A garment carrier for a garment assembly line
Patent Information
- Application Number
- CN202521430522.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-09
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-07-09
AI Technical Summary
[0005]本实用新型的目的在于提供一种制衣流水线用衣物运载装置,解决了制衣流水线吊挂系统成本较高的问题,通过阻挡部将成排的衣架存储装载于倾斜的导轨上,并通过抬升机构依次对衣架进行单件分拣,以提升导轨上的衣架的存储量,并利用同一抬升机构对衣架进行依次地单件分拣,从而降低成本
本申请实施例中,相邻的衣架通过架体相贴靠,相邻挂钩相互间隔,相比于现有技术中衣架本体之间具有间隔而言,能够消除相邻衣物的间隔,使衣物的排列更为紧密,有效提升场地空间的利用率,从而降低场地成本;导轨上排列的一排衣架在自身重力作用下具有沿着倾斜导轨从后往前下移的趋势,所以抬升机构每完成一次单件分拣,整排衣架整体向前移动一个衣架位,使得抬升部对应的区域每次都会有新的排第一个的衣架自动到位,对于抬升机构而言实现了自动上料,只需要设置一个抬升机构,即可对全部的衣架进行依次的单件分拣,有效降低成本。
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Figure CN224645874U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of garment production line technology, specifically to a garment transport device for a garment production line. Background Technology
[0002] In current garment manufacturing production lines, semi-finished and finished garments are typically stored and transported using a hanging system. Specifically, garments are hung on hangers, which are then suspended from the hanging system. The hangers are stored within the system, which in turn transports the hangers, thus enabling the storage and transport of garments. This improves space utilization and automation, while reducing both space and labor costs.
[0003] As disclosed in patent CN219729405U, a hanger hanging system includes a guide rail, a conveyor belt, dragging components, and hangers. The hanger's upper end is equipped with rollers, which are mounted on the guide rail. Multiple dragging components are fixed to the conveyor belt. The rollers of the multiple hangers are arranged along the guide rail, allowing the hangers to be hung in rows, thus achieving row-by-row hanging storage of clothing. When clothing needs to be sent one by one to the next stage for further processing or shipment (i.e., single-item sorting), the conveyor belt drives the dragging components forward along the guide rail. When a dragging component moves to the first roller in the row, its hook rotates downwards to hook the roller's axle, thereby moving the roller. The first roller following that roller is then driven by the next dragging component, achieving sequential single-item sorting.
[0004] However, in this existing technology, the hangers are suspended on the guide rail by rollers. On the one hand, the rollers have a certain diameter. Even if multiple rollers are arranged closely together in sequence to achieve the tightest arrangement with no gaps between adjacent rollers, the diameter of the rollers still occupies too much of the length of the guide rail, resulting in a large distance between adjacent hanger bodies. This reduces the storage capacity of hangers on the guide rail and lowers the space utilization rate. On the other hand, each roller needs to be driven by a corresponding dragging component to achieve single-item sorting. Although the conveyor belt can make multiple dragging components circle around for cyclic use, multiple dragging components still need to be fixed on the conveyor belt, which is costly. Utility Model Content
[0005] The purpose of this invention is to provide a garment transport device for a garment production line, which solves the problem of high cost of garment production line hanging systems. The device stores and loads rows of hangers onto an inclined guide rail through a blocking part, and then sorts the hangers one by one through a lifting mechanism to increase the storage capacity of the hangers on the guide rail. The device also uses the same lifting mechanism to sort the hangers one by one in sequence, thereby reducing costs.
[0006] To achieve the above objectives, the present invention adopts the following technical solution: a garment transport device for a garment production line, characterized in that it comprises: a garment hanger, including a frame and a hook; a guide rail, which is inclined in a front-low, back-high configuration for hanging the hook and for moving the garment hanger downward along the inclined extension direction of the guide rail; a blocking part, which protrudes entirely or partially from the upper side of the guide rail to block the hook; and a lifting mechanism, including a driving part and a lifting part, wherein the lifting part at least partially corresponds to the side of the blocking part facing the hook, and the driving part is used to drive the lifting part to move upward to push the hook upward to pass over the blocking part.
[0007] In one embodiment, the height of the blocking portion protruding above the guide rail is greater than the vertical width of the hook.
[0008] In one embodiment, the upper side of the blocking portion is inclined at the front and at the back to avoid the hook that passes over the blocking portion.
[0009] In one embodiment, the upper side of the lifting part is a lifting surface, which is inclined in a way that is lower in the front and higher in the back.
[0010] In one embodiment, the lifting portion protrudes entirely or partially from the rear side of the blocking portion, and the protrusion distance does not exceed the width of the hook in the front-back direction, so that the lifting portion lifts only one hook each time it moves upward.
[0011] In one embodiment, the upward movement of the highest point of the lifting part is: from below the upper side of the guide rail to above the highest point of the blocking part.
[0012] In one embodiment, the guide rail is provided with a main through groove that runs vertically through the rail, and the main through groove corresponds to the lifting part so that the lifting part can move vertically within the main through groove.
[0013] In one embodiment, the blocking part includes two left and right blocking plates disposed in the main through groove, the two blocking plates being spaced apart to form a secondary through groove, and the lifting part being disposed corresponding to the secondary through groove.
[0014] In one embodiment, a guide portion is further provided above the blocking portion, the guide portion having a forward-facing vertical stop surface, the front-to-back distance between the vertical stop surface and the blocking portion being greater than the front-to-back width of the hook.
[0015] In one embodiment, a base plate fixed to the side of the guide rail is also included. The lifting mechanism and the guide portion are detachably mounted on the base plate so that the distance between the lifting mechanism, the guide portion and the blocking portion can be adjusted to accommodate hooks of different widths.
[0016] The advantages of this application compared to the prior art are: In this embodiment, adjacent hangers are abutted by the frame body, and adjacent hooks are spaced apart. Compared with the prior art where there are gaps between the hanger bodies, this eliminates the gaps between adjacent clothes, making the clothes more compact and effectively improving the utilization of space, thereby reducing space costs. A row of hangers arranged on the guide rail tends to move downwards from back to front under its own gravity. Therefore, each time the lifting mechanism completes a single-item sorting, the entire row of hangers moves forward by one hanger position, so that the area corresponding to the lifting part will always have a new first hanger in place automatically. For the lifting mechanism, automatic feeding is achieved. Only one lifting mechanism is needed to sort all the hangers one by one in sequence, effectively reducing costs. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a three-dimensional structural diagram of a garment transport device for a garment production line according to an embodiment of this application; Figure 2 This is a schematic diagram of the lifting mechanism raising the first hook to above the highest point of the blocking part in an embodiment of this application; Figure 3 for Figure 2 A magnified view of a section at point A in the middle; Figure 4 This is a schematic diagram illustrating how the lifting mechanism completes one sorting of a single garment hanger in an embodiment of this application. Figure 5 for Figure 1 Side view; Figure 6 This is a schematic diagram showing the driving part of the lifting mechanism disposed on the substrate in an embodiment of this application; Figure 7 This is a cross-sectional view of the main through groove of the guide rail in an embodiment of this application; Figure 8 This is a three-dimensional structural diagram of the lifting mechanism in the embodiments of this application. Detailed Implementation
[0019] The terms “first,” “second,” “third,” etc., are used only for distinguishing descriptions and do not indicate a sequence number, nor should they be interpreted as indicating or implying relative importance.
[0020] Furthermore, terms such as "horizontal," "vertical," and "sag" do not imply that components must be absolutely horizontal or suspended, but rather that they can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal relative to "vertical," and does not mean that the structure must be completely horizontal, but can be slightly tilted.
[0021] In the description of this application, it should be noted that the terms "inner", "outer", "left", "right", "upper", "lower", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product of this application is in use. They 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. Therefore, they should not be construed as limitations on this application.
[0022] In the description of this application, unless otherwise expressly specified and limited, the terms “set up,” “install,” “connect,” and “link” shall be interpreted broadly, for example, as a fixed connection, a detachable connection, or an integral connection; as a mechanical connection or an electrical connection; as a direct connection or an indirect connection through an intermediate medium; or as a connection within two components.
[0023] The technical solution of this application will now be clearly and completely described with reference to the accompanying drawings.
[0024] Please refer to Figure 1 The diagram shows a three-dimensional structural schematic of a garment transport device for a garment production line according to an embodiment of this application.
[0025] like Figure 1 As shown, this application embodiment provides a garment transport device for a garment production line, including: a garment hanger 100, including a frame 120 and a hook 110; a guide rail 200, which is inclined in a front-low and rear-high configuration, for hanging the hook 110 and for moving the garment hanger 100 downward along the inclined extension direction of the guide rail 200; a blocking part 300, which protrudes entirely or partially from the upper side of the guide rail 200 to block the hook 110; and a lifting mechanism 400, including a driving part 420 and a lifting part 410, wherein the lifting part 410 at least partially corresponds to the side of the blocking part 300 facing the hook 110, and the driving part 420 is used to drive the lifting part 410 upward to push the hook 110 upward to pass over the blocking part 300.
[0026] In this embodiment, the frame 120 of the hanger 100 is used to hang clothes (semi-finished or finished clothes), and the hook 110 of the hanger 100 is used to hang on the guide rail 200 (without a fixed connection). The guide rail 200 is inclined in the front and high in the back, so that the hook 110 hanging on the guide rail 200 moves downward along the inclined extension direction of the guide rail 200 under the action of gravity. The blocking part 300 protrudes all or part of the upper side of the guide rail 200, so the blocking part 300 can block the hook 110 and prevent the hook 110 from moving downward. Under the blocking action of the blocking part 300, all the hooks 110 hanging on the guide rail 200 are arranged sequentially from front to back along the inclined extension direction of the guide rail 200. The blocking part 300 directly blocks the first hook 110 with the lowest height and the frontmost position, that is, it blocks the first hanger 100. The second hanger 100 from the front rests on the first hanger 100 and is blocked by the first hanger 100. The third hanger 100 is blocked by the second hanger 100, and so on. All the subsequent hangers 100 are arranged sequentially to realize the loading and storage of hangers 100 on the guide rail 200.
[0027] In this embodiment, adjacent hangers 100 are placed close together, allowing the shorter hanger 100 to block the taller hanger 100. Specifically, adjacent hangers 100 can be placed close together via hooks 110 or via frame 120, depending on the width relationship between the hooks 110 and frame 120 in the front-to-back direction. If the front-to-back width of the hooks 110 is greater than that of the frame 120, then adjacent hangers 100 are placed close together via hooks 110; if the front-to-back width of the hooks 110 is less than that of the frame 120, then adjacent hangers 100 are placed close together via frame 120. In existing technology, the hanger 100 is not suspended from the guide rail 200 by the hook 110, but by rollers. The rollers have a certain diameter, making their radial width greater than the front-to-back width of the hanger 100 body. When the hangers 100 are closely arranged on the guide rail 200, adjacent hangers 100 are pressed together by the rollers, while there is a gap between adjacent hanger bodies, resulting in low space utilization. In this embodiment, the hanger 100 is suspended from the guide rail 200 by the hook 110, such as... Figure 1 As shown, the front and back width of the hook 110 is significantly smaller than the front and back width of the frame 120. Thus, adjacent hangers 100 are close together through the frame 120, and adjacent hooks 110 are spaced apart from each other. Compared with the prior art where there is a gap between the hanger 100 bodies, this can eliminate the gap between adjacent clothes, making the clothes more compact, effectively improving the utilization rate of the space, and thus reducing the space cost.
[0028] The garment transport device for a garment production line provided in this application embodiment also has a sorting and transfer function to meet the need to send garments one by one to the next stage for subsequent processing or shipment (i.e., single-piece sorting).
[0029] For details, please refer to Figure 2 , Figure 3 , Figure 4 In this embodiment, the lifting mechanism 400 includes a driving unit 420 and a lifting unit 410. The lifting unit 410 at least partially corresponds to the side of the blocking unit 300 facing the hook 110. Because the blocking unit 300 blocks the first hook 110 at the front by facing the hook 110, the lifting unit 410 at least partially corresponds to the first hook 110. When single-item sorting is required, the driving unit 420 drives the lifting unit 410 to move upward, pushing the corresponding first hook 110 upward, so that the first hook 110 passes over the blocking unit 300. The hanger 100 corresponding to the first hook 110 is no longer blocked by the blocking unit 300, that is, it leaves the storage and loading area on the guide rail 200, realizing the single-item sorting of the first hanger 100, so that the first hanger 100 enters the subsequent processing stage or is shipped out.
[0030] In the storage loading area of the guide rail 200, which is blocked by the blocking part 300, after the first hanger 100 at the front is sorted out piece by piece, the remaining hangers 100 after it are all moved forward by one hanger 100 position (that is, the original second hanger 100 becomes the new first hanger 100, the original third hanger 100 becomes the new second hanger 100, and so on). The lifting mechanism 400 sorts out the first hanger 100 at the front of the storage loading area of the guide rail 200 piece by piece each time, thereby sorting out the hangers 100 hanging on the guide rail 200 piece by piece, realizing the assembly line-style single-piece transfer of clothing, so as to facilitate the subsequent processing or shipment of clothing.
[0031] In this embodiment, a row of hangers 100 arranged on the guide rail 200 tends to move downwards from back to front along the inclined guide rail 200 under its own gravity. Therefore, each time the lifting mechanism 400 completes a single-item sorting, the entire row of hangers 100 moves forward by one hanger 100 position, so that the area corresponding to the lifting part 410 will always have a new first hanger 100 in place automatically. For the lifting mechanism 400, automatic feeding is achieved. Only one lifting mechanism 400 is needed to sort all the hangers 100 one by one in sequence, effectively reducing costs. Furthermore, since the hanger 100 in this embodiment is suspended from the guide rail 200 by the hook 110, and is not a roller hanger 100 specifically designed for hanging systems in the prior art, the hanger 100 in this embodiment is a general-purpose hanger 100. When leaving the factory, the clothes can be directly sent to the next processing stage along with the hanger 100 or directly shipped out without the need to replace the hanger 100, which further reduces production costs.
[0032] Please refer to Figure 1 Preferably, the height of the blocking part 300 protruding above the guide rail 200 is greater than the vertical width of the hook 110. In this embodiment, the blocking part 300 protrudes fully or partially above the guide rail 200 to block the hook 110 of the hanger 100. If the height of the blocking part 300 protruding above the guide rail 200 is less than the vertical width of the hook 110, the hook 110 is only partially blocked. The first hanger 100 at the front is then subjected to the squeezing force of the hangers 100 behind it. If the squeezing force is too great, or if the guide rail 200 or the hanger 100 shakes, the hook 110 may directly pass over the blocking part 300, resulting in the blocking effect of the blocking part 300 on the hook 110 being unreliable. In this embodiment, the height of the blocking part 300 protruding above the guide rail 200 is greater than the vertical width of the hook 110. This ensures that the hook 110 is fully blocked by the blocking part 300. Even if the first hanger 100 at the front is subjected to greater squeezing force from the hangers 100 behind it, or if the guide rail 200 or the hanger 100 shakes, the blocking part 300 can still effectively block the hook 110.
[0033] Please refer to Figure 3Preferably, the upper side of the blocking part 300 is inclined at the front and higher at the back to avoid the hook 110 passing over the blocking part 300. In this embodiment, the lifting mechanism 400 performs single-item sorting of the hanger 100. Specifically, the lifting part 410 pushes the hook 110 upward, making the hook 110 higher than the highest point of the blocking part 300. This removes the obstruction of the blocking part 300 from the lifted hook 110, allowing the hanger 100 corresponding to the hook 110 to continue moving downward under its own weight, passing over the blocking part 300, thus achieving single-item sorting. In this embodiment, the upper side of the blocking part 300 is inclined with a lower front and a higher rear. Therefore, the rear end of the upper side of the blocking part 300 is the highest point, which is also the highest point on the side that blocks the hook 110. In this embodiment, as long as the hook 110 is raised above the highest point of the blocking part 300, it can continue to move down. The upper side of the blocking part 300 is set with a lower front and a higher rear to avoid the hook 110 from moving down and prevent the upper side of the blocking part 300 from obstructing the movement of the hook 110.
[0034] Please refer to Figure 3 Preferably, the upper side of the lifting part 410 is a lifting surface 411, which is inclined in a way that is lower in the front and higher in the back. In this embodiment, the upper side of the lifting part 410 is the lifting surface 411. The lifting part 410 pushes the hook 110 upward through the lifting surface 411, that is, the lifting surface 411 is in direct contact with the hook 110. During the process of the lifting surface 411 pushing the hook 110 upward, the hook 110 is still blocked by the blocking part 300 until it moves upward beyond the highest point of the blocking part 300, at which point it will lose the obstruction of the blocking part 300. In this embodiment, the lifting surface 411 is inclined in the shape of being lower in the front and higher in the back. In this way, when the lifting surface 411 supports the hook 110, the hook 110 always has the tendency to move forward and downward along the lifting surface 411, and will not have the tendency to move backward. Therefore, when the lifting surface 411 raises the hook 110 to a position beyond the highest point of the blocking part 300, the hook 110 will immediately continue to move forward along the lifting surface 411, which not only prevents the hook 110 from moving back behind the blocking part 300, but also improves the single-item sorting efficiency.
[0035] In this embodiment, the front-to-back width of the hook 110 does not exceed the front-to-back width of the rack 120. Adjacent hooks 110 are spaced apart, and adjacent hangers 100 are tightly abutted by the rack 120, thereby bringing adjacent garments closer together and improving space utilization. Adjacent hooks 110 will only abut against each other when the front-to-back width of the hook 110 is the same as the front-to-back width of the rack 120. Figure 1 The illustration shows a situation where the front-to-back width of hook 110 is smaller than the front-to-back width of frame 120, which is a common occurrence. In this case, adjacent hooks 110 are spaced apart. However, to account for the scenario where the front-to-back width of hook 110 is the same as the front-to-back width of frame 120, please refer to... Figure 3 Preferably, the lifting part 410 protrudes entirely or partially from the rear side of the blocking part 300, and the protrusion distance does not exceed the width of the hook 110 in the front-to-back direction, so that the lifting part 410 lifts only one hook 110 each time it moves upward. In this way, the portion of the lifting part 410 protruding from the rear side of the blocking part 300 can only act on the first hook 110 at the front, avoiding the lifting action of the lifting part 410 being applied to the second hook 110, thereby ensuring the effectiveness of single-item sorting.
[0036] Preferably, the upward movement of the highest point of the lifting part 410 is as follows: from below the upper side of the guide rail 200 to above the highest point of the blocking part 300. Thus, when the highest point of the lifting part 410 is at its lowest position (initial position), it is below the upper side of the guide rail 200 and will not obstruct the hook 110 from entering the area above it, enabling the subsequent hook 110 to automatically reach its designated position. The next time the lifting part 410 is lifted, it can push the hook 110 above it upwards, improving the efficiency of single-item sorting. When the highest point of the lifting part 410 rises to its highest position (lifting endpoint position), it is above the highest point of the blocking part 300, ensuring that the lifted hook 110 can pass over the blocking part 300.
[0037] In this embodiment, when the hook 110 is suspended on the guide rail 200, the middle part of the hook 110 corresponds to the middle part of the guide rail 200. Although in some embodiments, the lifting part 410 can be located on the left and right sides of the guide rail 200, in this case, the lifting part 410 does not act on the middle part of the hook 110, but on the two sides of the hook 110, thus making the hook 110 unstable when lifted. Therefore, please refer to... Figure 7 Preferably, the guide rail 200 is provided with a vertically penetrating main channel 210, which corresponds to the lifting part 410, allowing the lifting part 410 to move vertically within the main channel 210. This ensures that the lifting part 410 corresponds to the inside of the guide rail 200, rather than the outside, and that the lifting part 410 is close to or directly corresponds to the middle of the hook 110, improving the stability of the hook 110 during lifting. In a specific implementation, the main channel 210 can be directly located in the middle of the guide rail 200 in the left-right direction, so that the lifting part 410 directly corresponds to the middle part of the hook 110.
[0038] In this embodiment, the portion of the blocking part 300 protruding from the upper side of the guide rail 200 is positioned similarly to the lifting part 410. It can be located on either side of the guide rail 200 or directly above it. When located directly above the guide rail 200, it blocks the middle portion of the hook 110, providing a better blocking effect and preventing the hook 110 from tilting. Furthermore, the blocking part 300 can be entirely protruding from the upper side of the guide rail 200 or only partially protruding from it.
[0039] Furthermore, a main through groove 210 is provided on the guide rail 200, and the lifting part 410 is provided corresponding to the main through groove 210. Based on this embodiment, a further improvement is made: preferably, the blocking part 300 includes two left and right blocking plates 310 disposed within the main through groove 210. The two blocking plates 310 are spaced apart to form a secondary through groove 320, and the lifting part 410 is provided corresponding to the secondary through groove 320. The two blocking plates 310 are spaced apart and jointly block the hook 110, providing two-point support for the hook 110. Compared to single-point support, this avoids the hook 110 from tilting and ensures the positional stability of the hook 110. In this embodiment, the two blocking plates 310 correspond to the two sides of the middle portion of the hook 110, and the lifting part 410 is provided corresponding to the secondary through groove 320 between the two blocking plates 310, so that the lifting part 410 corresponds to the middle portion of the hook 110.
[0040] Please refer to Figure 5 , Figure 7 Preferably, the garment transport device further includes a guide portion 500 disposed above the blocking portion 300. The guide portion 500 has a forward-facing vertical stop surface 510, and the front-to-back distance between the vertical stop surface 510 and the blocking portion 300 is greater than the front-to-back width of the hook 110. In this embodiment, when the lifting portion 410 raises the hook 110 to a position higher than the highest point of the blocking portion 300, the vertical stop surface 510 of the guide portion 500 blocks the hook 110 from the rear, preventing the hook 110 from moving backward and ensuring that the hook 110 moves forward, thus ensuring smooth single-item sorting of the hanger 100. In this embodiment, the guide portion 500 further includes a horizontal stop surface 520 facing the hook 110. The horizontal stop surface 520 and the vertical stop surface 510 form a right-angle structure. When the lifting portion 410 raises the hook 110 to a position higher than the highest point of the blocking portion 300, the horizontal stop surface 520 of the guide portion 500 blocks the hook 110 from top to bottom, preventing the hook 110 from passing over the vertical stop surface 510 and regressing when encountering shaking, thus further ensuring that the hook 110 moves forward.
[0041] Please refer to Figure 6Preferably, the clothing transport device further includes a base plate 600 fixed to the side of the guide rail 200. The lifting mechanism 400 and the guide portion 500 are detachably mounted on the base plate 600, so that the distances between the lifting mechanism 400, the guide portion 500, and the blocking portion 300 are all adjustable to accommodate hooks 110 of different widths. Please refer to... Figure 8 The lifting mechanism 400's drive unit 420 is bolted to the base plate 600. The drive unit 420 is a cylinder. When the width of the hook 110 on the guide rail 200 changes, the bolts can be removed and installed to adjust the mounting position of the drive unit 420 on the base plate 600, allowing the lifting unit 410 to operate at a lower or higher position to accommodate hooks 110 of different widths. The guide unit 500 is also bolted to the base plate 600. When facing hooks 110 of different widths, the mounting position of the guide unit 500 on the base plate 600 can be adjusted, thereby adjusting the distance between the guide unit 500 and the blocking part 300, as well as the distance between the guide unit 500 and the guide rail 200, to accommodate hooks 110 of different widths.
[0042] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in this utility model, and these modifications or substitutions should all be covered within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.
Claims
1. A garment carrier for use in a garment manufacturing line, characterized by, include: Clothes hanger, including frame and hooks; The guide rail is inclined at the front and upward at the back, for hanging the hook and for moving the clothes hanger downward along the inclined extension direction of the guide rail; A blocking part, which protrudes entirely or partially from the upper side of the guide rail, to block the hook; The lifting mechanism includes a drive unit and a lifting unit, wherein the lifting unit is at least partially opposite to the side of the blocking part facing the hook, and the drive unit is used to drive the lifting unit to move upward so as to push the hook upward to move over the blocking part.
2. The garment transport device for a garment production line according to claim 1, characterized in that, The height of the blocking part protruding from the upper side of the guide rail is greater than the vertical width of the hook.
3. The garment transport device for a garment production line according to claim 1, characterized in that, The upper side of the blocking part is inclined at the front and at the back to avoid the hook that passes through the blocking part.
4. The garment transport device for a garment production line according to claim 1, characterized in that, The upper side of the lifting part is the lifting surface, which is inclined in a way that is lower in the front and higher in the back.
5. A garment transport device for a garment production line according to claim 1, characterized in that, The lifting part protrudes entirely or partially from the rear side of the blocking part, and the protrusion distance does not exceed the width of the hook in the front-back direction, so that the lifting part only lifts one hook each time it moves upward.
6. A garment transport device for a garment production line according to claim 1, characterized in that, The upward movement of the highest point of the lifting part is: from below the upper side of the guide rail to above the highest point of the blocking part.
7. A garment transport device for a garment production line according to claim 1, characterized in that, The guide rail is provided with a main through groove that runs vertically through the rail. The main through groove corresponds to the lifting part, so that the lifting part can move up and down within the main through groove.
8. A garment transport device for a garment production line according to claim 7, characterized in that, The blocking part includes two left and right blocking plates disposed in the main through groove. The two blocking plates are spaced apart to form a secondary through groove, and the lifting part is disposed corresponding to the secondary through groove.
9. A garment transport device for a garment production line according to claim 1, characterized in that, It also includes a guide portion disposed above the blocking portion, the guide portion having a forward-facing vertical stop surface, the front-to-back distance between the vertical stop surface and the blocking portion being greater than the front-to-back width of the hook.
10. A garment transport device for a garment production line according to claim 9, characterized in that, It also includes a base plate fixed to the side of the guide rail. The lifting mechanism and the guide part are detachably mounted on the base plate so that the distance between the lifting mechanism, the guide part and the blocking part can be adjusted to accommodate hooks of different widths.
Citation Information
Patent Citations
Clothes hanger dragging device
CN219729405U