Rough selvedge treatment equipment for regenerated fiber blended fabric
By using a combination of positioning rods and soldering iron plates in the textile fabric burr treatment equipment, the problem of winding when removing burrs is solved, achieving a more efficient and safe burr removal effect.
Patent Information
- Application Number
- CN202421930147.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-10
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-08-10
AI Technical Summary
Existing textile fabric burrs treatment equipment is prone to wrapping when removing burrs, resulting in damage to the product parts.
A burr treatment equipment for recycled fiber-blended fabric is designed, and positioning rods are set on the inner sides of both ends of the processing groove at one end of the beam, and an electric soldering iron plate is used to remove the burr during the transmission process to prevent wrapping.
It effectively prevents burr wrapping, avoids damage to the product parts, and improves the accuracy and safety of burr removal.
Smart Images

Figure CN222893387U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fiber blended fabrics, in particular to a device for processing burrs of recycled fiber blended fabrics. Background Art
[0002] After the fabric is produced, there will be a lot of burrs on both sides of the fabric. If the burrs are not removed, it will bring a lot of inconvenience in the next process and affect the quality of the fabric.
[0003] When the existing burr processing equipment is in use, such as the burr processing equipment for textile fabrics disclosed in application number CN202322448677.9, it includes a workbench, on which symmetrically arranged support columns are fixedly connected, and conveying rollers are rotatably connected between the support columns, and the conveying rollers are provided with a pushing mechanism, and a slide groove is fixedly opened on the workbench, and a guide rod is fixedly connected to the inside of the slide groove, and symmetrically arranged mounting columns are slidably connected in the slide groove; however, in the above-mentioned technology, the ceramic electric heater is a circular structure, so it is easy to get entangled when it contacts the product, resulting in a large deburring range and damage to the relevant product parts. Therefore, the utility model proposes a burr processing equipment for recycled fiber blended fabrics to solve the problems existing in the prior art. Utility Model Content
[0004] In view of the above problems, the utility model proposes a device for processing the burrs of recycled fiber blended fabrics. The device for processing the burrs of recycled fiber blended fabrics mainly utilizes positioning bars arranged on the inner sides of both ends of the processing groove at one end of the beam. The positioning bars can stably position and transmit the fabric. An electric soldering iron plate can be used during the transmission process to effectively remove the burrs. Due to the fixed and square structure, it can effectively prevent entanglement and prevent damage to product parts.
[0005] To achieve the purpose of the utility model, the utility model is implemented through the following technical solutions: a burr processing device for recycled fiber blended fabric, comprising a carrying discharge component and a burr removal mechanism, a receiving component assembled with bolts is arranged above one end of the carrying discharge component, and a burr removal mechanism installed in a sleeve is arranged on the inner side of the middle part of the carrying discharge component;
[0006] The deburring mechanism includes a gear box, a driving motor, a meshing gear set, a bevel gear set, a limiting sleeve rod, a threaded rod, a threaded cabin, an end block, a fixed sleeve plate, a crossbeam, a processing groove, an electric soldering iron plate and a positioning rod. The gear box is arranged on the inner side of the middle part of the carrying and discharging component, and the interior of the gear box is provided with a meshing gear set connected to the output end of the driving motor, the output end of the meshing gear set is provided with a bevel gear set, and the output end of the bevel gear set is provided with a limiting sleeve rod, the outer side of one end of the limiting sleeve rod is provided with a threaded rod threadedly connected to the threaded cabin, and one end of the threaded rod is provided with an end block, the inner side of the end block is provided with a fixing sleeve plate assembled with bolts, and the top side of the fixing sleeve plate is provided with a crossbeam, and the inner end side of the crossbeam is provided with a processing groove, the inner side of the processing groove is provided with an electric soldering iron plate, and positioning rods are provided on the inner sides of both ends of the processing groove.
[0007] As a preferred embodiment of the utility model, the positioning bars are symmetrically distributed with respect to the central axis of the processing groove, and the central axis of the processing groove and the electric soldering iron plate are in the same straight line.
[0008] As a preferred embodiment of the utility model, the loading and unloading assembly includes a table frame, a slotted table plate, a first end frame, a first loading rod group, a raw material rack, a positioning cylinder and a first pair of clamping rods, a slotted table plate assembled with bolts is arranged at the top of the table frame, and a first end frame assembled with bolts is arranged above one end of the slotted table plate.
[0009] As a preferred embodiment of the utility model, a first carrying rod group is arranged on the inner side of the middle part of the first end frame, a raw material rack connected to the output end of the positioning cylinder is arranged on the inner side of the upper part of the first end frame, and a first pair of clamping rods is arranged on the lower side of the first end frame.
[0010] As a preferred embodiment of the utility model, the material collecting component includes a second end frame, a second pair of clamping rods, a second carrying rod group, a material collecting frame, a clamping cylinder, a pulley and a driving wheel. The second end frame is bolted above the two ends of the slotted table, a second pair of clamping rods is arranged on the inner side of the lower part of the second end frame, and a second carrying rod group is arranged on the inner side of the middle part of the second end frame.
[0011] As a preferred embodiment of the utility model, a material receiving rack connected to the output end of the clamping cylinder is arranged on the upper inner side of the second end frame, and an output end connected to a pulley is arranged at one end of the material receiving rack, and the input end of the pulley is connected to the output end of the driving wheel.
[0012] The beneficial effects of the utility model are:
[0013] The utility model mainly utilizes positioning bars to be arranged on the inner sides of both ends of the processing groove at one end of the crossbeam. The positioning bars can stably position and transmit the cloth. During the transmission, an electric soldering iron plate can be used to effectively remove the burrs. Due to the fixed and square structure, winding can be effectively prevented, and damage to parts of the product can be prevented. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a three-dimensional structural schematic diagram of the utility model;
[0015] Figure 2 This is a bottom-up three-dimensional structural schematic diagram of the utility model;
[0016] Figure 3 It is a three-dimensional structural schematic diagram of the deburring mechanism of the utility model;
[0017] Figure 4 This is a schematic diagram of the structure of the drive motor and meshing gear set of the utility model;
[0018] Figure 5 It is a schematic diagram of the structure of the threaded rod and the threaded cabin of the utility model.
[0019] Among them: 1. Material discharging assembly; 101. table frame; 102. slotted table; 103. first end frame; 104. first carrying rod group; 105. raw material frame; 106. positioning cylinder; 107. first pair of clamping rods; 2. material receiving component; 201. second end frame; 202. second pair of clamping rods; 203. second carrying rod group; 204. material receiving frame; 205. clamping cylinder; 206. pulley; 207. driving wheel; 3. deburring mechanism; 301. gear box; 302. driving motor; 303. meshing gear group; 304. bevel gear group; 305. limiting sleeve rod; 306. threaded rod; 307. threaded cabin; 308. end block; 309. fixed sleeve plate; 3010. crossbeam; 3011. processing groove; 3012. electric soldering iron plate; 3013. positioning bar. DETAILED DESCRIPTION
[0020] In order to deepen the understanding of the present invention, the present invention will be further described in detail below in conjunction with an embodiment. The embodiment is only used to explain the present invention and does not constitute a limitation on the protection scope of the present invention.
[0021] according to Figure 1-5 As shown, this embodiment proposes a burr processing device for recycled fiber blended fabric, including a discharge assembly 1 and a burr removal mechanism 3, a receiving component 2 assembled with bolts is arranged above one end of the discharge assembly 1, and a burr removal mechanism 3 is arranged on the inner side of the middle part of the discharge assembly 1;
[0022] The deburring mechanism 3 includes a gear box 301, a driving motor 302, a meshing gear set 303, a bevel gear set 304, a limiting sleeve rod 305, a threaded rod 306, a threaded chamber 307, an end block 308, a fixed sleeve plate 309, a crossbeam 3010, a processing groove 3011, an electric soldering iron plate 3012 and a positioning bar 3013. The gear box 301 is arranged on the inner side of the middle part of the discharging component 1, and the meshing gear set 303 connected to the output end of the driving motor 302 is arranged inside the gear box 301, and the output end of the meshing gear set 303 is provided with a bevel gear set 304. A limiting sleeve rod 305 is provided at the output end of the bevel gear set 304, a threaded rod 306 threadedly connected to the threaded cabin 307 is provided on the outer side of one end of the limiting sleeve rod 305, and an end block 308 is provided at one end of the threaded rod 306, a fixing sleeve plate 309 assembled with bolts is provided on the inner side of the end block 308, and a crossbeam 3010 is provided on the top side of the fixing sleeve plate 309, and a processing groove 3011 is provided on the inner end side of the crossbeam 3010, a soldering iron plate 3012 is provided on the inner side of the processing groove 3011, and positioning bars 3013 are provided on the inner sides of both ends of the processing groove 3011.
[0023] The positioning bars 3013 are symmetrically distributed with respect to the central axis of the processing groove 3011 , and the central axis of the processing groove 3011 and the electric soldering iron plate 3012 are on the same straight line.
[0024] In the present embodiment, when it is necessary to remove the burrs, the drive motor 302 is started to output power to drive the output end to operate. After the drive motor 302 outputs power, the meshing gear set 303 and the bevel gear set 304 are meshed and transmitted. After the bevel gear set 304 is meshed and transmitted, the limit sleeve rod 305, the threaded rod 306, and the threaded chamber 307 are spirally operated, and the end block 308 and the fixed sleeve plate 309 are adjusted to a suitable clamping position. The positioning bars 3013 at both ends of the processing groove 3011 are used for feeding. After feeding, the electric soldering iron plate 3012 is turned on to generate a higher temperature to achieve the effect of removing the burrs.
[0025] The loading and unloading assembly 1 includes a table frame 101, a slotted table plate 102, a first end frame 103, a first loading rod group 104, a raw material frame 105, a positioning cylinder 106 and a first pair of clamping rods 107. The top of the table frame 101 is provided with a slotted table plate 102 assembled with bolts, and the first end frame 103 assembled with bolts is provided above one end of the slotted table plate 102.
[0026] In this embodiment, when in use, the slotted table 102 is supported by the table frame 101 and placed on a flat work location. After being placed, the slotted table 102 is used to effectively splice and install the material receiving component 2 and the deburring mechanism 3.
[0027] A first carrying rod group 104 is arranged on the inner middle side of the first end frame 103 , a raw material frame 105 connected to the output end of the positioning cylinder 106 is arranged on the inner upper side of the first end frame 103 , and a first pair of clamping rods 107 is arranged on one side below the first end frame 103 .
[0028] In this embodiment, when it is necessary to discharge the material, the output power of the output end of the positioning cylinder 106 is used to perform telescopic operation and then the material rack 105 is installed on the upper inner side of the first end rack 103. After the installation of the material rack 105 is completed, the material rack 105 is output and then output through the first carrying rod group 104 and the first pair of clamping rods 107.
[0029] The material collecting component 2 includes a second end frame 201, a second pair of clamping rods 202, a second carrying rod group 203, a material collecting frame 204, a clamping cylinder 205, a pulley 206 and a driving wheel 207. The second end frame 201 is bolted above the two ends of the slotted table 102, a second pair of clamping rods 202 is arranged on the inner side of the lower part of the second end frame 201, and a second carrying rod group 203 is arranged on the inner side of the middle part of the second end frame 201.
[0030] In this embodiment, after the burrs are removed, they enter the material receiving component 2 through the second pair of clamping rods 202, and are wound and transmitted through the second carrying rod group 203 to enable the material receiving rack 204 to be wound.
[0031] A material receiving rack 204 connected to the output end of the clamping cylinder 205 is provided on the upper inner side of the second end rack 201, and one end of the material receiving rack 204 is provided with an output end connected to a pulley 206, and the input end of the pulley 206 is connected to the output end of the driving wheel 207.
[0032] In this embodiment, the driving wheel 207 is then used to output power to drive the output end to operate, so that the driving wheel 207 outputs power to drive the pulley 206 to transmit and operate, so that the material receiving rack 204 rolls and forms the material. After the rolling is completed, the clamping cylinder 205 is started to output power to drive the output end to operate, so that the material receiving rack 204 is removed to complete the final processing.
[0033] The working principle of the burr processing equipment for recycled fiber blended fabric is as follows: when in use, the slotted table 102 is supported by the table frame 101 and then placed on a flat work place. After placement, the slotted table 102 is used to effectively splice and install the material receiving component 2 and the burr removal mechanism 3. When discharging is required, the output power of the positioning cylinder 106 output end is used to perform telescopic operation and then the raw material rack 105 is installed on the upper inner side of the first end rack 103. When the raw material rack 105 is installed, the raw material rack 105 is output and then output through the first carrying rod group 104 and the first pair of clamping rods 107. When burr removal is required, the drive motor 302 is started to output power to drive the output end to operate. After the drive motor 302 outputs power, the meshing gear group 303 and the bevel gear group 304 are meshed and driven to operate. When the bevel gear group 304 is meshed and driven to operate After the spiral operation of the limiting sleeve rod 305, the threaded rod 306 and the threaded chamber 307, the end block 308 and the fixed sleeve plate 309 are adjusted to a suitable clamping position, and the material is fed through the positioning bars 3013 at both ends of the processing groove 3011. After feeding, the electric soldering iron plate 3012 is turned on to generate a higher temperature to achieve the effect of removing the burrs. When the burrs are removed, they enter the material receiving component 2 through the second pair of clamping rods 202, and are wound and transmitted through the second carrying rod group 203 to allow the material receiving rack 204 to be wound. Then, the driving wheel 207 is used to output power to drive the output end to operate, so that the driving wheel 207 outputs power to drive the pulley 206 to transmit and operate, so that the material receiving rack 204 rolls the material into shape. After the winding is completed, the clamping cylinder 205 is started to output power to drive the output end to operate, so that the material receiving rack 204 is removed to complete the final processing.
[0034] The above shows and describes the basic principles, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments. The above embodiments and descriptions are only for explaining the principles of the utility model. Without departing from the spirit and scope of the utility model, the utility model may have various changes and improvements, which fall within the scope of the utility model to be protected. The scope of protection claimed by the utility model is defined by the attached claims and their equivalents.
Claims
1. A device for processing burrs of recycled fiber blended fabrics, comprising a discharging assembly (1) and a burr removal mechanism (3), characterized in that: A material receiving component (2) assembled with bolts is arranged above one end of the carrying and discharging component (1), and a burr removal mechanism (3) installed in a sleeve connection is arranged on the inner side of the middle part of the carrying and discharging component (1); The deburring mechanism (3) comprises a gear box (301), a driving motor (302), a meshing gear set (303), a bevel gear set (304), a limiting sleeve rod (305), a threaded rod (306), a threaded chamber (307), an end block (308), a fixed sleeve plate (309), a crossbeam (3010), a processing groove (3011), an electric soldering iron plate (3012) and a positioning bar (3013); the gear box (301) is arranged on the inner side of the middle part of the carrying and discharging component (1); and a meshing gear set (303) connected to the output end of the driving motor (302) is arranged inside the gear box (301); and a bevel gear set (304) is arranged at the output end of the meshing gear set (303). , and a limiting sleeve rod (305) is provided at the output end of the bevel gear set (304), a threaded rod (306) threadedly connected to a threaded chamber (307) is provided on the outer side of one end of the limiting sleeve rod (305), and an end block (308) is provided on one end of the threaded rod (306), a fixing sleeve plate (309) assembled with bolts is provided on the inner side of the end block (308), and a crossbeam (3010) is provided on the top side of the fixing sleeve plate (309), and a processing groove (3011) is provided on the inner end side of the crossbeam (3010), a soldering iron plate (3012) is provided on the inner side of the processing groove (3011), and positioning bars (3013) are provided on the inner sides of both ends of the processing groove (3011).
2. The burr treatment device for recycled fiber blended fabric according to claim 1, characterized in that: The positioning bars (3013) are symmetrically distributed about the central axis of the processing groove (3011), and the central axis of the processing groove (3011) and the electric soldering iron plate (3012) are located on the same straight line.
3. The burr processing device for recycled fiber blended fabric according to claim 1, characterized in that: The loading and unloading assembly (1) comprises a table frame (101), a slotted table plate (102), a first end frame (103), a first loading rod group (104), a raw material frame (105), a positioning cylinder (106) and a first pair of clamping rods (107); a slotted table plate (102) assembled with bolts is arranged at the top of the table frame (101), and a first end frame (103) assembled with bolts is arranged above one end of the slotted table plate (102).
4. The device for processing raw edges of recycled fiber blended fabrics according to claim 3, characterized in that: A first carrying rod group (104) is arranged on the inner side of the middle part of the first end frame (103), a raw material frame (105) connected to the output end of the positioning cylinder (106) is arranged on the inner side of the upper part of the first end frame (103), and a first pair of clamping rods (107) is arranged on one side of the lower part of the first end frame (103).
5. The burr treatment device for recycled fiber blended fabric according to claim 3, characterized in that: The material receiving component (2) comprises a second end frame (201), a second pair of clamping rods (202), a second carrying rod group (203), a material receiving frame (204), a clamping cylinder (205), a pulley (206) and a driving wheel (207); the second end frame (201) is bolted to the top of both ends of the slotted table (102); a second pair of clamping rods (202) is arranged on the inner side of the lower part of the second end frame (201); and a second carrying rod group (203) is arranged on the inner side of the middle part of the second end frame (201).
6. The device for processing raw edges of recycled fiber blended fabrics according to claim 5, characterized in that: A material receiving frame (204) connected to the output end of the clamping cylinder (205) is arranged on the upper inner side of the second end frame (201), and an output end connected to a pulley (206) is arranged at one end of the material receiving frame (204), and an input end of the pulley (206) is connected to the output end of the driving wheel (207).
Citation Information
Patent Citations
Burr treatment equipment for textile fabric
CN220888029U