A marking device for garment processing
By introducing precise positioning measures of positioning mechanisms and components into the pattern-making device for garment processing, the problem of cutting deviation in thin fabrics has been solved, improving cutting accuracy and efficiency while reducing costs.
Patent Information
- Application Number
- CN202510329004.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2045-03-19
AI Technical Summary
Existing garment processing sampling devices are prone to deviation when cutting thin, smooth, breathable materials or small areas of fabric, resulting in discrepancies between the cutting dimensions and the design drawings, which reduces sampling efficiency and increases costs.
A detachable positioning mechanism is adopted, including a positioning structure, a positioning toothed ring, and a positioning gear. Through the coordinated use of a vacuum adsorption table structure and moving components, limiting components, and adjusting components, the precise positioning of the fabric during cutting is ensured, and deviation is avoided.
It improves the sampling effect and yield rate of garment fabrics, reduces economic costs, and ensures the accuracy and efficiency of cutting dimensions.
Smart Images

Figure CN120167717B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of clothing processing and marking, and specifically relates to a marking device for clothing processing. BACKGROUND
[0002] Clothing refers to clothes worn on the body, used for covering the body, keeping warm, decoration or identity display, and can be divided into daily clothes, professional clothes, sports clothes and the like according to use; and can be divided into men's clothes, women's clothes and children's clothes according to gender and age, and clothing processing refers to a process of making complete clothes through a series of processes such as cutting and sewing of fabric and other materials, which includes fabric preparation, design, cloth cutting, sewing assembly, ironing and finishing and the like, and clothing processing marking refers to making one or more clothing samples according to design requirements before formal mass production, and through marking, whether the actual effect of the clothing meets the design expectation can be seen, such as whether the style, size, color, fabric texture and the like are satisfactory, and if the sample has a problem, the design and production process can be adjusted in time.
[0003] The existing marking device for clothing processing has certain disadvantages in use, and most of the existing marking devices for clothing processing position the cloth or marking paper by using a positioning mechanism in use, and the positioning mechanism usually positions the cloth or marking paper by using a vacuum adsorption mode, when the cloth or marking paper is a light, smooth and breathable material or needs to be cut into a small area of the marking sample, the cloth or marking paper is prone to deviation during marking and cutting, so that the cutting size does not match the design drawing, re-marking is needed, time and cost are increased, the marking efficiency of the marking device is reduced, and the needs of people cannot be met. SUMMARY
[0004] The application aims to solve the technical problems in the prior art, and therefore provides a marking device for clothing processing.
[0005] The utility model provides a kind of sample making device for clothing processing, including: sample making table and the sample making arm being set on sample making table and moving in all directions, further including: the sample seat being detachably set in the bottom of sample making arm;Cutting tool is detachably installed in the lower end of sample seat and carries out cutting to cloth;Positioning mechanism is movably arranged on the sample seat and carries out cutting positioning to cloth;Wherein, the positioning mechanism includes two groups of positioning structure, positioning gear ring and positioning gear, which are movably arranged on the lower end of the sample seat and position the cloth, rotatably installed in the inside of the sample seat and detachably fixed with the positioning structure, meshed with the outside of the positioning gear ring and control the rotation of the positioning gear ring;Supporting structure for horizontal movement is provided on the sample making table, and moving structure is provided on the supporting structure and moves longitudinally, the rotating structure for controlling the angle adjustment of the sample making arm is detachably installed on the moving structure, the sample seat can be controlled to adjust the height, the upper end surface of the sample making table is provided with vacuum adsorption table surface structure and vacuum pump arranged in the inside of the sample making table and communicated with the vacuum adsorption table surface structure to improve the adsorption force, the control unit for controlling the cutting tool to move according to the clothing design drawing is provided on the sample making table, and the control unit can control the rotation of the positioning structure so that the two groups of positioning structure are the same as the moving path of the cutting tool.
[0006] As a further scheme of the utility model: the upper end surface of the sample seat is provided with the first driving structure for controlling the cutting of the cutting tool on the cloth;The second driving structure for controlling the rotation of the positioning gear is detachably arranged on the upper end surface of the sample seat;Two groups of positioning structures are symmetrically arranged outside the cutting tool and consistent with the cutting path of the cutting tool;The lower end surface of the positioning gear ring is symmetrically provided with a fixing member for fixing the positioning structure, and the inside of the sample seat is provided with a positioning groove for the working of the positioning gear ring and the positioning gear;The lower end surface of the sample seat is provided with a rotating groove for the rotation of the fixing member, and the positioning groove is communicated with the rotating groove.
[0007] As a further scheme of the utility model: the positioning structure includes a positioning seat aligned with the cutting tool and a positioning member symmetrically movably arranged on the positioning seat, and the positioning area of the positioning structure can be adjusted by the cooperation of the positioning seat and the positioning member, so as to position different sample making samples to be cut, and avoid the offset of sample making samples;Wherein, the lower end surface of the positioning seat is arc-shaped structure on both sides;The positioning seat is provided with a moving assembly for adjusting the position of the positioning member;The outer surface of the positioning seat is provided with a receiving groove for receiving the positioning member on both sides;The outer side of the lower end of the receiving groove is provided with an inclined surface structure for facilitating the positioning member to enter the positioning seat.
[0008] As a further scheme of the present application: the moving assembly comprises symmetrical screw rod transmission devices arranged in the receiving groove and detachably fixed with the positioning member, a third driving structure detachably mounted at the center of the upper end of the positioning seat and controlling the positioning member to move through the screw rod transmission devices, and a bevel gear structure drivingly connecting the two groups of screw rod transmission devices and the third driving structure, wherein the third driving structure controls the screw rod transmission devices to move through the bevel gear structure; wherein the outer surface of the positioning member is symmetrically provided with auxiliary sliding blocks moving in the positioning seat, the positioning seat is symmetrically provided with sliding grooves communicating with the receiving groove, and the auxiliary sliding blocks are slidingly arranged in the sliding grooves, so that the positioning member moves stably; and the positioning member is provided with a limiting assembly limiting the cloth and aligned with the lower end surface of the positioning seat.
[0009] As a further scheme of the present application: the limiting assembly comprises a plurality of groups of positioning strips movably arranged in the positioning member and a plurality of groups of positioning rods vertically arranged in the positioning member and movably connected with the positioning strips; wherein the positioning strips are provided with positioning holes corresponding to the positioning rods, the bottom end of the positioning rod extends into the positioning hole and is provided with a limiting spring connected with the positioning strip, when the positioning member moves outward, the positioning strip is separated from the positioning seat and moves downward under the action of gravity and is connected with the cloth to be cut, so that the lower end surface of the positioning strip is flush with the lower end surface of the positioning seat, thereby limiting the cloth; the lower end surface of the positioning member is provided with a connecting groove connected with the plurality of groups of positioning strips; the bottom end of the positioning rod is provided with a blocking block preventing the positioning rod from falling out of the positioning hole; the adjacent two groups of positioning strips are connected.
[0010] As a further scheme of the present application: the limiting assembly further comprises a plurality of groups of limiting strips symmetrically arranged on one side surface of the positioning strip and a plurality of groups of first limiting grooves arranged on the other side surface of the adjacent positioning strip and slidingly connected with the limiting strip, when one group of the positioning strip moves downward, the limiting strip moves in the limiting groove on the adjacent positioning strip, and the limiting strip can improve the stability of the connection between the adjacent two groups of positioning strips; wherein the two end surfaces of the limiting strip are symmetrically provided with a reinforcing rod and a limiting block vertically connected with the reinforcing rod; the positioning member is provided with a second limiting groove for the movement of the limiting block, and the reinforcing rod and the limiting block can improve the stability of the connection between the positioning strip and the positioning member.
[0011] As a further scheme of the present application: the lower side of the proofing seat is provided with an adjusting assembly for controlling the positioning structure to flip and stretch; and the adjusting assembly is detachably fixed with the lower end of the fixing member.
[0012] As a further scheme of the present application: the adjusting assembly comprises a rotating seat vertically connected with the fixing member, an adjusting seat rotatably connected with the rotating seat, and an adjusting member vertically connected with the upper end surface of the positioning structure and movably arranged in the adjusting seat; wherein the upper end of the adjusting seat is vertically provided with a rotating member rotatably connected with the rotating seat; one side surface of the rotating seat is detachably provided with a fourth driving structure for controlling the rotation of the rotating member; a rotating rod connected with the rotating seat is arranged on the rotating member; and the fourth driving structure controls the adjusting seat to overturn through the rotating member.
[0013] As a further scheme of the present application: the adjusting assembly further comprises an adjusting groove arranged on the adjusting member and used for controlling the movement of the adjusting member, a lifting rack mounted on one side of the inner wall of the adjusting groove, and a lifting gear rotatably mounted on the inner wall of the adjusting seat and meshingly connected with the lifting rack; the lifting gear can control the movement of the adjusting member in the adjusting seat through the lifting rack; the adjusting assembly further comprises a reinforcing plate vertically mounted on the inner wall of the adjusting seat and a plurality of groups of guide blocks symmetrically mounted on one side surface of the reinforcing plate; the adjusting member is provided with a guide groove slidably connected with the guide blocks; and the guide blocks can improve the stability of the adjusting member during movement.
[0014] As a further scheme of the present application: the adjusting assembly further comprises a first transmission wheel coaxially connected with the rotating member and arranged on the other side of the rotating seat, a second transmission wheel coaxially connected with the lifting gear and arranged on the outer side of the adjusting seat, and a transmission belt connecting the first transmission wheel and the second transmission wheel; wherein the diameter size of the first transmission wheel is greater than that of the second transmission wheel; when the fourth driving structure controls the positioning structure to rotate from the horizontal plane to the vertical plane through the rotating member and the adjusting seat, the first transmission wheel controls the adjusting member to move downward in the adjusting seat and moves the positioning structure to the positioning area through the transmission belt and the second transmission wheel.
[0015] Compared with the prior art, the present application has the following advantages:
[0016] (1) The positioning mechanism, the vacuum adsorption table structure, the supporting structure, the moving structure and the sample making machine arm control the sample making seat and adjust the position of the cutting tool to cut the cloth; the second driving structure, the positioning gear, the positioning gear ring and the fixing member drive the positioning structure to adjust the position, control two groups of positioning structures to be arranged on the front and rear sides of the cutting tool respectively, make the positioning structure consistent with the movement path of the cutting tool, thereby positioning and cutting the cloth, avoid the offset of the cloth during cutting, improve the sample making effect and the yield of the garment cloth, and reduce the economic cost of people.
[0017] (2) The mobile assembly, the limiting assembly, the third driving structure, the bevel gear structure, the lead screw transmission device and the auxiliary sliding block control positioning piece move on the positioning seat, so that the positioning area of the positioning structure can be adjusted, different sizes of cloth to be cut can be positioned, the lower end surface of the positioning strip is flush with the lower end surface of the positioning seat through cooperation of the positioning strip, the positioning rod, the limiting spring, the limiting strip, the reinforcing rod and the limiting block, the positioning seat and the positioning strip are used for close positioning of the cloth, the cloth is uniformly pressed, the positioning effect of the positioning structure is improved, and sliding of the cloth during cutting is avoided.
[0018] (3) The adjusting assembly, the fourth driving structure, the rotating piece, the rotating seat, the adjusting seat and the adjusting piece are used in cooperation, the positioning structure can be turned over, the positioning structure is convenient for positioning the cloth or is convenient for being stored, the first transmission wheel, the transmission belt, the second transmission wheel, the lifting gear and the lifting rack are used in cooperation, the adjusting piece can be controlled to move in the adjusting seat, the position of the positioning structure is adjusted, the positioning structure is aligned with the cutting tool, and the reinforcing plate and the guide block are used in cooperation to improve the stability during movement of the adjusting piece. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a whole structure diagram of the present application.
[0020] Figure 2 It is a partial structure diagram of the positioning mechanism in the present application.
[0021] Figure 3 It is a partial structure diagram of the proofing seat and the positioning structure in the present application.
[0022] Figure 4 It is a partial structure diagram of the positioning gear ring and the positioning gear in the present application.
[0023] Figure 5 It is a partial structure diagram of the mobile assembly in the present application.
[0024] Figure 6 It is a partial structure diagram of the positioning seat in the present application.
[0025] Figure 7 It is a partial structure diagram of the positioning piece and the positioning strip in the present application.
[0026] Figure 8 It is a partial structure diagram of the positioning strip and the limiting assembly in the present application.
[0027] Figure 9 It is a partial structure diagram of the Figure 8 It is an enlarged view of the structure at A in the present application.
[0028] Figure 10 It is a partial structure diagram of the adjusting assembly in the present application.
[0029] Figure 11 Local structure diagram of the adjusting member and the reinforcing plate in the application.
[0030] In the figure: 1, proofing table; 2, proofing machine arm; 3, proofing seat; 4, cutting tool; 5, positioning structure; 6, positioning gear ring; 7, positioning gear; 8, first driving structure; 9, second driving structure; 10, fixing member; 11, positioning seat; 12, positioning member; 13, receiving groove; 14, screw transmission device; 15, third driving structure; 16, bevel gear structure; 17, auxiliary sliding block; 18, positioning strip; 19, positioning rod; 20, limiting spring; 21, blocking block; 22, limiting strip; 23, reinforcing rod; 24, limiting block; 25, rotating seat; 26, adjusting seat; 27, adjusting member; 28, rotating member; 29, fourth driving structure; 30, adjusting groove; 31, lifting rack; 32, transmission belt; 33, lifting gear; 34, reinforcing plate; 35, guide block; 36, guide groove; 37, first transmission wheel; 38, second transmission wheel; 39, supporting structure; 40, moving structure; 41, rotating structure; 42, vacuum adsorption table surface structure. DETAILED DESCRIPTION
[0031] The technical solutions of the present application will be described clearly and completely below in conjunction with the embodiments. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative labor fall within the protection scope of the present application.
[0032] Embodiment one
[0033] Please refer to Figure 1 - Figure 4The application provides a sample making device for garment processing, which comprises a sample making table 1, a sample making arm 2 arranged on the sample making table 1 and capable of moving in all directions, a sample making seat 3 which is detachably arranged at the bottom of the sample making arm 2, a cutting tool 4 which is detachably arranged at the lower end of the sample making seat 3 and capable of cutting cloth, a positioning mechanism which is movably arranged on the sample making seat 3 and capable of cutting and positioning cloth, wherein the positioning mechanism comprises two groups of positioning structures 5 which are movably arranged at the lower end of the sample making seat 3 and capable of positioning cloth, a positioning gear ring 6 which is rotatably arranged in the sample making seat 3 and detachably fixed with the positioning structures 5, and a positioning gear 7 which is meshingly arranged outside the positioning gear ring 6 and capable of controlling the positioning gear ring 6 to rotate, a supporting structure 39 for horizontal movement is arranged on the sample making table 1, a moving structure 40 for longitudinal movement is arranged on the supporting structure 39, a rotating structure 41 for controlling the sample making arm 2 to adjust the angle is detachably arranged on the moving structure 40, the sample making arm 2 can control the sample making seat 3 to adjust the height, a vacuum adsorption table structure 42 is arranged on the upper end surface of the sample making table 1, a vacuum pump is arranged in the sample making table 1 and communicates with the vacuum adsorption table structure 42 to improve the adsorption force, the vacuum adsorption table structure 42 comprises a table base plate, an adsorption hole array and a vacuum chamber, a pipeline which communicates with the vacuum chamber is arranged on the vacuum pump, the adsorption hole array is arranged on the table base plate and makes the vacuum chamber communicate with the adsorption hole array, the upper end surface of the table base plate is flush with the sample making upper end surface of the sample making table 1, a control unit for controlling the cutting tool 4 to move according to the garment design drawing is arranged on the sample making table 1, and the control unit can control the positioning structures 5 to rotate so that the two groups of positioning structures 5 have the same moving path as the cutting tool 4.
[0034] As shown in the description accompanying drawings Figures 2-4 The upper end surface of the sample making seat 3 is provided with a first driving structure 8 for controlling the cutting tool 4 to cut cloth, the upper end surface of the sample making seat 3 is detachably provided with a second driving structure 9 for controlling the positioning gear 7 to rotate, the two groups of positioning structures 5 are symmetrically arranged outside the cutting tool 4 and have the same cutting path as the cutting tool 4, the lower end surface of the positioning gear ring 6 is symmetrically provided with a fixing piece 10 for fixing the positioning structures 5, the inside of the sample making seat 3 is provided with a positioning groove for the positioning gear ring 6 and the positioning gear 7 to work, the lower end surface of the sample making seat 3 is provided with a rotating groove for the fixing piece 10 to rotate, and the positioning groove communicates with the rotating groove.
[0035] In summary, the cloth is placed on the vacuum adsorption table structure 42 in the sample table 1, the vacuum pump is started to adsorb and position the cloth, the supporting structure 39, the moving structure 40 and the sample arm 2 control the sample seat 3 to move, the first driving structure 8 is started to control the cutting tool 4 to cut the cloth, when the cloth is light, thin, smooth and breathable material or the cloth is cut into small area sample, the sample is easy to deviate on the vacuum adsorption table structure 42, the positioning structure 5 is controlled to position the cloth, and the second driving structure 9 is started to drive the positioning gear 7 to rotate, the positioning gear 7 drives the positioning ring 6 to rotate, the positioning ring 6 drives the positioning structure 5 to adjust the position through the fixing piece 10, the two groups of positioning structures 5 are arranged on the front and rear sides of the cutting tool 4 respectively, so that the positioning structure 5 is consistent with the moving path of the cutting tool 4, thereby positioning and cutting the cloth.
[0036] Embodiment two
[0037] With reference to Figure 1 and Figure 2 - Figure 9 , which is a second embodiment of the application. In this embodiment, the positioning structure 5 includes a positioning seat 11 aligned with the cutting tool 4 and a positioning piece 12 symmetrically arranged on the positioning seat 11. The positioning seat 11 and the positioning piece 12 cooperate to adjust the positioning area of the positioning structure 5, thereby positioning different sample to be cut and avoiding deviation of the sample. The lower end surface of the positioning seat 11 is arc-shaped on both sides, facilitating movement on the cloth or paper. The positioning seat 11 is provided with a moving assembly for adjusting the position of the positioning piece 12. The outer surface of the positioning seat 11 is provided with a receiving groove 13 for receiving the positioning piece 12. The lower end of the receiving groove 13 is provided with an inclined surface structure for facilitating the positioning piece 12 to enter the positioning seat 11.
[0038] As shown in the accompanying drawings Figure 5 and Figure 6As shown in the drawings, the mobile assembly in the application comprises symmetrical screw rod driving devices 14 arranged in the receiving groove 13 and detachably fixed with the positioning member 12, a third driving structure 15 detachably mounted at the center of the upper end of the positioning seat 11 and controlling the positioning member 12 to move through the screw rod driving device 14, and a bevel gear structure 16 drivingly connecting the two groups of screw rod driving devices 14 and the third driving structure 15, the inside upper side of the positioning member 12 is provided with a through groove for the movement of the screw rod driving device 14, and the third driving structure 15 controls the screw rod driving device 14 to move through the bevel gear structure 16; wherein the outer surface of the positioning member 12 is symmetrically provided with auxiliary sliding blocks 17 moving in the positioning seat 11, the positioning seat 11 is symmetrically provided with sliding grooves communicating with the receiving groove 13, and the auxiliary sliding blocks 17 are slidingly arranged in the sliding grooves, so that the positioning member 12 moves stably; the positioning member 12 is provided with a limiting assembly for positioning the cloth and aligning with the lower end surface of the positioning seat 11.
[0039] As shown in the drawings, Figures 7-8 As shown in the drawings, the limiting assembly in the application comprises a plurality of groups of positioning strips 18 movably arranged in the positioning member 12 and a plurality of groups of positioning rods 19 vertically mounted in the positioning member 12 and movably connected with the positioning strips 18, the lower end surfaces of the positioning strips 18 are arc-shaped surface structures, facilitating movement on the cloth or paper; wherein the positioning strips 18 are provided with positioning holes corresponding to the positioning rods 19, the bottom ends of the positioning rods 19 extend into the positioning holes and are provided with limiting springs 20 connected with the positioning strips 18, when the positioning member 12 moves outward, the positioning strips 18 are separated from the positioning seat 11 and then move downward under the action of gravity and are connected with the cloth to be cut, so that the lower end surfaces of the positioning strips 18 are flush with the lower end surface of the positioning seat 11, thereby limiting the cloth; the lower end surface of the positioning member 12 is provided with connecting grooves abuttingly connected with the plurality of groups of positioning strips 18; the bottom end of the positioning rod 19 is provided with a blocking block 21 for preventing the positioning rod 19 from falling out of the positioning hole; the adjacent two groups of positioning strips 18 are abuttingly connected; the positioning rod 19 in the application can be a telescopic driving structure such as a positioning cylinder, which can improve the stability of the connection between the positioning strip 18 and the positioning member 12 and quickly adjust the position of the positioning strip 18.
[0040] As shown in the drawings, Figures 7-9As shown, the limiting assembly in the application further comprises a plurality of groups of limiting strips 22 symmetrically arranged on one side of the positioning strips 18 and a plurality of groups of first limiting grooves arranged on the other side of the adjacent positioning strips 18 and in sliding connection with the limiting strips 22, when one group of the positioning strips 18 moves downward, the limiting strips 22 move in the limiting grooves on the adjacent positioning strips 18, and the limiting strips 22 can improve the stability of the connection between the two adjacent groups of the positioning strips 18; wherein the two end faces of the limiting strips 22 are symmetrically provided with reinforcing rods 23 and limiting blocks 24 in perpendicular connection with the reinforcing rods 23; the positioning member 12 is provided with second limiting grooves for the movement of the limiting blocks 24, and the reinforcing rods 23 and the limiting blocks 24 can improve the stability of the connection between the positioning strips 18 and the positioning member 12.
[0041] In summary, the third driving structure 15 is started to drive the bevel gear structure 16 to rotate, the bevel gear structure 16 controls the two groups of the positioning members 12 to move horizontally and outward in the positioning seat 11 through the lead screw transmission device 14, the positioning member 12 drives the auxiliary sliding block 17 to slide, the positioning member 12 moves outward to separate from the positioning seat 11, then moves downward under the action of gravity and adheres to the cloth to be cut, the positioning rod 19 moves in the positioning hole, the limiting spring 20 is stretched and contracted, the positioning strip 18 moves downward to drive the limiting strip 22 to move in the first limiting groove on the adjacent positioning strip 18, and the positioning strip 18 drives the limiting block 24 to move in the second limiting groove through the reinforcing rod 23, so that the lower end face of the positioning strip 18 is flush with the lower end face of the positioning seat 11, thereby positioning the cloth to be cut of different sizes.
[0042] Embodiment three
[0043] With reference to Figure 1 , Figure 3 - Figure 4 and Figure 10 - Figure 11 , which is the second embodiment of the application, wherein the lower side of the proofing seat 3 is provided with an adjusting assembly for controlling the flip and expansion of the positioning structure 5, and the proofing seat 3 is controlled to move upward by the proofing machine arm 2 when the adjusting assembly is started; the adjusting assembly is detachably fixed with the lower end of the fixing member 10.
[0044] As shown in the accompanying drawings Figures 10-11As shown, the adjustment assembly of the present invention includes a rotating seat 25 vertically connected to the fixing member 10, an adjustment seat 26 rotatably connected to the rotating seat 25, and an adjustment member 27 vertically connected to the upper end face of the positioning structure 5 and movably disposed in the adjustment seat 26; wherein, the upper end of the adjustment seat 26 is vertically provided with a rotating member 28 rotatably connected to the rotating seat 25; a fourth drive structure 29 for controlling the rotation of the rotating member 28 is detachably installed on one side of the rotating seat 25, and a rotating rod connected to the rotating seat 25 is provided on the rotating member 28, and the fourth drive structure 29 controls the adjustment seat 26 to flip through the rotating member 28.
[0045] As per the instruction manual Figures 10-11 As shown, the adjustment assembly of the present invention also includes an adjustment groove 30 formed on the adjustment member 27 for controlling the movement of the adjustment member 27, a lifting rack 31 installed on one side of the inner wall of the adjustment groove 30, and a lifting gear 33 rotatably installed on the inner wall of the adjustment seat 26 and meshing with the lifting rack 31. The lifting gear 33 can control the movement of the adjustment member 27 in the adjustment seat 26 through the lifting rack 31. The adjustment assembly also includes a reinforcing plate 34 vertically installed on the inner wall of the adjustment seat 26 and several sets of guide blocks 35 symmetrically installed on one side of the reinforcing plate 34. The adjustment member 27 is provided with a guide groove 36 that is slidably connected to the guide block 35. The guide block 35 can improve the stability of the adjustment member 27 when it moves.
[0046] As per the instruction manual Figures 10-11 As shown, the adjustment assembly of the present invention further includes a first transmission wheel 37 disposed on the other side of the rotating seat 25 and coaxially connected to the rotating member 28, a second transmission wheel 38 disposed on the outside of the adjustment seat 26 and coaxially connected to the lifting gear 33, and a transmission belt 32 connecting the first transmission wheel 37 and the second transmission wheel 38; wherein, the diameter of the first transmission wheel 37 is larger than the diameter of the second transmission wheel 38; when the fourth drive structure 29 controls the positioning structure 5 to rotate from the horizontal plane to the vertical plane through the rotating member 28 and the adjustment seat 26, the first transmission wheel 37 controls the adjustment member 27 to move downward in the adjustment seat 26 through the transmission belt 32 and the second transmission wheel 38, so that the positioning structure 5 moves to the positioning area.
[0047] In summary, when the positioning structure 5 needs to be used, the fourth driving structure 29 is started to drive the rotating piece 28 to rotate on the rotating seat 25, so that the rotating piece 28 drives the adjusting seat 26 to rotate, and when the rotating piece 28 rotates, the first transmission wheel 37 is driven to rotate, the first transmission wheel 37 drives the second transmission wheel 38 to rotate through the transmission belt 32, the second transmission wheel 38 drives the lifting gear 33 to rotate in the adjusting seat 26, the lifting gear 33 drives the lifting rack 31 to move, so that the adjusting piece 27 moves outward in the adjusting seat 26, and the adjusting piece 27 drives the positioning structure 5 to move, so that the positioning structure 5 positions the cloth, and when the fourth driving structure 29 controls the positioning structure 5 to rotate from the vertical plane to the horizontal plane through the rotating piece 28 and the adjusting seat 26, the first transmission wheel 37 controls the adjusting piece 27 to move upward in the adjusting seat 26 and makes the positioning structure 5 reset to the lower side of the proofing seat 3 through the transmission belt 32 and the second transmission wheel 38.
[0048] Embodiment four
[0049] With reference to Figure 1 - Figure 11 This embodiment is obtained by combining embodiment one, embodiment two and embodiment three.
[0050] The proofing table 1 and the vacuum adsorption table structure 42 adsorb and position the cloth, the supporting structure 39, the moving structure 40 and the proofing machine arm 2 control the proofing seat 3, adjust the position of the cutting tool 4, cut the cloth, the second driving structure 9, the positioning gear 7, the positioning ring 6 and the fixing piece 10 drive the positioning structure 5 to adjust the position, control two groups of positioning structures 5 to be arranged on the front and back sides of the cutting tool 4 respectively, so that the positioning structure 5 is consistent with the moving path of the cutting tool 4, thereby positioning and cutting the cloth, avoiding the offset of the cloth during cutting, and improving the proofing effect and yield of the garment cloth;
[0051] The third driving structure 15, the bevel gear structure 16, the screw transmission device 14 and the auxiliary sliding block 17 control the positioning piece 12 to move on the positioning seat 11, so as to adjust the positioning area of the positioning structure 5 and position the cloth to be cut of different sizes, and the cooperation of the positioning strip 18, the positioning rod 19, the limiting spring 20, the limiting strip 22, the reinforcing rod 23 and the limiting block 24 makes the lower end face of the positioning strip 18 flush with the lower end face of the positioning seat 11, thereby improving the positioning effect of the positioning structure 5;
[0052] The fourth driving structure 29, the rotating member 28, the rotating seat 25, the adjusting seat 26 and the adjusting member 27 are used in cooperation, so that the positioning structure 5 can be flipped, thereby facilitating the positioning of the cloth by the positioning structure 5 or the storage of the positioning structure 5. The first transmission wheel 37, the transmission belt 32, the second transmission wheel 38, the lifting gear 33 and the lifting rack 31 are used in cooperation, so that the movement of the adjusting member 27 in the adjusting seat 26 can be controlled, thereby adjusting the position of the positioning structure 5, so that the positioning structure 5 is arranged in alignment with the cutting tool 4. The reinforcing plate 34 and the guide block 35 are used in cooperation, so that the stability of the adjusting member 27 during movement can be improved.
[0053] The above embodiments are only used to illustrate the technical method of the present application but not limit the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical method of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical method of the present application.
Claims
1. A marking device for garment processing, comprising a marking table (1) and a marking arm (2) arranged on the marking table (1) and moving in all directions, characterized in that, Also include: The sample seat (3) is detachably arranged at the bottom of the sample machine arm (2); The cutting tool (4) is detachably mounted at the lower end of the sample seat (3) and cuts the cloth; The positioning mechanism is movably arranged on the sample seat (3) and cuts the cloth; Wherein, the positioning mechanism includes two groups of positioning structures (5) movably arranged at the lower end of the sample seat (3) and positioning the cloth, a positioning gear ring (6) rotatably mounted inside the sample seat (3) and detachably fixed with the positioning structure (5), and a positioning gear (7) movably arranged outside the positioning gear ring (6) and controlling the rotation of the positioning gear ring (6); The upper end surface of the sample seat (3) is provided with a first driving structure (8) for controlling the cutting tool (4) to cut the cloth; The upper end surface of the sample seat (3) is detachably provided with a second driving structure (9) for controlling the rotation of the positioning gear (7); Two groups of the positioning structure (5) are respectively arranged symmetrically outside the cutting tool (4) and consistent with the cutting path of the cutting tool (4); The positioning structure (5) includes a positioning seat (11) arranged in alignment with the cutting tool (4) and a positioning piece (12) movably arranged on the positioning seat (11); The positioning seat (11) is provided with a moving assembly for adjusting the position of the positioning piece (12); The moving assembly includes a screw drive (14) symmetrically arranged in a receiving groove (13) and detachably fixed with the positioning piece (12), a third driving structure (15) detachably mounted at the center of the upper end of the positioning seat (11) and controlling the movement of the positioning piece (12) through the screw drive (14), and a bevel gear structure (16) drivingly connecting the two groups of screw drives (14) and the third driving structure (15).
2. The marking device for garment processing according to claim 1, wherein The lower end surface of the positioning gear ring (6) is symmetrically provided with a fixing piece (10) for fixing the positioning structure (5); The lower end surface of the sample seat (3) is provided with a rotating groove for the rotation of the fixing piece (10).
3. The marking device for garment processing according to claim 2, wherein The lower end surface of the positioning seat (11) is arc-shaped structure; The outer surface of the positioning seat (11) is provided with a receiving groove (13) for receiving the positioning piece (12); The outer side of the lower end of the receiving groove (13) is provided with an inclined surface structure for facilitating the positioning piece (12) to enter the positioning seat (11).
4. The marking device for garment processing according to claim 3, wherein The outer surface of the positioning piece (12) is symmetrically provided with an auxiliary sliding block (17) movably arranged in the positioning seat (11); The positioning piece (12) is provided with a limiting assembly for positioning the cloth and aligned with the lower end surface of the positioning seat (11).
5. The marking device for garment processing according to claim 4, wherein The limiting assembly includes a plurality of positioning strips (18) movably arranged in the positioning piece (12) and a plurality of positioning rods (19) vertically mounted in the positioning piece (12) and movably connected with the positioning strips (18); Wherein, the positioning strip (18) is provided with a positioning hole corresponding to the positioning rod (19), and the bottom end of the positioning rod (19) extends into the positioning hole and is provided with a limiting spring (20) connected with the positioning strip (18); The lower end surface of the positioning member (12) is provided with a connecting groove connected with a plurality of groups of positioning strips (18); The bottom end of the positioning rod (19) is provided with a blocking block (21) for preventing the positioning rod (19) from falling out of the positioning hole; The adjacent two groups of positioning strips (18) are connected.
6. The marking device for garment processing according to claim 5, wherein The limiting assembly further comprises a plurality of groups of limiting strips (22) symmetrically arranged on one side surface of the positioning strip (18) and a plurality of groups of first limiting grooves formed on the other side surface of the adjacent positioning strip (18) and in sliding connection with the limiting strip (22); Both end surfaces of the limiting strip (22) are symmetrically provided with a reinforcing rod (23) and a limiting block (24) connected perpendicularly with the reinforcing rod (23); The positioning member (12) is provided with a second limiting groove for the movement of the limiting block (24).
7. The marking device for garment processing according to claim 2, wherein The lower side of the proofing seat (3) is provided with an adjusting assembly for controlling the flipping and stretching of the positioning structure (5); The adjusting assembly is detachably fixed with the lower end of the fixing member (10).
8. The marking device for garment processing according to claim 7, wherein The adjusting assembly comprises a rotating seat (25) connected perpendicularly with the fixing member (10), an adjusting seat (26) rotationally connected with the rotating seat (25), and an adjusting member (27) connected perpendicularly with the upper end surface of the positioning structure (5) and movably arranged in the adjusting seat (26); The upper end of the adjusting seat (26) is vertically provided with a rotating member (28) rotationally connected with the rotating seat (25); One side surface of the rotating seat (25) is detachably provided with a fourth driving structure (29) for controlling the rotation of the rotating member (28).
9. The marking device for garment processing according to claim 8, wherein The adjusting assembly further comprises an adjusting groove (30) formed on the adjusting member (27) and used for controlling the movement of the adjusting member (27), a lifting rack (31) mounted on one side of the inner wall of the adjusting groove (30), and a lifting gear (33) rotationally mounted on the inner wall of the adjusting seat (26) and in meshing connection with the lifting rack (31); The adjusting assembly further comprises a reinforcing plate (34) vertically mounted on the inner wall of the adjusting seat (26) and a plurality of groups of guide blocks (35) symmetrically mounted on one side surface of the reinforcing plate (34); The adjusting member (27) is provided with a guide groove (36) in sliding connection with the guide block (35).
10. The marking device for garment processing according to claim 9, wherein The adjusting assembly further comprises a first transmission wheel (37) coaxially connected with the rotating member (28) and arranged on the other side of the rotating seat (25), a second transmission wheel (38) coaxially connected with the lifting gear (33) and arranged on the outer side of the adjusting seat (26), and a transmission belt (32) connecting the first transmission wheel (37) and the second transmission wheel (38); The diameter of the first transmission wheel (37) is larger than that of the second transmission wheel (38); When the fourth driving structure (29) controls the positioning structure (5) to rotate from the horizontal plane to the vertical plane through the rotating member (28) and the adjusting seat (26), the first transmission wheel (37) controls the adjusting member (27) to move downward in the adjusting seat (26) through the transmission belt (32) and the second transmission wheel (38), and the positioning structure (5) moves to the positioning area.
Citation Information
Patent Citations
Proofing device for garment processing
CN118892234A