Garment packaging machine
By designing a double-layer garment packaging machine, the problems of excessively long production lines and poor compatibility of existing garment packaging machines have been solved, realizing an efficient and flexible garment packaging process that can meet the needs of garments of different sizes.
Patent Information
- Application Number
- CN202423137236.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-18
AI Technical Summary
Existing garment packaging machines have excessively long production lines and poor compatibility, resulting in low packaging efficiency and an inability to meet the needs of mixed production of garments of different specifications.
Design a double-layer garment packaging machine, including a first worktable and a second worktable. The top of the first worktable is provided with a cavity and a through hole. The straightening mechanism, the feeding component and the packaging mechanism are distributed at different levels. The machine adapts to different sizes of garments through the adjustment plate and sensors, so as to achieve a fast and flat packaging process.
It shortens the length of the garment packaging production line, improves packaging efficiency and compatibility, ensures flat packaging of garments of different sizes, and reduces the production cost and maintenance difficulty of the equipment.
Smart Images

Figure CN223605940U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to clothing production technical field, especially a clothing packaging machine. BACKGROUND
[0002] Clothing needs to go through a series of processing procedures before entering the market, and the packaging of clothing is one of the key parts, which can effectively prevent the clothing from being polluted by dust, oil stains and the like after packaging. The basic process of clothing packaging is to put the clothing into a packaging bag after standardizing folding.
[0003] At present, in the packaging market, the packaging machine is generally single-layer flow, that is, from manual feeding to clothing packaging and discharging, the length of the whole production line is relatively long, resulting in low clothing packaging efficiency. In addition, the future production line tends to be mixed production, that is, to produce different specifications of clothing. However, the existing packaging machine cannot adapt to more specifications of clothing, and the compatibility is poor. UTILITY MODEL CONTENT
[0004] The utility model discloses a clothing packaging machine, which aims to solve the technical problem of low packaging efficiency caused by the long single-layer clothing packaging production line and poor compatibility in the prior art.
[0005] To achieve the above-mentioned purpose, the utility model provides a clothing packaging machine, which comprises:
[0006] The rack comprises a first workbench and a second workbench, the first workbench is internally provided with a cavity, the top of the first workbench is provided with a first through hole communicating with the cavity, the middle of the side wall of the first workbench is provided with a second through hole communicating with the cavity, the second workbench is extended and arranged on one side of the first workbench corresponding to the second through hole, and the top of the second workbench is opposite to the second through hole.
[0007] The sizing mechanism is arranged on the top of the first workbench to size the clothing.
[0008] The feeding assembly is arranged in the first through hole to feed the sized clothing into the cavity.
[0009] The packaging mechanism comprises a bearing conveying assembly, a bagging assembly and a sealing assembly, the bearing conveying assembly and the bagging assembly are arranged in the cavity, and the sealing assembly is arranged on the top of the second workbench.
[0010] In some embodiments, the shaping mechanism comprises a folding assembly and a folding assembly, which are arranged in sequence on the top of the first workbench.
[0011] In some embodiments, the folding assembly comprises two groups of symmetrically arranged first flaps and a first adjusting module connected to the two groups of first flaps, and any group of the first flaps is connected with a first driving module for driving the first flaps to rotate on the side facing the cavity, and the first adjusting module comprises a first adjusting member connected to the two groups of first flaps and a first operating member connected to the first adjusting member.
[0012] Wherein, the folding assembly and the blanking assembly are located between the two groups of first flaps.
[0013] In some embodiments, the folding assembly comprises a first folding module and a second folding module, the first folding module comprises a second flap, the second flap is connected with a second driving module for driving the second flap to fold towards the second folding module on the side facing the cavity, and the second folding module comprises a third flap, the third flap is connected with a third driving module for driving the third flap to fold towards the blanking assembly on the side facing the cavity.
[0014] Wherein, the second flap is connected with a second adjusting module on the side facing the cavity, and the second adjusting module comprises a second adjusting member and a second operating member connected to the second adjusting member.
[0015] In some embodiments, the blanking assembly comprises two groups of fourth flaps arranged at intervals, and any group of the fourth flaps is connected with a fourth driving module for driving the fourth flaps to rotate towards the cavity.
[0016] In some embodiments, the bearing conveying assembly comprises a sliding frame and a guide rail connected to the sliding frame, the middle of the sliding frame is connected with a clamping plate and a bearing plate, and the two ends of the sliding frame close to the guide rail are connected with connecting rods, and the connecting rods are connected with conveying driving members for driving the sliding frame to move along the guide rail.
[0017] Wherein, the clamping plate comprises symmetrically arranged first and second clamping portions, and the bearing plate is located between the first and second clamping portions, the sliding frame is connected with a third adjusting module for driving the first clamping portion to move horizontally at one end close to the bearing plate, and the sliding frame is connected with a fourth adjusting module for driving the bearing plate to move vertically on the side away from the bearing plate.
[0018] In some embodiments, the bagging module comprises two sets of symmetrically arranged bag supporting plates, a blowing plate for inflating the packaging bag is arranged between the two sets of bag supporting plates, the blowing plate is provided with a plurality of blowing holes, and any one set of bag supporting plates is connected with a first bagging driving member for driving the bag supporting plate to abut against the inner side of the packaging bag on the side opposite to the blowing plate.
[0019] In some embodiments, the bagging assembly comprises a fifth adjusting module, the fifth adjusting module comprises a third adjusting member and a third operating member connected with the third adjusting member, and two ends of the third adjusting member are respectively connected with the two sets of bag supporting plates.
[0020] In some embodiments, the sealing assembly comprises a first support frame connected with a first conveying belt, a gantry frame spanning the first conveying belt is connected to the first support frame, a first pressing block and a clamping jaw and a second pressing block are connected to one end of the gantry frame opposite to the first conveying belt, a second sensor is arranged between the first pressing block and the clamping jaw, a first sealing driving member for driving the first pressing block to move vertically, a second sealing driving member for driving the clamping jaw to move vertically, a third sealing driving member for driving the clamping jaw to move horizontally, and a fourth sealing driving member for driving the second pressing block to move vertically are arranged on the top of the gantry frame, and a belt motor and a fifth sealing driving member are arranged on the bottom of the first support frame.
[0021] In some embodiments, the gantry frame is spaced apart from the second through hole and is provided with a U-shaped support spanning the first conveying belt, the U-shaped support is connected with a third sensor, the first support frame is spaced apart from the second through hole and is provided with a second support frame, the second support frame is connected with a second conveying belt, and a fifth turning plate is arranged between the first support frame and the second support frame, the bottom of the fifth turning plate is connected with a fifth driving module for driving the fifth turning plate to rotate towards the first support frame.
[0022] The utility model discloses a clothing packaging machine through being provided with first workbench and second workbench, and the cavity of first workbench is communicated at the top of second workbench, forms double -deck packaging production line, can shorten production line, promotes the packing efficiency. The regular mechanism, blanking assembly are located at the top of first workbench, and the folding clothing is convenient. The packaging mechanism is located in the cavity and second workbench, and works in parallel with first workbench, and the structure is compact, so that the clothing packaging machine of the utility model is convenient for installation and dismounting maintenance. The bag supply module is provided with the first adjusting plate and the second adjusting plate of movable connection, when responding to different specifications of clothing, can change position flexibly to adjust the size of bag supply module, to adapt to the specification of packaging bag and clothing, ensure that clothing can be flatly packed, improve the compatibility and product yield of clothing packaging machine. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is whole structure schematic diagram in the utility model clothing packaging machine an embodiment;
[0024] Figure 2 It is structure schematic diagram of folding subassembly in the utility model clothing packaging machine an embodiment;
[0025] Figure 3 It is structure schematic diagram of first folding module group in the utility model clothing packaging machine an embodiment;
[0026] Figure 4 It is structure schematic diagram of second folding module group in the utility model clothing packaging machine an embodiment;
[0027] Figure 5 It is structure schematic diagram of blanking assembly in the utility model clothing packaging machine an embodiment;
[0028] Figure 6 It is structure schematic diagram of bearing conveying assembly in the utility model clothing packaging machine an embodiment;
[0029] Figure 7 It is structure schematic diagram of bagging module group in the utility model clothing packaging machine an embodiment;
[0030] Figure 8 It is structure schematic diagram of bag supply module in the utility model clothing packaging machine an embodiment;
[0031] Figure 9 It is structure schematic diagram of sealing assembly in the utility model clothing packaging machine an embodiment.
[0032] Marked explanation in the drawing:
[0033]
[0034] DETAILED DESCRIPTION
[0035] The scheme in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0036] It should be noted that all the directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between the components in a certain specific posture (as shown in the drawings), and if the specific posture changes, the directional indications will also change accordingly.
[0037] It should also be noted that when an element is referred to as being "fixed" or "set" on another element, it can be directly on the other element or there can be a middle element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or there can be a middle element.
[0038] In addition, the description of "first", "second" and the like in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the technical features or implicitly indicating the number of the technical features indicated. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skilled in the art, when the combination of the technical solutions appears contradictory or cannot be realized, it should be considered that the combination of the technical solutions does not exist, and is not within the protection scope required by the present application.
[0039] The present application provides a garment packaging machine 100, referring to Figure 1 and Figure 8The garment packaging machine 100 comprises a rack 1, a shaping mechanism 2, a feeding assembly and a packaging mechanism 4. The rack 1 comprises a first workbench 11 and a second workbench 12, the first workbench 11 is internally provided with a cavity 111, the top of the first workbench 11 is provided with a first through hole communicating with the cavity 111, the middle of the side wall of the first workbench 11 is provided with a second through hole 112 communicating with the cavity 111, the second workbench 12 is extended and arranged on one side of the first workbench 11 corresponding to the second through hole 112, and the top of the second workbench 12 is opposite to the second through hole 112; the shaping mechanism 2 is arranged on the top of the first workbench 11 to shape the garment; the feeding assembly 3 is arranged in the first through hole to feed the shaped garment into the cavity 111; the packaging mechanism 4 comprises a bearing conveying assembly 41, a bagging assembly 42 and a sealing assembly 43, the bearing conveying assembly 41 and the bagging assembly 42 are arranged in the cavity 111, and the sealing assembly 43 is arranged on the top of the second workbench 12; the bagging assembly 42 comprises a bag supply module 421 and a bagging module 422, the bag supply module 421 comprises two groups of first adjusting plates 4211 which are arranged at intervals and movably connected, a second adjusting plate 4212 is movably connected between the two groups of first adjusting plates 4211, and a first sensor 4213 is arranged in the middle of the second adjusting plate 4212.
[0040] At present, in the packaging market, the packaging machine is generally single-layer flow, that is, from manual feeding to garment packaging and discharging, the length of the whole production line is relatively long, which leads to low garment packaging efficiency. In view of this, the garment packaging machine 100 has a double-layer structure, the top of the first workbench 11 serves as an upper work area and is mainly used for shaping the garment. The first workbench 11 is provided with a hollow cavity 111, one side wall of the cavity 111 is provided with a second through hole 112, and the second workbench 12 is arranged opposite to the second through hole 112. The top of the cavity 111 and the second workbench 12 jointly form a lower work area, which shortens the length of the whole production line of the garment packaging and improves the production efficiency. In addition, the overall structure is compact, which is conducive to integrated manufacturing of the equipment and reduces the production cost.
[0041] In some embodiments, the top of the first workbench 11 is provided with a first through hole communicating with the cavity 111, the components of the top shaping mechanism 2 and the feeding assembly 3 can be accommodated in the cavity 111, so as to avoid interference with other machines exposed outside, improve the safety stability and compactness of the garment packaging machine 100. In addition, the upper work area and the lower work area are connected through the first through hole and the cavity 111, so as to ensure the orderly flow of the garment between the processes and improve the packaging efficiency of the garment.
[0042] In this embodiment, the regularizing mechanism 2 is arranged on the top of the first workbench 11, which is beneficial for the artificial or mechanical hand to quickly and conveniently supply clothes to the clothes packaging machine 100, and improves the working efficiency of the clothes packaging machine 100. In addition, the top of the first workbench 11 is empty, so that when the new clothes are supplied, interference with other components can be avoided, and damage to the equipment and clothes can be avoided.
[0043] In order to quickly pack the regularly folded clothes, the blanking assembly 3 is arranged on the top of the first workbench 11. The blanking assembly 3 is arranged with the regularizing mechanism 2, and after the clothes are folded by the regularizing mechanism 2, the blanking assembly 3 can transport the clothes from the top of the first workbench 11 to the cavity 111, and then to the subsequent packaging mechanism 4 for bagging and packaging.
[0044] The packaging mechanism 4 arranged in the cavity 111 includes a bearing conveying assembly 41 and a bagging assembly 42, the second workbench 12 is provided with a sealing assembly 43 on the top, and the cavity 111 is communicated with the second workbench 12 through the second through hole 112. After the clothes are arranged by the regularizing mechanism 2, the clothes are transported to the bearing conveying assembly 41 by the blanking assembly 3, the bearing conveying assembly 41 can quickly transport the clothes to the bagging assembly 42 for packaging, the packaged clothes are transported out through the second through hole 112 to the sealing assembly 43 to complete the sealing of the packaging bag, and thus the whole clothes packaging work is completed. By arranging each component in the inner cavity and the second workbench 12, the space of the clothes packaging machine 100 is fully utilized, the structure is compact, the clothes circulation path is shortened, and the packaging efficiency is improved.
[0045] Please refer to Figure 8 In order to ensure that the packaging bag can be supplied in time, the bag supply module 421 is provided with a first sensor 4213. Specifically, the first sensor 4213 is arranged in the middle of the second adjusting plate 4212, and can sense whether there is a packaging bag. The operator can receive the information in time for replenishment.
[0046] In some embodiments, the first sensor 4213 can be an optical sensor. The optical sensor can emit sensing rays. When the sensing rays are blocked, the clothes packaging machine 100 determines that there is a packaging bag in the bag supply module 421, and no replenishment is needed, and normal bagging work can be performed. Of course, the sensor is only exemplary, and the specific type of sensor can be determined according to actual needs, and the utility model is not limited.
[0047] As a preferred embodiment of the utility model, please continue to refer to Figure 8The first adjusting plate and the second adjusting plate are horizontally movable. When different specifications of garments are produced simultaneously, the sizes of the packaging bags are usually different. In order to ensure that the packaging bags can be placed flat in the bag feeding module 421, the garments are conveniently packaged in the packaging bags. The two groups of first adjusting plates 4211 can be horizontally moved relative to each other to adjust the width so as to match the width of the packaging bag. The second adjusting plate 4212 can be vertically translated relative to the first adjusting plate 4211 to change the length of the bag feeding module 421 so as to adapt to the length of the packaging bag. When a packaging bag of a larger or smaller specification needs to be put in, the sizes of the bag feeding module 421 are adjusted by manually rotating the three adjusting plates, so that the garments can be ensured to be placed flat in the corresponding packaging bag when the garments of different specifications are packaged. In addition, the three adjusting plates are horizontally arranged in an L shape on the bag feeding module 421. When the garments are packaged, the end of the horizontally protruding part can limit the packaging bag to avoid falling off.
[0048] The garment packaging machine 100 is provided with the first workbench 11 and the second workbench 12, and the cavity 111 of the first workbench 11 is communicated with the top of the second workbench 12, forming a double-layer packaging production line, which can shorten the production line and improve the packaging efficiency. The sizing mechanism 2 and the blanking assembly 3 are arranged on the top of the first workbench 11, which is convenient for folding the garments. The packaging mechanism 4 is arranged in the cavity 111 and the second workbench 12, and works in parallel with the first workbench 11, which is compact in structure, so that the garment packaging machine 100 is convenient to install, disassemble and maintain. The bag feeding module 421 is provided with the first adjusting plate 4211 and the second adjusting plate 4212 which can move horizontally. When different specifications of garments are dealt with, the positions can be flexibly changed to adjust the size of the bag feeding module 421, so as to adapt to the specifications of the packaging bag and the garment, ensure that the garments can be packaged flat, and improve the compatibility and product yield of the garment packaging machine 100.
[0049] In some embodiments, the sizing mechanism 2 includes the folding assembly 21, the folding assembly 22 and the blanking assembly 3 which are arranged in sequence on the top of the first workbench 11.
[0050] In this embodiment, the folding assembly 22 and the blanking assembly 3 are arranged in sequence along the length direction of the top of the first workbench 11. After the garments are folded by the folding assembly 21 and the folding assembly 22, the garments can reach the blanking assembly 3 according to a preset track, and are conveyed to the subsequent packaging process by the blanking assembly 3, which shortens the production line and improves the folding and packaging efficiency of the garments.
[0051] Please refer to Figure 2In some embodiments, the folding assembly 21 comprises two groups of symmetrically arranged first flaps 211 and a first adjusting module 213 connected to the two groups of first flaps 211, and any group of first flaps 211 is connected to one side of the cavity 111 and has a first driving module 212 for driving the first flaps 211 to rotate, and the first adjusting module 213 comprises a first adjusting piece 2131 connected to the two groups of first flaps 211 and a first operating piece 2132 connected to the first adjusting piece 2131, wherein the folding assembly 22 and the blanking assembly 3 are located between the two groups of first flaps 211.
[0052] The folding assembly 21 of the utility model is provided with two first flaps 211, which can fold two sides of the garment at the same time, improving the folding efficiency. In the inner cavity, the two first flaps 211 are connected with the first driving module 212, and the first driving module 212 comprises a first driving piece and a first connecting rod. One end of the first connecting rod is connected to the first flap 211, and the other end is connected to the first driving piece. That is, the first driving piece can drive the first connecting rod to rotate, so that the first flap 211 connected with the first connecting rod can rotate, and the folding step of the garment is performed.
[0053] The folding assembly 22 and the blanking assembly 3 are arranged between the two groups of first flaps 211, so that the garment is folded by the first flaps 211, and is aligned on the above-mentioned assembly, so as to quickly perform the next process, improving the garment folding efficiency.
[0054] It should be noted that the first driving piece can be one of a cylinder, a motor and the like. For example, the first driving piece is a cylinder. The cylinder mainly comprises a cylinder, an end cover, a piston, a piston rod and a sealing piece, and compared with some complex mechanical transmission devices, the structure is relatively simple, and can be integrated in the inner cavity with small volume. In addition, due to the simple structure of the cylinder, and the commonly used materials such as steel are relatively low in cost, so that the cylinder is relatively low in manufacturing cost. Finally, the maintenance cost of the cylinder is also low, and the parts are relatively few, and in daily maintenance, the parts to be replaced are not many, and the general sealing piece, piston rod and other parts are relatively low in price, reducing the long-term operation cost of the equipment, and the maintenance of the cylinder is relatively simple. Of course, the above is only exemplary, and the specific type can be determined according to actual needs, and the utility model does not limit here.
[0055] Please continue to refer to Figure 2, in order to expand the adaptability of the garment packing machine 100, the folding assembly 21 of the utility model further sets the first adjusting module 213. The first adjusting piece 2131 of the first adjusting module 213 is connected to the two groups of first flaps 211 simultaneously, one end of the first adjusting piece 2131 is connected with the first operating piece 2132, and the staff can adjust the distance between the two groups of first flaps 211 by operating the first operating piece 2132 through external force, so that the adjustment of the folding width of the garment is executed, and the folding of the garments of multiple specifications is realized.
[0056] In some embodiments, the first adjusting piece 2131 is a bidirectional screw rod, and the first operating piece 2132 is an operating wheel. The lower ends of the two groups of first flaps 211 are connected on the bidirectional screw rod through screws, and the horizontal movement of the two groups of first flaps 211 can be realized by rotating the bidirectional screw rod to adjust the spacing. For example, by rotating the operating wheel clockwise, the bidirectional screw rod is driven to rotate clockwise, and then the two groups of first flaps 211 can move horizontally away from each other, the spacing is increased, and the garments of a wider size can be folded. When the operating wheel is counterclockwise, the two groups of first flaps 211 move horizontally towards each other, the spacing is reduced, and the garments of a smaller size are better folded. Of course, the above is only exemplary, and the specific design of the first adjusting module 213 can be determined according to actual needs, and the utility model does not make any limitation here.
[0057] Please refer to Figure 1 、 Figure 3 and Figure 4 In some embodiments, the folding assembly 22 includes a first folding module 221 and a second folding module 222, the first folding module 221 includes a second flap 2211, the second flap 2211 is connected with a second driving module 2212 on the side facing the cavity 111, the second driving module 2212 drives the second flap 2211 to fold towards the second folding module 222, the second folding module 222 includes a third flap 2221, the third flap 2221 is connected with a third driving module 2222 on the side facing the cavity 111, the third driving module 2222 drives the third flap 2221 to fold towards the blanking assembly 3.
[0058] It can be understood that the second driving module 2212 connected to the first folding module 221 is hung in the inner cavity, the second driving module 2212 includes a second driving piece and a second connecting rod, wherein one end of the second driving piece is connected with the second flap 2211, the other end is connected with the second connecting rod, and the other end of the second connecting rod is connected with the second flap 2211. When the second driving piece drives the second connecting rod to rotate, the second flap 2211 connected with the second connecting rod will also rotate, and the garment can be folded.
[0059] In some embodiments, the second driving member can be one of a cylinder, a motor, etc. For example, the second driving member is a cylinder. Of course, the above is only exemplary. The specific type of the second driving member can be selected according to actual needs, and the utility model is not limited here.
[0060] In addition, the third driving module 2222 connected to the second folding module 222 is hung in the inner cavity, the third driving module 2222 comprises a third driving member and a third connecting rod, one end of the third driving member is connected to the third flap 2221, the other end of the third driving member is connected to the third connecting rod, and the other end of the third connecting rod is connected to the third flap 2221. When the third driving member drives the third connecting rod to rotate, the third flap 2221 connected to the third connecting rod will also rotate, and the garment can be folded.
[0061] In some embodiments, the third driving member can be one of a cylinder, a motor, etc. For example, the second driving member is a cylinder. Of course, the above is only exemplary. The specific type of the third driving member can be selected according to actual needs, and the utility model is not limited here.
[0062] When the new garment is folded, the garment is laid flat on the entire top of the first workbench 11, wherein the tail of the garment is aligned with the first folding assembly 22, and the head is aligned with the blanking assembly 3. First, the garment is folded in half by the folding assembly 21. Second, the tail of the garment is folded once by the first folding assembly 22, at which time the tail of the garment is folded to the middle position of the garment. Then, the middle of the garment is folded by the second folding assembly 22, at which time the tail and the middle of the garment are folded to the head, and the garment in a folded state is on the blanking assembly 3. Finally, the folded garment is sent to the inner cavity by the blanking assembly 3.
[0063] The design of the first folding assembly 22, the second folding assembly 22 and the blanking assembly 3 arranged in sequence is conducive to rapid folding of the garment, and the folded garment directly enters the lower work area without the need for additional equipment or manual transfer, thereby improving packaging efficiency and reducing production cost.
[0064] Please refer to Figure 3 In this embodiment, the first flap 211 is connected with a second adjusting module 223 on the side opposite to the cavity 111, and the second adjusting module 223 comprises a second adjusting member 2231 and a second operating member 2232 connected with the second adjusting member 2231.
[0065] When it is needed to fold clothes of large size, in order to make the folded clothes match the material falling assembly 3 so as to be conveyed to the lower working area, the first folding module 221 is connected with a second adjusting module 223. The second adjusting module 223 drives the first folding module 221 to move horizontally relative to the length direction of the first working table 11. For example, when folding clothes or trousers of XXL size, the second adjusting module 223 can drive the first folding module 221 to move horizontally away from the second folding module 222, so that the tail of the clothes can also be aligned with the first folding module 221, thereby facilitating the folding of the clothes by the folding assembly 22 and matching the material falling assembly 3.
[0066] In some embodiments, the second adjusting member 2231 can be a bidirectional screw rod, a cylinder or the like. For example, the second adjusting member 2231 is a bidirectional screw rod, and the second folding plate 2211 is threadedly connected to the bidirectional screw rod through a connecting frame. Specifically, the connecting frame includes a first connecting portion and a second connecting portion, the first connecting portion is connected to the second folding plate 2211 at an angle, the second connecting portion is connected to the bidirectional screw rod in parallel, and the first connecting portion is rotationally connected to the second connecting portion. The second operating member 2232 is an adjusting hand wheel, which is manually rotated to drive the second connecting portion to move horizontally on the bidirectional screw rod, thereby driving the first connecting portion to rotate to enable the second folding plate 2211 to move horizontally at the top and adjust the folding length. Of course, the above is only exemplary, and the specific design of the second adjusting module 223 can be determined according to actual needs, which is not limited in the utility model.
[0067] Please refer to Figure 5 In some embodiments, the material falling assembly 3 includes two groups of fourth folding plates 31 arranged at intervals, and any one group of fourth folding plates 31 is connected with a fourth driving module 32 for driving the fourth folding plates 31 to rotate towards the cavity 111.
[0068] In the embodiment, the fourth driving module 32 can select a cylinder, a motor or the like as a driving source. For example, the fourth driving module 32 selects a cylinder as a driving source. The lifting rod of the cylinder is connected to the fourth folding plate 31, and the fourth folding plate 31 can be driven to rotate towards the inner cavity through the extension and retraction movement of the lifting rod, so that a through hole is formed between the two groups of fourth folding plates 31, so that the folded clothes can fall into the lower working area from the through hole. Of course, the above is only exemplary, and the specific design of the fourth driving module 32 can be determined according to actual needs, which is not limited in the utility model.
[0069] Please refer to Figure 6In some embodiments, the bearing conveying assembly 41 comprises a sliding frame 413 and a guide rail 414 connected with the sliding frame 413, the middle part of the sliding frame 413 is connected with the clamping plate 411 and the bearing plate 412, the two ends of the sliding frame 413 close to the guide rail 414 are connected with connecting rods 415, the connecting rods 415 are connected with conveying driving parts 416 for driving the sliding frame 413 to move along the guide rail 414; wherein the clamping plate 411 comprises a first clamping part 4111 and a second clamping part 4112 arranged symmetrically, the bearing plate 412 is located between the first clamping part 4111 and the second clamping part 4112, one end of the sliding frame 413 close to the bearing plate 412 is connected with a third adjusting module 417 for driving the first clamping part 4111 to move horizontally, and the side of the sliding frame 413 away from the bearing plate 412 is connected with a fourth adjusting module for driving the bearing plate 412 to move vertically.
[0070] The utility model discloses a cavity is provided with guide rail 414, and the sliding frame 413 is connected on the guide rail 414, and the folded clothes are conveyed from the position corresponding to the blanking assembly 3 to the position of the bagging assembly 42 through the movement of the sliding frame 413 on the guide rail 414. Among them, the connecting mode of the sliding frame 413 and the guide rail 414 has multiple choices, for example, the one end of the sliding frame 413 abutting the guide rail 414 is connected with a sliding block, and the sliding block is slid on the guide rail 414 to drive the sliding frame 413 to move. The sliding block can slide on the guide rail 414 efficiently, improve the speed of feeding, and further optimize the efficiency of garment packaging. Of course, the above is only exemplary. The specific connecting mode of the sliding frame 413 and the guide rail 414 can be determined according to actual needs, and the utility model does not limit here.
[0071] In order to improve the bearing capacity of the guide rail 414 to the sliding frame 413, the sliding rail is correspondingly provided with two, and the gravity of the whole sliding frame 413 is dispersed on the two guide rails 414, which can optimize the moving effect of the sliding frame 413 on the guide rail 414. Correspondingly, the two ends of the sliding frame 413 are jointly connected with a connecting rod 415, and the connecting rod 415 is connected with a conveying driving part 416. The conveying driving part 416 can drive the sliding block at one end to rotate, so that the connecting rod 415 can drive the sliding block at the other side to move, realizing the movement of the whole sliding frame 413 on the guide rail 414.
[0072] It should be noted that the conveying driving part 416 can be one of a motor, a motor or a cylinder. For example, the conveying driving part 416 is a motor. The motor has excellent energy conversion performance, can maintain high efficiency in a wide load range, and can make the running efficiency of the motor in a relatively ideal state under light load or heavy load through reasonable vector control or VF control, to ensure the normal operation of the feeding assembly. In addition, the speed and torque control of the motor is very accurate, which can detect and adjust the speed of the motor in real time, ensure that the feeding assembly will not suddenly accelerate or stop, and ensure the stability and safety of the garment packaging machine 100.
[0073] In order to improve the compact design in the inner cavity, and avoid interference of each component, the power line of the conveying driving member 416 is arranged beside the guide rail 414 through the tank chain, which can avoid the power line from being dispersed in the inner cavity and affecting subsequent maintenance and replacement. In addition, the power line can be protected from interference with the dispersed power line caused by repeated movement of the carriage 413 for a long time.
[0074] In the embodiment, in order to ensure that the folded clothes will not be scattered due to the running vibration of the equipment before being bagged, the clamping plate 411 and the bearing plate 412 are arranged in the middle of the carriage 413. The bearing plate 412 can support the clothes, and the clamping plate 411 can press the clothes on the bearing plate 412, so that the clothes are conveyed to the subsequent bagging assembly 42 in a folded state for bagging.
[0075] Please continue to refer to Figure 6 Further, the clamping plate 411 includes a first clamping portion 4111 and a second clamping portion 4112. Before the clothes enter the lower working area, the first clamping portion 4111 is driven by the third adjusting module 417 to move away from the second clamping portion 4112, thereby increasing the gap between the first clamping portion 4111 and the second clamping portion 4112, so that the clothes can fall into the bearing plate 412. After the clothes fall into the bearing plate 412, the third adjusting module 417 drives the first clamping portion 4111 to move close to the bearing plate 412, and the fourth adjusting module drives the bearing plate 412 to move close to the clamping plate 411, thereby clamping the clothes on the clamping plate 411.
[0076] In some embodiments, the driving source of the third adjusting module 417 can be selected from a cylinder, a motor, etc. For example, the third adjusting module 417 selects a cylinder, and one end of the lifting rod of the cylinder is connected to the first clamping portion 4111. The first clamping portion 4111 can be driven to move by the extension and retraction movement of the lifting rod, thereby adjusting the distance between the first clamping portion 4111 and the second clamping portion 4112. Of course, the above is only exemplary, and the specific design of the third adjusting module 417 can be determined according to actual needs, which is not limited in the utility model.
[0077] In some embodiments, the driving source of the fourth adjusting module can be selected from a cylinder, a motor, etc. For example, the driving source of the fourth adjusting module selects a cylinder. Of course, the above is only exemplary, and the driving source of the fourth adjusting module is selected according to actual needs, which is not limited in the utility model.
[0078] Please refer to Figure 7In some embodiments, the bagging module 422 comprises two sets of symmetrically arranged bag supporting plates 4221, and a blowing plate 4222 for inflating the packaging bag is arranged between the two sets of bag supporting plates 4221, the blowing plate 4222 is provided with a plurality of blowing holes 4223, and a first bagging driving member 423 for driving the bag supporting plates 4221 to abut against the inner side of the packaging bag is connected to the side of any one set of bag supporting plates 4221 opposite to the blowing plate 4222, and the side of the blowing plate 4222 opposite to the bag supporting plates 4221 is connected to a second bagging driving member 424 for driving the vertical movement of the bagging module 422.
[0079] Before the clothes are bagged, the second bagging driving member 424 drives the bagging module 422 to press against the packaging bag, at this time, the blowing holes 4223 of the blowing plate 4222 blow air into the packaging bag, and the packaging bag is puffed up by the gas, and then the first bagging driving member 423 can drive the two sets of bag supporting plates 4221 to move away from each other, so as to abut against the inner side of the packaging bag and support it, thereby facilitating the clothes being put into the packaging bag by the carrying plate 412.
[0080] In some embodiments, the first bagging driving member 423 is a pneumatic cylinder. Of course, the above is only exemplary. The specific design can be determined according to actual needs, and the utility model is not limited herein.
[0081] In some embodiments, the second bagging driving member 424 is a pneumatic cylinder. Of course, the above is only exemplary. The specific design can be determined according to actual needs, and the utility model is not limited herein.
[0082] Please continue to refer to Figure 7 In some embodiments, the bagging assembly 42 comprises a fifth adjusting module 425, the fifth adjusting module 425 comprises a third adjusting member 4251 and a third operating member 4252 connected to the third adjusting member 4251, and the two ends of the third adjusting member 4251 are respectively connected to the two sets of bag supporting plates 4221.
[0083] Similarly, in order to match packaging bags of different sizes, the bagging assembly 42 is provided with the fifth adjusting module 425, and the distance between the two sets of bag supporting plates 4221 can be adjusted by the cooperation of the third adjusting member 4251 and the third operating member 4252, so as to completely support the packaging bag and accommodate the clothes therein.
[0084] In some embodiments, the third adjusting member 4251 is a bidirectional screw rod, and the third operating member 4252 is an adjusting hand wheel. Of course, the above is only exemplary. The specific design can be determined according to actual needs, and the utility model is not limited herein.
[0085] Please refer to Figure 9In some embodiments, the sealing assembly 43 comprises a first support frame 431, a first conveying belt 432 connected to the first support frame 431, a gantry frame 433 connected to the first support frame 431 and spanning the first conveying belt 432, a plurality of first pressing blocks 4331 and clamping jaws spaced apart and connected to one end of the gantry frame 433 opposite the first conveying belt 432, and a second pressing block, a second sensor 4332 arranged between the first pressing blocks 4331 and the clamping jaws, a first sealing drive 4333 arranged at the top of the gantry frame 433 for driving the first pressing blocks 4331 to move vertically, a second sealing drive 4334 arranged at the top of the gantry frame 433 for driving the clamping jaws to move vertically, a third sealing drive 4335 arranged at the top of the gantry frame 433 for driving the clamping jaws to move horizontally, and a fourth sealing drive 4336 arranged at the top of the gantry frame 433 for driving the second pressing block to move vertically, and a belt motor 4311 and a fifth sealing drive 4312 arranged at the bottom of the first support frame 431.
[0086] After the clothes are put into the bag, the carrying plate 412 and the clamping plate 411 are conveyed together with the packaging bag to the first conveying belt 432 of the sealing assembly 43. At this time, the clothes are still clamped on the carrying plate 412, and when the packaging bag is conveyed below the first pressing blocks 4331, the first sealing drive 4333 drives the first pressing blocks 4331 to press down the packaging bag, and at the same time, the fifth sealing drive 4312 below the first conveying belt 432 drives the connected pressing block to move upward, so as to press the clothes and the packaging bag tightly on the first conveying belt 432, and at this time, the carrying plate 412 and the clamping plate 411 are removed.
[0087] It should be noted that the first sealing drive 4333 and the fifth sealing drive 4312 can be a pneumatic cylinder, a motor, etc. For example, the first sealing drive 4333 and the fifth sealing drive 4312 are pneumatic cylinders. Of course, the above is only exemplary, and the specific type can be selected according to actual needs, and the utility model is not limited herein.
[0088] The second sensor 4332 is used to detect the position of the adhesive tape on the packaging bag, so that the clamping jaw can clamp the adhesive tape. The fourth sealing drive 4336 drives the second pressing block to move downward to press the packaging bag, and the second sealing drive 4334 and the third sealing drive 4335 cooperate to drive the clamping jaw to move, so as to separate the sealing layer of the adhesive tape from the packaging.
[0089] In some embodiments, the type of the second sensor 4332 is an optical sensor. Of course, the above is only exemplary, and the specific type can be selected according to actual needs, and the utility model is not limited herein.
[0090] In some embodiments, the second sealing driving member 4334, the third sealing driving member 4335 and the fifth sealing driving member 4312 can be cylinders or motors, or other driving sources. For example, the second sealing driving member 4334 is a cylinder, and the third sealing driving member 4335 is a motor. Of course, the above is only exemplary, and the specific type can be determined according to actual needs, and the utility model is not limited here.
[0091] Please continue to refer to Figure 9 In some embodiments, the gantry 433 is spaced apart from the second through hole 112 on the side away from the first conveying belt 432. The U-shaped support 434 is arranged across the first conveying belt 432, and the third sensor 4341 is connected to the U-shaped support 434. The first support frame 431 is spaced apart from the second support frame 435 on the side away from the second through hole 112. The second conveying belt 436 is connected to the second support frame 435. The fifth flap 437 is arranged between the first support frame 431 and the second support frame 435. The bottom of the fifth flap 437 is connected to the fifth driving module 438 for driving the fifth flap 437 to rotate towards the first support frame 431.
[0092] After the adhesive paper seal layer of the packaging bag is torn off, the first conveying belt 432 conveys the packaging bag to the rear half position. When the third sensor 4341 senses that the packaging bag is in place, the fifth driving module 438 drives the fifth flap 437 to extend and block the packaging bag, and rotates towards the first support frame 431, so as to fold and paste the end of the packaging bag with adhesive paper, seal the packaging, and then complete the discharging by the second conveying belt 436.
[0093] In some embodiments, the third sensor 4341 is an optical sensor. Of course, the above is only exemplary. The specific type of the third sensor 4341 can be determined according to actual needs, and the utility model is not limited here.
[0094] In some embodiments, the driving source of the fifth driving module 438 can be a cylinder or a motor. For example, the driving source of the fifth driving module 438 is a cylinder. Of course, the above is only exemplary, and the specific type can be determined according to actual needs, and the utility model is not limited here.
[0095] The left-right folding width of the clothing packaging machine 100 provided by the embodiment is adjustable, the front-rear folding distance is adjustable, and the size of the bag supporting is adjustable, which can satisfy various packaging bags and various specifications of clothing, and the double-layer structure is compact, occupies small space, and has low equipment cost.
[0096] The above are only part or preferred embodiments of the present application, neither the text nor the drawings can limit the scope of protection of the present application, any equivalent structural transformation made by using the content of the present application specification and drawings, or direct / indirect application in other related technical fields are included in the scope of protection of the present application.
Claims
1. A garment packaging machine, characterized in that, include: The frame includes a first workbench and a second workbench. The first workbench has a cavity inside and a first through hole communicating with the cavity is opened on the top of the first workbench. A second through hole communicating with the cavity is constructed in the middle of the side wall of the first workbench. The second workbench is extended on the side of the first workbench corresponding to the second through hole, and the top of the second workbench is directly opposite the second through hole. A straightening mechanism is located on top of the first workbench to straighten the garment; A material feeding assembly is provided in the first through hole to feed the neatly arranged garment into the cavity; The packaging mechanism includes a carrying and conveying assembly, a bagging assembly, and a sealing assembly. The carrying and conveying assembly and the bagging assembly are disposed within the cavity. The sealing assembly is disposed on the top of the second workbench. The bagging assembly includes a bag feeding module and a bag filling module. The bag feeding module includes two sets of spaced-apart, movably connected first adjusting plates. A second adjusting plate is movably connected between the two sets of first adjusting plates. A first sensor is disposed in the middle of the second adjusting plate.
2. The garment packaging machine according to claim 1, characterized in that, The straightening mechanism includes a folding component and a flipping component, which are arranged sequentially on the top of the first workbench.
3. The garment packaging machine according to claim 2, characterized in that, The folding assembly includes two sets of symmetrically arranged first flaps and a first adjustment module connected to the two sets of first flaps. A first drive module for driving the first flap to rotate is connected to the side of each set of first flaps facing the cavity. The first adjustment module includes a first adjustment member connected to the two sets of first flaps and a first operating member connected to the first adjustment member. The folding component and the material dropping component are both located between the two sets of the first folding plates.
4. The garment packaging machine according to claim 2, characterized in that, The folding assembly includes a first folding module and a second folding module. The first folding module includes a second flap. A second driving module is connected to the side of the second flap facing the cavity, which drives the second flap to fold toward the second folding module. The second folding module includes a third flap. A third driving module is connected to the side of the third flap facing the cavity, which drives the third flap to fold toward the unloading assembly. The second flap is connected to a second adjustment module on the side facing the cavity. The second adjustment module includes a second adjustment component and a second operating component connected to the second adjustment component.
5. The garment packaging machine according to claim 1, characterized in that, The material feeding assembly includes two sets of fourth flaps spaced apart, and each set of fourth flaps is connected to a fourth drive module for driving the fourth flaps to rotate toward the cavity.
6. The garment packaging machine according to claim 1, characterized in that, The carrying and conveying assembly includes a carriage and a guide rail connected to the carriage. A clamping plate and a bearing plate are connected to the middle of the carriage. Connecting rods are connected to both ends of the carriage near the guide rail. The connecting rods are connected to a conveying drive component for driving the carriage to move along the guide rail. The clamping plate includes a first clamping part and a second clamping part arranged symmetrically. The bearing plate is located between the first clamping part and the second clamping part. The end of the slide close to the bearing plate is connected to a third adjustment module for driving the first clamping part to move horizontally. The side of the slide opposite to the bearing plate is connected to a fourth adjustment module for driving the bearing plate to move vertically.
7. The garment packaging machine according to claim 1, characterized in that, The bagging module includes two sets of symmetrically arranged bag-supporting plates. An air-blowing plate for inflating the packaging bag is provided between the two sets of bag-supporting plates. The air-blowing plate is provided with multiple air-blowing holes. A first bagging drive component for driving the bag-supporting plate to abut against the inside of the packaging bag is connected to the side of each set of bag-supporting plates opposite to the air-blowing plate. A second bagging drive component for driving the vertical movement of the bagging module is connected to the side of the air-blowing plate opposite to the bag-supporting plate.
8. The garment packaging machine according to claim 7, characterized in that, The bagging assembly includes a fifth adjustment module, which includes a third adjustment member and a third operating member connected to the third adjustment member. The two ends of the third adjustment member are respectively connected to two sets of bag support plates.
9. The garment packaging machine according to claim 1, characterized in that, The sealing assembly includes a first support frame connected to a first conveyor belt. A gantry frame spanning the first conveyor belt is connected to the first support frame. A first pressing block, a gripper, and a second pressing block are connected at intervals to one end of the gantry frame facing the first conveyor belt. A second sensor is disposed between the first pressing block and the gripper. The top of the gantry frame is provided with a first sealing drive for driving the first pressing block to move vertically, a second sealing drive for driving the gripper to move vertically, a third sealing drive for driving the gripper to move horizontally, and a fourth sealing drive for driving the second pressing block to move vertically. A belt motor and a fifth sealing drive are disposed at the bottom of the first support frame.
10. The garment packaging machine according to claim 9, characterized in that, The gantry frame is provided with a U-shaped bracket spanning the first conveyor belt on the side away from the second through hole. The U-shaped bracket is connected to a third sensor. The first support frame is provided with a second support frame on the side away from the second through hole. The second support frame is connected to a second conveyor belt. A fifth flap is provided between the first support frame and the second support frame. The bottom of the fifth flap is connected to a fifth drive module for driving the fifth flap to rotate toward the first support frame.