Anti-mite composite jacquard knitted fabric production equipment
By introducing auxiliary components and drive systems into the production equipment of anti-mite composite jacquard knitted fabrics, the problem of difficult penetration of anti-mite solution is solved, and uniform anti-mite treatment and long-lasting effect are achieved inside the fabric.
Patent Information
- Application Number
- CN202422823734.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-11-20
AI Technical Summary
During the production process of anti-mite composite jacquard knitted fabrics, it is difficult for the anti-mite solution to fully penetrate into the fabric, affecting the anti-mite effect.
A production equipment for anti-mite composite jacquard knitted fabrics was designed, which includes a dyeing box and auxiliary components. The driving component drives the circular plate to move back and forth in the chamber. The impact and suction of the anti-mite solution are controlled by the one-way valves of the liquid outlet and inlet pipes. The nozzle and stirring blades are combined to improve the permeability and mixing uniformity of the solution.
It improves the penetration depth and uniformity of the anti-mite solution inside the fabric, enhances the anti-mite treatment effect of the fabric, and extends the service life of the anti-mite solution.
Smart Images

Figure CN223316911U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of knitted fabric production equipment, in particular to a mite-proof composite jacquard knitted fabric production equipment. Background Art
[0002] Anti-mite composite jacquard knitted fabric is a fabric that combines anti-mite function with jacquard knitting technology. After the fabric is jacquard processed using a jacquard machine, some special finishing agents are used, such as anti-mite finishing agents containing salicylic acid derivatives, which may work synergistically with other ingredients to make the fabric have better anti-mite performance.
[0003] In the actual preparation process of anti-mite fabrics, the fabrics are bleached and dyed, then dried, and then dipped in anti-mite solution (containing anti-mite finishing agent, cross-linking agent, etc.), and then dried, stretched at high temperature, and rolled. When the jacquard knitted fabric is dipped in the anti-mite solution, it is easy to make it difficult for the anti-mite solution to fully penetrate into the fabric due to the tight fiber structure of the fabric and the limitations of the thickness and number of layers of the fabric, thereby affecting the anti-mite effect of the fabric. Utility Model Content
[0004] In order to solve the above problems, the utility model provides an anti-mite composite jacquard knitted fabric production device.
[0005] The above technical objectives of the present invention are achieved through the following technical solutions: an anti-mite composite jacquard knitted fabric production device, comprising a fabric body and a dyeing box, wherein the dyeing box is filled with an anti-mite solution, and further comprising a feed conveyor roller and a discharge conveyor roller arranged on the side walls of the dyeing box at both ends, wherein two abutting rollers are provided in the dyeing box, and the fabric body is slidably connected to the feed conveyor roller, the two abutting rollers and the discharge conveyor roller in sequence, and the dyeing box is provided with an auxiliary component for improving the adequacy of the fabric body being impregnated with the anti-mite solution;
[0006] The auxiliary component includes two auxiliary tubes fixedly connected between two opposite inner walls of the impregnation and dyeing box, the two auxiliary tubes are respectively located on both sides of the fabric body, the two auxiliary tubes are divided into multiple chambers by multiple partitions, and the side walls of the two auxiliary tubes are equidistantly provided with multiple groups of relatively arranged liquid outlet pipes and liquid inlet pipes, each of the liquid outlet pipes is arranged close to the fabric body, and a circular plate is slidably connected in each of the chambers, and the impregnation and dyeing box is provided with a driving component for driving each circular plate.
[0007] By adopting the above technical solution, the anti-mite treatment effect of the fabric body is improved.
[0008] Furthermore, a one-way valve is provided in the liquid outlet pipe and the liquid inlet pipe respectively, and the conducting directions of the two one-way valves are set in opposite directions.
[0009] By adopting the above technical solution, a one-way limiting effect is provided for the suction and extrusion of the anti-mite solution.
[0010] Furthermore, a nozzle is provided on one side of the liquid outlet pipe close to the fabric body.
[0011] By adopting the above technical solution, the impact force and impact range of the anti-mite solution on the fabric body are improved.
[0012] Furthermore, a cross plate is fixedly connected to the end of the liquid inlet pipe away from the auxiliary pipe, and the cross plate is connected to a plurality of stirring blades via a rotating shaft.
[0013] By adopting the above technical solution, the anti-mite solution can be stirred and mixed to a certain extent, thereby reducing the precipitation of the anti-mite solution.
[0014] Furthermore, the driving assembly includes a driving plate slidably connected to one side of the dyeing box, two driving rods are fixedly connected to the side of the driving plate close to the dyeing box, the two driving rods are slidably connected to the auxiliary tube, and each of the circular plates is fixedly connected to the driving rod. The dyeing box is provided with a pushing assembly for pushing the driving plate and a resetting assembly for resetting the driving plate after pushing.
[0015] By adopting the above technical solution, the multiple circular plates on the side walls of the two driving rods are driven to move reciprocally in each chamber.
[0016] Furthermore, the pushing assembly includes two symmetrically arranged fixed plates fixedly connected to the side of the dyeing box close to the driving plate, a cam is connected between the two fixed plates through a rotating rod, one of the two fixed plates is provided with a motor, and the output end of the motor is connected to the rotating rod.
[0017] By adopting the above technical solution, the driving plate is driven to move reciprocally.
[0018] Furthermore, the reset assembly includes two symmetrically arranged T-shaped rods fixedly connected to one side of the dyeing box close to the driving plate, the driving plate is slidably connected to the two T-shaped rods, and the side walls of the two T-shaped rods are provided with springs, and the two ends of the two springs are respectively connected to the side walls of the T-shaped rod and the driving plate.
[0019] By adopting the above technical solution, the driving board can be reset.
[0020] In summary, the present invention has the following beneficial effects:
[0021] The anti-mite composite jacquard knitted fabric production equipment in this application, through the setting of auxiliary components, under the driving action of the driving components, makes the anti-mite solution reciprocatingly impact on both sides of the fabric body, thereby forming dynamic pressure changes on the fabric body, so that the anti-mite solution can overcome the resistance between the fibers of the fabric body, and the anti-mite solution can penetrate deeply into the interior of the fabric body, continuously pushing the anti-mite solution to diffuse into the interior of the fabric body, thereby improving the anti-mite treatment effect on the fabric body. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the utility model;
[0023] Figure 2 yes Figure 1 A magnified schematic diagram of point A in the middle;
[0024] Figure 3 This is a schematic diagram of the internal structure of the dyeing box according to an embodiment of the present invention;
[0025] Figure 4 This is a schematic diagram of the internal structure of the auxiliary component of the embodiment of the utility model;
[0026] Figure 5 yes Figure 4 Enlarged schematic diagram of point B in the middle.
[0027] In the figure: 101, fabric body; 102, dyeing box; 2, feed conveyor roller; 3, discharge conveyor roller; 4, pressing roller; 501, auxiliary pipe; 502, partition; 503, liquid outlet pipe; 504, liquid inlet pipe; 505, circular plate; 506, one-way valve; 507, nozzle; 508, cross plate; 509, stirring blade; 601, drive plate; 602, drive rod; 701, fixed plate; 702, rotating rod; 703, cam; 704, motor; 801, T-bar; 802, spring. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application; it is obvious that 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 other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of this application.
[0029] Example 1
[0030] See also Figure 1-Figure 5The figure shows an anti-mite composite jacquard knitted fabric production device, which includes a fabric body 101 and a dyeing box 102. The dyeing box 102 is filled with an anti-mite solution and also includes a feed conveyor roller 2 and a discharge conveyor roller 3 arranged on the side walls of the dyeing box 102 at both ends. The dyeing box 102 is provided with two abutting rollers 4. The fabric body 101 is slidably connected to the feed conveyor roller 2, the two abutting rollers 4 and the discharge conveyor roller 3 in sequence. The dyeing box 102 is provided with an auxiliary component for improving the adequacy of the fabric body 101 being impregnated with the anti-mite solution.
[0031] It should be noted here that the feed conveyor roller 2 and the discharge conveyor roller 3 can be used to adjust the extrusion force of the fabric body 101.
[0032] See also Figure 3-Figure 5 The auxiliary assembly shown in the figure includes two auxiliary tubes 501 fixedly connected between two opposite inner walls of the dyeing box 102. The two auxiliary tubes 501 are respectively located on both sides of the fabric body 101. The two auxiliary tubes 501 are divided into multiple chambers by multiple partitions 502. The side walls of the two auxiliary tubes 501 are equidistantly provided with multiple groups of oppositely arranged liquid outlet pipes 503 and liquid inlet pipes 504. Each liquid outlet pipe 503 is arranged close to the fabric body 101. A circular plate 505 is slidably connected to each chamber. The dyeing box 102 is provided with a driving assembly for driving each circular plate 505.
[0033] It should be noted here that: through the setting of the auxiliary components, under the driving action of the driving components, the anti-mite solution is reciprocated on both sides of the fabric body 101, thereby forming a dynamic pressure change on the fabric body 101, so that the anti-mite solution can overcome the resistance between the fibers of the fabric body 101, so that the anti-mite solution can penetrate deeply into the interior of the fabric body 101, and continuously push the anti-mite solution to diffuse into the interior of the fabric body 101, thereby improving the anti-mite treatment effect on the fabric body 101.
[0034] See also Figure 5 , the liquid outlet pipe 503 and the liquid inlet pipe 504 are respectively provided with a one-way valve 506, and the conduction directions of the two one-way valves 506 are set in opposite directions;
[0035] It should be noted here that the one-way valve 506 is provided to provide a one-way limiting effect on the suction and extrusion of the anti-mite solution, and the conducting direction of the one-way valve 506 located in the liquid outlet pipe 503 is from the inside to the outside of the auxiliary pipe 501.
[0036] See also Figure 3 and Figure 4 , the liquid outlet pipe 503 shown in the figure is provided with a nozzle 507 on one side close to the fabric body 101;
[0037] It should be noted here that the arrangement of the nozzle 507 increases the impact force and impact range of the anti-mite solution on the fabric body 101 .
[0038] See also Figure 5 , in the figure, a cross plate 508 is fixedly connected to the end of the liquid inlet pipe 504 away from the auxiliary pipe 501, and the cross plate 508 is connected to a plurality of stirring blades 509 through a rotating shaft;
[0039] It should be noted that the stirring blades 509 are provided to stir and mix the anti-mite solution to a certain extent, thereby reducing precipitation of the anti-mite solution.
[0040] Working principle: When the jacquard knitted fabric is subjected to anti-mite treatment, the fabric body 101 is first passed through the feed conveyor roller 2, two holding rollers 4 and the discharge conveyor roller 3 in sequence, and then the dyeing box 102 is filled with an appropriate amount of anti-mite solution. After the position of the fabric body 101 is adjusted, the fabric body 101 can be conveyed by the feed conveyor roller 2 and the discharge conveyor roller 3 to slide out of the dyeing box 102, thereby making the surface of the fabric body 101 impregnated with the anti-mite solution, and before being separated from the dyeing box 102, the excess anti-mite solution in the fabric body 101 is squeezed out by the discharge conveyor roller 3. The fabric 101 is squeezed, so that certain substances in the anti-mite solution form a thin covering layer on the surface of the fibers of the fabric body 101, or fill the tiny pores between the fibers, making the gaps between the fibers smaller, making it difficult for mites to find hiding places and movement channels in the fabric, and playing a role in physically blocking mites. At the same time, the active ingredients in the anti-mite solution will chemically bond with the fibers of the fabric body 101, or firmly bind to the fibers through physical adsorption, making it durable and able to withstand multiple washings while still maintaining a certain anti-mite effect, thereby extending the anti-mite service life of the fabric body 101.
[0041] In the process of impregnating the fabric body 101 with the anti-mite solution, the driving assembly is used to push each circular plate 505 to move back and forth in each chamber. In the process of reciprocating movement of the circular plate 505, under the action of the air pressure difference and the one-way limiting action of the one-way valve 506, the anti-mite solution is reciprocated and impacted on both sides of the fabric body 101. As a result, under the impact of the anti-mite solution, a dynamic pressure change is formed on the fabric body 101, so that the anti-mite solution can overcome the resistance between the fibers of the fabric body 101, so that the anti-mite solution can penetrate deeply into the fabric body 101, and continuously push the anti-mite solution to diffuse into the fabric body 101. In the reciprocating impact process, when the fabric body 101 is no longer impacted by the anti-mite solution, the fabric fibers are restored to a tight state again under the action of the fabric body 101's own fiber elasticity, so that the anti-mite solution can stay in the fabric body 101 for a longer time, thereby improving the anti-mite treatment effect on the fabric body 101.
[0042] Example 2
[0043] See also Figure 1 and Figure 2 , this embodiment further explains Example 1. The driving assembly in the figure includes a driving plate 601 slidably connected to one side of the dyeing box 102. Two driving rods 602 are fixedly connected to one side of the driving plate 601 close to the dyeing box 102. The two driving rods 602 are slidably connected to the auxiliary tube 501. Each circular plate 505 is fixedly connected to the driving rod 602. The dyeing box 102 is provided with a pushing assembly for pushing the driving plate 601 and a resetting assembly for resetting the driving plate 601 after pushing.
[0044] It should be noted here that: through the arrangement of the driving assembly, under the cooperation of the pushing assembly and the resetting assembly, the multiple circular plates 505 on the side walls of the two driving rods 602 will be driven to move reciprocally in each chamber.
[0045] See also Figure 1 and Figure 2 The pushing assembly shown in the figure includes two symmetrical fixed plates 701 fixedly connected to the side of the dyeing box 102 close to the driving plate 601. A cam 703 is connected between the two fixed plates 701 through a rotating rod 702. One of the two fixed plates 701 is provided with a motor 704, and the output end of the motor 704 is connected to the rotating rod 702.
[0046] It should be noted here that the pushing component is provided to push the driving plate 601 to move back and forth.
[0047] See also Figure 1 and Figure 2The reset assembly shown in the figure includes two symmetrically arranged T-shaped rods 801 fixedly connected to the side of the dyeing box 102 near the driving plate 601, the driving plate 601 is slidably connected to the two T-shaped rods 801, and the side walls of the two T-shaped rods 801 are provided with springs 802, and the two ends of the two springs 802 are respectively connected to the side walls of the T-shaped rods 801 and the driving plate 601;
[0048] It should be noted here that the reset component is provided to reset the driving board 601 .
[0049] Working principle: When it is necessary to drive each circular plate 505, the motor 704 is started to drive the cam 703 on the rotating rod 702 to rotate. During the rotation of the cam 703, when the cam 703 is against the driving plate 601, under the interaction force and the guiding action of the reset component, the driving plate 601 will be pushed away from the dyeing box 102. At this time, the two driving rods 602 will be driven to move synchronously. When the cam 703 passes over the driving plate 601, under the elastic action of the reset component, the driving plate 601 will be driven to move close to the dyeing box 102. Therefore, during the rotation of the cam 703, the reciprocating pushing action on the driving plate 601 and the reset action of the reset component will be used to drive the driving plate 601 to move reciprocally, thereby further driving the multiple circular plates 505 on the side walls of the two driving rods 602 to move reciprocally in each chamber.
[0050] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiment. All technical solutions based on the concept of the present invention are within the scope of protection of the present invention. It should be noted that for those skilled in the art, certain improvements and modifications that do not depart from the principles of the present invention should also be considered within the scope of protection of the present invention.
Claims
1. A production equipment for anti-mite composite jacquard knitted fabrics, comprising: A fabric body (101) and a dyeing box (102), wherein the dyeing box (102) is filled with an anti-mite solution; Its characteristics include: A feed conveying roller (2) and a discharge conveying roller (3) are arranged on the side walls at both ends of the dyeing box (102); two abutting rollers (4) are arranged in the dyeing box (102); the fabric body (101) is slidably connected to the feed conveying roller (2), the two abutting rollers (4) and the discharge conveying roller (3) in sequence; and the dyeing box (102) is provided with an auxiliary component for improving the adequacy of the fabric body (101) in being impregnated with an anti-mite solution.
2. The anti-mite composite jacquard knitted fabric production equipment according to claim 1, characterized in that: The auxiliary component comprises two auxiliary tubes (501) fixedly connected between two opposite inner walls of the dyeing box (102), the two auxiliary tubes (501) being respectively located on both sides of the fabric body (101), the two auxiliary tubes (501) being divided into a plurality of chambers by a plurality of partitions (502), the side walls of the two auxiliary tubes (501) being equidistantly provided with a plurality of groups of oppositely arranged liquid outlet tubes (503) and liquid inlet tubes (504), each of the liquid outlet tubes (503) being arranged close to the fabric body (101), a circular plate (505) being slidably connected in each of the chambers, and the dyeing box (102) being provided with a driving component for driving each circular plate (505).
3. The anti-mite composite jacquard knitted fabric production equipment according to claim 2, characterized in that: One-way valves (506) are respectively provided in the liquid outlet pipe (503) and the liquid inlet pipe (504), and the conduction directions of the two one-way valves (506) are arranged in opposite directions.
4. The anti-mite composite jacquard knitted fabric production equipment according to claim 2, characterized in that: A nozzle (507) is provided on one side of the liquid outlet pipe (503) close to the fabric body (101).
5. The anti-mite composite jacquard knitted fabric production equipment according to claim 2, characterized in that: A cross plate (508) is fixedly connected to the end of the liquid inlet pipe (504) away from the auxiliary pipe (501), and the cross plate (508) is connected to a plurality of stirring blades (509) via a rotating shaft.
6. The anti-mite composite jacquard knitted fabric production equipment according to claim 2, characterized in that: The driving assembly comprises a driving plate (601) slidably connected to one side of the dyeing box (102); two driving rods (602) are fixedly connected to one side of the driving plate (601) close to the dyeing box (102); the two driving rods (602) are slidably connected to the auxiliary tube (501); each of the circular plates (505) is fixedly connected to the driving rod (602); and the dyeing box (102) is provided with a pushing assembly for pushing the driving plate (601) and a resetting assembly for resetting the driving plate (601) after being pushed.
7. The anti-mite composite jacquard knitted fabric production equipment according to claim 6, characterized in that: The pushing assembly comprises two symmetrically arranged fixed plates (701) fixedly connected to a side of the dyeing box (102) close to the driving plate (601); a cam (703) is connected between the two fixed plates (701) via a rotating rod (702); one of the two fixed plates (701) is provided with a motor (704); and an output end of the motor (704) is connected to the rotating rod (702).
8. The anti-mite composite jacquard knitted fabric production equipment according to claim 7, characterized in that: The reset assembly comprises two symmetrically arranged T-shaped rods (801) fixedly connected to a side of the dyeing box (102) close to the driving plate (601); the driving plate (601) is slidably connected to the two T-shaped rods (801); the side walls of the two T-shaped rods (801) are sleeved with springs (802); and the two ends of the two springs (802) are respectively connected to the side walls of the T-shaped rods (801) and the driving plate (601).