A finishing equipment based on textile fabric setting
By designing a finishing processing equipment that includes a compression spring, a cutting blade, and a dotting gun, the problem of insufficient utilization of elasticity in textile fabrics in existing technologies has been solved, achieving more efficient setting and lint adsorption effects, and improving the overall quality of textile fabrics.
Patent Information
- Application Number
- CN202511499407.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-20
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2045-10-20
AI Technical Summary
Existing technologies cannot effectively utilize the elasticity of the fabric and its structure to fit and cut the fabric when it is pilling, resulting in a reduction in the quality of post-processing.
A finishing processing device based on textile fabric setting was designed, including auxiliary components, winding and setting components, adsorption components and finishing components. It utilizes components such as compression springs, cutting blades, and dotting gun structures to improve the processing effect through processes such as winding, cutting, dotting and heat setting.
It improves the shaping and finishing effects of textile fabrics, enhances the efficiency of lint adsorption and waste wire cutting, and improves the overall aesthetics and processing quality of the fabrics.
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Figure CN120945619B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of textile fabric setting, and particularly relates to a post-finishing processing equipment based on textile fabric setting. BACKGROUND
[0002] The post-finishing method is a technical processing mode for imparting color effect, shape effect and practical effect to the fabric.
[0003] According to the search, in the prior art, Chinese Patent Publication No. CN109930349A discloses a raising machine for fabric post-finishing, which comprises a leveling frame and a raising frame, the leveling frame is provided with a rotating motor, a rotating mechanism, a connecting mechanism and a first cloth guide roller, the connecting mechanism is connected with the first cloth guide roller, the rotating motor is connected with the rotating mechanism, the rotating mechanism is provided with a swing frame, the swing frame is provided with a first rolling roller and a second rolling roller, the first rolling roller is connected with the rotating mechanism, the raising frame is provided with a power mechanism and an adjusting mechanism; the above embodiment solves the problem that the existing raising machine first levels and removes wrinkles and then raises, and the fabric shrinks during the raising process, which causes uneven raising of the fabric and affects the overall appearance of the raising.
[0004] However, the device still has the following defects: when facing the textile fabric in the pilling state, it cannot use its own elasticity and the elasticity of the structure itself to fit and cut for processing, thereby reducing the processing effect of post-finishing. SUMMARY
[0005] In view of the above problems, the application provides a post-finishing processing equipment based on textile fabric setting. The auxiliary assembly is provided with a winding and setting assembly installed on the top edge, a plurality of sets of adsorption assemblies installed on the top of the auxiliary assembly, and a plurality of sets of post-finishing assemblies installed on the output end.
[0006] The post-finishing assembly comprises a sleeve joint and a plurality of sets of constant temperature plates, one end of each set of compression springs is installed on the inner wall of the top of the sleeve joint, the other end of each set of compression springs is installed on a set of sliding rods, a plurality of sets of third cavities are arranged in an annular array on the outer wall of each set of sliding rods, and a set of winding blocks for winding the thread balls on the textile fabric are arranged in each set of third cavities; a plurality of sets of cutting blades are installed at equal intervals on one side wall of each set of constant temperature plates, a plurality of sets of pinning gun structures for pinning the cut thread ends are installed at equal intervals on the side wall close to the cutting blades of each set of constant temperature plates, and a set of second pressure sensors is installed on the side wall close to the sliding rods of each set of constant temperature plates.
[0007] Further, the auxiliary assembly comprises a work plate, a feeding pipe is installed on the top of the work plate, a first fixing plate is installed at the center of the top of the work plate, a supporting plate is installed on one side wall of the work plate, a second fixing plate is installed on one side wall of the supporting plate, and a plurality of groups of first electric push rods are installed on the bottom of the second fixing plate at equal intervals.
[0008] Further, the winding and shaping assembly comprises a supporting block, the bottom of the supporting block is installed on the top of the work plate, a monitoring structure is installed on the top of the supporting block, a second fixing plate is installed on one side wall of the supporting block, a first motor is installed on one side wall of the second fixing plate, a winding pipe is drivingly connected to the output end of the first motor, and a plurality of groups of air holes are formed in the outer wall of the winding pipe at equal intervals.
[0009] Further, a third fixing plate is installed on the outer wall of the winding pipe, a second electric push rod is installed on the bottom of the third fixing plate, a pressing block is installed on the output end of the second electric push rod, and a mounting bracket is installed on one side wall of the winding pipe.
[0010] Further, a third electric push rod is installed on one side wall of the mounting bracket, a second motor is installed on the output end of the third electric push rod, a sliding cylinder is installed on the output end of the second motor, the outer wall of the sliding cylinder is slidingly connected to the inner wall of the winding pipe, a plurality of groups of heating blocks are installed on the inner wall of the sliding cylinder at equal intervals.
[0011] Further, the adsorption assembly comprises a mounting cylinder, the bottom of each group of mounting cylinders is installed on the top of the first fixing plate, a group of first adsorption mud plates are installed on the inner wall of each group of mounting cylinders, a group of fourth electric push rods are installed on the bottom inner wall of each group of mounting cylinders, and a group of disc structures are installed on the output end of each group of fourth electric push rods.
[0012] Further, a group of second adsorption mud plates are installed on the inner wall of each group of disc structures, a plurality of groups of first cavities are annularly arranged on the top edge of each group of mounting cylinders, and a group of first pressure sensors are arranged in each group of first cavities.
[0013] Further, the top of each group of sleeve connection cylinders is installed on the output end of one group of first electric push rods, each group of sliding rods is slidingly connected to the inner wall of the sleeve connection cylinder, two groups of second cavities are symmetrically formed on the outer wall of each group of sliding rods, a group of third adsorption mud plates are arranged in each group of second cavities, two groups of mounting blocks are symmetrically installed on the bottom edge of each group of sleeve connection cylinders, a group of fifth electric push rods are installed on one side wall of each group of mounting blocks, and a group of fourth fixing plates are installed on the output end of each group of fifth electric push rods.
[0014] Further, one side wall of each of the fourth fixed plates is provided with a fourth cavity, one end of a first tension spring is installed on the inner wall of one side of each of the fourth cavities, one end of each of the first tension springs is installed on a clamping block, each of the clamping blocks is slidably connected in the fourth cavity, and each of the constant temperature plates is slidably connected on the clamping block.
[0015] Further, the bottom of each of the constant temperature plates is provided with a sliding cavity, a fifth fixed plate is installed on the bottom of each of the constant temperature plates, one end of a second tension spring is installed on one side wall of each of the fifth fixed plates, one end of each of the second tension springs is installed on a separation blade, and each of the separation blades is slidably connected in the sliding cavity.
[0016] The beneficial effects of the present application are:
[0017] 1. The winding block is used for winding the thread ball on the textile fabric, the thread ball is lifted synchronously into the sleeve joint cylinder during the lifting of the separation probe, the thread is located between the two cutting blades, the clamping block moves in the fourth cavity towards the thread ball after the first tension spring disappears, the bottom end of the thread ball is in a straight state, the cutting blade cuts the bottom end of the thread ball by the passive thrust of the first tension spring, the second pressure sensor disappears after the sliding rod is pressed, the point gun structure cuts the thread end, and the finishing effect of the textile fabric is improved.
[0018] 2. After the thread ball is cut, the waste is wound on the sliding rod, the compression spring drives the sliding rod to reset, and the constant temperature plate is reset, the separation blade is clamped into the second cavity during the resetting process, the cutting waste thread is pushed by the rebound force of the second tension spring, the outer wall of the separation blade is passively driven to perform the wool adsorption work with the third adsorption mud plate during the cutting process of the waste thread, the wool is prevented from being left on the separation blade during the long-term work, and the work effect of the waste thread cutting is improved.
[0019] 3. A plurality of sleeve joint cylinders are located above the textile fabric, a mounting cylinder is located below the textile fabric, the sleeve joint cylinder is lowered to press the textile fabric by the first electric push rod, the bottom end of the textile fabric is pressed on the first adsorption mud plate, the wool is adsorbed by the first adsorption mud plate, the disc structure is driven to rise by the fourth electric push rod, the separation probe is pushed upwards, the sliding rod slides in the sleeve joint cylinder, the bottom of the fourth fixed plate presses the first pressure sensor in the first cavity, the separation probe moves to a specific position, the wool adsorption effect is improved, and the positioning auxiliary effect is improved.
[0020] 4, start the second electric push rod drive pressure block to one end of the textile fabric press limiting, then start the first motor drive winding pipe rotation material work, in the process through the monitoring structure real-time monitoring, then start the third electric push rod push sliding cylinder in the winding pipe sliding, and make several groups of heating block in the sliding cylinder real-time heating work, heat setting work to the textile fabric in the tensile state, and with the help of the sliding cylinder, drive airflow through the air hole to the textile fabric dust removal work, improve the fabric heat setting effect at the same time improve the auxiliary dust removal work effect.
[0021] Other features and advantages of the present application will be set forth in the following description, and in part will become apparent to those skilled in the art upon examination of the following or can be learned by practice of the application. The objects and other advantages of the application can be realized and attained by the structure particularly pointed out in the written description and claims hereof as well as the appended drawings. BRIEF DESCRIPTION OF DRAWINGS
[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0023] Figure 1 The structure schematic diagram of the finishing processing equipment according to the embodiment of the present application is shown;
[0024] Figure 2 The structure schematic diagram of the auxiliary assembly according to the embodiment of the present application is shown;
[0025] Figure 3 The structure schematic diagram of the winding and setting assembly according to the embodiment of the present application is shown;
[0026] Figure 4 The structure schematic diagram of the adsorption assembly according to the embodiment of the present application is shown;
[0027] Figure 5 The structure schematic diagram of the finishing assembly according to the embodiment of the present application is shown;
[0028] Figure 6 The structure schematic diagram of the cutting blade according to the embodiment of the present application is shown;
[0029] Figure 7 The structure schematic diagram of the separation blade according to the embodiment of the present application is shown.
[0030] In the figure: 1, auxiliary assembly; 101, workboard; 102, feeding pipe; 103, first fixed plate; 104, support plate; 105, second fixed plate; 106, first electric push rod; 2, winding and shaping assembly; 201, support block; 202, monitoring structure; 203, second fixed plate; 204, first motor; 205, winding pipe; 206, third fixed plate; 207, second electric push rod; 208, pressing block; 209, air hole; 210, mounting frame; 211, third electric push rod; 212, second motor; 213, sliding cylinder; 3, adsorption assembly; 301, mounting cylinder; 302, first adsorption mud plate; 303, fourth electric push rod; 304, disc structure; 305, second adsorption mud plate; 306, first cavity; 307, first pressure sensor; 4, post-finishing assembly; 401, sleeving cylinder; 402, compression spring; 403, sliding rod; 404, second cavity; 405, third adsorption mud plate; 406, third cavity; 407, winding block; 408, separation probe; 409, mounting block; 410, fifth electric push rod; 411, fourth fixed plate; 412, fourth cavity; 413, first tension spring; 414, clamping block; 415, constant temperature plate; 416, cutting blade; 417, point hair gun structure; 418, second pressure sensor; 419, sliding cavity; 420, fifth fixed plate; 421, second tension spring; 422, separation blade. DETAILED DESCRIPTION
[0031] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the following will be combined with the accompanying drawings of the embodiments of the present application to make a clear and complete description of the technical solutions in the embodiments of the present application. Obviously, the described embodiments are some but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work belong to the scope of protection of the present application.
[0032] The embodiment of the present application provides a post-finishing processing equipment based on textile fabric setting. The equipment comprises an auxiliary assembly 1, for example, as shown in the figure, a winding and shaping assembly 2 is installed at the top edge of the auxiliary assembly 1, a plurality of adsorption assemblies 3 are installed on the top of the auxiliary assembly 1, and a plurality of post-finishing assemblies 4 are installed on the output end. Figure 1 As shown in the figure, the auxiliary assembly 1 comprises a workboard 101, a feeding pipe 102, a first fixed plate 103 and a support plate 104.
[0033] As shown in the figure, the winding and shaping assembly 2 comprises a support block 201, a monitoring structure 202, a second fixed plate 203, a first motor 204, a winding pipe 205 and a third fixed plate 206. Figure 2As shown, the auxiliary assembly 1 comprises a workboard 101, a feeding pipe 102 is installed on the top of the workboard 101, a first fixing plate 103 is installed at the center of the top of the workboard 101, a supporting plate 104 is installed on one sidewall of the workboard 101, a second fixing plate 105 is installed on one sidewall of the supporting plate 104, and a plurality of groups of first electric push rods 106 are installed on the bottom of the second fixing plate 105 at equal intervals.
[0034] As shown, the auxiliary assembly 1 comprises a workboard 101, a feeding pipe 102 is installed on the top of the workboard 101, a first fixing plate 103 is installed at the center of the top of the workboard 101, a supporting plate 104 is installed on one sidewall of the workboard 101, a second fixing plate 105 is installed on one sidewall of the supporting plate 104, and a plurality of groups of first electric push rods 106 are installed on the bottom of the second fixing plate 105 at equal intervals. Figure 3 As shown, the auxiliary assembly 1 comprises a workboard 101, a feeding pipe 102 is installed on the top of the workboard 101, a first fixing plate 103 is installed at the center of the top of the workboard 101, a supporting plate 104 is installed on one sidewall of the workboard 101, a second fixing plate 105 is installed on one sidewall of the supporting plate 104, and a plurality of groups of first electric push rods 106 are installed on the bottom of the second fixing plate 105 at equal intervals.
[0035] As shown, the auxiliary assembly 1 comprises a workboard 101, a feeding pipe 102 is installed on the top of the workboard 101, a first fixing plate 103 is installed at the center of the top of the workboard 101, a supporting plate 104 is installed on one sidewall of the workboard 101, a second fixing plate 105 is installed on one sidewall of the supporting plate 104, and a plurality of groups of first electric push rods 106 are installed on the bottom of the second fixing plate 105 at equal intervals.
[0036] As shown, the auxiliary assembly 1 comprises a workboard 101, a feeding pipe 102 is installed on the top of the workboard 101, a first fixing plate 103 is installed at the center of the top of the workboard 101, a supporting plate 104 is installed on one sidewall of the workboard 101, a second fixing plate 105 is installed on one sidewall of the supporting plate 104, and a plurality of groups of first electric push rods 106 are installed on the bottom of the second fixing plate 105 at equal intervals. Figure 4As shown, the adsorption assembly 3 comprises a mounting cylinder 301, the bottom of each group of mounting cylinders 301 is mounted on the top of the first fixed plate 103, a group of first adsorption mud plates 302 is mounted on the inner wall of each group of mounting cylinders 301, a group of fourth electric push rods 303 is mounted on the bottom inner wall of each group of mounting cylinders 301, a group of disc structures 304 is mounted on the output end of each group of fourth electric push rods 303, a group of second adsorption mud plates 305 is mounted on the inner wall of each group of disc structures 304, a plurality of groups of first cavities 306 are arranged in an annular array at the top edge of each group of mounting cylinders 301, and a group of first pressure sensors 307 is arranged in each group of first cavities 306.
[0037] So that a plurality of groups of sleeve sockets 401 are located directly above the textile fabric, and then the mounting cylinder 301 is located directly below the textile fabric, and then the first electric push rod 106 is started to drive the sleeve socket 401 to descend and extrude the textile fabric, so that the bottom end of the textile fabric is in contact with the first adsorption mud plate 302, and then the first adsorption mud plate 302 is used for wool adsorption, and then the fourth electric push rod 303 is used to drive the disc structure 304 to rise and push the separation probe 408 upward, so that the sliding rod 403 slides in the sleeve socket 401, and the bottom of the fourth fixed plate 411 extrudes the first pressure sensor 307 in the first cavity 306, so that the separation probe 408 moves to a specific position, which improves the wool adsorption effect and improves the positioning auxiliary effect.
[0038] For example, as shown in the drawings, Figure 5 , Figure 6 and Figure 7As shown, the finishing assembly 4 comprises a sleeve 401, the top of each set of the sleeve 401 is mounted on the output end of a set of the first electric push rod 106, one end of a set of the compression spring 402 is mounted on the inner wall of the top of each set of the sleeve 401, the other end of each set of the compression spring 402 is mounted on a set of the sliding rod 403, each set of the sliding rod 403 is slidingly connected to the inner wall of the sleeve 401, the bottom of each set of the sliding rod 403 is mounted on a set of the separation probe 408, the outer wall of each set of the sliding rod 403 is symmetrically provided with two sets of the second cavity 404, each set of the second cavity 404 is provided with a set of the third adsorption mud plate 405, the outer wall of each set of the sliding rod 403 is annularly provided with a plurality of sets of the third cavity 406, each set of the third cavity 406 is provided with a set of the hydraulic push rod, the output end of each set of the hydraulic push rod is mounted on a set of the winding block 407, the bottom edge of each set of the sleeve 401 is symmetrically provided with two sets of the mounting block 409, one side wall of each set of the mounting block 409 is mounted on a set of the fifth electric push rod 410, the output end of each set of the fifth electric push rod 410 is mounted on a set of the fourth fixed plate 411, one side wall of each set of the fourth fixed plate 411 is provided with a set of the fourth cavity 412, one side inner wall of each set of the fourth cavity 412 is mounted on one end of a set of the first tension spring 413, the other end of each set of the first tension spring 413 is mounted on a set of the clamping block 414, each set of the clamping block 414 is slidingly connected in the fourth cavity 412, each set of the clamping block 414 is movably clamped on a set of the constant temperature plate 415, one side wall of each set of the constant temperature plate 415 is equally spacedly provided with a plurality of sets of the cutting blade 416, one side wall of each set of the constant temperature plate 415 close to the cutting blade 416 is equally spacedly provided with a plurality of sets of the point hair gun structure 417, one side wall of each set of the constant temperature plate 415 close to the sliding rod 403 is mounted on a set of the second pressure sensor 418, the bottom of each set of the constant temperature plate 415 is provided with a set of the sliding cavity 419, the bottom of each set of the constant temperature plate 415 is mounted on a set of the fifth fixed plate 420, one side wall of each set of the fifth fixed plate 420 is mounted on one end of a set of the second tension spring 421, the other end of each set of the second tension spring 421 is mounted on a set of the separation blade 422, each set of the separation blade 422 is slidingly connected in the sliding cavity 419.
[0039] Before the separation probe 408 moves to the sleeve 401, the hydraulic push rod pushes the winding block 407 to wind the thread ball on the textile fabric, and the thread ball is lifted synchronously into the sleeve 401 in the lifting process of the separation probe 408, and the thread is located between the two groups of cutting blades 416, and after the cutting blades 416 are separated from the resistance state of the sliding rod 403, the first extension spring 413 senses the disappearance of the pressure and drives the clamping block 414 to move in the fourth cavity 412 to the direction close to the thread ball, and at this time the bottom end of the thread ball is in a straightened state, and the cutting blades 416 are driven by the passive thrust of the first extension spring 413 to cut the bottom end of the thread ball, and the second pressure sensor 418 senses the disappearance of the pressure of the resistance of the sliding rod 403 and drives the point gun structure 417 to perform the point wool work on the cut thread end, thereby improving the finishing effect of the textile fabric shaping.
[0040] After the thread ball cutting is completed, the waste will be wound on the sliding rod 403, and then the compression spring 402 drives the sliding rod 403 to reset, and in turn drives the constant temperature plate 415 to reset, and in the resetting process, the separation blade 422 is clamped into the second cavity 404, and the second extension spring 421 is used to push the cutting waste thread, and in the cutting process of the waste thread, the outer wall of the separation blade 422 is passively driven to perform the wool adsorption work with the third adsorption mud plate 405, thereby avoiding the wool from being left on the separation blade in the long-term working process, and improving the working effect of the waste thread cutting treatment.
[0041] The winding block 407 winds the thread ball on the textile fabric, and the thread ball is lifted synchronously into the sleeve 401 in the lifting process of the separation probe 408, and the thread is located between the two groups of cutting blades 416, and the first extension spring 413 senses the disappearance of the pressure and drives the clamping block 414 to move in the fourth cavity 412 to the direction close to the thread ball, and at this time the bottom end of the thread ball is in a straightened state, and the cutting blades 416 are driven by the passive thrust of the first extension spring 413 to cut the bottom end of the thread ball, and the second pressure sensor 418 senses the disappearance of the pressure of the resistance of the sliding rod 403 and drives the point gun structure 417 to perform the point wool work on the cut thread end, thereby improving the finishing effect of the textile fabric shaping.
[0042] After the thread ball cutting is completed, the waste will be wound on the sliding rod 403, and then the compression spring 402 drives the sliding rod 403 to reset, and in turn drives the constant temperature plate 415 to reset, and in the resetting process, the separation blade 422 is clamped into the second cavity 404, and the second extension spring 421 is used to push the cutting waste thread, and in the cutting process of the waste thread, the outer wall of the separation blade 422 is passively driven to perform the wool adsorption work with the third adsorption mud plate 405, thereby avoiding the wool from being left on the separation blade in the long-term working process, and improving the working effect of the waste thread cutting treatment.
[0043] Make several groups of sleeve 401 located directly above the textile fabric, and then install the sleeve 301 located directly below the textile fabric, and then start the first electric push rod 106 driven sleeve 401 down to squeeze the textile fabric, so that the bottom end of the textile fabric in the first contact on the adsorption of mud plate 302, and then through the first adsorption of mud plate 302, and then through the fourth electric push rod 303 driven disc structure 304 up to separate probe 408 upward push, so that the sliding rod 403 in the sleeve 401 sliding, and drive the fourth fixed plate 411 bottom extrusion of the first cavity 306 in the first pressure sensor 307, so that the separation probe 408 to a specific location, improve the wool adsorption effect at the same time improve the positioning effect.
[0044] Start the second electric push rod 207 driven block 208 on one end of the textile fabric press limiting, and then start the first motor 204 driven winding pipe 205 rotation material work, in the process through the monitoring structure 202 real-time monitoring, and then start the third electric push rod 211 push sliding cylinder 213 in the winding pipe 205 sliding, and make several groups of heating block in the sliding cylinder 213 real-time heating work, on the textile fabric in the stretching state heat setting work, and with the help of sliding cylinder 213, driven airflow through the air hole 209 on the textile fabric dust removal work, improve the fabric heat setting effect at the same time improve the auxiliary dust removal work effect.
[0045] Although the present application has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that the foregoing embodiments can be modified, or some of the technical features can be replaced by equivalent ones, without departing from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A finishing processing device based on textile fabric setting, comprising auxiliary components, characterized in that: A winding and shaping component is installed on the top edge of the auxiliary component, a number of adsorption components are installed on the top of the auxiliary component, and a number of finishing components are installed on the output end. The finishing assembly includes a sleeve and several sets of constant temperature plates. Each set of sleeves has a compression spring installed on one end of its top inner wall, and a sliding rod installed on the other end of each compression spring. Each set of sliding rods has several sets of third cavities arranged in a ring array on its outer wall. Each set of third cavities contains a winding block for winding the yarn balls on the textile fabric. Several sets of cutting blades are installed at equal intervals on one side wall of each set of constant temperature plates. Several sets of dotting gun structures for dotting the cut yarn ends are installed at equal intervals on the side wall of each set of constant temperature plates near the cutting blades. A set of second pressure sensors is installed on the side wall of each set of constant temperature plates near the sliding rods. The top of each set of sleeves is mounted on the output end of one set of first electric push rods. Each set of sliding rods is slidably connected to the inner wall of the sleeve. Two sets of second cavities are symmetrically opened on the outer wall of each set of sliding rods. A set of third adsorption mud plates is provided in each set of second cavities. Two sets of mounting blocks are symmetrically installed on the bottom edge of each set of sleeves. A set of fifth electric push rods is installed on one side wall of each set of mounting blocks. A set of fourth fixing plates is installed on the output end of each set of fifth electric push rods. Each set of fourth fixed plates has a fourth cavity on one side wall, and one end of a set of first tension springs is installed on one side inner wall of each set of fourth cavity. A set of snap-fit blocks is installed on the other end of each set of first tension springs. Each set of snap-fit blocks is slidably connected in the fourth cavity, and each set of constant temperature plates is movably snapped onto the snap-fit blocks. Each set of constant temperature plates has a set of sliding cavities at the bottom, and each set of constant temperature plates has a set of fifth fixing plates installed at the bottom. Each set of fifth fixing plates has one end of a set of second tension springs installed on one side wall, and each set of second tension springs has a set of separation blades installed on the other end. Each set of separation blades is slidably connected in the sliding cavity.
2. The finishing equipment based on textile fabric setting according to claim 1, characterized in that: The auxiliary component includes a work plate, a feeding pipe is installed on the top of the work plate, a first fixing plate is installed at the top center of the work plate, a support plate is installed on one side wall of the work plate, a second fixing plate is installed on one side wall of the support plate, and several sets of first electric push rods are installed at equal intervals on the bottom of the second fixing plate.
3. The finishing equipment based on textile fabric setting according to claim 2, characterized in that: The winding and shaping assembly includes a support block, the bottom of which is mounted on the top of the work plate. A monitoring structure is mounted on the top of the support block. A second fixing plate is mounted on one side wall of the support block. A first motor is mounted on one side wall of the second fixing plate. A winding tube is driven to the output end of the first motor. Several sets of ventilation holes are equally spaced on the outer wall of the winding tube.
4. The finishing equipment based on textile fabric setting according to claim 3, characterized in that: A third fixing plate is installed on the outer wall of the take-up tube, a second electric push rod is installed on the bottom of the third fixing plate, a pressure block is installed on the output end of the second electric push rod, and an installation bracket is installed on one side wall of the take-up tube.
5. The finishing equipment based on textile fabric setting according to claim 4, characterized in that: A third electric push rod is installed on one side wall of the mounting bracket. A second motor is installed on the output end of the third electric push rod. A sliding cylinder is installed on the output end of the second motor. The outer wall of the sliding cylinder is slidably connected to the inner wall of the winding tube. Several sets of heating blocks are installed at equal intervals on the inner wall of the sliding cylinder.
6. The finishing equipment based on textile fabric setting according to claim 2, characterized in that: The adsorption assembly includes mounting cylinders, with the bottom of each set of mounting cylinders mounted on the top of the first fixed plate. Each set of mounting cylinders has a set of first adsorption mud plates mounted on its inner wall, and a set of fourth electric push rods mounted on the bottom inner wall of each set of mounting cylinders. Each set of fourth electric push rods has a set of disc structures mounted on its output end.
7. The finishing equipment based on textile fabric setting according to claim 6, characterized in that: Each set of disc structures has a set of second adsorption mud plates installed on its inner wall. Each set of mounting cylinders has several sets of first cavities arranged in a ring array at its top edge. Each set of first cavities is equipped with a set of first pressure sensors.
Citation Information
Patent Citations
Napping machine for fabric afterfinishing
CN109930349A
Surperficial tufting processing apparatus of carpet
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Tentering setting machine drying oven with preheating structure
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