Ventilating fabric grooving apparatus and method of processing

The breathable fabric grooving equipment solves the problem of yarn unraveling during the fabric grooving process by forming a reinforced zone on the fabric surface and combining cutting, gluing and drying treatments, thus achieving a stable grooving effect and maintaining the fabric structure.

CN116289152BActive Publication Date: 2026-01-16WUJIANG TAIPINGQIAO TEXTILE CO LTD
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Patent Information

Application Number
CN202310224601.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-09
Publication Date
2026-01-16
Estimated Expiration
2043-03-09

AI Technical Summary

Technical Problem

Existing fabric grooving equipment is prone to yarn breakage and damage when the grooving length is too long, making it impossible to maintain the original shape of the fabric.

Method used

The breathable fabric grooving equipment includes a feeding section, a reinforcing section, and a cutting section arranged sequentially along the material delivery direction. The reinforcing section forms a uniformly distributed reinforcing area on the fabric surface, and the cutting section cuts the reinforcing area. Combined with the gluing and drying sections, the fabric structure is strengthened and cutting damage is reduced.

Benefits of technology

It effectively reduces yarn breakage and damage during the grooving process, ensures fabric structural stability, and improves grooving stability and formability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of ventilation fabric slotting equipment and its processing method, it is related to mechanical equipment technical field, to solve the problem that traditional fabric slotting length is too long and causes fabric to be unable to maintain original shape.Its technical scheme points are: including the feeding part, slotting structure and winding part sequentially arranged along material delivery direction, slotting structure is periodically attached fabric along vertical direction, slotting structure includes reinforcing section and cutting section sequentially arranged, reinforcing section is used to form several reinforcing areas uniformly distributed on the surface of fabric, and cutting section sequentially cuts several reinforcing areas.In the application, the fabric is woven from the yarn twisted by superfine polyester fiber, and the good air permeability of superfine polyester fiber is used to enhance the air permeability of the fabric as a whole.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of mechanical equipment, more particularly, it relates to a kind of air-permeable fabric slotting equipment and processing method thereof. BACKGROUND

[0002] Fabric is usually a soft sheet-shaped article processed by different equipment from long and soft yarn, and the properties of fabric are usually determined by its material and weaving structure. In the subsequent use process, in order to make the fabric better meet the use demand of people, the fabric is usually processed subsequently.

[0003] People have various demands for fabric performance, and air permeability is one of them. In the prior art, perforation or slotting is usually performed on the surface of the fabric. Slotting and perforation both damage the yarn inside the fabric, causing the yarn to break and form openings. When the length of the slot is too large, due to the excessive number of broken yarns, the fabric may appear yarn scattering or even damage due to insufficient cohesion between the yarns at the slot. Therefore, it is necessary to provide a structure to solve the problem that the length of the slot of the traditional fabric is too long to maintain the original shape of the fabric.

[0004] Therefore, a new scheme is needed to solve this problem. SUMMARY

[0005] In view of the deficiencies in the prior art, the purpose of the present application is to provide an air-permeable fabric slotting equipment and processing method thereof.

[0006] The above technical purpose of the present application is achieved by the following technical scheme: the air-permeable fabric slotting equipment comprises an upper feeding part, a slotting structure and a winding part arranged in sequence along the material delivery direction, characterized in that: the slotting structure is vertically and periodically attached to the fabric, the slotting structure comprises a reinforcing segment and a cutting segment arranged in sequence, the reinforcing segment is used to form a plurality of reinforcing areas uniformly distributed on the surface of the fabric, and the cutting segment cuts the reinforcing areas in sequence.

[0007] The present application is further provided as: the winding part and the upper feeding part pull the fabric to move step by step, and the step length of the fabric is consistent with the spacing between the reinforcing segment and the cutting segment.

[0008] The present application is further provided as: the reinforcing segment is sequentially provided with a glue applying part and a drying part, and the spacing between the glue applying part and the drying part is consistent with the step length of the fabric.

[0009] The application is further provided with a support for supporting the feeding part, the slotting structure and the winding part, a sliding plate vertically and periodically sliding on the support, the glue applying part including a glue outlet pipe fixedly connected with the sliding plate and having a glue outlet from the bottom of the sliding plate, and a pump body in communication with the glue outlet pipe, and a glue storage tank in communication with the inlet of the pump body.

[0010] The application is further provided with a plurality of upper and lower electric heating plates fixedly connected with the sliding plate and the support respectively in the drying part.

[0011] The application is further provided with a plurality of first installation grooves in the bottom of the sliding plate at the front end of the glue applying part, a polishing part fixedly connected in the first installation grooves, a grinding plate fixedly connected with the bottom of the polishing part, a plurality of second installation grooves in the support corresponding to the positions of the grinding plate, and an elastic deformation block fixedly connected in the second installation grooves and protruding out of the second installation grooves.

[0012] The application is further provided with a plurality of cutting parts fixedly connected with the sliding plate in the cutting section, a cutting groove in the support for the cutting parts to pass through, the cutting part including a first short blade, a long blade and a second short blade arranged in sequence along the sliding direction of the fabric, the length of the first short blade being the same as that of the second short blade, and the length of the long blade being greater than that of the first short blade.

[0013] The application is further provided with two symmetrically arranged pushing pieces slidingly connected in the cutting groove, a first sliding groove in the groove wall of the cutting groove for the pushing pieces to pass through and slide, a first elastic part fixedly connected in the first sliding groove and pushing the two pushing pieces to approach each other, a gap groove between the two pushing pieces for the cutting part to pass through, and an inclined surface on the pushing piece close to the gap groove.

[0014] The application is further provided with a ground surface on the top surface of the pushing piece, a plurality of second sliding grooves in the bottom surface of the sliding plate, two adjacent second sliding grooves being arranged symmetrically on both sides of the cutting part, a sliding rod vertically sliding in the second sliding groove, an elastic roller rotatably connected on the sliding rod, and a second elastic part fixedly connected in the second sliding groove and pushing the elastic roller to abut against the fabric.

[0015] The application is further provided with,

[0016] Step one: installing the fabric material on the feeding part, the slotting structure and the winding part;

[0017] Step two: starting the feeding part, the slotting structure and the winding part, and the feeding part and the winding part jointly making the fabric material taut;

[0018] Step three: grinding the fabric with the grinding plate.

[0019] Step 4: The adhesive application section applies adhesive to the thinned portion of the grinding disc;

[0020] Step 5: The drying section heats and dries the glued area of ​​the coating section;

[0021] Step Six: The elastic roller pushes the fabric material against the abrasive surface;

[0022] Step 7: The long blade abuts against the fabric material and pushes the pusher plate to slide. The sliding of the pusher plate causes the fabric material to tighten. The first short blade and the second short blade abut against the fabric material at the same time. The first short blade, the long blade and the second short blade groove the fabric material.

[0023] Step 8: The winding section winds up the woven material after the slotted structure has been processed.

[0024] In summary, the present invention has the following beneficial effects:

[0025] The slotted structure is periodically bonded to the fabric along the vertical direction. The slotted structure includes a reinforcing section and a cutting section arranged sequentially. The reinforcing section is used to form several uniformly distributed reinforcing areas on the fabric surface. The cutting section cuts several reinforcing areas sequentially. By setting the reinforcing section and the cutting section in the slotted structure, with the reinforcing section located at the front end of the cutting section, the reinforcing section first reinforces the fabric, making the structural strength and stability of the reinforced area better. Then, the cutting section cuts the reinforced section, making the cutting process of the cutting section less damaging to the fabric. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the structure of the present invention;

[0027] Figure 2 Cross-sectional view of the present invention Figure 1 ;

[0028] Figure 3 for Figure 2 Enlarged view of point A in the middle;

[0029] Figure 4 for Figure 2 Enlarged view of point B in the middle;

[0030] Figure 5 for Figure 2 Enlarged view of point C in the middle;

[0031] Figure 6 Cross-sectional view of the present invention Figure 2 ;

[0032] Figure 7 for Figure 6 Enlarged view of point D in the middle;

[0033] Figure 8For Figure 6 Enlarged view at middle E.

[0034] In the figure: 1, support; 2, sliding plate; 3, glue outlet pipe; 4, pump body; 5, glue storage box; 6, upper electric heating plate; 7, lower electric heating plate; 8, first mounting groove; 9, polishing piece; 10, grinding piece; 11, second mounting groove; 12, elastically deformed block; 13, cutting groove; 14, first short blade; 15, long blade; 16, second short blade; 17, push piece; 18, first sliding groove; 19, first elastic piece; 20, inclined surface; 21, second sliding groove; 22, sliding rod; 23, elastic roller; 24, second elastic piece. DETAILED DESCRIPTION

[0035] The application will be described in detail below with reference to the drawings and examples.

[0036] The air-permeable fabric slotting device, as shown in Figure 1 The upper feeding part is used for stably supporting the material to be processed, and the feeding part can ensure that the material to be processed is stably delivered from the feeding part, so that the material to be processed can be stably delivered to the slotting structure. The slotting structure is used for stably slotting the fabric, so that the surface of the fabric can be stably processed to form slots. The winding part is used for stably winding the material processed by the slotting structure, so that the processed material can be stably wound and stored, and the stability of the structure during the slotting process of the fabric is further improved.

[0037] As shown in Figure 1 The upper slotting structure is vertically and periodically attached to the fabric, and the slotting structure comprises a reinforcing segment and a cutting segment arranged in sequence. The reinforcing segment is used for forming a plurality of reinforcing areas uniformly distributed on the surface of the fabric. The cutting segment cuts the reinforcing areas in sequence. The reinforcing segment is located at the front end of the cutting segment. The reinforcing segment first performs reinforcing processing on the fabric, so that the structural strength and stability of the reinforcing areas are better. Then, the cutting segment cuts the reinforcing segment, so that the cutting process of the cutting segment causes less damage to the fabric.

[0038] As shown in Figure 1 The reinforcing areas formed on the fabric are uniformly distributed due to the periodic contact between the slotting structure and the fabric. The reinforcing areas are used for strengthening the structural strength of the fabric in the reinforcing areas. The cutting area of the cutting segment is located at the reinforcing area, so that the cutting segment can cut the material in the reinforcing area. Thus, the weakening of the structural strength of the fabric caused by the cutting process can be reduced. In addition, the reinforcing areas can reduce the phenomenon of yarn scattering and damage caused by cutting, so that the cutting process and the structure of the formed slots of the fabric are more stable.

[0039] As shown in Figure 1 , the upper winding part and the feeding part pull the fabric to move step by step, and the step length of the fabric is consistent with the interval between the reinforcing section and the cutting section. The feeding process of the fabric is set to be step by step, which ensures that the slotting structure can slot the fabric material in the stopped state in the step process, and ensures that the slotting process on the surface of the fabric is more stable.

[0040] The reinforcing section is sequentially provided with a glue applying part and a drying part, and the interval between the glue applying part and the drying part is consistent with the step length of the fabric. The glue applying part is used to apply glue on the surface of the fabric, and the drying part is used to heat the part coated with glue by the glue applying part, so that the glue on the surface of the fabric can be quickly dried, and the structure and function of the reinforcing area formed on the surface of the fabric are more stable, so that the slotting effect of the slotting structure on the reinforcing area is more stable.

[0041] As shown in Figure 1 , it also includes a support 1 for supporting the feeding part, the slotting structure and the winding part. The support 1 includes a support plate and a plurality of support feet for supporting the support plate away from the ground. The support feet can stably lift the support plate, so that the support plate can stably move away from the ground, reducing the influence of the raised dust on the processed material. The support plate is provided to stably support various structures, so that various structures can be stably collected together and process the fabric stably.

[0042] As shown in Figure 1 , the feeding part includes a first C-shaped frame fixedly connected to the top surface of the support plate by welding. A plurality of material grooves are symmetrically arranged on the first C-shaped frame. Material rollers are placed in the material grooves. The material rollers are used to wind and store the fabric material, so that the fabric material can be separated from the material rollers during the rotation of the material rollers, ensuring that the feeding process of the feeding part is more stable. A plurality of first electric telescopic rods are fixedly connected to the first C-shaped frame by bolt locking. The movable end of the first electric telescopic rod is fixedly connected to a speed reduction plate by welding. The speed reduction plate is provided with a speed reduction groove for the two ends of the material roller to pass through. After the two ends of the material roller pass through the speed reduction groove, the first electric telescopic rod is started, and the groove wall of the speed reduction groove is abutted with the two ends of the material roller. At this time, the material roller and the groove wall of the speed reduction groove will generate friction during the rotation of the material roller. At this time, the fabric material will be better tightened when moving under the winding action of the winding part, thereby ensuring that the slotting process on the surface of the fabric is more stable.

[0043] As shown in Figure 1As shown, the upper winding part includes a second C-shaped frame fixedly connected with the top surface of the self-supporting plate by welding, and a winding roller rotatably connected to the second C-shaped frame, a servo motor is fixedly connected to the second C-shaped frame by bolting, and the servo motor is used to drive the winding roller to rotate, and the stable winding and storage of the slotted fabric material can be realized during the rotation of the winding roller driven by the servo motor,

[0044] As shown in Figure 1 , the upper support plate is fixedly connected with a third C-shaped frame by welding, and a plurality of second electric telescopic rods are fixedly connected to the third C-shaped frame by bolting, the sliding path of the driving end of the second electric telescopic rod slides vertically and reciprocally, and the bottom end of the second electric telescopic rod is fixedly connected with a sliding plate 2 by welding, and the sliding plate 2 can be driven by the second electric telescopic rod to slide vertically and reciprocally stably.

[0045] As shown in Figures 1-3 , the upper gluing part includes a glue outlet pipe 3 fixedly connected with the sliding plate 2 and having a glue outlet from the bottom of the sliding plate 2, the glue outlet pipe 3 is communicated with a pump body 4, the inlet end of the pump body 4 is communicated with a glue storage tank 5, the glue storage tank 5 stores glue, the pump body 4 is a liquid delivery pump, and after the pump body 4 is started, suction is generated, the suction force is applied to the glue storage tank 5 and drives the glue to flow into the glue outlet pipe 3, the glue in the glue outlet pipe 3 flows out of the glue outlet, and when the sliding plate 2 is attached to the fabric, the glue will be stably adhered to the surface of the fabric, realizing the stable gluing process of the gluing part to the fabric, the sliding plate 2 below the glue outlet is fixedly connected with a moisture absorbing cloth piece, the glue flowing out of the glue outlet can first wet the moisture absorbing cloth piece, and under the guidance of the moisture absorbing cloth piece, the glue can diffuse to the surrounding, and then when the sliding plate 2 abuts against the fabric and the support plate, the moisture absorbing cloth piece is subjected to a pressing force, so that the glue in the moisture absorbing cloth piece can flow to the surface of the fabric material better, and the gluing area formed on the surface of the fabric material is larger.

[0046] As shown in Figure 2 and Figure 3 , the drying part includes a plurality of upper electric heating plates 6 and a plurality of lower electric heating plates 7 fixedly connected with the sliding plate 2 and the support 1 by bolting, respectively, and under the joint action of the upper electric heating plates 6 and the lower electric heating plates 7, the drying part can stably heat and dry the upper and lower sides of the gluing area at the same time, so that the surface of the glued fabric can be dried faster, the structure of the reinforced section formed on the surface of the fabric is more stable, and the slotted structure is more stable during the slitting process on the surface of the fabric.

[0047] As shown in Figure 2 and Figure 3As shown, the bottom of the sliding plate 2 at the front end of the gluing part is provided with a plurality of first installation grooves 8, and a polishing piece 9 is fixedly connected in the first installation groove 8 by bolt locking. The bottom end of the polishing piece 9 is fixedly connected with the bottom surface of the sliding plate 2. The polishing piece 9 is a servo motor. The grinding sheet 10 is fixedly connected with the output end of the servo motor by thread locking. A plurality of second installation grooves 11 corresponding to the position of the grinding sheet 10 are formed in the support piece 1. An elastic deformation block 12 protruding out of the second installation groove 11 is fixedly connected in the second installation groove 11. The material of the elastic deformation block 12 is elastic rubber. The elastic deformation block 12 has good elastic deformation performance due to the good elastic deformation performance of the elastic rubber. When the grinding sheet 10 drives the fabric material to contact the elastic deformation block 12, the elastic deformation block 12 will have stable elastic deformation performance. At this time, the elastic force generated by the elastic deformation block 12 can push the fabric material and the grinding sheet 10 to better abut, so that the grinding sheet 10 can better realize the thinning processing of the fabric. The polishing piece 9 rotates to drive the grinding sheet 10 to rotate. The rotation of the grinding sheet 10 grinds the surface of the fabric, so that the thickness of the contact part of the grinding sheet 10 is thinner and the structural strength is smaller. Further, the slotted structure can better process the stable opening slot structure in the thinning part during the slotting process, so that the slotting process of the slotted structure is more stable and smooth.

[0048] As shown, Figures 2-4 The cutting section includes a plurality of cutting pieces fixedly connected with the sliding plate 2 by welding. A cutting groove 13 is formed in the support piece 1 for the cutting pieces to enter. The cutting groove 13 provides a stable space for the cutting process of the cutting pieces, avoids the interference of the support piece 1 with the cutting of the fabric material by the cutting pieces, and ensures that the cutting pieces can stably process the slotting on the surface of the fabric material. The cutting pieces include a first short blade 14, a long blade 15 and a second short blade 16 arranged in sequence along the sliding direction of the fabric. The length of the first short blade 14 is the same as that of the second short blade 16. The length of the long blade 15 is greater than that of the first short blade 14. The cutting edges of the first short blade 14, the long blade 15 and the second short blade 16 are arranged in the sliding direction of the fabric and are provided with two blades. The cutting edge on one side of the first short blade 14 is connected with the long blade 15. The cutting edge on the other side of the long blade 15 is connected with the cutting edge on one side of the second short blade 16. This arrangement ensures that the first short blade 14, the long blade 15 and the second short blade 16 can cut the same slot. In the process of cutting the fabric by the cutting pieces, the long blade 15 first contacts the surface of the fabric. After a period of cutting by the long blade 15, the first short blade 14 and the second short blade 16 contact the surface of the fabric. Thus, the contact area of the cutting pieces with the fabric in the initial stage of cutting can be reduced, the degree of deformation of the fabric driven by the cutting pieces can be reduced, and the cutting pieces can better and stably cut the fabric.

[0049] AsFigure 2 、 Figure 6 、 Figure 7 and Figure 8 As shown in the figure, the cutting groove 13 is slidably connected with two symmetrically arranged push pieces 17, the top surface of the push piece 17 is provided with an abrasive surface, the abrasive surface is used to increase the friction coefficient of the top surface of the push piece 17, the groove wall of the cutting groove 13 is provided with a first sliding groove 18 for the push piece 17 to slide in, the first sliding groove 18 is fixedly connected with a first elastic member 19 for pushing the two push pieces 17 to move close to each other, the first elastic member 19 is a spring, a gap groove is arranged between the two push pieces 17 for the cutting piece to pass through, the gap groove is used to provide a stable gap process for the cutting process of the cutting piece, the push piece 17 near the gap groove is provided with an inclined surface 20, the inclined surface 20 is used to generate a horizontal force to push the two push pieces 17 to move away from each other when the first short blade 14 and the second short blade 16 abut against the inclined surface 20 under the decomposition of the inclined surface 20, under the action of the horizontal force, the two push pieces 17 move away from each other, in this process, the first elastic member 19 is gradually compressed and elastically deformed, the elastically deformed first elastic member 19 generates an elastic force, when the force applied by the cutting piece on the push piece 17 disappears, the two push pieces 17 move towards each other under the action of the elastic force generated by the elastically deformed first elastic member 19.

[0050] As Figure 2 、 Figure 6 、 Figure 7 and Figure 8As shown, the bottom surface of the sliding plate 2 is provided with a plurality of second sliding grooves 21, and two adjacent second sliding grooves 21 are symmetrically arranged on both sides of the cutting member. A sliding rod 22 vertically slides in the second sliding groove 21. The sliding rod 22 is rotatably connected with an elastic roller 23. The outer layer of the elastic roller 23 is fixedly connected with an elastic rubber layer. The elastic rubber layer has good elastic deformation performance, which can enhance the elastic deformation performance of the elastic roller 23. A second elastic member 24 is fixedly connected with the elastic roller 23 in the second sliding groove 21 and abuts against the fabric. The second elastic member 24 is a spring. When the elastic roller 23 slides away from the fabric, the bottom end of the elastic roller 23 is located below the cutting member. Therefore, before the cutting member cuts the fabric, the elastic roller 23 will first contact the fabric. During the cutting process of the cutting member, the elastic roller 23 and the second elastic member 24 are in an elastic deformation state. The elastic force generated by the second elastic member 24 and the elastic roller 23 can press the fabric, so that the fabric can abut against the pushing piece 17. At this time, the pushing piece 17 will apply a force to the fabric during the sliding process, so that the fabric at the cutting member is in a taut state. The rotation of the elastic roller 23 can realize stable displacement of the fabric during the sliding process, so that the taut state of the fabric during the cutting process is better, and the cutting member can better realize stable slotting of the fabric.

[0051] The processing method of the breathable fabric slotting device is as follows, Figures 1-8 as shown,

[0052] Step one: install the fabric material on the feeding part, the slotting structure and the winding part; this step realizes stable installation between the fabric material and the feeding part, the slotting structure and the winding part, ensures that each part can stably drive the fabric material to move, and ensures that the slotting structure can stably slot on the surface of the fabric.

[0053] Step two: start the feeding part, the slotting structure and the winding part. The feeding part and the winding part jointly act on the fabric material to make it taut; the feeding part can stably deliver the material to the slotting structure, and the winding part can stably wind the material after slotting. Through the action of the two, a taut tension can be applied to the fabric material, so that the fabric material is in a stable taut state, and the slotting structure can better apply a force to the fabric material, so that the slotting structure can stably slot on the surface of the fabric.

[0054] Step three: the grinding piece 10 grinds the fabric; this process can weaken the thickness and structural strength of the fabric at the contact position of the grinding piece 10, so that the cutting member can better cut the fabric, and can also stably scatter the fibers on the surface of the fabric, so that the subsequent gluing process and effect are more stable.

[0055] Step four: the gluing part glues the thinned part of the abrasive sheet 10; the gluing of the gluing part on the thinned part of the fabric can realize the stable gluing of the thinned part of the fabric, and the glue can realize the strengthening of the structure strength of the fabric material at the to-be-slotted part, and the glue can realize the bonding of the yarn at the to-be-slotted part, thereby ensuring that the position of the yarn inside the fabric after slotting is still stable, and the structure stability of the fabric after slotting is strengthened.

[0056] Step five: the drying part heats and dries the gluing part; the heating and drying of the drying part ensures that the glue on the surface of the fabric can be better dried, and the reinforced area on the surface of the fabric can be stably formed.

[0057] Step six: the elastic roller 23 pushes the fabric material against the sanding surface; the elastic roller 23 and the elastic force generated by the second elastic member 24 are used to push the elastic roller 23 against the fabric and push the fabric against the sanding surface, so that the fabric can be stably tensioned during the sliding of the pushing piece 17, and the fabric can be better tightened, and the cutting member can better realize the cutting process of the fabric.

[0058] Step seven: the long blade 15 abuts against the fabric material and pushes the pushing piece 17 to slide, the pushing piece 17 drives the fabric material to be tightened, the first short blade 14 and the second short blade 16 abut against the fabric material, and the first short blade 14, the long blade 15 and the second short blade 16 slot the fabric material; the long blade 15 first contacts the fabric to realize preliminary cutting of the fabric, and then the first short blade 14 and the second short blade 16 cut and connect the slot cut by the long blade 15, thereby reducing the contact area between the cutting member and the fabric at the contact position at the same time, reducing the resistance during the cutting process of the cutting member, and ensuring that the slotting process of the cutting member is more stable and smooth.

[0059] Step eight: the winding part winds the fabric material with the slotted structure after processing, so that the processed fabric can be stably packaged and transported away.

[0060] The fabric material is woven by using the yarn twisted by the superfine polyester fiber, and the good air permeability of the superfine polyester fiber is used to strengthen the air permeability of the fabric as a whole.

[0061] The above is only the preferred embodiment of the present application, and the protection scope of the present application is not limited to the above-mentioned embodiments, and any technical solution falling within the scope of the present application shall be within the protection scope of the present application. It should be noted that for ordinary skilled persons in the art, some improvements and refinements of the specification without departing from the principles of the present application shall also be considered as the protection scope of the present application.

Claims

1. A processing method of a breathable fabric slotting apparatus, the breathable fabric slotting apparatus comprising a feeding section, a slotting structure, and a winding section arranged in sequence along a material delivery direction, characterized in that: The slotting structure is vertically and periodically attached to the fabric, and the slotting structure comprises reinforcing sections and cutting sections arranged in sequence, the reinforcing sections are used to form several reinforcing areas uniformly distributed on the surface of the fabric, and the cutting sections cut the reinforcing areas in sequence; The supporting member (1) is provided with a sliding plate (2) sliding vertically and periodically, the glue outlet of the glue outlet pipe (3) is connected with the pump body (4), the inlet end of the pump body (4) is connected with the glue storage tank (5), the bottom of the sliding plate (2) is provided with a plurality of first installation grooves (8), the first installation grooves (8) are fixedly connected with the polishing member (9), the bottom end of the polishing member (9) is fixedly connected with the grinding plate (10) flush with the bottom surface of the sliding plate (2), the supporting member (1) is provided with a plurality of second installation grooves (11) corresponding to the position of the grinding plate (10), and the second installation grooves (11) are fixedly connected with the elastically deformed blocks (12) penetrating out of the second installation grooves (11); the cutting section comprises a plurality of cutting members fixedly connected with the sliding plate (2), the supporting member (1) is provided with a cutting groove (13) for the cutting members to penetrate into, and the cutting member comprises a first short blade (14), a long blade (15) and a second short blade (16) arranged in sequence along the sliding direction of the fabric, the length of the first short blade (14) is consistent with the length of the second short blade (16), and the length of the long blade (15) is greater than that of the first short blade (14); The processing method comprises: Step one: install the fabric material on the feeding part, the slotting structure and the winding part; Step two: start the feeding part, the slotting structure and the winding part, and the feeding part and the winding part jointly act to make the fabric material taut; Step three: the grinding plate (10) thins the fabric; Step four: the glue applying part applies glue to the thinned part of the grinding plate (10); Step five: the drying part heats and dries the glued part of the glue applying part; Step six: the abrasive roller (23) pushes the fabric material against the abrasive surface; Step seven: the long blade (15) abuts against the fabric material and slides the sliding plate (17), the sliding of the sliding plate (17) drives the fabric material to be taut, the first short blade (14) and the second short blade (16) abut against the fabric material at the same time, and the first short blade (14), the long blade (15) and the second short blade (16) groove the fabric material; Step eight: the winding part winds the fabric material processed by the slotting structure.

2. The method of processing a breathable fabric slotting apparatus according to claim 1, wherein: The drying part comprises a plurality of upper electric heating plates (6) and a plurality of lower electric heating plates (7) fixedly connected with the sliding plate (2) and the supporting member (1) respectively.

3. The method of processing a breathable fabric slotting apparatus according to claim 1, wherein: Two symmetrical push pieces (17) are slidably connected in the cutting groove (13), a first sliding groove (18) is arranged on the groove wall of the cutting groove (13) and used for allowing the push pieces (17) to slide in, a first elastic member (19) is fixedly connected in the first sliding groove (18) and used for pushing the two push pieces (17) to be close to each other, a gap groove for allowing the cutting piece to pass through is surrounded by the two push pieces (17), and an inclined surface (20) is arranged on the push piece (17) close to the gap groove.

4. The method of processing a breathable fabric slotting apparatus according to claim 3, wherein: A ground surface is arranged on the top surface of the push piece (17), a plurality of second sliding grooves (21) are arranged on the bottom surface of the sliding plate (2), two adjacent second sliding grooves (21) are arranged on the two sides of the cutting piece and are symmetrical, a sliding rod (22) is arranged in the second sliding groove (21) and is used for sliding in the vertical direction, an elastic roller (23) is rotatably connected to the sliding rod (22), and a second elastic member (24) is fixedly connected in the second sliding groove (21) and is used for pushing the elastic roller (23) to abut against the fabric.

Citation Information

Patent Citations

  • Moisture-permeable polyester fiber fabric and production process thereof

    CN115556432A

  • Textile material that operating mass with rated load is high cuts off machinery

    CN206828854U

  • Anti-pilling device for polyester fabric

    CN214219063U

  • Sheet base material die-cutting machine

    CN217395153U