Textile fabric efficient conveying device

Through the collaborative design of multiple links such as compression, smoothing and vacuuming, the instability and cleanliness of traditional textile fabric conveying devices are solved, and efficient, stable and clean conveying of textile fabrics is achieved, and production efficiency and quality are improved.

CN120288557AInactive Publication Date: 2025-07-11CHANGZHOU WANHONG TEXTILE CO LTD
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Patent Information

Application Number
CN202510757574.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-09
Publication Date
2025-07-11
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional textile fabric conveying devices have problems such as unstable conveying, easy wrinkle fabrics, and low cleanliness, which affect production efficiency and quality.

Method used

Using the synergistic effect of multiple links such as compression, smoothing, vacuuming, and guidance, supporting frames, roller frames, textile fabric rollers, conveying frames, feeding cloth rollers, feeding cloth rollers, compression frames, flattening frames, smoothing guide rods, transmission rods and vacuum cleaners are designed to achieve efficient, stable and clean transportation of textile fabrics.

Benefits of technology

Ensure the stability and flatness of the fabric during the transportation process, remove impurities on the fabric surface, improve production efficiency and quality, and meet the needs of high-end textiles.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an efficient textile fabric conveying device, which relates to the technical field of textile machinery and comprises a support frame, a carrier roller frame, a textile fabric roller, a conveying frame, a cloth feeding roller, a cloth discharging roller, a pressing frame, a smoothing frame, a smoothing guide rod, a transmission rod and a dust collector, a conveying rack is fixedly installed at the upper end of the supporting frame, and a carrier roller frame is fixedly connected to one end of the supporting frame in a butt joint mode. The carrier roller frame is provided with a textile fabric roller; a cloth feeding roller is transversely and rotationally installed at the end, close to the carrier roller frame, of the conveying rack, and a cloth discharging roller is transversely and rotationally installed at the other end of the conveying rack. The device further has the characteristic of integrated control, the whole device is controlled in a unified mode through the control box, operation and management are convenient, meanwhile, all parts of the device work cooperatively, efficient, stable and clean conveying of the textile fabric is achieved, the production efficiency and quality of the textile fabric are improved, and new vitality is injected into development of the textile industry.
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Description

Technical Field

[0001] The present invention relates to the technical field of textile machinery, and particularly relates to an efficient conveying device for textile fabrics. Background Art

[0002] In the process of textile fabric production, the conveying of fabrics is an indispensable link. Traditional textile fabric conveying devices often have problems such as unstable conveying, easy wrinkling of fabrics, and low cleanliness, which seriously affect the production efficiency and quality of textile fabrics.

[0003] Firstly, during the fabric conveying process of traditional conveying devices, due to the lack of effective pressing and guiding mechanisms, the fabric is prone to deviation, loosening, and even jamming, which not only affects the normal operation of the production line but also may cause damage to the fabric.

[0004] Secondly, for textile fabrics with high requirements, traditional conveying devices often fail to achieve the ideal flatness. The fabric is prone to wrinkles and uneven parts during conveying, which not only affects the appearance quality of the fabric but also may have an adverse impact on subsequent processing.

[0005] In addition, traditional conveying devices also have deficiencies in fabric cleaning. Due to the lack of effective cleaning mechanisms, it is difficult to thoroughly remove the lint and dust on the fabric surface, which not only affects the cleanliness of the fabric but also may cause damage to subsequent processing equipment. Summary of the Invention

[0006] The present invention relates to an efficient conveying device for textile fabrics, which realizes the efficient, stable, and clean conveying of textile fabrics through the coordinated action of multiple links such as pressing, flattening, dust suction, and guiding, meeting the requirements of the modern textile industry for high-quality fabrics.

[0007] The present invention provides an efficient conveying device for textile fabrics, specifically including: a support frame, a roller support frame, a textile fabric roller, a conveying machine frame, a feeding cloth roller, a discharging cloth roller, a pressing frame, a flattening frame, a flattening guide rod, a transmission rod, and a dust collector; the upper end of the support frame is fixedly installed with a conveying machine frame, and one end of the support frame is fixedly butted with a roller support frame; a textile fabric roller is installed on the roller support frame; the feeding cloth roller is horizontally rotatably installed at one end of the conveying machine frame close to the roller support frame, and the discharging cloth roller is horizontally rotatably installed at the other end of the conveying machine frame; pressing frames are respectively fixedly installed on the conveying machine frame above the feeding cloth roller and the discharging cloth roller; the flattening frame is horizontally fixedly installed on the conveying machine frame inside the feeding cloth roller, a dust collector is fixedly installed at the upper end of the middle part of the flattening frame, a transmission rod is horizontally rotatably installed on the conveying machine frame inside the flattening frame, and the transmission rod is located below the dust collector; the flattening guide rod is horizontally fixedly installed at one end of the conveying machine frame close to the discharging cloth roller; the textile fabric wound on the textile fabric roller enters above the feeding cloth roller and is sent out at the discharging cloth roller.

[0008] Optionally, a U-shaped trough is vertically formed at one end of the top of the idler bracket away from the support bracket, and the rotating shafts at both ends of the textile fabric roller are respectively placed in the troughs at the corresponding ends.

[0009] Optionally, side guide frames are fixedly installed in the middle parts of the inner frames on the left and right sides of the conveying machine frame along the cloth advancing direction. At the positions corresponding to the side edges of the advancing cloth on the side guide frames, side guide wheels are vertically arranged at uniform intervals left and right. The side guide wheels are in a hourglass shape, and the side edges of the cloth are located at the middle positions of the side guide wheels; A control box for integrated control is fixedly installed on the outer end side wall of the conveying machine frame.

[0010] Optionally, a conveying motor is fixedly installed on the conveying machine frame on the side where the control box is located. The rotating shaft of the conveying motor is fixedly connected to one end rotating shaft of the cloth sending roller through a coupling. A conveying wheel disc is fixedly installed on the other end rotating shaft of the cloth sending roller. A connecting rod is rotatably connected to the position near the edge of the outer end side wall of the conveying wheel disc through a pin shaft; A centered roller pattern converging from both ends to the middle is spirally provided on the roller wall of the cloth sending roller.

[0011] Optionally, a pressing shaft is vertically rotatably installed on the pressing frame. A short arm is fixedly sleeved on the pressing shaft. A pressing arm is rotatably sleeved on the pressing shaft outside the short arm. The short arm and the pressing arm are in a perpendicular state. The short arm and the pressing arm are fixedly connected to each other through a first tension spring. The pressing arm is located outside the short arm and extends and bends in the cloth conveying direction. A pressing rod is rotatably connected between the left and right pressing arms. The pressing rods on the pressing frames of the front and rear groups of the conveying machine frame are respectively vertically corresponding to the cloth feeding roller and the cloth sending roller. The extending directions of the pressing arms on the pressing frames of the front and rear groups are consistent with the cloth advancing direction.

[0012] Optionally, the flattening frame is in a T shape. Horizontal flattening rods are respectively rotatably connected to the left and right sides of the lower end of the middle part of the flattening frame through pin shafts. L-shaped display boards are vertically provided at the bottoms of the flattening rods. The lower ends of the display boards are tangent to the upper ends of the advancing cloth, and the edges of the display boards tangent to the cloth are all in a rounded corner structure. The upper ends between the left and right flattening rods are fixedly connected to each other through a second tension spring. A flattening driving frame is provided in the middle part of the flattening frame towards the direction where the flattening rods are located. A flattening driving shaft is vertically and rotatably installed through the flattening driving frame. An elliptical cam is fixedly connected to the lower end of the flattening driving shaft. The cam is located between the left and right flattening rods. A worm gear is fixedly connected to the upper end of the flattening driving shaft.

[0013] Optionally, the left and right ends of the smoothing guide rod are fixedly connected to the inner frames at the left and right ends of the conveyor frame through "Y"-shaped end clamps respectively, and the smoothing guide rod is symmetrically slidably sleeved with connecting sleeves, and the connecting sleeves are cubic block structures composed of two upper and lower distributed and connected by rotating shafts. The cube block of the upper connecting sleeve is slidingly sleeved with the other end of the smoothing rod, and the bottom of the end clamp is downwardly connected to an electrostatic lead-out ground wire, and the lower end of the electrostatic lead-out ground wire is pre-buried in the ground. The smoothing guide rod, the end clamp and the connecting sleeve are all made of metal materials, and a tactile sensor is provided on the inner groove wall of the groove of the end clamp, and the edge of the moving cloth is in the groove of the end clamp.

[0014] Optionally, a transmission wheel is fixedly provided at one end of the transmission rod corresponding to the conveying wheel, and the edge of the outer side wall of the transmission wheel is rotatably connected to the other end of the connecting rod through a pin shaft. The middle part of the transmission rod is a worm, and the worm is meshed with the worm wheel. The conveying motor drives the cloth delivery roller to rotate, and the cloth is conveyed. The conveying wheel drives the transmission wheel to rotate through the connecting rod, and the transmission rod drives the worm wheel to rotate through the worm. The cam rotates and squeezes the two smoothing rods to make opening and closing movements under the action of the second tension spring. The other end of the smoothing rod slides on the smoothing guide rod through the connecting sleeve, and the exhibition plate flattens the moving cloth.

[0015] Optionally, a wind wheel is vertically rotatably installed in the vacuum cleaner, and the wind wheel is a cylindrical impeller structure. The lower end of the wind wheel is fixedly connected to the uppermost end of the smoothing drive shaft. A discharge pipe is horizontally connected to one side of the vacuum cleaner, and the end of the discharge pipe extends downward and is connected to a lint collection bucket. The lint collection bucket is placed on the ground. The top of the vacuum cleaner is a dust pipe, and two dust branch pipes are connected to the dust pipe, and the other ends of the dust branch pipes are respectively fixedly connected to a dust pipe box, and the dust pipe box is obliquely installed on the outside of the smoothing rod and the display board. The dust pipe box is inclined along the traveling direction of the cloth. When the smoothing drive shaft rotates, the wind wheel rotates synchronously, and the lint and dust at the display board are adsorbed by the dust pipe box and discharged into the lint collection bucket through the discharge pipe.

[0016] The present invention provides a highly efficient conveying device for textile fabrics, which has the following beneficial effects: Firstly, the device of the present invention realizes stable compression of textile fabrics during the conveying process through the design of the compression frame, effectively preventing the fabric from getting stuck or wrinkled due to looseness or deviation during the conveying process, thereby ensuring the smooth conveying of the fabric.

[0017] Secondly, the combined use of the smoothing frame and the smoothing guide rod allows the fabric to be effectively smoothed and flattened during the conveying process, eliminating wrinkles and uneven parts in the fabric and improving the flatness and quality of the fabric. This design is particularly suitable for textile fabrics with high requirements for flatness and can meet the needs of high-end textile production.

[0018] Furthermore, the linkage design between the vacuum cleaner and the flattening drive shaft achieves the effect of cleaning the fabric while flattening it. The vacuum cleaner adsorbs and discharges the lint and dust at the display board through the suction pipe box, effectively removing the impurities on the fabric surface, improving the cleanliness of the fabric, and providing a better raw material basis for subsequent processing.

[0019] In addition, the device of the present invention also uses side guide frames and side guide wheels to laterally guide and limit the fabric, ensuring the centering and stability of the fabric during transportation. At the same time, the conveying motor is linked with the flattening drive shaft through a transmission rod, simplifying the structure of the device, reducing the maintenance cost, and improving the overall working efficiency.

[0020] Finally, the device of the present invention also has the characteristic of integrated control. The entire device is uniformly controlled through a control box, which is convenient for operation and management. At the same time, the components of the device work together to achieve the efficient, stable, and clean transportation of textile fabrics, improving the production efficiency and quality of textile fabrics, and injecting new vitality into the development of the textile industry.

[0021] In summary, the high-efficiency fabric conveying device proposed by the present invention has significant advantages in terms of the stability, flatness, cleanliness, and production efficiency of fabric conveying, and is of great significance for improving the production level and market competitiveness of the textile industry. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly introduced below.

[0023] The accompanying drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.

[0024] In the accompanying drawings: Figure 1 shows the first axonometric structure schematic diagram of the present invention; Figure 2 shows the second axonometric structure schematic diagram of the present invention; Figure 3 shows the Figure 2 partial enlarged structure schematic diagram of A in the present invention; Figure 4 shows the third axonometric structure schematic diagram of the present invention; Figure 5 shows the axonometric structure schematic diagram of the state where the flattening frame and the flattening guide rod of the present invention are separated from the conveying machine frame; Figure 6 shows the partial lower axonometric structure schematic diagram of the flattening frame and the flattening guide rod of the present invention; Figure 7 shows the semi-sectional upper separated state axonometric structure schematic diagram of the vacuum cleaner part of the present invention; Figure 8 Shows a partial axonometric structural schematic diagram of the flattening frame of the present invention; Figure 9 Shows a partial axonometric structural schematic diagram of the conveying machine frame of the present invention; Figure 10 Shows a partial axonometric structural schematic diagram of the flattening guide rod of the present invention.

[0025] List of reference numerals 1, support frame; 2, idler bracket; 201, trough; 3, textile fabric roller; 4, conveying machine frame; 401, side guide frame; 402, side guide wheel; 403, control box; 5, feeding cloth roller; 6, discharging cloth roller; 601, conveying motor; 602, conveying wheel disc; 603, centered roller pattern; 604, connecting rod; 7, pressing frame; 701, pressing shaft; 702, short arm; 703, pressing arm; 704, first tension spring; 706, limit post; 707, pressing rod; 8, flattening frame; 801, flattening rod; 802, display board; 803, second tension spring; 804, flattening drive frame; 805, flattening drive shaft; 806, worm gear; 807, cam; 9, flattening guide rod; 901, end clamping block; 90101, tactile sensor; 902, static electricity leading-out ground wire; 903, connecting sleeve block; 10, transmission rod; 1001, transmission wheel disc; 1002, worm; 11, vacuum cleaner; 1101, main suction pipe; 1102, suction branch pipe; 1103, suction pipe box; 1104, wind wheel; 1105, discharge pipe; 1106, fluff collection bucket. Detailed implementation manners

[0026] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings of the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0027] Embodiment 1: Please refer to Figures 1 to 10 : The present invention provides an efficient conveying device for textile fabrics, comprising: a support frame 1, a roller support frame 2, a textile fabric roller 3, a conveying machine frame 4, a feeding cloth roller 5, a discharging cloth roller 6, a pressing frame 7, a flattening frame 8, a flattening guide rod 9, a transmission rod 10 and a vacuum cleaner 11; The upper end of the support frame 1 is fixedly installed with a conveying machine frame 4, and one end of the support frame 1 is fixedly butted with a roller support frame 2; A textile fabric roller 3 is installed on the roller support frame 2; A feeding cloth roller 5 is horizontally rotatably installed at one end of the conveying machine frame 4 close to the roller support frame 2, and a discharging cloth roller 6 is horizontally rotatably installed at the other end of the conveying machine frame 4; Pressing frames 7 are respectively fixedly installed on the conveying machine frame 4 above the feeding cloth roller 5 and the discharging cloth roller 6; A flattening frame 8 is horizontally fixedly installed on the conveying machine frame 4 inside the feeding cloth roller 5, a vacuum cleaner 11 is fixedly installed at the upper end of the middle part of the flattening frame 8, a transmission rod 10 is horizontally rotatably installed on the conveying machine frame 4 inside the flattening frame 8, and the transmission rod 10 is located below the vacuum cleaner 11; A flattening guide rod 9 is horizontally fixedly installed at one end of the conveying machine frame 4 close to the discharging cloth roller 6; The textile fabric wound on the textile fabric roller 3 enters above the feeding cloth roller 5 and is sent out at the discharging cloth roller 6.

[0028] Wherein, a U-shaped supporting groove 201 is vertically formed at one end of the top of the roller support frame 2 away from the support frame 1, and the rotating shafts at both ends of the textile fabric roller 3 are respectively placed in the corresponding supporting grooves 201 at one end.

[0029] Wherein, side guide frames 401 are respectively fixedly installed along the fabric advancing direction in the middle parts of the inner frames on the left and right sides of the conveying machine frame 4. Vertically arranged side guide wheels 402 with uniform left and right intervals are provided at the positions corresponding to the side edges of the advancing fabric on the side guide frames 401. The side guide wheels 402 are in a hourglass-shaped structure, and the side edges of the fabric are located at the middle positions of the side guide wheels 402; A control box 403 for integrated control is fixedly installed on the outer end side wall of the conveying machine frame 4.

[0030] Wherein, a conveying motor 601 is fixedly installed on the conveying machine frame 4 on the side where the control box 403 is located. The rotating shaft of the conveying motor 601 is fixedly connected to one end rotating shaft of the discharging cloth roller 6 through a coupling. A conveying wheel disc 602 is fixedly installed on the other end rotating shaft of the discharging cloth roller 6. A connecting rod 604 is rotatably connected to the position close to the edge of the outer end side wall of the conveying wheel disc 602 through a pin shaft; A centered roller pattern 603 converging from both ends to the middle is spirally provided on the roller wall of the discharging cloth roller 6.

[0031] Among them, a pressing shaft 701 is vertically rotatably installed on the pressing frame 7, a short arm 702 is fixedly mounted on the pressing shaft 701, a pressing arm 703 is rotatably mounted on the pressing shaft 701 outside the short arm 702, the short arm 702 and the pressing arm 703 are in a vertical state, the short arm 702 and the pressing arm 703 are fixedly connected by a first tension spring 704, the pressing arm 703 is outside the short arm 702 and extends and bends in the direction of fabric conveying, and the left and right pressing arms 703 are rotatably connected. Connect the pressure rod 707, the pressure rods 707 on the front and rear groups of the pressing frames 7 of the conveyor frame 4 are respectively vertically corresponding to the feeding roller 5 and the feeding roller 6, the extension direction of the pressure arms 703 on the front and rear groups of the pressing frames 7 is consistent with the traveling direction of the cloth, the pressure arm 703 on the pressing frame 7 is acted upon by the tension of the first tension spring 704, so that the end of the pressure arm 703 is tightly attached to the top of the cloth, and the cloth is pressed against the feeding roller 5, thereby ensuring the stability of the cloth during the conveying process.

[0032] Among them, the smoothing frame 8 is a T-shaped structure, and the left and right sides of the lower middle end of the smoothing frame 8 are respectively connected with horizontal smoothing rods 801 through pin shafts, and the bottom of the smoothing rod 801 is vertically provided with an L-shaped display board 802, the lower end of the display board 802 is tangent to the upper end of the traveling cloth, and the edges of the display board 802 and the cloth at the tangent point are both rounded structures, and the upper ends of the left and right smoothing rods 801 are fixedly connected by a second tension spring 803, and the middle part of the smoothing frame 8 is provided with a smoothing drive frame 804 facing the direction of the smoothing rod 801, and the smoothing drive shaft is vertically penetrated and rotatably installed in the smoothing drive frame 804. 805, the lower end of the smoothing drive shaft 805 is fixedly connected with an elliptical cam 807, the cam 807 is located between the left and right smoothing rods 801, the upper end of the smoothing drive shaft 805 is fixedly connected with a worm gear 806, the smoothing drive shaft 805 drives the cam 807 to rotate, and since the cam 807 is elliptical in shape, it will periodically squeeze the two smoothing rods 801, causing them to open and close under the action of the second tension spring 803, and this opening and closing movement, combined with the flattening effect of the display plate 802, can effectively smooth out the wrinkles and uneven parts in the cloth, thereby ensuring the flatness of the cloth.

[0033] Among them, the left and right ends of the smoothing guide rod 9 are fixedly connected to the inner frames of the left and right ends of the conveyor frame 4 through "Y"-shaped end clamps 901 respectively. The smoothing guide rod 9 is symmetrically slidably sleeved with connecting sleeves 903. The connecting sleeves 903 are cubic block structures composed of two upper and lower distributions and connected by rotating shafts. The cube block of the upper connecting sleeve 903 is slidably sleeved with the other end of the smoothing rod 801. The bottom of the end clamp 901 is downwardly connected to an electrostatic lead-out ground wire 902, and the lower end of the electrostatic lead-out ground wire 902 is pre-buried in the ground. The smoothing guide rod 9, the end clamp 901 and the connecting sleeve 903 are all made of metal materials. A tactile sensor 90101 is provided on the inner groove wall of the groove of the end clamp 901, and the edge of the moving cloth is in the groove of the end clamp 901.

[0034] Among them, at one end of the transmission rod 10 corresponding to the conveying wheel disc 602, a transmission wheel disc 1001 is fixedly provided. The outer end side wall edge of the transmission wheel disc 1001 is rotationally connected to the other end of the connecting rod 604 through a pin shaft. The middle part of the transmission rod 10 is a worm 1002, and the worm 1002 meshes with the worm wheel 806. When the conveying motor 601 operates to drive the cloth delivery roller 6 to rotate, the cloth is conveyed. The conveying wheel disc 602 drives the transmission wheel disc 1001 to rotate through the connecting rod 604, and the transmission rod 10 drives the worm wheel 806 to rotate through the worm 1002. The cam 807 rotates and squeezes the two leveling rods 801 to make an opening and closing movement under the action of the second tension spring 803. The other end of the leveling rod 801 slides on the leveling guide rod 9 through the connecting sleeve block 903, and the display board 802 flattens the advancing cloth.

[0035] Embodiment 2, on the basis of Embodiment 1, a wind wheel 1104 is vertically rotatably installed in the vacuum cleaner 11. The wind wheel 1104 is a cylindrical impeller structure. The lower end of the wind wheel 1104 is fixedly connected to the uppermost end of the leveling drive shaft 805. One side of the vacuum cleaner 11 is horizontally butted outward with a discharge pipe 1105. The end of the discharge pipe 1105 extends downward and is connected to a fluff collection bucket 1106. The fluff collection bucket 1106 is placed on the ground. The top of the vacuum cleaner 11 is a dust suction main pipe 1101. Two dust suction branch pipes 1102 are connected to the dust suction main pipe 1101. The other ends of the dust suction branch pipes 1102 are respectively fixedly connected to a dust suction pipe box 1103. The dust suction pipe box 1103 is inclined and installed on the outer sides of the leveling rod 801 and the display board 802. The dust suction pipe box 1103 is in an inclined state along the advancing direction of the cloth. The rotation of the leveling drive shaft 805 also drives the wind wheel 1104 in the vacuum cleaner 11 to rotate. The rotation of the wind wheel 1104 generates suction force, adsorbs the fluff and dust at the display board 802 through the dust suction pipe box 1103, and discharges the adsorbed fluff and dust into the fluff collection bucket 1106 through the discharge pipe 1105, thereby realizing the cleaning effect on the cloth.

[0036] The working principle of this embodiment: First of all, the textile fabric is unrolled from the textile fabric roller 3 and enters the conveying rack 4 above the cloth feeding roller 5. At this time, under the pulling force of the first tension spring 704, the pressing arm 703 on the pressing frame 7 makes the end of the pressing arm 703 closely adhere to the upper side of the cloth, pressing the cloth tightly on the cloth feeding roller 5 to ensure the stability of the cloth during the conveying process; The fabric continues to move forward and passes through the flattening rods 801 and the display board 802 of the flattening frame 8. At this time, the flattening drive shaft 805 drives the cam 807 to rotate. Since the shape of the cam 807 is elliptical, it periodically squeezes the two flattening rods 801, causing them to perform opening and closing movements under the action of the second tension spring 803. This opening and closing movement, combined with the flattening effect of the display board 802, can effectively flatten the wrinkles and uneven parts in the fabric, ensuring the flatness of the fabric; At the same time, the rotation of the flattening drive shaft 805 also drives the wind wheel 1104 in the vacuum cleaner 11 to rotate. The rotation of the wind wheel 1104 generates suction, adsorbs the lint and dust at the display board 802 through the dust suction pipe box 1103, and discharges the adsorbed lint and dust to the lint collection bucket 1106 through the discharge pipe 1105, thus realizing the cleaning effect on the fabric; The fabric continues to be conveyed forward and is finally sent out by the fabric delivery roller 6. During this process, the conveying motor 601 drives the fabric delivery roller 6 to rotate. Through the linkage of the conveying wheel disc 602, the connecting rod 604 and the transmission wheel disc 1001, the transmission rod 10 also rotates accordingly. The middle part of the transmission rod 10 is a worm 1002, which meshes with the worm gear 806 in the flattening drive frame 804. Therefore, the rotation of the transmission rod 10 will drive the flattening drive shaft 805 to rotate, thus realizing the continuous operation of flattening and dust suction; Before the fabric is sent out, the flattening guide rod 9 conducts final guiding and flattening on the fabric. The connecting sleeve block 903 on the flattening guide rod 9 slides on the flattening guide rod 9 driven by the flattening rod 801, ensuring the stability of the fabric during the sending process. At the same time, the tactile sensor 90101 on the end clamping block 901 can detect the edge position of the fabric, ensuring the centering of the fabric during the conveying process; In addition, the side guide frames 401 and the side guide wheels 402 in the middle of the inner frames on the left and right sides of the conveying machine frame 4 conduct lateral guiding and limiting on the fabric, preventing the fabric from shifting during the conveying process. The control box 403 conducts integrated control on the entire device, facilitating operation and management.

[0037] In this article, the following points need to be noted: 1. The attached drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure. Other structures can refer to the general design.

[0038] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0039] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered within the protection scope of the present disclosure.

Claims

1. An efficient conveying device for textile fabrics, comprising a support frame (1), a roller support frame (2), a textile fabric roller (3), a conveying machine frame (4), a feeding fabric roller (5), a discharging fabric roller (6), a pressing frame (7), a flattening frame (8), a flattening guide rod (9), a transmission rod (10) and a vacuum cleaner (11); characterized in that, The upper end of the support frame (1) is fixedly installed with a conveying frame (4), and one end of the support frame (1) is fixedly butted with a roller support (2); a textile fabric roller (3) is installed on the roller support (2); a feeding cloth roller (5) is horizontally rotatably installed at one end of the conveying frame (4) close to the roller support (2), and a discharging cloth roller (6) is horizontally rotatably installed at the other end of the conveying frame (4); pressing frames (7) are respectively fixedly installed on the conveying frame (4) above the feeding cloth roller (5) and the discharging cloth roller (6); a flattening frame (8) is horizontally fixedly installed on the conveying frame (4) inside the feeding cloth roller (5), a dust collector (11) is fixedly installed at the upper end of the middle part of the flattening frame (8), a transmission rod (10) is horizontally rotatably installed on the conveying frame (4) inside the flattening frame (8), and the transmission rod (10) is located below the dust collector (11); a flattening guide rod (9) is horizontally fixedly installed at one end of the conveying frame (4) close to the discharging cloth roller (6); the textile fabric wound on the textile fabric roller (3) enters above the feeding cloth roller (5) and is sent out at the discharging cloth roller (6).

2. The high-efficiency conveying device for a textile fabric according to claim 1, characterized in that, A U-shaped support groove (201) is vertically formed at one end of the top of the roller support (2) far from the support frame (1), and the rotating shafts at both ends of the textile fabric roller (3) are respectively clamped in the support grooves (201) at the corresponding ends.

3. An efficient conveying device for textile fabrics according to claim 1, characterized in that, Side guide frames (401) are respectively fixedly installed along the cloth traveling direction in the middle parts of the inner frames on the left and right sides of the conveying frame (4), and side guide wheels (402) with evenly spaced left and right intervals are vertically arranged at the positions corresponding to the side edges of the traveling cloth on the side guide frames (401). The side guide wheels (402) are in a hourglass shape structure, and the side edge of the cloth is at the middle position of the side guide wheels (402). A control box (403) for integrated control is fixedly installed on the outer end side wall of the conveying frame (4).

4. An efficient conveying device for textile fabrics according to claim 3, characterized in that A conveying motor (601) is fixedly installed on the conveying frame (4) on the side where the control box (403) is located. The rotating shaft of the conveying motor (601) is fixedly connected to one end rotating shaft of the discharging cloth roller (6) through a coupling. A conveying wheel disc (602) is fixedly installed on the other end rotating shaft of the discharging cloth roller (6), and a connecting rod (604) is rotatably connected to the position close to the edge of the outer end side wall of the conveying wheel disc (602) through a pin shaft. A center roller pattern (603) converging from both ends to the middle is spirally provided on the roller wall of the discharging cloth roller (6).

5. An efficient conveying device for textile fabrics according to claim 1, characterized in that, A pressing shaft (701) is vertically and rotatably installed on the pressing frame (7). A short arm (702) is fixedly sleeved on the pressing shaft (701). A pressing arm (703) is rotatably sleeved on the pressing shaft (701) outside the short arm (702). The short arm (702) and the pressing arm (703) are in a vertical state. The short arm (702) and the pressing arm (703) are fixedly connected by a first tension spring (704). The pressing arm (703) is located outside the short arm (702) and extends and bends in the direction of fabric conveying. A pressing rod (707) is rotatably connected between the left and right pressing arms (703). The pressing rods (707) on the pressing frames (7) of the front and rear groups of the conveying frame (4) are respectively vertically corresponding to the feeding cloth roller (5) and the discharging cloth roller (6). The extending directions of the pressing arms (703) on the front and rear groups of the pressing frames (7) are consistent with the fabric running direction.

6. The high-efficiency conveying device for a textile fabric according to claim 4, characterized in that, The leveling frame (8) is of a T-shaped structure. On the left and right sides of the lower end of the middle part of the leveling frame (8), horizontal leveling rods (801) are respectively rotatably connected by pin shafts. An L-shaped display board (802) is vertically arranged at the bottom of the leveling rod (801). The lower end of the display board (802) is tangent to the upper end of the running fabric, and the edges of the display board (802) tangent to the fabric are all rounded. The upper ends of the left and right leveling rods (801) are fixedly connected by a second tension spring (803). A leveling drive frame (804) is arranged in the middle of the leveling frame (8) towards the direction where the leveling rod (801) is located. A leveling drive shaft (805) is vertically and rotatably installed through the leveling drive frame (804). An elliptical cam (807) is fixedly connected to the lower end of the leveling drive shaft (805). The cam (807) is located between the left and right leveling rods (801). A worm gear (806) is fixedly connected to the upper end of the leveling drive shaft (805).

7. An efficient conveying device for textile fabrics according to claim 6, characterized in that, The left and right ends of the leveling guide rod (9) are respectively fixedly connected to the inner frames at the left and right ends of the conveying frame (4) through "Y"-shaped end blocks (901). Connecting sleeve blocks (903) are symmetrically and slidably sleeved on the leveling guide rod (9). The connecting sleeve block (903) is composed of two cubic block structures distributed up and down and rotatably connected by a rotating shaft. The cubic block of the upper connecting sleeve block (903) is slidably sleeved with the other end of the leveling rod (801). An electrostatic discharge ground wire (902) is connected downward at the bottom of the end block (901). The lower end of the electrostatic discharge ground wire (902) is buried in the ground. The leveling guide rod (9), the end block (901) and the connecting sleeve block (903) are all made of metal materials. A tactile sensor (90101) is arranged on the inner groove wall of the groove of the end block (901). The edge of the running fabric is located in the groove of the end block (901).

8. An efficient conveying device for textile fabrics according to claim 7, characterized in that, One end of the transmission rod (10) corresponding to the conveying wheel disc (602) is fixedly provided with a transmission wheel disc (1001). The outer end side wall edge of the transmission wheel disc (1001) is rotatably connected to the other end of the connecting rod (604) through a pin shaft. The middle part of the transmission rod (10) is a worm (1002), and the worm (1002) meshes with a worm wheel (806). When the conveying motor (601) works to drive the cloth delivery roller (6) to rotate, the cloth is conveyed. The conveying wheel disc (602) drives the transmission wheel disc (1001) to rotate through the connecting rod (604), and the transmission rod (10) drives the worm wheel (806) to rotate through the worm (1002). The cam (807) rotates to squeeze the two flattening rods (801) to perform an opening and closing movement under the action of the second tension spring (803). The other end of the flattening rod (801) slides on the flattening guide rod (9) through the connecting sleeve block (903), and the display board (802) flattens the advancing cloth.

9. An efficient conveying device for textile fabrics according to claim 6, characterized in that, A wind wheel (1104) is vertically rotatably installed in the vacuum cleaner (11). The wind wheel (1104) is a cylindrical impeller structure. The lower end of the wind wheel (1104) is fixedly connected to the uppermost end of the flattening drive shaft (805). One side of the vacuum cleaner (11) is horizontally butted outward with a discharge pipe (1105). The end of the discharge pipe (1105) extends downward to be connected to a lint collection bucket (1106). The lint collection bucket (1106) is placed on the ground. The top of the vacuum cleaner (11) is a dust suction main pipe (1101). Two dust suction branch pipes (1102) are connected to the dust suction main pipe (1101). The other ends of the dust suction branch pipes (1102) are respectively fixedly connected to dust suction pipe boxes (1103). The dust suction pipe boxes (1103) are inclinedly installed outside the flattening rods (801) and the display board (802). The dust suction pipe boxes (1103) are in an inclined state along the cloth advancing direction. While the flattening drive shaft (805) rotates, the wind wheel (1104) rotates synchronously. The lint and dust at the display board (802) are adsorbed through the dust suction pipe boxes (1103) and discharged through the discharge pipe (1105) into the lint collection bucket (1106).

Citation Information

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