Garment folding machine with carrier mechanism
Patent Information
- Application Number
- CN202521962159.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-12
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-09-12
AI Technical Summary
[0006]本实用新型的目的在于提供一种具有托载机构的服装折叠机,旨在解决现有技术中服装折叠机折叠板易损坏以及服装折叠后收纳不便的问题,通过对折叠板结构的改进和托载机构的设置,提高折叠板的强度和耐用性,同时方便服装折叠后的收纳整理,提升服装折叠机的整体性能和使用便利性
[0027]1.本实用新型提服装折叠机提高折叠板强度和耐用性:本实用新型的折叠板采用金属材质,并在其朝向台面的一面设置加强肋条和多条对称分布的加强筋,且加强肋条经过折叠板的重心点,这种结构设计大大增强了折叠板的整体强度和刚性,相较于现有技术中塑料材质的折叠板,显著提高了抗断裂能力,减少了折叠板损坏的频率,降低了设备的维修成本,延长了设备的使用寿命,保证了生产的连续性和稳定性。
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Figure CN224647339U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a garment folding machine, specifically a garment folding machine with a support mechanism. Background Technology
[0002] In the garment manufacturing industry, garment folding machines are essential equipment for folding garments. However, existing garment folding machines have several problems. On the one hand, their folding plates are usually made of plastic, a material with poor strength and durability. Under frequent use, they are prone to breakage and damage, which not only increases the maintenance cost and replacement frequency of the equipment but also affects production efficiency and can lead to production interruptions.
[0003] Traditional folding boards have a flat, non-perforated structure. When a traditional folding board is driven, because the board is flat and non-perforated, the surface of the board exerts a negative pressure on the garment the instant it leaves the board. This can cause the garment to become misaligned and uneven when folded.
[0004] On the other hand, after the clothing is folded, there is a lack of effective storage support structure, which makes the folded clothing easy to become scattered and not neatly stacked, which is not conducive to subsequent storage and transportation, and also increases the workload and difficulty of manual sorting.
[0005] Therefore, there is an urgent need to design a new type of garment folding machine to solve the problems existing in the above-mentioned technologies. Utility Model Content
[0006] The purpose of this utility model is to provide a garment folding machine with a support mechanism, which aims to solve the problems of easy damage to the folding plate and inconvenience in storing folded garments in the prior art. By improving the structure of the folding plate and setting the support mechanism, the strength and durability of the folding plate are improved, while facilitating the storage and organization of folded garments, thereby enhancing the overall performance and ease of use of the garment folding machine.
[0007] To solve the above technical problems, the present invention achieves this through the following solution: The present invention provides a garment folding machine with a support mechanism, comprising a frame, multiple folding plates rotatably connected to the upper platform of the frame, and multiple sets of power mechanisms disposed inside the frame. The multiple sets of power mechanisms are driven one-to-one with each folding plate. The surface of the folding plate is distributed with multiple mesh holes. The first direction formed by the arrangement of the mesh holes and the second direction formed by the arrangement of the mesh holes form a ruler structure that can detect whether the edge position of the garment is aligned.
[0008] The garment folding machine also includes a support mechanism located within the frame. This support mechanism is a non-powered support mechanism, which has a guide rod frame, a lifting and lowering load that is installed horizontally on one set of guide rods of the guide rod frame, and a gravity load that is connected to the lifting and lowering load via a pull rope and installed on another set of guide rods of the guide rod frame. The guide rod frame is equipped with a pulley system, and the pull rope is wound around the pulley system.
[0009] Furthermore, the region formed by the arrangement of multiple meshes includes a matrix column distribution area.
[0010] Furthermore, the folding plate has a reinforcing rib on the side facing the tabletop, and the reinforcing rib passes through the center of gravity of the folding plate.
[0011] Furthermore, the folding plate has multiple reinforcing ribs on the side facing the tabletop, and these reinforcing ribs are symmetrically arranged about the reinforcing ribs as an axis of symmetry.
[0012] Furthermore, the folding plate is made of metal.
[0013] Furthermore, the garment folding machine also includes a feeding plate, one end of which is rotatably connected to the table surface.
[0014] Furthermore, the feeding plate is provided with multiple garment edge calibration posts, which are arranged parallel to the rotation axis of the feeding plate.
[0015] Furthermore, the guide rod frame includes:
[0016] Support plate fixed inside the frame;
[0017] Two sets of symmetrical and vertical double-rod brackets are fixed at both ends of the support plate, and each set of double-rod brackets is equipped with a pulley system at its upper end.
[0018] Furthermore, the double-bar support assembly includes two guide rods spaced apart by a certain distance;
[0019] The pulley assembly includes a pulley bracket mounted and fixed to the upper end of the double-bar support assembly, and pulleys rotatably installed at both ends of the pulley bracket.
[0020] Furthermore, in the two sets of double-rod support groups, the two guide rods on different sides form one set of guide rods, and the other two guide rods on different sides form the other set of guide rods;
[0021] The lifting and lowering unit includes:
[0022] A lifting support plate that is movably sleeved on the set of guide rods, the lifting support plate being provided with a first rope receiving bracket for connecting the first end of the pull rope;
[0023] A garment support plate that is horizontally installed on the upper surface of the lifting support plate and located between two sets of double-rod brackets;
[0024] The gravity component includes:
[0025] Two counterweights are fitted one-to-one onto the other set of guide rods. A second rope receiving bracket is provided on the counterweight to connect the second end of the pull rope. One end of the pull rope is connected to the first rope receiving bracket, and the other end is connected to the second rope receiving bracket. The rope body is wound around two pulleys on the same set of pulleys.
[0026] Compared with the prior art, the beneficial effects of this utility model are:
[0027] 1. This utility model improves the strength and durability of the folding plate in a garment folding machine: The folding plate of this utility model is made of metal, and has reinforcing ribs and multiple symmetrically distributed reinforcing ribs on the side facing the table. The reinforcing ribs pass through the center of gravity of the folding plate. This structural design greatly enhances the overall strength and rigidity of the folding plate. Compared with the plastic folding plate in the prior art, it significantly improves the fracture resistance, reduces the frequency of folding plate damage, reduces equipment maintenance costs, extends the service life of the equipment, and ensures the continuity and stability of production.
[0028] 2. This utility model improves the garment folding machine by facilitating edge alignment detection: Multiple mesh holes distributed on the folding plate prevent negative pressure on the garment, allowing it to easily detach. The scale structure formed by the arrangement of these mesh holes in both the first and second directions allows operators to easily and visually check the alignment of garment edges, ensuring accuracy and neatness during folding. This improves the quality of garment folding and reduces rework and waste caused by inaccurate folding.
[0029] 3. This utility model of a garment folding machine facilitates the storage of folded garments: A non-powered support mechanism installed within the frame, through the cooperation of a lifting and gravity-operated section, can easily lift folded garments after they have been folded, facilitating subsequent storage and organization. This support mechanism requires no additional power source, utilizing the gravity of a counterweight to raise and lower the lifting section. It features a simple structure, low cost, and easy operation, thus improving the practicality and ease of use of the garment folding machine.
[0030] 4. The auxiliary garment feeding calibration of this utility model garment folding machine: multiple garment edge calibration columns are set on the feeding plate, parallel to the rotation axis of the feeding plate. During the garment feeding process, the garment edge can be calibrated to ensure that the garment is in the accurate position before folding, further improving the accuracy and quality of garment folding. Attached Figure Description
[0031] Figure 1 This is a perspective view of the garment folding machine of this utility model.
[0032] Figure 2 This is a first-view structural diagram of one of the folding plates of this utility model.
[0033] Figure 3 for Figure 2 Another structural view of the folding plate.
[0034] Figure 4 This is a structural diagram of the installation of the garment edge calibration column of this utility model.
[0035] Figure 5 This is a structural diagram of the support mechanism of this utility model.
[0036] The following are labeled in the attached diagram: Frame 1, Side Folding Plate 2, First-Level Folding Plate 3, Second-Level Folding Plate 4, Garment Edge Alignment Column 5, Feeding Plate 6, Non-Powered Support Mechanism 7, Mesh 21, Reinforcing Rib 22, Reinforcing Rib 23, Support Plate 71, Tension Spring 72, Counterweight 73, Second Rope Connector 74, Guide Rod 75, Pulley 77, Pulley Bracket 78, Garment Bearing Plate 79, Lifting Support Plate 710. Detailed Implementation
[0037] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments, so that the advantages and features of the present utility model can be more easily understood by those skilled in the art, thereby making a clearer and more definite definition of the protection scope of the present utility model. Obviously, the embodiments described in this utility model are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.
[0038] Furthermore, the technical features involved in the different embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.
[0039] Example 1: The specific structure of this utility model is as follows:
[0040] Please refer to the appendix. Figure 1-5This utility model discloses a garment folding machine with a support mechanism, comprising a frame 1, multiple folding plates rotatably connected to the upper platform of the frame 1 at one end, and multiple sets of power mechanisms disposed inside the frame 1. The multiple sets of power mechanisms are driven one-to-one with each folding plate. The folding plate is characterized in that the surface of the folding plate is distributed with multiple mesh holes 21, and the first direction formed by the arrangement of the mesh holes 21 and the second direction formed by the arrangement of the mesh holes form a ruler structure that can detect whether the edge position of the garment is aligned.
[0041] The region formed by the arrangement of multiple meshes 21 includes a matrix column distribution area. For example... Figure 2 As shown, mesh 21 is configured as an oval mesh structure. The matrix column distribution area occupies most of the total mesh. When the garment is ready to be folded, it needs to be laid out. The position of the mesh holes determines whether the left and right edges of the garment are aligned. For example, if there are three mesh holes on the left edge of the garment, then the right edge of the garment also needs to have three mesh holes. Thus, the matrix column distribution area can detect whether the garment is laid out neatly.
[0042] The folding plate has a reinforcing rib 22 on the side facing the tabletop, and the reinforcing rib 22 passes through the center of gravity of the folding plate.
[0043] The folding plate, on the side facing the tabletop, is further provided with multiple reinforcing ribs 23, which are symmetrically arranged about the reinforcing ribs 22 as an axis of symmetry. Figure 3 As shown, there are four reinforcing ribs 23, which are arranged at an angle. The reinforcing ribs 23 prevent the folded plate from deforming.
[0044] The folding plate is made of metal and includes two symmetrically arranged side folding plates 2, a primary folding plate 3 and a secondary folding plate 4 located between the two side folding plates 2.
[0045] The garment folding machine also includes a feeding plate 6, one end of which is rotatably connected to the table surface. The feeding plate 6, the first-stage folding plate 3, and the second-stage folding plate 4 are on the same straight line, with the second-stage folding plate 4 being closer to the feeding plate 6.
[0046] The feeding plate 6 is equipped with multiple garment edge calibration posts 5, which are arranged parallel to the rotation axis of the feeding plate 6. Because the edges of the garment need to be neatly aligned, the folded garment will be neat after folding. Figure 4 As shown, there are two garment edge calibration columns 5, which are used to calibrate whether the edges of the garment head are aligned.
[0047] Example 2:
[0048] like Figure 5As shown, the following is a detailed description of the support mechanism: The garment folding machine also includes a support mechanism disposed within the frame 1. This support mechanism is a non-powered support mechanism 7, which has a guide rod frame, a lifting and lowering load part that is installed horizontally on one set of guide rods of the guide rod frame and is capable of being raised and lowered, and a gravity part that is connected to the lifting and lowering load part by a pull rope and installed on another set of guide rods of the guide rod frame. The guide rod frame is equipped with a pulley system, and the pull rope is wound around the pulley system.
[0049] The guide rod frame includes:
[0050] The support plate 71 is fixed inside the frame 1;
[0051] Two sets of symmetrical and vertical double-rod brackets are fixed at both ends of the upper surface of the support plate 71, and each set of double-rod brackets is equipped with a pulley system at its upper end.
[0052] The double-rod support assembly includes two guide rods 75 spaced apart by a certain distance;
[0053] The pulley assembly includes a pulley bracket 78 mounted and fixed to the upper end of the double-bar support assembly, and pulleys 77 rotatably mounted at both ends of the pulley bracket 78.
[0054] In the two sets of double-rod support groups, the two guide rods on different sides form one set of guide rods, and the other two guide rods on different sides form the other set of guide rods.
[0055] The lifting and lowering unit includes:
[0056] A lifting support plate 710 is movably sleeved on the set of guide rods, and the lifting support plate 710 is provided with a first rope receiving bracket for connecting the first end of the pull rope.
[0057] A garment support plate 79 is horizontally installed on the upper surface of the lifting support plate 710 and located between two sets of double-rod support groups;
[0058] The gravity component includes:
[0059] Two counterweights 73 are fitted one-to-one onto the other set of guide rods. Each counterweight 73 is provided with a second rope receiving bracket 74 that connects to the second end of the pull rope. One end of the pull rope is connected to the first rope receiving bracket, and the other end is connected to the second rope receiving bracket 74. The rope body is wound around two pulleys 77 on the same set of pulleys.
[0060] Each counterweight 73 is equipped with a tension spring 72, one end of which is fixed to the support plate 71 and the other end is fixed to the second rope-connecting bracket 74.
[0061] like Figure 1As shown, the frame 1 is provided with a side opening, and the supporting mechanism is installed in the side opening. When the garment is folded, the folded garment is removed and placed into the garment support plate 79. Due to the weight of the garment, the garment will exert pressure on the support plate 79, thereby causing the garment support plate 79 to descend. The lifting support plate 710 follows the garment support plate 79 to descend. The pull rope connected to the lifting support plate 710 pulls the second rope connecting bracket 74 to rise, and the second rope connecting bracket 74 in turn drives the counterweight block 73 to rise a certain distance.
[0062] Clothing is continuously stacked on the clothing support plate 79, causing the clothing support plate 79 to continue to descend and the counterweight block 73 to continue to rise.
[0063] A pressure sensor is installed on the support mechanism. When a set value is reached, the processor connected to the pressure sensor activates an audible and visual alarm, prompting the operator to remove the garment from the garment support plate 79.
[0064] In summary, this utility model improves the strength and durability of the folding plate in a garment folding machine: the folding plate is made of metal, with reinforcing ribs and multiple symmetrically distributed reinforcing bars on the side facing the worktable. The reinforcing ribs pass through the center of gravity of the folding plate. This structural design greatly enhances the overall strength and rigidity of the folding plate. Compared to plastic folding plates in the prior art, it significantly improves fracture resistance, reduces the frequency of folding plate damage, lowers equipment maintenance costs, extends equipment lifespan, and ensures continuous and stable production.
[0065] This utility model improves the garment folding machine by facilitating edge alignment detection: multiple mesh holes distributed on the folding plate prevent the folding plate from exerting negative pressure on the garment, allowing it to easily detach. The scale structure formed by the arrangement of these mesh holes in both the first and second directions allows operators to visually inspect whether the garment edges are aligned, thus ensuring the accuracy and neatness of the folding, improving the quality of garment folding, and reducing rework and waste caused by inaccurate folding.
[0066] This utility model relates to a garment folding machine that facilitates the storage of folded garments. A non-powered support mechanism, installed within the frame, works in conjunction with a lifting and gravity-based component to easily lift folded garments after folding, making subsequent storage and organization easier. This support mechanism requires no additional power source; it utilizes the gravity of a counterweight to raise and lower the lifting component. Its simple structure, low cost, and easy operation enhance the practicality and convenience of the garment folding machine.
[0067] This utility model provides auxiliary garment feeding calibration for garment folding machines: multiple garment edge calibration posts are set on the feeding plate, parallel to the rotation axis of the feeding plate. During the garment feeding process, the garment edges can be calibrated to ensure that the garment is in the accurate position before folding, further improving the accuracy and quality of garment folding.
[0068] The above description is only a preferred embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural or procedural transformations made based on the contents of the present utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of the present utility model.
Claims
1. A clothes folding machine with a supporting mechanism, comprising a frame (1), a plurality of folding plates rotatably connected to an upper end surface of the frame (1) at one end, and a plurality of sets of power mechanisms arranged inside the frame (1), the plurality of sets of power mechanisms being one-to-one drivingly connected to the respective folding plates, characterized in that, The folding plate has multiple mesh holes (21) distributed on its surface. The first direction formed by the arrangement of the mesh holes (21) and the second direction formed by the arrangement of the mesh holes form a ruler structure that can detect whether the edge of the garment is aligned. The garment folding machine also includes a support mechanism located within the frame (1). This support mechanism is a non-powered support mechanism (7), which has a guide rod frame, a lifting and lowering load that is installed horizontally on one set of guide rods of the guide rod frame, and a gravity load that is connected to the lifting and lowering load via a pull rope and installed on another set of guide rods of the guide rod frame. The guide rod frame is equipped with a pulley system, and the pull rope is wound around the pulley system.
2. A garment folding machine with a supporting mechanism according to claim 1, characterized in that, The region formed by the arrangement of multiple meshes (21) includes a matrix column distribution area.
3. The garment folding machine with a supporting mechanism according to claim 1, characterized in that, The folding plate has a reinforcing rib (22) on the side facing the tabletop, and the reinforcing rib (22) passes through the center of gravity of the folding plate.
4. A garment folding machine with a supporting mechanism according to claim 3, characterized in that, The folding plate has multiple reinforcing ribs (23) on the side facing the table surface. The multiple reinforcing ribs (23) are symmetrically arranged with the reinforcing ribs (22) as the axis of symmetry.
5. The garment folding machine with a supporting mechanism according to claim 1, characterized in that, The folding plate is made of metal.
6. A garment folding machine with a holding mechanism according to any one of claims 1-5, characterized in that, The garment folding machine also includes a feeding plate (6), one end of which is rotatably connected to the table surface.
7. A garment folding machine with a carrier mechanism according to claim 6, wherein, The feeding plate (6) is provided with multiple garment edge calibration columns (5), which are arranged parallel to the rotation axis of the feeding plate (6).
8. The garment folding machine with a supporting mechanism according to claim 1, characterized in that, The guide rod frame includes: Support plate (71) fixed inside the frame (1); Two sets of symmetrical and vertical double-rod brackets are fixed at both ends of the upper surface of the support plate (71), and each set of double-rod brackets is equipped with the pulley group at the upper end.
9. A garment folding machine with a carrier mechanism according to claim 8, wherein, The double-bar support assembly includes two guide rods (75) spaced apart by a certain distance. The pulley assembly includes a pulley bracket (78) mounted and fixed to the upper end of the double-bar bracket assembly, and pulleys (77) rotatably mounted at both ends of the pulley bracket (78).
10. A garment folding machine with a carrier mechanism according to claim 9, wherein, In the two sets of double-rod support groups, the two guide rods on different sides form one set of guide rods, and the other two guide rods on different sides form the other set of guide rods. The lifting and lowering unit includes: A lifting support plate (710) is movably sleeved on the set of guide rods, and the lifting support plate (710) is provided with a first rope receiving bracket for connecting the first end of the pull rope. A garment support plate (79) is horizontally installed on the upper surface of the lifting support plate (710) and located between two sets of double-rod support groups. The gravity component includes: Two counterweights (73) are fitted one-to-one on the other set of guide rods. The counterweights (73) are provided with a second rope receiving bracket (74) that connects to the second end of the pull rope. One end of the pull rope is connected to the first rope receiving bracket, and the other end is connected to the second rope receiving bracket (74). The rope body is wound around two pulleys (77) on the same set of pulleys.