Dye conveying device based on plant dye fabric dyeing
By installing detection components on the outer wall of the conveying tube of the dye conveying device and setting a drive rod and driven rod in the discharge silo, the problem of reducing conveying efficiency caused by wear of chain plates in traditional equipment is solved, and the effect of timely replacement of chain plates and normal conveying of dyes is achieved.
Patent Information
- Application Number
- CN202510443037.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2045-04-10
AI Technical Summary
In the long-term use of traditional pipe chain conveying equipment, the outer wall radius of the chain plate is reduced, resulting in a reduction in conveying efficiency. It lacks detection of the chain plate radius, so it is impossible to detect wear in time, affecting the performance of the equipment.
A dye conveying device based on dyeing of plant dye fabrics is designed. A detection component is arranged on the outer wall of the conveying tube, and the outer wall radius of the chain plate is detected by contact rollers, and the dye is rotated in the discharge chamber by rotating the drive rod and driven rod to stir to avoid agglomeration.
Timely detection of the outer wall radius of the chain plate is achieved, and the chain plate is replaced in a timely manner to avoid the reduction of conveying efficiency, ensure the normal operation of the equipment, and ensure the normal delivery of dye through stirring and vibration of the filter plate.
Smart Images

Figure CN119929403A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of dye delivery devices, in particular to a dye delivery device for dyeing fabrics based on plant dyes. Background Art
[0002] The dye conveyor is a mechanical device used to transport dyes from storage containers to dyeing equipment or other processing equipment. It is widely used in many industries such as textiles, printing and dyeing, coatings, chemicals, etc. to transport dyes from storage tanks or containers to where they are needed, such as dye vats, inkjet printers, paint mixing equipment, etc. During the transportation process, the materials are often transported by tube chain conveyors.
[0003] When traditional tube chain conveying equipment is in use, the chain plate moves continuously in the pipe, and the outer wall of the chain plate is constantly rubbing against the inner wall of the pipe. During long-term operation, the radius of the outer wall of the chain plate will be reduced, resulting in the outer wall of the chain plate being unable to fit with the inner wall of the pipe during the movement of the chain plate, thereby reducing the conveying efficiency of the chain plate, thereby affecting the normal conveying of dyes by the equipment, and the chain plate needs to be replaced in time. Traditional equipment lacks detection of the chain plate radius, resulting in the inability to detect the chain plate in time after wear, thus affecting the conveying efficiency of the equipment. Summary of the invention
[0004] The present invention provides a dye conveying device for dyeing fabrics with plant dyes, which solves the problems raised by the above-mentioned background technology.
[0005] The present invention provides the following technical solution: a dye conveying device for dyeing fabrics based on plant dyes, comprising a conveying pipe, a No. 1 transmission box is fixedly installed on the outer wall of the conveying pipe, a No. 2 transmission box is installed on the outer wall of the conveying pipe, a driving motor is fixedly installed on the outer wall of the No. 1 transmission box, a No. 3 transmission box is fixedly installed on the outer wall of the conveying pipe, an inner cavity of the No. 3 transmission box is rotatably connected to a No. 1 driven wheel, a chain is installed on the inner cavity of the conveying pipe, a material discharge component is provided on the outer wall of the conveying pipe, a detection component is provided on the outer wall of the chain, a chain plate is fixedly installed on the outer wall of the chain, the inner cavity of the No. 1 transmission box is rotatably connected to the driving wheel, the inner cavity of the No. 2 transmission box is rotatably connected to the No. 2 driven wheel, a supporting leg is fixedly installed on the outer wall of the conveying pipe, and a material discharge box is fixedly installed on the outer wall of the conveying pipe.
[0006] As a preferred technical solution of the present invention: the material discharge assembly includes a material discharge bin, the inner cavity of the material discharge bin is rotatably connected to a driving rod, the inner cavity of the material discharge bin is rotatably connected to a driven rod, the outer wall of the driving rod is fixedly equipped with a No. 1 driven gear, the outer wall of the driven rod is fixedly equipped with a No. 2 driven gear, the outer wall of the driving rod is fixedly equipped with a No. 1 bevel gear, the outer wall of the No. 1 bevel gear is meshed with a No. 2 bevel gear, and the outer wall of the driving rod is fixedly equipped with a No. 1 driven sprocket.
[0007] As a preferred technical solution of the present invention: the outer wall of the No. 1 driven sprocket is rollingly connected with a transmission belt, the inner cavity of the lower material bin is fixedly equipped with a filter plate, the inner cavity of the lower material bin is rotatably connected with a rotating roller, the outer wall of the rotating roller is fixedly equipped with a No. 2 driven sprocket, the bottom of the filter plate is fixedly equipped with a trigger rod, the outer wall of the rotating roller is fixedly equipped with a rotating ring, the outer wall of the lower material bin is fixedly equipped with a lifting frame, and the outer wall of the lower material bin is fixedly equipped with a discharge plate.
[0008] As a preferred technical solution of the present invention: the outer wall of the No. 1 driven gear meshes with the outer wall of the No. 2 driven gear, the inner cavity of the lower silo is connected with the inner cavity of the conveying pipe, and the outer wall of the No. 1 driven sprocket meshes with the outer wall of the transmission belt.
[0009] As a preferred technical solution of the present invention: the outer wall of the transmission belt is meshed with the outer wall of the second driven sprocket, the outer wall of the rotating ring is in contact with the outer wall of the trigger rod, the inner cavity of the discharge plate is connected with the inner cavity of the lower bin, the outer wall of the driving rod passes through the inner cavity of the lifting frame, and the outer wall of the second bevel gear is connected to the outer wall of the first driven wheel.
[0010] As a preferred technical solution of the present invention: the detection component includes a support frame, the outer wall of the support frame is fixedly equipped with an auxiliary rod, the outer wall of the auxiliary rod is movably sleeved with a reset spring, the outer wall of the auxiliary rod is movably sleeved with a moving roller, the outer wall of the moving roller is rotatably connected with a contact roller, the outer wall of the moving roller is fixedly equipped with a No. 1 tooth plate, the outer wall of the conveying pipe is fixedly equipped with a support plate, the inner cavity of the support plate is rotatably connected with a No. 3 driven gear, the outer wall of the No. 3 driven gear is fixedly equipped with a No. 4 driven gear, the outer wall of the conveying pipe is fixedly equipped with an auxiliary frame, the inner cavity of the auxiliary frame is movably sleeved with a No. 2 tooth plate, the outer wall of the No. 2 tooth plate is fixedly equipped with an indicator plate, the outer wall of the auxiliary frame is installed with a fixed frame, the outer wall of the fixed frame is fixedly equipped with an electrode sheet, the outer wall of the conveying pipe is fixedly equipped with an indicator light, the outer wall of the conveying pipe is fixedly equipped with a control panel, and the outer wall of the control panel is installed with a camera.
[0011] As a preferred technical solution of the present invention: the two ends of the outer wall of the return spring are respectively connected to the bottom of the auxiliary rod and the outer wall of the movable roller, and the return spring is made of high carbon steel, the outer wall of the movable roller passes through the outer wall of the support frame, and the outer wall of the No. 1 gear plate is meshed with the outer wall of the No. 3 driven gear.
[0012] As a preferred technical solution of the present invention: the outer wall of the indicator plate is in contact with the outer wall of the electrode sheet, the installation position of the control panel corresponds to the installation position of the contact roller and the indicator light, the outer wall of the No. 4 driven gear is meshed with the outer wall of the No. 2 gear plate, and the control panel is electrically connected to the camera, the electrode sheet and the indicator light respectively.
[0013] As a preferred technical solution of the present invention: the power output shaft of the driving motor is connected to the outer wall of the driving wheel, the outer wall of the driving wheel is meshed with the outer wall of the chain, and the outer walls of the first driven wheel and the second driven wheel are both meshed with the outer wall of the chain.
[0014] As a preferred technical solution of the present invention: the outer wall diameter of the chain plate is equal to the inner wall diameter of the conveying pipe, there are four No. 1 driven wheels, and the four No. 1 driven wheels are respectively installed on the outer wall of the chain, and the inner cavity of the discharge box is connected to the inner cavity of the conveying pipe.
[0015] The present invention has the following beneficial effects: 1. The dye conveying device for dyeing fabrics with plant dyes can detect the outer wall radius of the chain plate through a detection component arranged on the outer wall of the conveying pipe. When the outer wall of the chain plate contacts the contact roller, the contact roller can be pushed to move upward. The degree of wear of the outer wall of the chain plate is judged according to the distance the contact roller moves upward, so that the wear of the chain plate can be discovered more timely, and the chain plate can be replaced in time to avoid affecting the conveying efficiency of the equipment.
[0016] 2. The dye conveying device for dyeing fabrics with plant dyes, through the driving rod and the driven rod arranged in the inner cavity of the lower material bin, drives the driving rod under the action of the No. 1 driven wheel, so that the driving rod and the driven rod rotate in the inner cavity of the lower material bin to stir the dye in the lower material bin to avoid dye agglomeration, and through the rotating roller arranged in the inner cavity of the lower material bin, during the rotation of the rotating roller, the bottom of the filter plate can be continuously hit, so that the filter plate vibrates, so that the dye can better enter the conveying pipe. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 2 This is a schematic diagram of the structure of the delivery pipe of the present invention; Figure 3This is a schematic diagram of the structure of the No. 2 transmission box of the present invention; Figure 4 It is a schematic diagram of the chain structure of the present invention; Figure 5 This is a schematic diagram of the lower silo structure of the present invention; Figure 6 This is a schematic diagram of the cross-sectional structure of the lower silo of the present invention; Figure 7 This is a schematic diagram of the driving rod structure of the present invention; Figure 8 This is a schematic diagram of the support structure of the present invention; Fig. 9 This is a schematic diagram of the auxiliary rod structure of the present invention; Fig.10 This is a schematic diagram of the structure of the first tooth plate of the present invention; Fig.11 This is a schematic diagram of the structure of the second tooth plate of the present invention.
[0018] In the figure: 1. conveying pipe; 2. No. 1 transmission box; 3. No. 2 transmission box; 4. driving motor; 5. No. 3 transmission box; 6. No. 1 driven wheel; 7. chain; 8. unloading assembly; 9. detection assembly; 10. chain plate; 11. driving wheel; 12. No. 2 driven wheel; 13. supporting leg; 14. unloading box; 801, unloading bin; 802, driving rod; 803, driven rod; 804, driven gear No. 1; 805, driven gear No. 2; 806, bevel gear No. 1; 807, bevel gear No. 2; 808, driven sprocket No. 1; 809, transmission belt; 8010, filter plate; 8011, rotating roller; 8012, driven sprocket No. 2; 8013, trigger rod; 8014, rotating ring; 8015, lifting frame; 8016, discharge plate; 901, support frame; 902, auxiliary rod; 903, return spring; 904, moving roller; 905, gear plate No. 1; 906, support plate; 907, driven gear No. 3; 908, driven gear No. 4; 909, auxiliary frame; 9010, gear plate No. 2; 9011, indicator board; 9012, fixed frame; 9013, electrode sheet; 9014, indicator light; 9015, control board; 9016, contact roller; 9017, camera. DETAILED DESCRIPTION
[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0020] See also Figure 1-Figure 11 A dye conveying device for dyeing fabrics based on plant dyes comprises a conveying pipe 1, a No. 1 transmission box 2 is fixedly mounted on the outer wall of the conveying pipe 1, a No. 2 transmission box 3 is installed on the outer wall of the conveying pipe 1, a driving motor 4 is fixedly mounted on the outer wall of the No. 1 transmission box 2, a No. 3 transmission box 5 is fixedly mounted on the outer wall of the conveying pipe 1, a No. 1 driven wheel 6 is rotatably connected to the inner cavity of the No. 3 transmission box 5, a chain 7 is installed on the inner cavity of the conveying pipe 1, a material discharge component 8 is provided on the outer wall of the conveying pipe 1, a detection component 9 is provided on the outer wall of the chain 7, a chain plate 10 is fixedly mounted on the outer wall of the chain 7, a driving wheel 11 is rotatably connected to the inner cavity of the No. 1 transmission box 2, a No. 2 driven wheel 12 is rotatably connected to the inner cavity of the No. 2 transmission box 3, a supporting leg 13 is fixedly mounted on the outer wall of the conveying pipe 1, and a material discharge box 14 is fixedly mounted on the outer wall of the conveying pipe 1.
[0021] In the above structure, by respectively setting a No. 1 transmission box 2 and a No. 2 transmission box 3 at both ends of the outer wall of the conveying pipe 1, and a driving wheel 11 and a No. 2 driven wheel 12 set in the inner cavity of the No. 1 transmission box 2 and the No. 2 transmission box 3, the driving wheel 11 can be driven under the action of the driving motor 4. Since the outer wall of the driving wheel 11 is meshed with the outer wall of the chain 7, the chain 7 is driven, so that the chain 7 can rotate and move in the inner cavity of the conveying pipe 1.
[0022] In a preferred embodiment: the unloading component 8 includes a unloading bin 801, the inner cavity of the unloading bin 801 is rotatably connected to a driving rod 802, the inner cavity of the unloading bin 801 is rotatably connected to a driven rod 803, the outer wall of the driving rod 802 is fixedly equipped with a No. 1 driven gear 804, the outer wall of the driven rod 803 is fixedly equipped with a No. 2 driven gear 805, the outer wall of the driving rod 802 is fixedly equipped with a No. 1 bevel gear 806, the outer wall of the No. 1 bevel gear 806 is meshed with a No. 2 bevel gear 807, and the outer wall of the driving rod 802 is fixedly equipped with a No. 1 driven sprocket 808.
[0023] In the above structure, the driving rod 802 and the driven rod 803 are respectively arranged in the inner cavity of the lower hopper 801, and the driving rod 802 can be driven under the action of the second bevel gear 807 and the first bevel gear 806. During the rotation of the driving rod 802, the driven rod 803 can be driven to rotate at the same time. At this time, the powder dye entering the inner cavity of the lower hopper 801 can be stirred and crushed under the action of the driving rod 802 and the driven rod 803 to avoid the agglomeration of the powder dye, so that it can be better transported under the action of the conveying pipe 1 and the chain 7 to facilitate subsequent dyeing operations.
[0024] In a preferred embodiment: the outer wall of the No. 1 driven sprocket 808 is rollingly connected to the transmission belt 809, the inner cavity of the lower material bin 801 is fixedly equipped with a filter plate 8010, the inner cavity of the lower material bin 801 is rotatably connected to a rotating roller 8011, the outer wall of the rotating roller 8011 is fixedly equipped with the No. 2 driven sprocket 8012, the bottom of the filter plate 8010 is fixedly equipped with a trigger rod 8013, the outer wall of the rotating roller 8011 is fixedly equipped with a rotating ring 8014, the outer wall of the lower material bin 801 is fixedly equipped with a lifting frame 8015, and the outer wall of the lower material bin 801 is fixedly equipped with a discharge plate 8016.
[0025] In the above structure, the rotation of the driving rod 802 is transmitted to the rotating roller 8011 under the action of the transmission belt 809, through the transmission belt 809 arranged on the outer wall of the No. 1 driven sprocket 808, so that the rotating roller 8011 rotates with the rotation of the No. 1 driven sprocket 808, and through the rotating ring 8014 arranged on the outer wall of the rotating roller 8011, since the outer wall of the rotating ring 8014 fits with the outer wall of the trigger rod 8013, the rotating ring 8014 continuously hits and contacts the outer wall of the filter plate 8010 during the rotation process, thereby causing the outer wall of the filter plate 8010 to vibrate, so that the powder dye can better pass through the inner cavity of the filter plate 8010 when it falls on the outer wall of the filter plate 8010.
[0026] In a preferred embodiment: the outer wall of the No. 1 driven gear 804 meshes with the outer wall of the No. 2 driven gear 805, the inner cavity of the lower bin 801 communicates with the inner cavity of the conveying pipe 1, and the outer wall of the No. 1 driven sprocket 808 meshes with the outer wall of the transmission belt 809.
[0027] In the above structure, by means of a No. 1 driven gear 804 arranged on the outer wall of the driving rod 802 and a No. 2 driven gear 805 arranged on the outer wall of the driven rod 803, when the driving rod 802 rotates, the power of the driving rod 802 rotation can be transmitted to the driven rod 803 under the action of the No. 1 driven gear 804, so that the driving rod 802 and the driven rod 803 can rotate synchronously in the inner cavity of the lower silo 801, thereby achieving stirring of the dye entering the inner cavity of the lower silo 801, breaking up the agglomerated dye, and allowing the crushed dye to better enter the inner cavity of the conveying pipe 1.
[0028] In a preferred embodiment: the outer wall of the transmission belt 809 is meshed with the outer wall of the second driven sprocket 8012, the outer wall of the rotating ring 8014 is in contact with the outer wall of the trigger rod 8013, the inner cavity of the discharge plate 8016 is connected to the inner cavity of the lower bin 801, the outer wall of the driving rod 802 passes through the inner cavity of the lifting frame 8015, and the outer wall of the second bevel gear 807 is connected to the outer wall of the first driven wheel 6.
[0029] In the above structure, through the filter plate 8010 set in the inner cavity of the lower hopper 801, after the dye is stirred and broken by the driving rod 802 and the driven rod 803, it will fall to the top of the filter plate 8010, and the powder with smaller particles will directly pass through the outer wall of the filter plate 8010 and enter the inner cavity of the conveying pipe 1 downward. If larger powder particles enter the top of the filter plate 8010 from the gap between the driving rod 802 and the driven rod 803, they cannot pass through the filter plate 8010 and slide downward along the outer wall of the filter plate 8010.
[0030] In a preferred embodiment, the detection assembly 9 includes a support frame 901, an auxiliary rod 902 is fixedly mounted on the outer wall of the support frame 901, a return spring 903 is movably sleeved on the outer wall of the auxiliary rod 902, a moving roller 904 is movably sleeved on the outer wall of the auxiliary rod 902, a contact roller 9016 is rotatably connected to the outer wall of the moving roller 904, a first tooth plate 905 is fixedly mounted on the outer wall of the moving roller 904, a support plate 906 is fixedly mounted on the outer wall of the conveying pipe 1, a third driven gear 907 is rotatably connected to the inner cavity of the support plate 906, and the third driven gear 907 is rotatably connected to the inner cavity of the third driven gear 907. The outer wall is fixedly equipped with a No. 4 driven gear 908, the outer wall of the conveying pipe 1 is fixedly equipped with an auxiliary frame 909, the inner cavity of the auxiliary frame 909 is movably connected with a No. 2 tooth plate 9010, the outer wall of the No. 2 tooth plate 9010 is fixedly equipped with an indicator plate 9011, the outer wall of the auxiliary frame 909 is installed with a fixed frame 9012, the outer wall of the fixed frame 9012 is fixedly equipped with an electrode sheet 9013, the outer wall of the conveying pipe 1 is fixedly equipped with an indicator light 9014, the outer wall of the conveying pipe 1 is fixedly equipped with a control panel 9015, and the outer wall of the control panel 9015 is installed with a camera 9017.
[0031] In the above structure, by means of a support frame 901 arranged on the outer wall of the conveying pipe 1 and a moving roller 904 arranged in the inner cavity of the support frame 901, under the traction of the return spring 903, the outer wall of the contact roller 9016 can be fitted with the outer wall of the chain plate 10, and when the chain plate 10 is continuously moved with the chain 7, the contact roller 9016 can contact all the chain plates 10 installed on the outer wall of the chain 7, and with the support of the outer wall of the chain plate 10, the No. 1 tooth plate 905 is pushed upward, so as to feedback the outer wall diameter of the chain plate 10, so as to timely judge whether the outer wall of the chain plate 10 is severely worn.
[0032] In a preferred embodiment: the two ends of the outer wall of the return spring 903 are respectively connected to the bottom of the auxiliary rod 902 and the outer wall of the movable roller 904, and the return spring 903 is made of high carbon steel, the outer wall of the movable roller 904 passes through the outer wall of the support frame 901, and the outer wall of the No. 1 gear plate 905 is meshed with the outer wall of the No. 3 driven gear 907.
[0033] In the above structure, by means of the support frame 901 and the auxiliary rod 902 provided on the outer wall of the support frame 901, when the chain plate 10 moves to the bottom of the movable roller 904, the movable roller 904 can be lifted up, so that the movable roller 904 moves upward along the outer wall of the auxiliary rod 902, thereby driving the No. 1 tooth plate 905, so that the No. 1 tooth plate 905 moves upward, and then the No. 3 driven gear 907 is driven, so that the No. 3 driven gear 907 rotates, and the No. 4 driven gear 908 rotates synchronously, and the height of the No. 2 tooth plate 9010 is adjusted upward. At this time, in this process, whether the outer wall of the chain plate 10 is worn can be determined according to the rising height of the No. 2 tooth plate 9010.
[0034] In a preferred embodiment: the outer wall of the indicator plate 9011 is in contact with the outer wall of the electrode sheet 9013, the installation position of the control panel 9015 corresponds to the installation position of the contact roller 9016 and the indicator light 9014, the outer wall of the No. 4 driven gear 908 is meshed with the outer wall of the No. 2 gear plate 9010, and the control panel 9015 is electrically connected to the camera 9017 and the electrode sheet 9013 and the indicator light 9014 respectively.
[0035] In the above structure, the indicator plate 9011 is arranged on the outer wall of the second tooth plate 9010. As the outer wall of the contact roller 9016 contacts the outer wall of the chain plate 10, the first tooth plate 905 is pushed to move upward, thereby driving the third driven gear 907 and the fourth driven gear 908, and then the second tooth plate 9010 moves upward along the inner cavity of the auxiliary frame 909, so that the outer wall of the indicator plate 9011 contacts the outer wall of the electrode sheet 9013. If the outer wall of the chain plate 10 is severely worn, the contact roller 9016 will be moved upward. 016 will rise to a lower height, thereby reducing the rising heights of the first tooth plate 905 and the second tooth plate 9010, which will cause the outer wall of the indicator plate 9011 to be unable to contact the outer wall of the electrode plate 9013. At this time, the indicator light 9014 cannot be turned on, so that the camera 9017 and the control board 9015 can take pictures and identify the image, thereby accurately recording the degree of wear on the outer wall of the chain plate 10 and which chain plate 10 has the outer wall worn, so that the chain plate 10 can be replaced more conveniently.
[0036] In a preferred embodiment: the power output shaft of the driving motor 4 is connected to the outer wall of the driving wheel 11, the outer wall of the driving wheel 11 is meshed with the outer wall of the chain 7, and the outer walls of the first driven wheel 6 and the second driven wheel 12 are both meshed with the outer wall of the chain 7.
[0037] In the above structure, the chain 7 can be driven by the driving motor 4 arranged on the outer wall of the No. 1 transmission box 2 and the driving wheel 11 arranged in the inner cavity of the No. 1 transmission box 2 under the action of the driving motor 4, so that the chain 7 drives the chain plate 10 to rotate along the inner cavity of the conveying pipe 1. In the process of rotation of the chain 7 and the chain plate 10, the powder dye entering the inner cavity of the conveying pipe 1 can be transported, so that the dye can be lifted to a certain distance and a certain height under the action of the chain 7, so as to better carry out subsequent dyeing operations.
[0038] In a preferred embodiment: the outer wall diameter of the chain plate 10 is equal to the inner wall diameter of the conveying pipe 1, there are four No. 1 driven wheels 6, and the four No. 1 driven wheels 6 are respectively installed on the outer wall of the chain 7, and the inner cavity of the discharge box 14 is connected to the inner cavity of the conveying pipe 1.
[0039] In the above structure, the dye is put into the inner cavity of the conveying pipe 1 through the unloading component 8 and the unloading box 14 arranged on the outer wall of the conveying pipe 1 through the unloading bin 801, and the dye is lifted in height and distance under the action of the chain 7 and the chain plate 10 in the inner cavity of the conveying pipe 1. When the dye moves to the position of the unloading box 14, it will be released outward through the unloading box 14 and enter the dyeing vat to dye the cloth.
[0040] Working principle: during the use of the above-mentioned equipment, when it is necessary to transport the dye, by starting the driving motor 4, the driving motor 4 drives the driving wheel 11 to rotate, so that the driving wheel 11 rotates in the inner cavity of the No. 1 transmission box 2, and as the driving wheel 11 rotates, the chain 7 and the chain plate 10 are driven, so that the chain 7 and the chain plate 10 rotate and move in the inner cavity of the conveying pipe 1. At this time, the dye can be added to the inner cavity of the conveying pipe 1 through the lower bin 801, so that the dye enters the inner cavity of the conveying pipe 1. During the rotation of the chain 7, since the outer wall of the No. 1 driven wheel 6 is meshed with the outer wall of the chain 7, the No. 1 driven wheel 6 can rotate in the inner cavity of the No. 3 transmission box 5. When the No. 1 driven wheel 6 rotates, the No. 2 conical gear The second bevel gear 807 is driven by the first bevel gear 806. Since the outer wall of the second bevel gear 807 meshes with the outer wall of the first bevel gear 806, the first bevel gear 806 drives the driving rod 802 to rotate in the inner cavity of the lower bin 801. During the rotation of the driving rod 802, since the outer wall of the first driven gear 804 meshes with the outer wall of the second driven gear 805, the driving rod 802 and the driven rod 803 rotate in the inner cavity of the lower bin 801 to crush the dye and prevent the agglomerated dye from entering the inner cavity of the conveying pipe 1. As the driving rod 802 rotates, the first driven sprocket 808 is driven. During the rotation of the first driven sprocket 808, the transmission belt 809 can be driven to rotate, so that the second driven sprocket 80 12 and the rotating roller 8011 rotate with the rotation of the driving rod 802. During the rotation of the No. 2 driven sprocket 8012, the rotating ring 8014 is driven to rotate. Under the action of the rotating ring 8014, it continuously contacts the trigger rod 8013, so that the outer wall of the filter plate 8010 vibrates, so that the dye passes through the inner cavity of the filter plate 8010 faster, thereby conveying the dye. During the rotation of the chain 7 and the chain plate 10, the outer wall of the chain plate 10 will continuously rub against the inner wall of the conveying tube 1. When the outer wall of the chain plate 10 contacts the outer wall of the contact roller 9016, it will push up the contact roller 9016 and the moving roller 904, so that the moving roller 904 moves upward along the outer wall of the auxiliary rod 902, thereby pushing the No. 1 tooth plate 905. The movement of the No. 3 driven gear 907 is driven, so that the No. 3 driven gear 907 and the No. 4 driven gear 908 rotate synchronously. Since the outer wall diameter of the No. 4 driven gear 908 is greater than the outer wall diameter of the No. 3 driven gear 907, the rising distance of the contact roller 9016 is proportionally magnified, so as to more clearly judge whether the outer wall of the chain plate 10 is worn. When the No. 4 driven gear 908 rotates, the No. 2 tooth plate 9010 can be driven, so that the indicator plate 9011 moves upward along the outer wall of the fixing frame 9012. If the outer wall of the indicator plate 9011 can contact the outer wall of the electrode sheet 9013, the indicator light 9014 is lit, and the chain plate 10 and the indicator light 9014 are photographed by the camera 9017.This means that the outer wall radius of the chain plate 10 is within the controllable range. If the outer wall radius of the chain plate 10 is worn too much, the contact roller 9016 will move upwards to a limited distance, which will cause the indicator plate 9011 to be unable to contact the electrode sheet 9013, and the indicator light 9014 will not be lit. At this time, the wear of the outer wall of the chain plate 10 can be accurately known based on the image taken by the camera 9017, so that the chain plate 10 can be replaced more conveniently.
[0041] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0042] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A dye delivery device for dyeing fabrics with plant dyes, comprising a delivery pipe (1), characterized in that: The outer wall of the conveying pipe (1) is fixedly equipped with a No. 1 transmission box (2), the outer wall of the conveying pipe (1) is installed with a No. 2 transmission box (3), the outer wall of the No. 1 transmission box (2) is fixedly equipped with a driving motor (4), the outer wall of the conveying pipe (1) is fixedly equipped with a No. 3 transmission box (5), the inner cavity of the No. 3 transmission box (5) is rotatably connected to a No. 1 driven wheel (6), the inner cavity of the conveying pipe (1) is installed with a chain (7), the outer wall of the conveying pipe (1) is provided with a material discharge component (8), the outer wall of the conveying pipe (1) is provided with a detection component (9), the outer wall of the chain (7) is fixedly equipped with a chain plate (10), the inner cavity of the No. 1 transmission box (2) is rotatably connected to a driving wheel (11), the inner cavity of the No. 2 transmission box (3) is rotatably connected to a No. 2 driven wheel (12), the outer wall of the conveying pipe (1) is fixedly equipped with a supporting leg (13), and the outer wall of the conveying pipe (1) is fixedly equipped with a material discharge box (14).
2. A dye delivery device for fabric dyeing based on plant dyes according to claim 1, characterized in that: The material discharge assembly (8) comprises a material discharge bin (801), the inner cavity of the material discharge bin (801) is rotatably connected to a driving rod (802), the inner cavity of the material discharge bin (801) is rotatably connected to a driven rod (803), the outer wall of the driving rod (802) is fixedly equipped with a No. 1 driven gear (804), the outer wall of the driven rod (803) is fixedly equipped with a No. 2 driven gear (805), the outer wall of the driving rod (802) is fixedly equipped with a No. 1 bevel gear (806), the outer wall of the No. 1 bevel gear (806) is meshed with a No. 2 bevel gear (807), and the outer wall of the driving rod (802) is fixedly equipped with a No. 1 driven sprocket (808).
3. A dye delivery device for fabric dyeing based on plant dyes according to claim 2, characterized in that: The outer wall of the No. 1 driven sprocket (808) is rollingly connected to a transmission belt (809), the inner cavity of the lower material bin (801) is fixedly equipped with a filter plate (8010), the inner cavity of the lower material bin (801) is rotatably connected to a rotating roller (8011), the outer wall of the rotating roller (8011) is fixedly equipped with a No. 2 driven sprocket (8012), the bottom of the filter plate (8010) is fixedly equipped with a trigger rod (8013), the outer wall of the rotating roller (8011) is fixedly equipped with a rotating ring (8014), the outer wall of the lower material bin (801) is fixedly equipped with a lifting frame (8015), and the outer wall of the lower material bin (801) is fixedly equipped with a discharge plate (8016).
4. A dye delivery device for fabric dyeing based on plant dyes according to claim 3, characterized in that: The outer wall of the first driven gear (804) meshes with the outer wall of the second driven gear (805), the inner cavity of the lower bin (801) communicates with the inner cavity of the conveying pipe (1), and the outer wall of the first driven sprocket (808) meshes with the outer wall of the transmission belt (809).
5. A dye delivery device for dyeing fabrics with plant dyes according to claim 4, characterized in that: The outer wall of the transmission belt (809) is meshed with the outer wall of the second driven sprocket (8012), the outer wall of the rotating ring (8014) is in contact with the outer wall of the trigger rod (8013), the inner cavity of the discharge plate (8016) is communicated with the inner cavity of the lower bin (801), the outer wall of the driving rod (802) passes through the inner cavity of the lifting frame (8015), and the outer wall of the second bevel gear (807) is connected to the outer wall of the first driven wheel (6).
6. The dye delivery device for dyeing fabrics with plant dyes according to claim 1, characterized in that: The detection assembly (9) comprises a support frame (901), an auxiliary rod (902) is fixedly mounted on the outer wall of the support frame (901), a return spring (903) is movably sleeved on the outer wall of the auxiliary rod (902), a moving roller (904) is movably sleeved on the outer wall of the auxiliary rod (902), a contact roller (9016) is rotatably connected to the outer wall of the moving roller (904), a first tooth plate (905) is fixedly mounted on the outer wall of the moving roller (904), a support plate (906) is fixedly mounted on the outer wall of the conveying pipe (1), a third driven gear (907) is rotatably connected to the inner cavity of the support plate (906), and the outer wall of the third driven gear (907) is fixedly mounted A fourth driven gear (908) is provided, the outer wall of the conveying pipe (1) is fixedly equipped with an auxiliary frame (909), the inner cavity of the auxiliary frame (909) is movably sleeved with a second tooth plate (9010), the outer wall of the second tooth plate (9010) is fixedly equipped with an indicator plate (9011), the outer wall of the auxiliary frame (909) is installed with a fixed frame (9012), the outer wall of the fixed frame (9012) is fixedly equipped with an electrode sheet (9013), the outer wall of the conveying pipe (1) is fixedly equipped with an indicator light (9014), the outer wall of the conveying pipe (1) is fixedly equipped with a control panel (9015), and the outer wall of the control panel (9015) is installed with a camera (9017).
7. A dye delivery device for dyeing fabrics with plant dyes according to claim 6, characterized in that: The two ends of the outer wall of the return spring (903) are respectively connected to the bottom of the auxiliary rod (902) and the outer wall of the moving roller (904), and the return spring (903) is made of high carbon steel. The outer wall of the moving roller (904) passes through the outer wall of the support frame (901), and the outer wall of the No. 1 gear plate (905) is meshed with the outer wall of the No. 3 driven gear (907).
8. The dye delivery device for dyeing fabrics with plant dyes according to claim 7, characterized in that: The outer wall of the indicator plate (9011) contacts the outer wall of the electrode sheet (9013), the installation position of the control panel (9015) corresponds to the installation position of the contact roller (9016) and the indicator light (9014), the outer wall of the fourth driven gear (908) meshes with the outer wall of the second gear plate (9010), and the control panel (9015) is electrically connected to the camera (9017) and the electrode sheet (9013) and the indicator light (9014), respectively.
9. The dye delivery device for dyeing fabrics with plant dyes according to claim 6, characterized in that: The power output shaft of the driving motor (4) is connected to the outer wall of the driving wheel (11), the outer wall of the driving wheel (11) is meshed with the outer wall of the chain (7), and the outer walls of the first driven wheel (6) and the second driven wheel (12) are both meshed with the outer wall of the chain (7).
10. A dye delivery device for dyeing fabrics with plant dyes according to claim 9, characterized in that: The outer wall diameter of the chain plate (10) is equal to the inner wall diameter of the conveying pipe (1), the number of the number one driven wheels (6) is four, and the four number one driven wheels (6) are respectively mounted on the outer wall of the chain (7), and the inner cavity of the material discharge box (14) is communicated with the inner cavity of the conveying pipe (1).
Citation Information
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