hanging device

By designing the feeding and loading components in coordination and utilizing the transfer and material handling components, the problem of low efficiency in manual product placement was solved, enabling products to be quickly and stably tilted and placed in the hanging basket, thus improving overall operational efficiency.

CN224589976UActive Publication Date: 2026-08-04HONGFUJIN PRECISION ELECTRONICS ZHENGZHOU
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HONGFUJIN PRECISION ELECTRONICS ZHENGZHOU
Filing Date
2025-07-03
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

In the existing technology, the process of manually placing products into hanging baskets after production is inefficient, resulting in insufficient placement efficiency.

Method used

Design a loading and unloading device, including a feeding assembly, a hanging basket, and a loading assembly. The feeding assembly provides products, and the cooperation of the transfer component and the material transfer component enables the products to be quickly tilted and placed in the hanging basket. The drive of the connecting component and the sliding body ensures that the material transfer component stably drives the products to be inserted into the receiving slot.

Benefits of technology

It improved product placement efficiency, enabling rapid and stable tilting of products and enhancing overall operational efficiency.

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Abstract

This application provides a hanging device to improve placement efficiency, comprising: a feeding assembly for providing multiple products; a hanging basket including a main body and multiple partitions, the main body having a storage slot, the multiple partitions being equally spaced in the storage slot and respectively connected to the main body, a receiving slot being formed between two adjacent partitions, the receiving slot being configured to receive products; and a loading assembly including a transfer member, a connecting member, and multiple transfer members, the transfer member being disposed on one side of the feeding assembly, the connecting member being connected to the transfer member, one side of the connecting member having a connected stepped portion and a flat surface, the multiple transfer members being equally spaced along the direction from the stepped portion to the flat surface, and being respectively connected to the stepped portion and the flat surface, the multiple transfer members corresponding one-to-one with the multiple receiving slots, and the spacing between two adjacent transfer members being equal to the spacing between two connected partitions, the transfer members being configured to pick up products, and under the drive of the transfer member, transferring the products from the feeding assembly to the receiving slot.
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Description

Technical Field

[0001] This utility model relates to the field of product assembly technology, and in particular to a mounting device. Background Technology

[0002] Currently, after production is completed, products are typically placed at an angle into hanging baskets manually, allowing multiple products to be loaded into the cleaning equipment at once for washing. However, manually placing products into the baskets is inefficient. Utility Model Content

[0003] In view of the above situation, it is necessary to provide a mounting device to improve placement efficiency.

[0004] This application provides a mounting device, including:

[0005] Feeding assembly, used to supply multiple products;

[0006] A hanging basket includes a main body and multiple partitions. The main body is located on one side of the feeding assembly and has a storage slot. The multiple partitions are equally spaced in the storage slot and connected to the main body respectively. A receiving slot is formed between two adjacent partitions, and the receiving slot is configured to receive the product.

[0007] The feeding assembly includes a transfer member, a connector, and multiple transfer members. The transfer member is located on one side of the feeding assembly. The connector is connected to the transfer member. One side of the connector has a stepped portion and a flat portion connected to each other. The multiple transfer members are equidistantly spaced along the direction from the stepped portion to the flat portion and are respectively connected to the stepped portion and the flat portion. The multiple transfer members correspond one-to-one with the multiple receiving slots, and the distance between two adjacent transfer members is equal to the distance between two connected separators. The transfer members are configured to pick up the product and, driven by the transfer member, transfer the product from the feeding assembly to the receiving slot.

[0008] In operation, the aforementioned loading and unloading equipment works as follows: First, the feeding assembly provides multiple products. The transfer component moves multiple transfer components to the feeding assembly, allowing each transfer component to pick up one product. The transfer component then drives the transfer components to the hanging basket, and further drives the connecting component to tilt relative to the hanging basket, ensuring the flat portion is adjacent to the stepped portion, thus ensuring the multiple transfer components stably insert the products into their corresponding receiving slots. Finally, the multiple transfer components release their corresponding products, allowing the products to be quickly tilted and placed into their respective receiving slots. In this way, through the cooperation of the feeding assembly and the loading assembly, the transfer component drives the connecting component to tilt the multiple transfer components relative to the hanging basket, ensuring that each transfer component tilts and inserts the product into its corresponding receiving slot, achieving rapid tilting placement in the product hanging basket and improving placement efficiency.

[0009] In some embodiments, the connector includes a connector, a slider, and a drive body. The connector is connected to the transfer member and has the stepped portion and the flat portion. The slider is disposed on one side of the stepped portion and is slidably connected to the connector in the direction from the stepped portion to the flat portion. The drive body is connected to the slider and is used to drive the slider to slide.

[0010] The transfer component includes a fixing body and a clamping body. The fixing bodies of the plurality of transfer components are equally spaced and detachably connected to the stepped portion and the flat portion, respectively. The clamping bodies of the plurality of transfer components are equally spaced and respectively connected to the sliding body. The clamping body is configured to move closer to the fixing body under the drive of the sliding body to clamp the product.

[0011] In some embodiments, the connecting body is provided with a mounting groove, the stepped portion and the flat portion are provided on one side of the groove opening of the mounting groove, and the sliding body is slidably disposed in the mounting groove;

[0012] The fixing body is provided with a through hole, which penetrates the fixing body along the direction from the stepped portion to the flat portion and communicates with the placement groove to form a receiving space, which is used to receive the clamping body.

[0013] In some embodiments, the fixation body includes:

[0014] The support portion is detachably connected to the connector.

[0015] A fixing part is connected to the support part, and in the direction from the stepped part to the flat part, the cross-sectional area of ​​the fixing part is smaller than the cross-sectional area of ​​the support part.

[0016] In some embodiments, the clamping body includes:

[0017] The adjustment part is detachably connected to the sliding body;

[0018] A clamping part is disposed opposite to the corresponding fixing body and detachably connected to the adjusting part. The clamping part is used to clamp the product to the fixing body.

[0019] In some embodiments, the separator includes:

[0020] The divider is perpendicularly connected to the bottom of the storage slot;

[0021] A guide body is inclined relative to and connected to the partition body, the guide body and the partition body forming a groove wall of the receiving groove, and the guide body is configured to guide the product into the receiving groove.

[0022] In some embodiments, the main body is provided with a clearance groove, which is disposed on the wall of the storage groove and communicates with the storage groove.

[0023] In some embodiments, the feeding assembly includes:

[0024] A conveyor for conveying multiple of the products;

[0025] A carrier component includes an assembly groove and multiple carrier bodies. The assembly groove extends through the carrier component along the conveying direction of the conveyor component. The conveyor component passes through the assembly groove. The multiple carrier bodies are evenly spaced on the groove wall along the direction perpendicular to the conveying direction of the conveyor component. The distance between two adjacent carrier bodies is equal to the distance between two adjacent transfer components. The carrier bodies are configured to carry the product.

[0026] A lifting component is connected to the carrier component, and the lifting component is used to drive the carrier component to move up and down.

[0027] In some embodiments, the feeding assembly includes:

[0028] A stop is mounted on the conveyor and located on one side of the carrier, the stop being configured to stop the product from moving to the carrier.

[0029] In some embodiments, the mounting device further includes:

[0030] The unloading component is located on one side of the loading component. The unloading component is used to support the hanging basket and drive the hanging basket to move to a preset position. Attached Figure Description

[0031] Figure 1 This is a three-dimensional structural diagram of the mounting device provided in an embodiment of this application.

[0032] Figure 2 for Figure 1 The diagram shows a three-dimensional structure of the hanging basket in the mounting equipment.

[0033] Figure 3 for Figure 1 The diagram shows a three-dimensional structural schematic of the feeding component in the mounting equipment.

[0034] Figure 4 for Figure 1 The diagram shows a three-dimensional structural schematic of the feeding component in the mounting equipment.

[0035] Explanation of main component symbols: Hanging device 100, feeding assembly 10, conveying component 11, bearing component 12, assembly slot 121, bearing body 122, lifting component 13, stop component 14, hanging basket 20, main body 21, storage slot 211, clearance slot 212, separator component 22, accommodating slot 221, separator body 222, guide body 223, feeding assembly 30, transfer component 31, connecting component 32, stepped part 321, flat part 322, connecting body 323, placement slot 3231, sliding body 324, driving body 325, material transfer component 33, fixing body 331, through hole 3311, accommodating space 3312, support part 3313, fixing part 3314, clamping body 332, adjusting part 3321, clamping part 3322, unloading assembly 40. Detailed Implementation

[0036] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.

[0037] In the description of this application, it should be understood that the terms indicating orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of the stated features. In the description of this application, it should be noted that "a plurality of" means two or more, unless otherwise explicitly specified.

[0038] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the term "connection" should be interpreted broadly. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or a connection that allows communication between the two components; it can be a direct connection or an indirect connection through an intermediate medium; it can be the internal communication between two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0039] The following will describe some embodiments of this application in detail with reference to the accompanying drawings.

[0040] Please see Figure 1This application provides a hanging device 100, including a feeding component 10, a hanging basket 20 and a loading component 30. The hanging device 100 is used to quickly tilt and place multiple products into the hanging basket 20 through the feeding component 10 and the loading component 30, thereby improving the placement efficiency.

[0041] Please see Figure 1 , Figure 2 and Figure 3 The feeding assembly 10 is used to provide multiple products. The hanging basket 20 includes a main body 21 and multiple partitions 22. The main body 21 is located on one side of the feeding assembly 10 and has a storage slot 211. The multiple partitions 22 are equally spaced in the storage slot 211 and are respectively connected to the main body 21. A receiving slot 221 is formed between two adjacent partitions 22. The receiving slot 221 is configured to receive products. The feeding assembly 30 includes a transfer member 31, a connecting member 32, and multiple transfer members 33. The transfer member 31 is located on one side of the feeding assembly 10. The connecting member 32 is connected to the transfer member 31. One side of the connecting member 32 has a connected stepped portion 321 and a flat surface 322. The multiple transfer members 33 are equidistantly arranged along the direction from the stepped portion 321 to the flat surface 322 and are respectively connected to the stepped portion 321 and the flat surface 322. The multiple transfer members 33 correspond one-to-one with multiple receiving slots 221, and the distance between two adjacent transfer members 33 is equal to the distance between two connected separators 22. The transfer members 33 are configured to pick up products and, driven by the transfer member 31, transfer the products from the feeding assembly 10 to the receiving slots 221. For example, the transfer member 31 can be a robotic arm.

[0042] In use, the aforementioned loading and unloading equipment 100 firstly provides multiple products; the transfer member 31 drives multiple transfer members 33 to move to the supply component 10, so that each transfer member 33 picks up one product; then, the transfer member 31 drives the multiple transfer members 33 to move to the hanging basket 20, and then drives the connecting member 32 to tilt relative to the hanging basket 20, so that the flat part 322 is adjacent to the step part 321 of the hanging basket 20, ensuring that the multiple transfer members 33 stably carry multiple products into the corresponding receiving slots 221; finally, the multiple transfer members 33 release the corresponding products, so that the products are quickly tilted and placed into the corresponding receiving slots 221. In this way, through the cooperation of the supply component 10 and the loading component 30, the transfer member 31 drives the connecting member 32 to drive the multiple transfer members 33 to tilt relative to the hanging basket 20, ensuring that each transfer member 33 carries the product tilted and inserted into the corresponding receiving slot 221, achieving rapid tilting placement in the product hanging basket 20, and improving placement efficiency.

[0043] It should be noted that the stepped portion 321 mentioned above refers to a structure with a stepped shape, and the distance between the upper surface of the stepped portion 321 and the upper surface of the flat portion 332 increases from the flat portion 332 toward the stepped portion 321.

[0044] Please see Figure 1 and Figure 3 In some embodiments, the connector 32 includes a connector 323, a slider 324, and a drive 325. The connector 323 is connected to the transfer member 31 and has a stepped portion 321 and a flat surface 322. The slider 324 is located on one side of the stepped portion 321 and is slidably connected to the connector 323 in the direction from the stepped portion 321 to the flat surface 322. The drive 325 is connected to the slider 324 and is used to drive the slider 324 to slide. The transfer member 33 includes a fixing body 331 and a clamping body 332. The fixing bodies 331 of the multiple transfer members 33 are equally spaced and detachably connected to the stepped portion 321 and the flat surface 322, respectively. The clamping bodies 332 of the multiple transfer members 33 are equally spaced and are respectively connected to the slider 324. The clamping bodies 332 are configured to move closer to the fixing body 331 under the drive of the slider 324 to clamp the product.

[0045] Thus, through the above configuration, the driving body 325 drives the sliding body 324 to move multiple clamping bodies 332 in a synchronized manner, so that each clamping body 332 clamps a product to the corresponding fixed body 331, ensuring the rapid clamping of multiple products and improving the material transfer efficiency.

[0046] Please see Figure 3 In some embodiments, the connecting body 323 is provided with a mounting groove 3231, the stepped portion 321 and the flat portion 322 are provided on one side of the groove opening of the mounting groove 3231, and the sliding body 324 is slidably disposed in the mounting groove 3231. The fixing body 331 is provided with a through hole 3311, which penetrates the fixing body 331 in the direction from the stepped portion 321 to the flat portion 322, and communicates with the mounting groove 3231 to form a receiving space 3312, which is used to receive the clamping body 332.

[0047] Thus, through the above configuration, the driving body 325 drives the sliding body 324 to move the clamping body 332 into the accommodating space 3312 formed by the adjacent fixed body 331, avoiding interference between the material transfer component 33 and the product during the process of moving to the feeding assembly 10, ensuring that the fixed body 331 and the clamping body 332 stably receive a product, facilitating the stable clamping of the product by the fixed body 331 and the clamping body 332, and improving the stability of material transfer.

[0048] Please see Figure 3 In some embodiments, the fixing body 331 includes a support portion 3313 and a fixing portion 3314. The support portion 3313 is detachably connected to the connecting body 323. The fixing portion 3314 is connected to the support portion 3313, and in the direction from the stepped portion 321 to the flat portion 322, the cross-sectional area of ​​the fixing portion 3314 is smaller than the cross-sectional area of ​​the support portion 3313.

[0049] Thus, through the above arrangement, the cross-sectional area of ​​the support part 3313 is larger than the cross-sectional area of ​​the fixing part 3314, which can improve the structural strength of the fixing body 331, so that the fixing body 331 can stably support the product and improve the service life of the fixing body 331.

[0050] Please see Figure 3 In some embodiments, the clamping body 332 includes an adjusting portion 3321 and a clamping portion 3322. The adjusting portion 3321 is detachably connected to the sliding body 324. The clamping portion 3322 is disposed opposite to the corresponding fixing body 331 and is detachably connected to the adjusting portion 3321. The clamping portion 3322 is used to clamp the product to the fixing body 331.

[0051] Thus, by changing the adjustment part 3321 of different lengths, the length of the clamping body 332 extending out of the placement groove 3231 can be adjusted to ensure that the clamping body 332 stably clamps the product to the corresponding fixed body 331. At the same time, it is beneficial for the clamping body 332 to move smoothly into the accommodating space 3312 of the adjacent fixed body 331, thereby improving the stability of material transfer.

[0052] Please see Figure 2 In some embodiments, the separator 22 includes a separator 222 and a guide 223. The separator 222 is vertically connected to the bottom of the receiving groove 211. The guide 223 is inclined relative to the separator 222 and connected to the separator 222. The guide 223 and the separator 222 form the wall of a receiving groove 221. The guide 223 is configured to guide the product into the receiving groove 221.

[0053] Thus, through the above-mentioned configuration, the guide body 223 can guide the product into the receiving groove 221, preventing the product from shifting during placement and improving placement accuracy. In addition, it can reduce the contact area between the product placed in the receiving groove 221 and the separator 22, preventing the separator 22 from excessively obstructing the product and affecting the cleaning quality of the product.

[0054] Please see Figure 2 In some embodiments, the main body 21 is provided with a clearance groove 212, which is located on the wall of the storage groove 211 and communicates with the storage groove 211.

[0055] Thus, through the above-mentioned arrangement, during the process of the feeding component 30 placing the product into the receiving groove 221, the clearance groove 212 can avoid the connector 32, so that the transfer component 33 connected to the flat part 322 can be inserted into the receiving groove 221 more deeply than the transfer component 33 connected to the stepped part 321. This ensures the depth of insertion of the transfer component 33 connected to the stepped part 321 into the receiving groove 221, which is beneficial for the stable placement of multiple transfer components 33 into the corresponding receiving groove 221, thereby improving the placement stability.

[0056] Please see Figure 1 and Figure 4 In some embodiments, the feeding assembly 10 includes a conveyor 11, a carrier 12, and a lifting member 13. The conveyor 11 conveys multiple products. The carrier 12 has an assembly groove 121 and multiple carrier bodies 122. The assembly groove 121 extends through the carrier 12 along the conveying direction of the conveyor 11, and the conveyor 11 passes through the assembly groove 121. The multiple carrier bodies 122 are evenly spaced along the vertical direction perpendicular to the conveying direction of the conveyor 11 on the groove wall of the assembly groove 121. The distance between two adjacent carrier bodies 122 is equal to the distance between two adjacent transfer members 33. The carrier bodies 122 are configured to carry products. The lifting member 13 is connected to the carrier 12 and is used to drive the carrier 12 to move up and down. Exemplarily, the conveyor 11 can be a conveyor belt, and the lifting member 13 can be a cylinder or a servo slide.

[0057] Thus, through the above arrangement, after the lowest-level carrier 122 carries a product conveyed by the conveyor 11, the lifting component 13 drives the carrier 12 to rise, so that the carrier 122 adjacent to the lowest-level carrier 122 is at the same height as the conveyor 11, ensuring that the carrier 122 adjacent to the lowest-level carrier 122 receives another product conveyed by the conveyor 11, thereby enabling the feeding component 10 to provide multiple products with equal spacing, thus improving the feeding quality.

[0058] Please see Figure 4 In some embodiments, the feeding assembly 10 includes a stop 14. The stop 14 is mounted on the conveyor 11 and disposed on one side of the carrier 12, and is configured to stop the product from reaching the carrier 122.

[0059] Thus, through the above-mentioned arrangement, the stop member 14 can stop the product conveyed by the conveyor 11 to the carrier 122, prevent the product from sliding excessively or deviating from the carrier 122 during the conveying process, ensure that the product is stably placed on the carrier 122, and improve the feeding accuracy.

[0060] Please see Figure 1 In some embodiments, the loading device 100 further includes a feeding assembly 40. The feeding assembly 40 is disposed on one side of the loading assembly 30, and is used to support the hanging basket 20 and drive the hanging basket 20 to a preset position. For example, the feeding assembly 40 can be a conveyor belt.

[0061] Thus, through the above settings, the unloading component 40 can move the loaded hanging basket 20 to a preset position, facilitating subsequent cleaning operations, realizing the automation and continuity of the product throughout the entire operation process, and improving work efficiency.

[0062] The working process of the aforementioned mounting equipment 100 is roughly as follows:

[0063] First, the lifting component 13 adjusts the height of the lowest layer carrier 122 so that the lowest layer carrier 122 and the conveyor 11 are at the same height. The stop component 14 stops the product conveyed by the conveyor 11 to the lowest layer carrier 122, so that the lowest layer carrier 122 stably carries a product. The lifting component 13 then drives the carrier 12 to rise so that the other carriers 122 carry a product in turn, until the carrier 12 carries multiple products at equal intervals.

[0064] Then, the transfer member 31 drives multiple transfer members 33 to move to the carrier member 12, and the driving body 325 drives the sliding body 324 to drive multiple clamping bodies 332 to move synchronously, so that each clamping body 332 clamps a product to the corresponding fixed body 331.

[0065] Next, the transfer member 31 drives multiple transfer members 33 to move to the hanging basket 20, and then drives the connecting member 32 to tilt relative to the hanging basket 20 so that the flat part 322 is adjacent to the hanging basket 20 relative to the stepped part 321, ensuring that the multiple transfer members 33 stably drive multiple products to be inserted into the corresponding receiving slots 221.

[0066] Finally, multiple transfer components 33 detach from their corresponding products, allowing the products to be quickly tilted and placed in the corresponding receiving slots 221. The unloading component 40 then moves the hanging basket 20, which is equipped with multiple products, to a preset position, thereby enabling the rapid completion of the placement of multiple products and improving placement efficiency.

[0067] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application and are not intended to limit it. Although this application has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this application without departing from the spirit and scope of the technical solutions of this application.

Claims

1. A hanger apparatus, characterized by, include: Feeding assembly, used to supply multiple products; The hanging basket includes a main body and multiple partitions. The main body is located on one side of the feeding assembly and has a storage slot. The multiple partitions are equally spaced in the storage slot and are respectively connected to the main body. A receiving slot is formed between two adjacent partitions. The receiving slot is configured to receive the product. and The feeding assembly includes a transfer member, a connector, and multiple transfer members. The transfer member is located on one side of the feeding assembly. The connector is connected to the transfer member. One side of the connector has a stepped portion and a flat portion connected to each other. The multiple transfer members are equidistantly spaced along the direction from the stepped portion to the flat portion and are respectively connected to the stepped portion and the flat portion. The multiple transfer members correspond one-to-one with the multiple receiving slots, and the distance between two adjacent transfer members is equal to the distance between two connected separators. The transfer members are configured to pick up the product and, driven by the transfer member, transfer the product from the feeding assembly to the receiving slot.

2. The mounting device as described in claim 1, characterized in that, The connector includes a connector, a slider, and a drive body. The connector is connected to the transfer member and has the stepped portion and the flat portion. The slider is located on one side of the stepped portion and is slidably connected to the connector along the direction from the stepped portion to the flat portion. The drive body is connected to the slider and is used to drive the slider to slide. The transfer component includes a fixing body and a clamping body. The fixing bodies of the plurality of transfer components are equally spaced and detachably connected to the stepped portion and the flat portion, respectively. The clamping bodies of the plurality of transfer components are equally spaced and respectively connected to the sliding body. The clamping body is configured to move closer to the fixing body under the drive of the sliding body to clamp the product.

3. The mounting device as described in claim 2, characterized in that, The connecting body is provided with a mounting groove, the stepped portion and the flat portion are provided on one side of the groove opening, and the sliding body is slidably disposed in the mounting groove; The fixing body is provided with a through hole, which penetrates the fixing body along the direction from the stepped portion to the flat portion and communicates with the placement groove to form a receiving space, which is used to receive the clamping body.

4. The mounting device as described in claim 2, characterized in that, The fixing body includes: The support portion is detachably connected to the connector. A fixing part is connected to the support part, and in the direction from the stepped part to the flat part, the cross-sectional area of ​​the fixing part is smaller than the cross-sectional area of ​​the support part.

5. The mounting device as described in claim 2, characterized in that, The clamping body includes: The adjustment part is detachably connected to the sliding body; A clamping part is disposed opposite to the corresponding fixing body and detachably connected to the adjusting part. The clamping part is used to clamp the product to the fixing body.

6. The mounting device as described in claim 1, characterized in that, The separator includes: The divider is perpendicularly connected to the bottom of the storage slot; A guide body is inclined relative to and connected to the partition body, the guide body and the partition body forming a groove wall of the receiving groove, and the guide body is configured to guide the product into the receiving groove.

7. The mounting device as described in claim 1, characterized in that, The main body is provided with a clearance groove, which is located on the wall of the storage groove and communicates with the storage groove.

8. The mounting device as described in claim 1, characterized in that, The feeding assembly includes: A conveyor for conveying multiple of the products; A carrier component includes an assembly groove and multiple carrier bodies. The assembly groove extends through the carrier component along the conveying direction of the conveyor component. The conveyor component passes through the assembly groove. The multiple carrier bodies are evenly spaced on the groove wall along the direction perpendicular to the conveying direction of the conveyor component. The distance between two adjacent carrier bodies is equal to the distance between two adjacent transfer components. The carrier bodies are configured to carry the product. A lifting component is connected to the carrier component, and the lifting component is used to drive the carrier component to move up and down.

9. The mounting device as described in claim 8, characterized in that, The feeding assembly includes: A stop is mounted on the conveyor and located on one side of the carrier, the stop being configured to stop the product from moving to the carrier.

10. The mounting device as described in claim 1, characterized in that, The mounting equipment also includes: The unloading component is located on one side of the loading component. The unloading component is used to support the hanging basket and drive the hanging basket to move to a preset position.