Air conditioner motor shell transfer rack
Patent Information
- Application Number
- CN202522438494.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-18
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-18
AI Technical Summary
[0016]多个存放装置的设置可使放置板上同时转运多个电机壳体,提高了转运效率。泡沫填充板防止转运过程中因震动导致相邻壳体之间发生碰撞磨损。
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Figure CN224782699U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of air conditioner motor manufacturing, specifically to an air conditioner motor housing transfer rack. Background Technology
[0002] This technology belongs to the field of air conditioner motor manufacturing, specifically involving auxiliary equipment for the transfer of air conditioner motor housings. It is mainly used in the handling process between the production, processing and assembly stages of motor housings. Through a special material rack, it realizes the batch bearing and safe transfer of housings, and is a key supporting device to ensure the continuity of the air conditioner motor production process and the integrity of the housing.
[0003] Existing racks used for transporting air conditioner motor housings have significant deficiencies in their housing fixing structures. These racks typically require complex operations such as bolt tightening and manual clamp locking to secure the housings. This is not only cumbersome but also prolongs the time spent on housing placement and fixing, directly impacting transport efficiency. The existing fixing structures cannot provide continuous and stable clamping force. During transport, the clamping force is easily weakened or lost due to bumps and vibrations, leading to loosening and displacement of the housings, and even collisions between housings or between the housings and the rack. This deformation damages the structural integrity and appearance of the housings, affecting subsequent motor assembly accuracy and product quality. Utility Model Content
[0004] The purpose of this utility model is to solve the above defects and provide an air conditioner motor housing transfer rack. This solves the problem that the existing fixed structure cannot provide a continuous and stable clamping force, and the clamping force is easily weakened or failed during the transfer process due to the influence of bumps and vibrations, resulting in the housing becoming loose and displaced.
[0005] The purpose of this utility model is achieved through the following means: an air conditioner motor housing transfer rack, including a placement rack and a storage device, wherein the upper surface of the placement rack is provided with a mounting groove, and a placement plate is movably mounted on the placement rack through the mounting groove; the storage device is movably mounted on the top of the placement plate, and a mounting plate is provided at the bottom of the storage device; a pressing port is opened in the middle of the upper surface of the mounting plate, and a limit rod is evenly inserted into the bottom of the pressing port through an opening; a limit spring is movably sleeved on the outer wall of the limit rod; a pressing plate is connected to the other end of the limit rod; three mounting brackets are evenly installed on the side wall of the pressing plate; a pull rod is connected to the top of each mounting bracket through a pivot; a support frame is provided on the top of the mounting plate corresponding to the direction of the mounting bracket; a clamping block is movably mounted on the top of the support frame through a pivot; and the side of the clamping block near the mounting bracket is movably connected to the pull rod through a pivot.
[0006] The linkage clamping structure design can synchronously drive multiple clamping blocks to stably clamp the motor housing through the pressing action of the pressing plate, eliminating the need to adjust each clamping block individually, which greatly improves the ease of operation. At the same time, the setting of the limit spring can keep the clamping force within a suitable range, avoiding damage to the housing due to excessive clamping.
[0007] Furthermore, support rods are provided at the four top corners of the placement rack, and the mounting grooves are evenly installed inside the support rods. A sliding groove is provided at the top of the mounting groove, and a limit slot is fixedly installed at one end of the sliding groove. A sliding block is provided above the limit slot at the sliding groove, and a sliding strip matching the sliding groove is provided at the bottom of the placement plate.
[0008] The support rod provides a stable support base for the mounting slot, preventing the storage device from accidentally tipping over during transportation. The cooperation between the sliding strip and the sliding groove enables the convenient pulling of the placement plate, while the interaction between the sliding block and the limiting slot can lock the placement plate in place, preventing the placement plate from sliding during transportation and improving the stability of the overall structure.
[0009] Furthermore, a removable anti-slip pad is movably provided on the side wall of the clamping block away from the support frame, and the surface of the removable anti-slip pad is uniformly provided with anti-slip texture.
[0010] The design of the detachable anti-slip pad facilitates subsequent replacement and maintenance. When the detachable anti-slip pad is worn, it can be directly removed and replaced without replacing the entire clamping block, which reduces the cost of use. The anti-slip texture can effectively increase the friction between the clamping block and the motor housing, ensuring a more secure clamping and protecting the surface of the motor housing to prevent scratches during clamping.
[0011] Furthermore, the bottom four corners of the placement rack are provided with casters, and multiple rolling balls are evenly embedded on the sliding strip sidewall at the bottom of the placement plate, with the outer wall of the rolling balls sliding in contact with the inner wall of the groove.
[0012] The casters allow the rack to turn and move flexibly, facilitating the transfer of the motor housing between different work areas and improving transfer efficiency. The rolling balls reduce the sliding friction between the sliding strip and the slide, making the pulling process of the rack smoother and less strenuous, thus reducing the labor intensity of the operators.
[0013] Furthermore, an elastic buffer layer is laid on the top of the pressing plate, and hemispherical protrusions are evenly distributed on the upper surface of the elastic buffer layer.
[0014] The elastic buffer layer can cushion the motor housing when it is placed on the pressing plate, preventing damage caused by hard collision between the housing and the pressing plate. The hemispherical protrusion can increase the contact friction between the housing and the elastic buffer layer, preventing the housing from sliding on the pressing plate. At the same time, it can also position the housing to a certain extent, ensuring that the housing is in the correct position when clamped.
[0015] Furthermore, at least two storage devices are evenly arranged on the top of the placement plate along the length direction, and a foam filling plate is arranged between two adjacent storage devices.
[0016] The arrangement of multiple storage devices allows for the simultaneous transport of multiple motor housings on the placement plate, improving transport efficiency. Foam-filled panels prevent collisions and wear between adjacent housings due to vibration during transport.
[0017] The beneficial effects of this utility model are as follows: The air conditioner motor housing transfer rack, through the combination structure of the pressing plate, the limiting rod, and the limiting spring, can quickly clamp the motor housing by driving the clamping block to rotate around the support frame through the pull rod when pressing. The limiting spring can provide a continuous and stable clamping force, preventing the housing from shifting or colliding due to loosening during transfer, preventing deformation of the housing during clamping or transfer, ensuring the integrity of the housing structure and the quality of its appearance. The entire clamping structure is simple to operate, requiring no complicated manual fixing steps, which can shorten the time for housing placement and fixing, and improve transfer efficiency. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall design of this utility model;
[0019] Figure 2 This is a schematic diagram of the storage device structure of this utility model;
[0020] Figure 3 This is a schematic diagram of the storage device of this utility model.
[0021] In the diagram: 100, placement rack; 101, caster wheel; 102, support rod; 103, mounting groove; 104, sliding groove; 105, limit slot; 106, sliding block; 107, placement plate; 200, storage device; 201, mounting plate; 203, pressing plate; 204, limit rod; 205, mounting rack; 206, pull rod; 207, support frame; 208, clamping block. Detailed Implementation
[0022] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0023] In this embodiment, refer to Figure 1 - Figure 3The present invention relates to an air conditioner motor housing transfer rack, comprising a placement rack 100 and a storage device 200. The upper surface of the placement rack 100 is provided with a mounting groove 103, and a placement plate 107 is movably mounted on the placement rack 100 via the mounting groove 103. The storage device 200 is movably mounted on the top of the placement plate 107, and a mounting plate 201 is provided at the bottom of the storage device 200. A pressing port 202 is opened in the middle of the upper surface of the mounting plate 201, and limit rods 20 are evenly inserted into the bottom of the pressing port 202 through openings. 4. A limiting spring is movably sleeved on the outer wall of the limiting rod 204. The other end of the limiting rod 204 is connected to a pressing plate 203. Three mounting brackets 205 are evenly installed on the side wall of the pressing plate 203. The top of each mounting bracket 205 is connected to a pull rod 206 through a pivot. A support frame 207 is provided on the top of the mounting plate 201 in the direction corresponding to the mounting bracket 205. A clamping block 208 is movably installed on the top of the support frame 207 through a pivot. The side of the clamping block 208 closest to the mounting bracket 205 is movably connected to the pull rod 206 through a pivot.
[0024] The linkage clamping structure design can synchronously drive multiple clamping blocks 208 to stably clamp the motor housing through the pressing action of the pressing plate 203, without the need to adjust each clamping block 208 individually, which greatly improves the convenience of operation. At the same time, the setting of the limit spring can keep the clamping force within a suitable range, avoiding damage to the housing due to excessive clamping.
[0025] Support rods 102 are provided at the four corners of the top of the placement rack 100. Mounting grooves 103 are evenly installed inside the support rods 102. A sliding groove 104 is provided at the top of the mounting groove 103. A limiting groove 105 is fixedly installed at one end of the sliding groove 104. A sliding block 106 is provided above the limiting groove 105 at the sliding groove 104. A sliding strip matching the sliding groove 104 is provided at the bottom of the placement plate 107.
[0026] The support rod 102 provides a stable support base for the mounting groove 103, preventing the storage device 200 from accidentally tipping over during transportation. The cooperation between the sliding bar and the sliding groove 104 enables the convenient pulling of the placement plate 107, while the interaction between the sliding block 106 and the limiting groove 105 can lock the placement plate 107 after it is in place, preventing the placement plate 107 from sliding during transportation and improving the stability of the overall structure.
[0027] A removable anti-slip pad is movably installed on the side wall of the clamping block 208 away from the support frame 207, and the surface of the removable anti-slip pad is evenly provided with anti-slip texture.
[0028] The design of the detachable anti-slip pad facilitates subsequent replacement and maintenance. When the detachable anti-slip pad is worn, it can be directly removed and replaced without replacing the entire clamping block 208, which reduces the cost of use. The anti-slip texture can effectively increase the friction between the clamping block 208 and the motor housing, ensuring a more secure clamping and protecting the surface of the motor housing, thus preventing scratches during clamping.
[0029] The bottom of the placement rack 100 is provided with four universal wheels 101. Multiple rolling balls are evenly embedded on the sliding strip side wall at the bottom of the placement plate 107. The outer wall of the rolling balls slides in contact with the inner wall of the slide groove 104.
[0030] The universal wheels 101 enable the placement rack 100 to turn and move flexibly, facilitating the transfer of the motor housing between different work areas and improving transfer efficiency. The rolling balls reduce the sliding friction between the sliding bar and the slide groove 104, making the pulling process of the placement plate 107 smoother and less labor-intensive, and reducing the labor intensity of the operator.
[0031] An elastic buffer layer is laid on the top of the pressing plate 203, and hemispherical protrusions are evenly distributed on the upper surface of the elastic buffer layer.
[0032] The elastic buffer layer can buffer the motor housing when it is placed on the pressing plate 203, preventing damage caused by hard collision between the housing and the pressing plate 203. The hemispherical protrusion can increase the contact friction between the housing and the elastic buffer layer, preventing the housing from sliding on the pressing plate 203. At the same time, it can also position the housing to a certain extent, ensuring that the housing is in the correct position when clamped.
[0033] At least two storage devices 200 are evenly arranged on the top of the placement plate 107 along the length direction, and a foam filling plate is arranged between two adjacent storage devices 200.
[0034] The arrangement of multiple storage devices 200 allows multiple motor housings to be transported simultaneously on the placement plate 107, improving transport efficiency. Foam-filled plates prevent collisions and wear between adjacent housings due to vibration during transport.
[0035] The working process of the air conditioner motor housing transfer rack in this embodiment is as follows: First, the entire unit is moved to the designated position by the universal wheels 101 at the bottom of the placement rack 100. Then, the placement plate 107 is pulled out by the cooperation of its bottom sliding strip with the sliding groove 104 of the mounting groove 103, placing the motor housing on the pressing plate 203 of the storage device 200. The weight of the housing causes the pressing plate 203 to press down, driving the limiting rod 204 to move down and compressing the limiting spring. The mounting bracket 205 on the side wall of the pressing plate 203 simultaneously pulls the pull rod 206, thereby driving the clamping block 208 to rotate around the rotating shaft of the support frame 207, so that the three clamping blocks 208 move towards the housing simultaneously and clamp it. A stable clamping force is continuously provided. During this process, the elastic buffer layer and hemispherical protrusion buffer shell on the top of the pressing plate 203 collide and prevent it from sliding. The removable anti-slip pad on the clamping block 208 enhances the clamping stability and protects the shell surface through the anti-slip texture. After the placement plate 107 is in place, it is locked by the interaction between the sliding block 106 and the limiting slot 105. At the same time, the support rod 102 provides stable support for the mounting slot 103. Subsequently, the multiple storage devices 200 on the placement plate 107 can carry multiple shells at the same time. The foam filling board between adjacent storage devices 200 avoids collision and wear between shells during transportation, and finally completes the safe transportation of the motor shell.
[0036] The above description, in conjunction with specific preferred embodiments, provides a further detailed explanation of the present invention. It should not be construed that the specific implementation of the present invention is limited to these descriptions. For those skilled in the art, various simple deductions or substitutions can be made without departing from the concept of the present invention, and all such modifications and substitutions should be considered within the scope of protection of the present invention.
Claims
1. An air conditioner motor housing transfer rack, comprising a placement rack (100) and a storage device (200), wherein the upper surface of the placement rack (100) is provided with a mounting groove (103), a placement plate (107) is movably mounted on the placement rack (100) through the mounting groove (103), and the storage device (200) is movably mounted on the top of the placement plate (107), characterized in that: The storage device (200) is provided with a mounting plate (201) at the bottom. A pressing port (202) is provided in the middle of the upper surface of the mounting plate (201). A limit rod (204) is evenly inserted into the bottom of the pressing port (202) through an opening. A limit spring is movably sleeved on the outer wall of the limit rod (204). A pressing plate (203) is connected to the other end of the limit rod (204). Three mounting brackets (205) are evenly installed on the side wall of the pressing plate (203). A pull rod (206) is connected to the top of each mounting bracket (205) through a pivot. A support frame (207) is provided on the top of the mounting plate (201) in the direction of the mounting bracket (205). A clamping block (208) is movably installed on the top of the support frame (207) through a pivot. The side of the clamping block (208) near the mounting bracket (205) is movably connected to the pull rod (206) through a pivot.
2. The air conditioner motor housing transfer rack according to claim 1, characterized in that: The top four corners of the placement rack (100) are provided with support rods (102), and the mounting grooves (103) are evenly installed inside the support rods (102). The top of the mounting groove (103) is provided with a sliding groove (104), and a limiting slot (105) is fixedly installed at one end of the sliding groove (104). A sliding block (106) is provided above the limiting slot (105) at the sliding groove (104), and a sliding strip matching the sliding groove (104) is provided at the bottom of the placement plate (107).
3. The air conditioner motor housing transfer rack according to claim 1, characterized in that: A detachable anti-slip pad is movably provided on the side wall of the clamping block (208) away from the support frame (207), and the surface of the detachable anti-slip pad is uniformly provided with anti-slip texture.
4. The air conditioner motor housing transfer rack according to claim 1, characterized in that: The bottom four corners of the placement rack (100) are provided with casters (101), and a plurality of rolling balls are evenly embedded on the sliding strip sidewall at the bottom of the placement plate (107). The outer wall of the rolling balls slides in contact with the inner wall of the slide groove (104).
5. The air conditioner motor housing transfer rack according to claim 1, characterized in that: The top of the pressing plate (203) is covered with an elastic buffer layer, and hemispherical protrusions are evenly distributed on the upper surface of the elastic buffer layer.
6. The air conditioner motor housing transfer rack according to claim 1, characterized in that: At least two storage devices (200) are uniformly arranged on the top of the placement plate (107) along the length direction, and a foam filling plate is arranged between two adjacent storage devices (200).