the processing table, driving the pushing member to move away from the placement table, thus disengaging the pushing member from the second workpiece and facilitating its removal from the placement table.

[0027] In one possible implementation, the supporting assembly further includes a fixed seat mounted on a processing table. The fixed seat has a movable groove with an opening on the surface of the fixed seat facing the mounting base. The sliding member includes a slide rod and a fourth elastic member. The slide rod passes through the bottom wall of the movable groove and can slide relative to the fixed seat in a fourth direction. The fourth elastic member is sleeved on the periphery of the slide rod and installed between the slide rod and the bottom wall of the movable groove.

[0028] In one possible implementation, the pusher includes a base rod, a connecting rod, and a pusher portion. The base rod is connected to a sliding member, the connecting rod is connected between the base rod and the pusher portion, and the pusher portion is used to hold the second workpiece against the placement table.

[0029] In one possible implementation, the abutment assembly further includes a support and a fifth elastic member. The support is mounted on the processing table, the connecting rod passes through the support and is movable relative to the support, and the fifth elastic member is sleeved on the periphery of the connecting rod. The fifth elastic member is installed between the base rod and the support, or between the pusher and the support.

[0030] In one possible implementation, there are multiple abutment components, which work together to abut the second workpiece against the placement table.

[0031] This application provides a support device for supporting and fixing a workpiece. The workpiece includes a second workpiece. The support device includes a mounting base, a processing table, a boss, and a second support device. The processing table is mounted on the mounting base and can rotate relative to the mounting base between a third position and a fourth position. The boss is provided on the surface of the mounting base facing the processing table. The second support device is mounted on the processing table and can rotate relative to the mounting base under the drive of the processing table.

[0032] The second support device includes a placement table and a supporting component. The placement table is installed on the processing table and is used to place the second workpiece. The supporting component is installed on the processing table and is used to support the second workpiece against the placement table. The supporting component has a supporting state and a non-supporting state.

[0033] When the processing table is in the third position, the boss abuts against the supporting component, and the supporting component is in the abutting state;

[0034] When the processing table is in the fourth position, the boss disengages from the supporting component, and the supporting component is in a non-supporting state. Attached Figure Description

[0035] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0036] Figure 1 A schematic diagram illustrating a scenario where the support device provided in this application is used in workpiece processing;

[0037] Figure 2 for Figure 1 A schematic diagram of the supporting equipment in the scenario shown;

[0038] Figure 3 for Figure 1 An exploded view of the mounting platform in the supporting equipment shown.

[0039] Figure 4 for Figure 2 A schematic diagram of the structure of the first support device in the supporting equipment shown;

[0040] Figure 5 for Figure 4 A schematic diagram of the assembly structure of the fixing frame and the locking component in the locking mechanism of the first support device shown;

[0041] Figure 6 for Figure 4 A schematic diagram of the first sliding component in the first support device shown from another perspective;

[0042] Figure 7 for Figure 4 A schematic diagram of the second sliding component in the first support device shown from another perspective;

[0043] Figure 8 for Figure 2 A partial enlarged view of part A of the supporting equipment shown;

[0044] Figure 9 for Figure 2 A schematic diagram of the assembly structure of the second support device and the processing table in the supporting equipment shown;

[0045] Figure 10 for Figure 2 A partial enlarged view of part B of the supporting equipment shown. Detailed Implementation

[0046] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0047] Please see Figure 1 and Figure 2 , Figure 1 This is a schematic diagram illustrating a scenario where the support device 1 provided in this application is used to support a fixed workpiece. Figure 2 for Figure 1 A schematic diagram of the structure of the supporting device 1 in the scenario shown.

[0048] The support equipment 1 includes a mounting platform 100, a first support device 500, and a second support device 800. Both the first support device 500 and the second support device 800 are mounted on the mounting platform 100.

[0049] The mounting table 100 is used to drive the first support device 500 and the second support device 800 to rotate. The first support device 500 and the second support device 800 can be used to support and fix different workpieces to facilitate processing of different workpieces. There can be multiple first support devices 500, all mounted on the mounting table 100 and spaced apart from each other. Each first support device 500 can be used to fix a first workpiece 610 to facilitate processing of the first workpiece 610. For example, the first workpiece 610 can be the mid-frame or the outer shell of an electronic device. For instance, the first workpiece 610 can be a mobile phone shell, supported and fixed by the first support device 500 to facilitate polishing; or the first workpiece 610 can be the mid-frame of a mobile phone, supported and fixed by the first support device 500 to facilitate polishing.

[0050] The second support device 800 can be used to fix the second workpiece 620. For example, the second workpiece 620 can be a battery of an electronic device, and the second support device 800 can be used to fix the battery to facilitate the maintenance of the protection circuit in the battery. Alternatively, the second workpiece 620 can also be the housing of an electronic device, and the second support device 800 can be used to fix the housing to facilitate the polishing of the housing.

[0051] When in operation, the support device 1 can be used in conjunction with processing equipment such as a grinder. Taking the grinding of the first workpiece 610 as an example, the support device 1 can be installed below the grinder, and the grinder can be used to polish the first workpiece 610 fixed to a first support device 500. Then, the mounting table 100 drives the first support device 500 to rotate, so that another first support device 500 is aligned with the grinder. By switching multiple first support devices 500 through the mounting table 100, multiple first workpieces 610 can be polished.

[0052] See also Figure 2 and Figure 3 , Figure 3 for Figure 1 An exploded view of the mounting platform 100 in the support device 1 shown.

[0053] The mounting table 100 includes a mounting base 110, a processing table 130, and a driving component ( Figure 2 and Figure 3 (Neither shown) and boss 170. The machining table 130 is rotatably connected to the mounting base 110. The drive member is connected to the machining table 130 and is used to drive the machining table 130 to rotate. Boss 170 is provided on the mounting base 110 and protrudes toward the machining table 130.

[0054] Specifically, the mounting base 110 is provided with a mounting cavity 115, which can be used to accommodate the processing table 130 and the drive component. In this embodiment, the mounting base 110 includes a base 111 and a housing 113. The housing 113 surrounds the periphery of the base 111 and together with the base 111 forms the mounting cavity 115.

[0055] The machining table 130 is rotatably connected to the base 111, thereby enabling the machining table 130 to be rotatably connected to the mounting base 110. The machining table 130 is located within the mounting cavity 115 and is spaced apart from the housing 113. In this embodiment, the machining table 130 can rotate relative to the mounting base 110. The machining table 130 is generally circular. The machining table 130 is provided with a fixing groove 131, the opening of which is located on the surface of the machining table 130 opposite to the base 111. In this embodiment, the fixing groove 131 is located at the center of the machining table 130.

[0056] A drive unit is mounted on the base 111 and located within the mounting cavity 115, and connected to the machining table 130 to drive the machining table 130 to rotate, thereby enabling the machining table 130 to rotate relative to the mounting base 110 between a first position and a second position. For example, the drive unit can be a rotary motor, mounted on the base 111, with its output shaft connected to the machining table 130, so that the rotary motor drives the machining table 130 to rotate relative to the mounting base 110. It is understood that the support device 1 may also include a controller electrically connected to the drive unit to control the operation of the drive unit to drive the rotation of the machining table 130.

[0057] A boss 170 is provided on the surface of the mounting base 110 facing the processing table 130. In this embodiment, the boss 170 is provided on the surface of the housing 113 facing the mounting cavity 115, so that the boss 170 protrudes towards the processing table 130. In this embodiment, the surface of the boss 170 facing the processing table 130 is an arc-shaped surface.

[0058] See also Figure 2 and Figure 4 , Figure 4 for Figure 2 A schematic diagram of the structure of the first support device 500 in the support equipment 1 shown.

[0059] The first support device 500 includes a fixing frame 510 and a locking mechanism 530. The fixing frame 510 is mounted on the processing table 130 to enable the first support device 500 to be mounted on the processing table 130, thereby enabling the first support device 500 to be mounted on the mounting table 100. The locking mechanism 530 is mounted on the fixing frame 510 and is used to lock the first workpiece 610 to the fixing frame 510.

[0060] The locking mechanism 530 has a first state and a second state. The first state is an unlocked state, and the second state is a locked state; or, the first state is a locked state, and the second state is an unlocked state. When the locking mechanism 530 is in the locked state, it locks the first workpiece 610 to the fixing frame 510. When the locking mechanism 530 is in the unlocked state, the first workpiece 610 is released from the fixing frame 510, and the user can remove the first workpiece 610 from the fixing frame 510.

[0061] The machining table 130 can rotate relative to the mounting base 110 between a first position and a second position. When the machining table 130 rotates relative to the mounting base 110 to the first position, that is, when the machining table 130 is in the first position, the boss 170 abuts against the locking mechanism 530, and the locking mechanism 530 is in the first state. When the machining table 130 rotates relative to the mounting base 110 to the second position, that is, when the machining table 130 is in the second position, the boss 170 and the locking mechanism 530 are spaced apart, and the locking mechanism 530 is in the second state.

[0062] See also Figure 5 , Figure 5 for Figure 4 The diagram shows the assembly structure of the fixing frame 510 in the first support device 500 and the locking component 70 in the locking mechanism 530.

[0063] The mounting bracket 510 includes a frame body 511 and a support column 513. The frame body 511 is mounted on the processing table 130 to enable the mounting bracket 510 to be mounted on the mounting table 100. The support column 513 is located on the side of the frame body 511 facing away from the processing table 130.

[0064] Specifically, the frame 511 includes a base 10, a support 13, and a load-bearing part 15. The base 10 is mounted on the processing table 130 to enable the frame 511 to be mounted on the processing table 130. In this embodiment, the base 10 and the processing table 130 are separately arranged. In other embodiments, the base 10 may also be integrally formed with the processing table 130. In this embodiment, the base 10 is generally rectangular in shape. The base 10 is provided with a sliding groove 11. The opening of the sliding groove 11 is located on the side of the base 10 facing the mounting base 110. In this embodiment, the sliding groove 11 penetrates the side of the base 10 and penetrates the surface of the base 10 away from the processing table 130.

[0065] The support portion 13 is fixedly connected to the surface of the base 10 facing away from the processing table 130 and is spaced apart from the slide groove 11. There can be multiple support portions 13, located on the same side of the base 10 and spaced apart from each other. In this embodiment, there are four support portions 13, arranged around the periphery of the base 10. The bearing portion 15 is fixedly connected to the side of the support portion 13 facing away from the base 10 and is spaced apart from the base 10. In this embodiment, the bearing portion 15 is generally rectangular. The bearing portion 15 is provided with a clearance hole 150, which penetrates the bearing portion 15.

[0066] In this embodiment, the support portion 15 includes a first support portion 151, a second support portion 152, a third support portion 153, and a fourth support portion 154. The first support portion 151 and the second support portion 152 are disposed opposite to each other, and the third support portion 153 and the fourth support portion 154 are disposed opposite to each other, and are all connected between the first support portion 151 and the second support portion 152. In this embodiment, the first support portion 151 and the second support portion 152 are disposed opposite to each other along the length direction of the frame 511, and the third support portion 153 and the fourth support portion 154 are disposed opposite to each other along the width direction of the frame 511.

[0067] The mounting bracket 510 is provided with a clearance hole 150 and a guide groove 160, both of which are located on the frame body 511. The clearance hole 150 penetrates the support portion 15 of the frame body 511. In this embodiment, the first support portion 151, the second support portion 152, the third support portion 153, and the fourth support portion 154 are all provided with clearance holes 150. The clearance hole 150 of the first support portion 151 penetrates the first support portion 151; the clearance hole 150 of the second support portion 152 penetrates the second support portion 152; the clearance hole 150 of the third support portion 153 penetrates the third support portion 153; and the clearance hole 150 of the fourth support portion 154 penetrates the fourth support portion 154.

[0068] The opening of the guide groove 160 is located in the bearing portion 15 of the frame 511, and the guide groove 160 extends along the extending direction of the bearing portion 15. There are multiple guide grooves 160, including a first groove 161 and a second groove (…). Figure 5(Not shown in the view), the opening of the first groove 161 is positioned opposite to the opening of the second groove. In this embodiment, the opening of the first groove 161 is located on the surface of the third supporting portion 153 facing the fourth supporting portion 154, and the first groove 161 extends along the extending direction of the third supporting portion 153. In this embodiment, there are two first grooves 161, which are spaced apart along the extending direction of the third supporting portion 153. The opening of the second groove is located on the surface of the fourth supporting portion 154 facing the third supporting portion 153, and the second groove extends along the extending direction of the fourth supporting portion 154. In this embodiment, there are two second grooves, which are spaced apart along the extending direction of the fourth supporting portion 154.

[0069] Support columns 513 are located on the side of the bearing portion 15 away from the support portion 13, to connect the support columns 513 and the frame 511, and to ensure that the support columns 513 are located on the side of the frame 511 away from the processing table 130. The support columns 513 can be used to support the first workpiece 610, so that the first workpiece 610 and the frame 511 are spaced apart, thereby creating an operating space between the first workpiece 610 and the frame 511, facilitating the processing of the first workpiece 610. There can be multiple support columns 513, spaced apart from each other. In this embodiment, there are four support columns 513, located at the four corners of the bearing portion 15.

[0070] Continue reading Figure 2 and Figure 4 The locking mechanism 530 includes a first sliding component 30, a second sliding component 40, and a locking component 70. The first sliding component 30, the second sliding component 40, and the locking component 70 are all mounted on the fixing frame 510. The first sliding component 30 is slidable relative to the fixing frame 510. The second sliding component 40 abuts against the first sliding component 30 and is slidable relative to the fixing frame 510 under the abutment of the first sliding component 30. The locking component 70 abuts against the second sliding component 40 and is slidable relative to the fixing frame 510 under the abutment of the second sliding component 40.

[0071] During the rotation of the processing table 130 relative to the mounting base 110 to the first position, the boss 170 abuts against the first sliding assembly 30 and pushes the first sliding assembly 30 to slide relative to the fixed frame 510 in a first direction. The first sliding assembly 30 abuts against and pushes the second sliding assembly 40 to slide relative to the fixed frame 510 in a second direction. The second sliding assembly 40 abuts against and pushes the locking assembly 70 to slide relative to the fixed frame 510 in a third direction. In this embodiment, the first direction is the radial direction of the processing table 130, the second direction is the perpendicular direction of the plane where the processing table 130 is located, and the third direction is the direction of movement away from the second sliding assembly 40.

[0072] During the process of the processing table 130 rotating relative to the mounting base 110 to the second position, the boss 170 disengages from the first sliding assembly 30, and at this time the boss 170 and the first sliding assembly 30 are spaced apart. The first sliding assembly 30 slides in the opposite direction of the first direction, the second sliding assembly 40 slides in the opposite direction of the second direction, and the locking assembly 70 slides in the opposite direction of the third direction.

[0073] See also Figure 4 , Figure 5 and Figure 6 , Figure 6 for Figure 4 A schematic diagram of the structure of the first sliding component 30 in the first support device 500 from another perspective.

[0074] The first sliding assembly 30 includes a third elastic element 31 and a sliding rod 33. The third elastic element 31 is installed between the fixed frame 510 and the sliding rod 33.

[0075] Specifically, the third elastic element 31 is connected to the bottom wall of the slide groove 11 to enable the third elastic element 31 to be installed on the base 10, thereby enabling the third elastic element 31 to be installed on the frame 511, and thus enabling the connection between the third elastic element 31 and the fixed frame 510. For example, the third elastic element 31 can be a spring.

[0076] The sliding rod 33 is used to abut against the boss 170 to achieve the abutment between the first sliding assembly 30 and the boss 170. The sliding rod 33 includes a rod body 331 and an abutment portion 335 connected to the rod body 331. The rod body 331 is connected to the end of the third elastic member 31 that faces away from the bottom wall of the groove 11 to achieve the connection between the sliding rod 33 and the third elastic member 31, thereby achieving the connection between the third elastic member 31 and the fixing frame 510 and the sliding rod 33. The rod body 331 is located in the groove 11 and protrudes relative to the opening of the groove 11. In this embodiment, the rod body 331 includes a main body 332 and a movable end 334 connected to the main body 332. The main body 332 is connected to the third elastic member 31, and the movable end 334 is connected to the end of the main body 332 that faces away from the third elastic member 31 and protrudes relative to the opening of the groove 11. The movable end 334 is used to abut against the boss 170. In this embodiment, the width of the movable end portion 334 gradually decreases along the direction away from the third elastic member 31. The movable end portion 334 includes a guide surface 334a, and the angle formed between the plane containing the guide surface 334a and the extending direction of the main body portion 332 is α, where α is an acute angle.

[0077] A supporting portion 335 is provided on one side of the main body portion 332 of the rod 331 along the thickness direction to achieve the connection between the supporting portion 335 and the rod 331. In this embodiment, the supporting portion 335 is located at the end of the main body portion 332 opposite to the movable end portion 334. The supporting portion 335 includes a first supporting surface 335a, and the angle between the plane containing the first supporting surface 335a and the extension direction of the rod 331 is β, where β is an acute angle.

[0078] In the first sliding assembly 30, the third elastic element 31 can drive the sliding rod 33 to slide along the slide groove 11, so as to realize that the sliding rod 33 slides relative to the fixed frame 510 in the first direction, thereby realizing that the first sliding assembly 30 slides relative to the fixed frame 510 in the first direction.

[0079] See Figure 4 and Figure 7 , Figure 7 for Figure 4 A schematic diagram of the second sliding component 40 in the first support device 500 from another perspective.

[0080] The second sliding assembly 40 includes a fixing member 41, a moving member 43, and a second elastic member 45. The fixing member 41 is mounted on the fixing frame 510, and the moving member 43 is mounted on the fixing member 41 and can slide relative to the fixing member 41 in a second direction. The second elastic member 45 is sleeved on the periphery of the moving member 43 and is installed between the fixing frame 510 and the moving member 43.

[0081] Specifically, the fastener 41 includes a fixing part 411 and a connecting part 413 connected to the fixing part 411. The fixing part 411 is connected to the surface of the base 10 facing away from the processing table 130, so that the fixing part 411 is mounted on the fixing frame 510, thereby enabling the fastener 41 to be mounted on the fixing frame 510. There can be multiple fixing parts 411, which are connected to the same side of the base 10 and spaced apart from each other. In this embodiment, there are two fixing parts 411, which are located on opposite sides of the slide groove 11. The connecting part 413 is connected to the fixing part 411 and is spaced apart from the base 10.

[0082] The fixing member 41 is provided with a limiting hole 415, which penetrates the fixing member 41. In this embodiment, the limiting hole 415 is provided in the connecting part 413 and penetrates the connecting part 413 along the thickness direction of the connecting part 413.

[0083] The movable member 43 passes through the limiting hole 415 and can move within the limiting hole 415, so that the movable member 43 passes through the fixing member 41 and can slide relative to the fixing member 41 in a second direction, thereby realizing the sliding of the movable member 43 relative to the fixing frame 510 in a second direction. The movable member 43 includes a first abutting end 431, a connecting rod 433 and a second abutting end 435, with the connecting rod 433 connecting between the first abutting end 431 and the second abutting end 435. The connecting rod 433 passes through the limiting hole 415 and can slide relative to the limiting hole 415 in a second direction, so that the connecting rod 433 passes through the fixing member 41 and slides relative to the fixing member 41 in a second direction. Both the first abutting end 431 and the second abutting end 435 protrude from the periphery of the connecting rod 433. The outer surface of the first abutting end 431 includes a second abutting surface 431a, which abuts against the first abutting surface 335a of the abutting portion 335 in the first sliding assembly 30, thereby achieving contact between the first abutting end 431 and the abutting portion 335, and thus achieving contact between the first abutting end 431 and the first sliding assembly 30, and further achieving contact between the second sliding assembly 40 and the first sliding assembly 30. In this embodiment, the angle between the plane containing the second abutting surface 431a and the extension direction of the connecting rod 433 is γ, where γ is an acute angle. The outer surface of the second abutting end 435 includes a third abutting surface 435a. In this embodiment, the third abutting surface 435a is an arc-shaped surface. There can be multiple third abutting surfaces 435a. In this embodiment, there are four third abutting surfaces 435a.

[0084] The second elastic element 45 is sleeved on the periphery of the connecting rod 433 and installed between the first abutting end 431 and the connecting portion 413 of the fixing member 41. For example, the second elastic element 45 can be a spring.

[0085] In the second sliding assembly 40, the first abutting end 431 of the moving member 43 can slide relative to the fixed frame 510 in the second direction under the abutting part 335 in the sliding rod 33 of the first sliding assembly 30, so as to realize that the moving member 43 slides relative to the fixed frame 510 in the second direction, thereby realizing that the second sliding assembly 40 slides relative to the fixed frame 510 in the second direction.

[0086] Continue reading Figure 5 The locking assembly 70 includes a moving rod 71, an abutment 73, and a first elastic member 75, both of which are mounted on the moving rod 71.

[0087] Specifically, the movable rod 71 passes through the clearance hole 150 of the frame 511 in the fixed frame 510, and is supported on the inner wall of the clearance hole 150. It can slide in the clearance hole 150 along a third direction, so that the movable rod 71 passes through the frame 511 and can slide relative to the fixed frame 510 in a third direction. Thus, the locking component 70 passes through the fixed frame 510 and slides relative to the fixed frame 510 in a third direction.

[0088] The moving rod 71 includes a fourth abutting surface 71a, which abuts against the third abutting surface 435a of the second abutting end 435 in the second sliding assembly 40, so as to realize the contact between the moving rod 71 and the second abutting end 435, thereby realizing the contact between the locking assembly 70 and the second abutting end 435, and further realizing the contact between the locking assembly 70 and the second sliding assembly 40.

[0089] The abutment 73 is connected to the end of the moving rod 71 opposite to the second sliding assembly 40 and extends in a direction opposite to the thickness direction of the moving rod 71, and is used to abut against the first workpiece 610 to lock the first workpiece 610. A first elastic member 75 is installed between the frame 511 and the abutment 73 to achieve the installation of the first elastic member 75 between the fixed frame 510 and the abutment 73. For example, the first elastic member 75 can be a spring.

[0090] In the locking assembly 70, the moving rod 71 moves relative to the fixed frame 510 in a third direction, causing the abutment 73 to move away from the fixed frame 510, thereby placing the locking mechanism 530 in a first state. Furthermore, the first elastic member 75 can move the abutment 73 towards the fixed frame 510. At this time, the moving rod 71 moves relative to the fixed frame 510 in the opposite direction in the third direction, thereby placing the locking mechanism 530 in a second state.

[0091] The locking assembly 70 may further include a guide 77. The guide 77 is connected to the moving rod 71, and its end facing away from the moving rod 71 is located within the guide groove 160. When the moving rod 71 slides relative to the fixed frame 510, the moving rod 71 drives the guide 77 to slide along the extension direction of the guide groove 160 of the fixed frame 510. The guide 77 acts as a buffer; when the moving rod 71 slides relative to the fixed frame 510, the guide 77 reduces the resistance between the moving rod 71 and the fixed frame 510, and also prevents the first elastic element 75 from being suddenly subjected to force, thus improving the service life of the first elastic element 75.

[0092] In this embodiment, there may be multiple locking components 70, each including a moving rod 71, an abutment member 73, and a first elastic member 75. In this embodiment, the multiple locking components 70 include a first locking component 70a and a second locking component 70b. The moving rod 71 of the first locking component 70a abuts against the second abutment end 435 of the second sliding component 40 along a first abutment direction, and the moving rod 71 of the second locking component 70b abuts against the second abutment end 435 of the second sliding component 40 along a second abutment direction, the second abutment direction being different from the first abutment direction. For example, the first abutment direction is the length direction of the fixing frame 510, and the second abutment direction is the width direction of the fixing frame 510.

[0093] The guide frame 77 is connected to the periphery of the movable rod 71 of the first locking assembly 70a. In this embodiment, the two ends of the guide frame 77 opposite to the movable rod 71 of the first locking assembly 70a are located in the first groove 161 and the second groove, respectively. When the movable rod 71 slides relative to the fixed frame 510, the movable rod 71 drives the two ends of the guide frame 77 to slide in the first groove 161 and the second groove, respectively.

[0094] The first locking assembly 70a includes at least two components. The moving rods 71 ​​of the two first locking assemblies 70a are located on opposite sides of the second abutting end 435 of the second sliding assembly 40, so that the abutting members 73 of the two first locking assemblies 70a can abut against opposite sides of the first workpiece 610 from opposite directions, thereby securely locking the first workpiece 610 to the fixing frame 510. In this embodiment, there are two first locking assemblies 70a, which abut against opposite sides of the first workpiece 610 along the length of the fixing frame 510.

[0095] The second locking assembly 70b includes at least two components. The moving rods 71 ​​of the two second locking assemblies 70b are located on opposite sides of the second abutting end 435 of the second sliding assembly 40, so that the abutting members 73 of the two second locking assemblies 70b can abut against opposite sides of the first workpiece 610 from opposite directions, thereby securely locking the first workpiece 610 to the fixing frame 510. In this embodiment, there are two second locking assemblies 70b, which abut against opposite sides of the first workpiece 610 along the width direction of the fixing frame 510.

[0096] By simultaneously setting the first locking component 70a and the second locking component 70b, the first locking component 70a and the second locking component 70b abut against the first workpiece 610 from different directions, further improving the installation firmness of the first workpiece 610 and preventing the first workpiece 610 from detaching from the fixing frame 510.

[0097] In this embodiment, there are four locking components 70, including two first locking components 70a and two second locking components 70b. The moving rods 71 ​​of the two first locking components 70a pass through the clearance holes 150 of the first bearing portion 151 and the second bearing portion 152, respectively, and the fourth abutting surfaces 71a of the moving rods 71 ​​of the two first locking components 70a abut against the two third abutting surfaces 435a of the second abutting end 435 along the length direction of the fixing frame 510. The guide frames 77 of each first locking component 70a are located in a first groove 161 and a second groove at the two ends opposite to the moving rods 71, respectively. The moving rods 71 ​​of the two second locking components 70b pass through the clearance holes 150 of the third bearing portion 153 and the clearance holes 150 of the fourth bearing portion 154, respectively, and the fourth abutting surfaces 71a of the moving rods 71 ​​of the two second locking components 70b abut against the two third abutting surfaces 435a of the second abutting end 435 along the width direction of the fixing frame 510.

[0098] See Figure 8 , Figure 8 for Figure 2 A partially enlarged view of part A of the supporting device 1 shown. Among them, Figure 8 The second elastic element 45 in the second sliding assembly 40 is not shown from any angle.

[0099] In this embodiment, the first workpiece 610 is used as the casing of an electronic device for illustration. At this time, the first locking mechanism 530 in the first support device 500 is in an unlocked state and in a locked state.

[0100] Specifically, in the assembled support device 1, when the support device 1 is working, the driving component drives the processing table 130 to rotate relative to the mounting base 110 to a first position. During the process of the processing table 130 rotating to the first position, the boss 170 abuts against the guide surface 334a of the moving end 334 of the sliding rod 33 in the first sliding assembly 30, so as to push the sliding rod 33 to slide along the slide groove 11, thereby realizing the sliding of the first sliding assembly 30 relative to the fixed frame 510 in a first direction.

[0101] At this time, the third elastic member 31 is in a compressed state. The abutment portion 335 in the sliding rod 33 abuts against the first abutment end 431 of the moving member 43 in the second sliding assembly 40, and the moving member 43 slides relative to the fixed frame 510 in the second direction under the abutment of the abutment portion 335. The second abutment end 435 in the moving member 43 abuts against the moving rod 71 in the locking assembly 70, and the moving rod 71 slides relative to the fixed frame 510 in the third direction under the abutment of the second abutment end 435. At this time, the abutment member 73 moves away from the fixed frame 510, so that the locking assembly 70 is in the unlocked state, and thus the locking mechanism 530 is in the unlocked state. The user can place the first workpiece 610 on the support column 513 in the fixed frame 510, or remove the first workpiece 610 from the fixed frame 510.

[0102] The machining table 130 is continuously driven to rotate relative to the mounting base 110 to the second position using the driving component. During the rotation of the machining table 130 to the second position, the boss 170 disengages from the moving end 334 of the sliding rod 33 in the first sliding assembly 30 and is spaced apart from the sliding rod 33, so as to achieve the separation of the boss 170 and the first sliding assembly 30. The sliding rod 33 can slide along the slide groove 11 and in the opposite direction to the first direction relative to the fixed frame 510 under the drive of the third elastic member 31.

[0103] In the second sliding assembly 40, the first abutting end 431 of the movable member 43 slides in the opposite direction of the second direction under the action of the second elastic member 45, thereby causing the second abutting end 435 to slide in the opposite direction of the second direction. At this time, the movable rod 71 in the locking assembly 70 can slide in the opposite direction of the third direction under the action of the first elastic member 75, thereby causing the abutting member 73 to move toward the fixed frame 510, thus realizing that the locking assembly 70 is in a locked state, and further realizing that the locking mechanism 530 is in a locked state. At this time, the abutting member 73 abuts against the first workpiece 610, thereby locking the first workpiece 610 to the fixed frame 510.

[0104] By driving the processing table 130 to switch between the first position and the second position relative to the mounting base 110, the locking component 70 can switch between the unlocked state and the locked state, thereby using the first support device 500 to fix the first workpiece 610, which facilitates the processing of the first workpiece 610.

[0105] Understandably, when the first workpiece 610 is a frame structure such as the mid-frame of an electronic device, it can be held by hand or clamped above the fixed frame 510. During the process of the processing table 130 rotating relative to the mounting base 110 to the first position, the first sliding component 30 slides relative to the fixed frame 510 in the first direction, and the second sliding component 40 slides in the second direction under the support of the first sliding component 30. The abutting member 73 in the locking component 70 moves away from the fixed frame 510 and abuts against the inner wall of the frame structure such as the first workpiece 610, so that the locking component 70 is in a locked state, thereby locking the locking mechanism 530, which facilitates the subsequent processing of the first workpiece 610.

[0106] During the process of the processing table 130 rotating relative to the mounting base 110 to the second position, the first sliding component 30 slides relative to the fixed frame 510 in the opposite direction of the first direction, the second sliding component 40 slides in the opposite direction of the second direction, and the abutment member 73 in the locking component 70 moves toward the fixed frame 510, disengaging from the inner wall of the frame mechanism such as the first workpiece 610, thereby unlocking the locking component 70 and thus unlocking the locking mechanism 530. At this time, the first workpiece 610 can be easily removed.

[0107] This application provides a support device 1. By installing a first support device 500 on a processing table 130, the first support device 500 can be used to support and fix a first workpiece 610, facilitating the processing of the first workpiece 610 by repair technicians in everyday environments. Specifically, the processing table 130 in the support device 1 can rotate relative to the mounting base 110. By adjusting the processing table 130 to a first position relative to the mounting base 110, the boss 170 on the mounting base 110 can abut against the locking mechanism 530 in the first support device 500, thereby placing the locking mechanism 530 in a first state. By adjusting the processing table 130 to a second position relative to the mounting base 110, the boss 170 on the mounting base 110 and the locking mechanism 530 are spaced apart, thereby placing the locking mechanism 530 in a second state, thus locking the first workpiece 610 to the fixing frame 510. This application embodiment utilizes the cooperation between the first support device 500 and the boss 170 to conveniently support and fix the first workpiece 610 to the first support device 500, thereby facilitating the repairman to process the first workpiece 610.

[0108] Furthermore, by setting the locking mechanism 530 to include a first sliding component 30, a second sliding component 40, and a locking component 70, the second sliding component 40 is mounted between the first sliding component 30 and the locking component 70. When the boss 170 pushes the first sliding component 30 to slide relative to the fixed frame 510 in a first direction, the first sliding component 30 can push the second sliding component 40 to convert the sliding of the first sliding component 30 in the first direction into the sliding of the second sliding component 40 relative to the fixed frame 510 in a second direction. This allows the second sliding component 40 to push the locking component 70 to slide in a third direction, thereby unlocking the first workpiece 610 and thus putting the locking mechanism 530 in an unlocked state, or locking the first workpiece 610 and thus putting the locking mechanism 530 in a locked state.

[0109] Furthermore, in the locking assembly 70 of the locking mechanism 530, the movable rod 71 slides relative to the fixed frame 510 in a third direction, thereby causing the abutment 73 to move away from the fixed frame 510, thus placing the locking mechanism 530 in a first state. Simultaneously, by sliding the movable rod 71 relative to the fixed frame 510 in the opposite direction in the third direction, the first elastic member 75 causes the abutment 73 to move towards the fixed frame 510, thereby placing the locking mechanism 530 in a second state.

[0110] Furthermore, by setting the surface of the boss 170 facing the processing table 130 to be an arc-shaped surface, the width of the moving end 334 gradually decreases. When the processing table 130 rotates relative to the mounting base 110, the surface of the boss 170 facing the processing table 130 can abut against the guide surface 334a of the moving end 334, and the guide surface 334a of the moving end 334 can guide the moving end 334 to smoothly transition along the arc-shaped surface of the boss 170, avoiding affecting the rotation of the processing table 130 relative to the mounting base 110, and ensuring the smoothness of the rotation of the processing table 130 relative to the mounting base 110.

[0111] Furthermore, by setting the third abutment surface 435a of the second abutment end 435 in the second sliding assembly to be an arc surface, when the moving rod 71 of the locking assembly 70 abuts against the second abutment end 435, the moving rod 71 can smoothly transition along the arc surface of the third abutment surface 435a, thus ensuring the smoothness of the sliding of the moving rod 71.

[0112] See Figure 9 and Figure 10 , Figure 9 for Figure 2 The diagram shows the assembly structure of the second support device 800 and the processing table 130 in the support equipment 1 shown. Figure 10 for Figure 2 A partial enlarged view of part B of the support device 1 shown.

[0113] The second support device 800 includes a placement table 810 and a holding assembly 830. The placement table 810 is installed in the fixing groove 131 of the processing table 130 and is used to support the second workpiece 620. The holding assembly 830 is installed on the processing table 130 and is used to hold the second workpiece 620 to fix the second workpiece 620 to the placement table 810.

[0114] The abutting component 830 includes a abutting state and a non-abutting state. When the abutting component 830 is in the abutting state, it abuts the second workpiece 620 against the placement table 810 to fix the second workpiece 620 to the placement table 810. When the abutting component 830 is in the non-abutting state, it disengages from the second workpiece 620, and the second workpiece 620 can be removed from the placement table 810.

[0115] The driving component can rotate the processing table 130 relative to the mounting base 110 between a third position and a fourth position. In this embodiment, the third position is the same as the first position, and the fourth position is the same as the first position. When the processing table 130 rotates to the third position relative to the mounting base 110, that is, when the processing table 130 is in the third position, the boss 170 abuts against the abutting component 830, and the abutting component 830 is in the abutting state and can abut against the second workpiece 620. When the processing table 130 rotates to the fourth position relative to the mounting base 110, that is, when the processing table 130 is in the fourth position, the boss 170 and the abutting component 830 disengage from the abutting, and at this time the boss 170 and the abutting component 830 are spaced apart, and the abutting component 830 is in the non-abutting state.

[0116] Specifically, the placement table 810 includes a placement base 811 and a stop 813. The placement base 811 is installed in the fixing groove 131 so that the placement table 810 is installed in the fixing groove 131, thereby enabling the placement table 810 to be installed on the processing table 130. The stop 813 protrudes from the surface of the placement base 811 facing away from the processing table 130 and is used to block the second workpiece 620 to prevent the second workpiece 620 from slipping off the placement table 810.

[0117] Multiple abutment components 830 can be present, and these components work together to hold the second workpiece 620 against the placement table 810. Specifically, each abutment component 830 includes a fixed base 50, a sliding member 831, and a pushing member 833. The fixed base 50 is mounted on the processing table 130, and the sliding member 831 is mounted on the fixed base 50 and can slide relative to the fixed base 50, thus allowing the sliding member 831 to slide relative to the processing table 130. The pushing member 833 is connected to the sliding member 831 and can move towards the placement table 810 under the influence of the sliding member 831, so that the pushing member 833 abuts against the second workpiece 620, and holds the second workpiece 620 between the pushing member 833 and the stop block 813, thereby fixing the second workpiece 620 to the placement table 810. In this embodiment, the pushers 833 of the multiple abutment components 830 are used together to abut the second workpiece 620, so as to hold the second workpiece 620 between the pusher 833 and the stop block 813, thereby locking the second workpiece 620 on the placement table 810, which facilitates the subsequent processing of the second workpiece 620.

[0118] In this embodiment, during the rotation of the processing table 130 relative to the mounting base 110 to the third position, the boss 170 abuts against the slider 831 and pushes the slider 831 to slide relative to the processing table 130 in the fourth direction. The slider 831 drives the pusher 833 to move towards the placement table 810, and the pusher 833 abuts against the second workpiece 620, so that the abutting assembly 830 is in the abutting state. At this time, the second workpiece 620 abuts between the pusher 833 and the stop 813, thereby realizing that the abutting assembly 830 abuts and fixes the second workpiece 620 to the placement table 810. In this embodiment, the fourth direction is the radial direction of the processing table 130.

[0119] During the rotation of the processing table 130 relative to the mounting base 110 to the fourth position, the boss 170 disengages from the sliding member 831, and the sliding member 831 slides in the opposite direction of the fourth direction, driving the pushing member 833 to move away from the placement table 810. The pushing member 833 disengages from the second workpiece 620, thus realizing that the holding component 830 is in a non-holding state. At this time, the user can remove the second workpiece 620 from the placement table 810.

[0120] Continue reading Figure 9 Specifically, the fixed base 50 is provided with a movable groove 51, and the opening of the movable groove 51 is located on the side of the fixed base 50 facing the mounting base 110. In this embodiment, the movable groove 51 penetrates the side of the fixed base 50 and also penetrates the surface of the fixed base 50 away from the processing table 130.

[0121] The sliding member 831 includes a sliding rod 53 and a fourth elastic member 55 connected to the sliding rod 53. Specifically, the sliding rod 53 passes through the bottom wall of the moving groove 51 and can slide along the moving groove 51, so that the sliding rod 53 passes through the fixed seat 50 and can slide relative to the fixed seat 50 in the fourth direction, thereby enabling the sliding rod 53 to slide relative to the processing table 130 in the fourth direction. The sliding rod 53 includes a first part 531 and a second part 533. The first part 531 passes through the bottom wall of the moving groove 51 and protrudes relative to the fixed seat 50. The second part 533 is connected to the first part 531 and protrudes relative to the periphery of the first part 531. In this embodiment, the second part 533 protrudes relative to the opening of the moving groove 51 to abut against the boss 170.

[0122] The fourth elastic element 55 is sleeved on the periphery of the first portion 531 and installed between the second portion 533 and the bottom wall of the moving groove 51, so that the fourth elastic element 55 is sleeved on the periphery of the slide rod 53 and installed between the slide rod 53 and the bottom wall of the moving groove 51. For example, the fourth elastic element 55 can be a spring.

[0123] Continue reading Figure 9 The pushing member 833 includes a base rod 61, a connecting rod 63, and a pushing part 65, with the connecting rod 63 connecting between the base rod 61 and the pushing part 65. The base rod 61 is connected to the first part 531 to achieve the connection between the pushing member 833 and the first part 531, thereby achieving the connection between the pushing member 833 and the sliding member 831. The pushing part 65 is used to abut against the second workpiece 620.

[0124] In this embodiment, the supporting component 830 may further include a support 90 and a fifth elastic member 95. The support 90 is mounted on the processing table 130 and spaced apart from the fixed base 50, and the fifth elastic member 95 is mounted between the support 90 and the pusher 833. The support 90 is used to support the pusher 833, and the fifth elastic member 95 is used to drive the pusher 833 to move relative to the support 90.

[0125] Specifically, the support 90 is provided with a clearance groove 91, which penetrates the support 90. In this embodiment, the connecting rod 63 in the pushing member 833 passes through the clearance groove 91 of the support 90 and can move relative to the support 90, thereby enabling the pushing member 833 to move relative to the support 90. The fifth elastic member 95 is sleeved on the periphery of the connecting rod 63 and installed between the pushing part 65 and the support 90, thereby enabling the fifth elastic member 95 to be installed between the support 90 and the pushing member 833. For example, the fifth elastic member 95 can be a spring. In this embodiment, the fifth elastic member 95 is installed between the pushing part 65 and the support 90. When the pushing part 65 moves relative to the support 90 toward the placement platform 810, the pushing member 833 is in a resisting state. At this time, the fifth elastic member 95 is in a stretched state. The fifth elastic element 95 can pull the pushing part 65 to move away from the support 90 in a direction away from the placement table 810, so as to drive the pushing part 65 of the pushing member 833 away from the placement table 810, thereby realizing that the pushing member 833 is in a non-opposing state.

[0126] It is understood that in other embodiments, the fifth elastic member 95 may also be installed between the base rod 61 and the support 90. When the pushing part 65 moves relative to the support 90 toward the placement platform 810, the pushing member 833 is in a resisting state. At this time, the fifth elastic member 95 is in a compressed state. The fifth elastic member 95 can resist and spring back the base rod 61 to drive the pushing part 65 relative to the support 90 in a direction away from the placement platform 810, so as to drive the pushing part 65 of the pushing member 833 away from the placement platform 810, thereby realizing that the pushing member 833 is in a non-resisting state.

[0127] See Figure 10 In this embodiment, during operation, the support device 1 drives the processing table 130 to rotate relative to the mounting base 110 to the third position. The boss 170 abuts against the second part 533 of the sliding rod 53 in the sliding member 831, pushing the second part 533 to slide along the moving groove 51 and in the fourth direction. The movement of the second part 533 drives the first part 531 to move. The first part 531 is connected to the base rod 61 and the connecting rod 63, driving the pushing part 65 to move towards the placement table 810. This allows the sliding member 831 to drive the pushing member 833 towards the placement table 810, and holds the second workpiece 620 between the pushing part 65 and the stop block 813, thereby fixing the second workpiece 620 to the placement table 810. At this time, the fourth elastic member 55 is in a compressed state.

[0128] During the process of the drive unit driving the machining table 130 to rotate relative to the mounting base 110 to the fourth position, the boss 170 disengages from the second part 533 of the slide rod 53 in the sliding member 831. Under the drive of the fourth elastic member 55, the slide rod 53 slides in the opposite direction of the fourth direction, and the slide rod 53 drives the pusher 833 to move away from the placement table 810. The pusher part 65 in the pusher 833 disengages from the second workpiece 620, thereby enabling the second workpiece 620 to be removed from the placement table 810.

[0129] In the support device 1 provided in this application embodiment, a second support device 800 is installed on the processing table 130 to support and fix the second workpiece 620, so as to facilitate the repairman to process the second workpiece 620 in the daily life environment. Specifically, the processing table 130 in the support device 1 can rotate relative to the mounting base 110. By adjusting the processing table 130 to a third position relative to the mounting base 110, the boss 170 provided on the mounting base 110 can abut against the abutting component 830 of the second support device 800, so that the abutting component 830 is in abutting state, and the abutting component 830 abuts the second workpiece 620 against the placement table 810, thereby fixing the second workpiece 620 to the placement table 810. By adjusting the machining table 130 to the fourth position relative to the mounting base 110, the boss 170 is disengaged from the abutment component 830, thereby placing the abutment component 830 in a non-abutment state and disengaging the abutment component 830 from the second workpiece 620, thus enabling the second workpiece 620 to be removed from the placement table 810.

[0130] Furthermore, by providing a supporting component 830 of the second support device 800, including a sliding member 831 and a pushing member 833, the boss 170 supports and pushes the sliding member 831 to slide relative to the processing table 130 in the fourth direction. The sliding member 831 drives the pushing member 833 to move towards the placement table 810, thereby enabling the pushing member 833 to support the second workpiece 620 against the placement table 810, thus fixing the second workpiece 620 to the placement table 810. Simultaneously, the sliding member 831 can also slide relative to the processing table 130 in the opposite direction of the fourth direction to drive the pushing member 833 to move away from the placement table 810, thereby disengaging the pushing member 833 from the second workpiece 620 and facilitating the removal of the second workpiece 620 from the placement table 810.

[0131] The above-disclosed embodiments are merely preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art will understand that all or part of the processes for implementing the above embodiments and equivalent variations made in accordance with the claims of this application are still within the scope of this application.

Claims

1. A support apparatus for supporting a stationary workpiece, the workpiece comprising a first workpiece, characterized by, The support device comprises a mounting base, a machining table, a boss and a first support device, the machining table is installed on the mounting base and can rotate relative to the mounting base between a first position and a second position, the boss is arranged on the surface of the mounting base facing the machining table, and the first support device is installed on the machining table and can rotate relative to the mounting base under the driving of the machining table; The first support device comprises a fixing frame and a locking mechanism, the fixing frame is installed on the machining table, the locking mechanism is installed on the fixing frame and is used for locking the first workpiece, and the locking mechanism has a first state and a second state, wherein the first state is an unlocked state, the second state is a locked state, or the first state is a locked state and the second state is an unlocked state; When the machining table is located at the first position, the boss abuts against the locking mechanism, and the locking mechanism is in the first state; when the machining table is located at the second position, the boss is arranged in a spaced manner relative to the locking mechanism, and the locking mechanism is in the second state; The locking mechanism comprises a first sliding assembly, a second sliding assembly and a locking assembly, the first sliding assembly, the second sliding assembly and the locking assembly are all installed on the fixing frame, the first sliding assembly can slide relative to the fixing frame, the second sliding assembly abuts against the first sliding assembly and can slide relative to the fixing frame under the abutting of the first sliding assembly, and the locking assembly abuts against the second sliding assembly and can slide relative to the fixing frame under the abutting of the second sliding assembly; During the rotation of the machining table to the first position, the boss abuts against the first sliding assembly and pushes the first sliding assembly to slide relative to the fixing frame in a first direction, the first sliding assembly abuts against and pushes the second sliding assembly to slide relative to the fixing frame in a second direction, and the second sliding assembly abuts against and pushes the locking assembly to slide relative to the fixing frame in a third direction; During the rotation of the machining table to the second position, the boss is separated from the abutting against the first sliding assembly, the first sliding assembly slides in the opposite direction of the first direction, the second sliding assembly slides in the opposite direction of the second direction, and the locking assembly slides in the opposite direction of the third direction.

2. The support apparatus according to claim 1, characterized by The locking assembly comprises a moving rod, an abutting piece and a first elastic piece, the moving rod penetrates through the fixing frame, can slide relative to the fixing frame and abuts against the second sliding assembly, the abutting piece is connected to the end of the moving rod away from the second sliding assembly and is used for abutting against the first workpiece, and the first elastic piece is installed between the fixing frame and the abutting piece. In the process that the machining table rotates to the first position, the second sliding assembly abuts and pushes the moving rod to slide in the third direction, the moving rod drives the abutting piece to move away from the fixed frame, and in the process that the machining table rotates to the second position, the moving rod slides in the opposite direction of the third direction, and the first elastic member drives the abutting piece to move towards the fixed frame.

3. The support apparatus according to claim 2, characterized by The fixed frame is provided with a guide groove, and the locking assembly further comprises a guide frame connected to the moving rod, and when the moving rod slides relative to the fixed frame, the moving rod drives the guide frame to slide along the extension direction of the guide groove.

4. The support apparatus according to claim 3, characterized by The locking assembly has a plurality of locking assemblies, and the plurality of locking assemblies comprise a first locking assembly and a second locking assembly, the moving rod of the first locking assembly and the moving rod of the second locking assembly both abut the second sliding assembly, the guide frame is connected to the side of the moving rod of the first locking assembly, and the end of the guide frame away from the moving rod is located in the guide groove.

5. The support apparatus according to claim 4, characterized by The first locking assembly comprises at least two first locking assemblies, and the moving rods of the two first locking assemblies are located on opposite sides of the second sliding assembly. The second locking assembly comprises at least two second locking assemblies, and the moving rods of the two second locking assemblies are located on opposite sides of the second sliding assembly.

6. Support apparatus according to any one of claims 2 to 5, characterized in that The second sliding assembly comprises a moving piece capable of sliding relative to the fixed frame in the second direction, the moving piece comprises a connecting rod, a first abutting end and a second abutting end, the connecting rod is connected between the first abutting end and the second abutting end, the first abutting end abuts the first sliding assembly, and the second abutting end abuts the locking assembly.

7. The support apparatus according to claim 6, characterized by The second sliding assembly further comprises a fixed piece and a second elastic member, the fixed piece is mounted on the fixed frame, the connecting rod passes through the fixed piece and can slide relative to the fixed piece in the second direction, and the second elastic member is sleeved on the side of the connecting rod and is mounted between the fixed piece and the first abutting end.

8. The support apparatus according to claim 6, characterized by The first sliding assembly comprises a third elastic member and a sliding rod, the third elastic member is mounted between the fixed frame and the sliding rod, the sliding rod can move relative to the fixed frame in the first direction, and is used for abutting the boss.

9. The support apparatus of claim 1, wherein, The workpiece comprises a second workpiece, the machining table can rotate relative to the mounting seat between a third position and a fourth position, and the supporting device further comprises a second supporting device, the second supporting device is mounted on the machining table and can rotate relative to the mounting seat under the driving of the machining table. The second supporting device comprises a placing table and an abutting assembly, the placing table is mounted on the machining table and is used for placing a second workpiece, and the abutting assembly is mounted on the machining table and is used for abutting the second workpiece to the placing table, the abutting assembly has an abutting state and a non-abutting state. When the machining table is in the third position, the boss abuts the abutting assembly, and the abutting assembly is in the abutting state. When the machining table is located at the fourth position, the convex platform is disengaged from the abutting component, and the abutting component is in the non-abutting state.

10. The support apparatus of claim 9, wherein, The abutting component comprises a sliding member and a pushing member, the sliding member is installed on the machining table and can move relative to the machining table, and the pushing member is connected with the sliding member and is used for abutting the second workpiece to the placing table. During the rotation of the machining table to the third position, the convex platform abuts against the sliding member, the sliding member slides relative to the machining table in the fourth direction and drives the pushing member to move towards the placing table to abut the second workpiece to the placing table, and during the rotation of the machining table to the fourth position, the convex platform is disengaged from the sliding member, the sliding member slides in the opposite direction of the fourth direction and drives the pushing member to move away from the placing table to disengage the pushing member from the second workpiece.

11. The support apparatus of claim 10, wherein, The abutting component further comprises a fixing seat, the fixing seat is installed on the machining table, the fixing seat is provided with a moving groove, and the opening of the moving groove is arranged on the surface of the fixing seat facing the mounting seat, the sliding member comprises a sliding rod and a fourth elastic member, the sliding rod penetrates through the groove bottom wall of the moving groove and can slide relative to the fixing seat in the fourth direction, and the fourth elastic member is sleeved on the circumferential side of the sliding rod and is installed between the sliding rod and the groove bottom wall of the moving groove.

12. The support apparatus of claim 10, wherein, The pushing member comprises a base rod, a connecting rod and a pushing part, the base rod is connected with the sliding member, the connecting rod is connected between the base rod and the pushing part, and the pushing part is used for abutting the second workpiece to the placing table.

13. The support apparatus of claim 12, wherein, The abutting component further comprises a support and a fifth elastic member, the support is installed on the machining table, the connecting rod penetrates through the support and can move relative to the support, and the fifth elastic member is sleeved on the circumferential side of the connecting rod; the fifth elastic member is installed between the base rod and the support or between the pushing part and the support.

14. Support apparatus according to any one of claims 9 to 13, characterized in that The abutting component has a plurality of abutting components, and the plurality of abutting components are used for abutting the second workpiece to the placing table.

Citation Information

Patent Citations

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