Color spinning and cotton mixing device
By using the rotating cotton mixing roller and cotton hook in the cotton mixing device, the problem of easy destruction of cotton layer fibers in the prior art is solved, and high-quality cotton wool mixing and uniform color effect are achieved.
Patent Information
- Application Number
- CN202411230016.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2044-09-04
AI Technical Summary
Existing cotton blending devices are prone to destroying the cotton layer fibers when mixing cotton wool, resulting in deterioration of the quality of cotton wool and the diffusion of wool.
A color spinning cotton blending device is adopted, including a cotton blending roller in the main compartment and a multi-layer conveying plate. A cotton hook is provided on the cotton blending roller. By rotating the cotton mixing roller, the cotton hook is driven to hook the cotton layer on the conveying plate to achieve the mixing of cotton wool.
The device does not damage the fibers when mixing the wool, ensuring the quality of the wool and reducing the problem of wool diffusion. At the same time, it achieves more uniform color mixing and improves the aesthetics of subsequent processing.
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Figure CN118996683B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of cotton blending machines, and in particular relates to a colored spinning cotton blending device. Background Art
[0002] Cotton blending refers to the mixing of cotton materials in two or more cotton bales through mechanical equipment after they are opened. In reality, cotton balls are made up of multiple layers of cotton wool. As the upper beater keeps rotating, most of the cotton wool after opening will be wound around the upper beater again, resulting in a lower delivery rate of the cotton wool after opening to the next beater. When two kinds of cotton balls are put into the opening process at the same time, the mixing efficiency is affected.
[0003] Chinese invention patent CN117403355A discloses a cotton blending device for spinning colored yarn, which is provided with three beaters, and the three beaters are distributed in a triangular pattern, thereby making the size of the total cabin smaller than that of the prior art. In order to reduce the overall size of the equipment, the third beater, the second beater and the first beater are arranged in a triangular pattern. Two exhaust structures are provided, and one exhaust port structure corresponds to between the first beating rod and the swing rod after the lower bent part is bent downward, so that the exhausted gas can blow the cotton wool remaining on the swing rod and attach it to the cotton receiving plate, and can also blow the cotton wool remaining on the first beating rod after the cotton is opened and scraped from the cotton receiving plate onto the cotton receiving plate. The former cleans the cotton wool remaining on the swing rod after the cotton is opened, and the latter exhaust port structure blows the cotton wool remaining on the first beating rod after the cotton is opened onto the cotton receiving plate.
[0004] Since the cotton bales used in blending are made of multiple layers of cotton wool, simply stirring and mixing will destroy the fibers of the cotton layer, causing the long fibers of the cotton layer to be broken by the beaters to form short fibers, which is not conducive to the later thread twisting. Summary of the invention
[0005] The purpose of this section is to summarize some aspects of embodiments of the present invention and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the specification abstract and the invention title of this application to avoid blurring the purpose of this section, the specification abstract and the invention title, and such simplifications or omissions cannot be used to limit the scope of the present invention.
[0006] In order to solve the problems existing in the above-mentioned background technology, the present invention adopts the following technical solutions.
[0007] A colored spinning and cotton blending device comprises a general cabin, which is divided into a box-type cavity and an inclined cavity. A pair of cotton blending rollers are arranged in the box-type cavity, and a plurality of conveying plates are arranged in the inclined cavity. The plurality of conveying plates are longitudinally distributed in the general cabin, and the upper and lower ends of the conveying plates are both horizontal. A plurality of cotton hooking grooves are equidistantly provided at the lower end of the conveying plate, and a plurality of cotton hooks are circularly provided on the cotton blending roller. When the cotton blending roller rotates, the cotton hooks pass through the cotton hooking grooves. A connecting shaft is penetrated through the upper and lower ends of the conveying plate, and the connecting shaft penetrates the outer wall of the general cabin, wherein both ends of the connecting shaft located at the lower end of the conveying plate are fixedly sleeved with a connecting rod, and the end of the connecting rod is rotatably connected with a cylinder.
[0008] Preferably, a through hole of a rectangular structure is provided on the conveying plate, a part of the connecting shaft passing through the conveying plate is exposed in the through hole, the connecting shaft part exposed in the through hole is sleeved with a track roller, and a track is sleeved between the track rollers.
[0009] Preferably, clearance holes are provided on both sides of the outer wall at the lower end of the ramp cavity of the general cabin, and the connecting shaft located at the lower end of the conveying plate extends to the outside of the ramp cavity through the clearance holes, the cylinder is fixed to the side of the clearance hole at the lower end of the ramp cavity, and a protective cover is provided on the outer wall of the ramp cavity to cover the clearance hole and the outside of the cylinder.
[0010] Preferably, a connecting plate is fixedly provided on the outer wall of the upper end of the ramp cavity, the connecting plate is in a C-shaped structure, and both ends of the connecting shaft located at the upper end of the conveying plate are connected to the connecting plate through bearings.
[0011] Preferably, the track roller on the connecting shaft at the lower end of the conveyor plate is connected thereto through a bearing, and the track roller on the connecting shaft at the upper end of the conveyor plate is fixedly connected thereto, and a motor is mounted on one of the connecting plates, and the motor is connected to one end of the connecting shaft at the upper end of the conveyor plate.
[0012] Preferably, the lengths of the horizontal upper ends of the plurality of conveying plates gradually increase from top to bottom, and the ends of the horizontal lower ends of the plurality of conveying plates are aligned.
[0013] Preferably, a pair of mixing rollers are arranged axially in the box-type cavity, a gear plate is fixedly sleeved on one end of the mixing roller, the gear plates are meshed with each other, and the diameters of the gear plates at the ends of the pair of mixing rollers are different.
[0014] Preferably, a pulley is fixedly connected to the center of the outer surface of the gear plate at the end of the upper gear plate, a belt is sleeved on the pulley, a motor is installed on the upper surface of the box-type cavity, and two ends of the belt are sleeved on the driving end of the motor.
[0015] Preferably, the end of the cotton hook is in an arc-shaped structure, and a through groove is provided in the center of the arc-shaped end of the cotton hook.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] (1) The present invention drives the cotton hook to hook out the cotton layer on the conveying plate by means of a rotating cotton mixing roller. Since the conveying plate is provided with multiple layers, each layer can be provided with cotton wool from different cotton bags. When the cotton hook is working, the cotton wool of the upper layer and the cotton wool of the lower layer are hooked out in turn, so that different cotton wools stick to each other to form mixed cotton wools. Compared with stirring and mixing, the cotton hook of the present invention will not damage the length of the cotton wool fibers when hooking out the cotton wool, thereby ensuring the quality of subsequent processing on the one hand, and reducing the problem of wool diffusion caused by the destruction of cotton wool fibers on the other hand.
[0018] (2) In order to ensure that the cotton hook can smoothly hook out the cotton layer on the conveying plate in the present invention, the lower end of the conveying plate is set to a horizontal state, and a plurality of cotton hooking grooves are opened at the lower end of the conveying plate. When the cotton layer reaches the cotton hooking groove, the cotton mixing roller drives the cotton hook to rotate and pass through the cotton hooking groove. When the cotton hook passes through the cotton hooking groove, the cotton wool of the cotton layer is hooked out. Furthermore, after the upper cotton wool is hooked out, the cotton hook will contact the cotton layer on the lower conveying plate as it continues to rotate. Therefore, the cotton wool hooked out on the upper conveying plate is squeezed to a certain extent by the squeezing of the cotton hook so that the cotton wool is adhered to the surface layer on the lower conveying plate to form a mixed cotton layer.
[0019] (2) In order to ensure the mixing effect, the present invention is provided with a pair of relatively moving cotton mixing rollers, the upper cotton mixing roller rotates clockwise, and the lower cotton mixing roller rotates counterclockwise, so that the cotton wool hooked out from the multiple conveying plates is finally squeezed by the upper and lower groups of cotton hooks to form a new mixed cotton layer.
[0020] (3) Furthermore, when cotton bags of different colors are mixed by the cotton hook of the present invention, the mixed cotton layers are clearly layered, and the cotton layers formed by the mixed cotton wool can form a whole. Therefore, in subsequent processing, especially when the cotton wool is made into thread, its color texture is more uniform than that of traditional stirring and mixing, and the cotton thread produced is more beautiful without the problem of local color accumulation and disorder.
[0021] (3) The angle of the lower end of the conveying plate in the present invention is adjustable, so that the distance between the lower ends of each conveying plate can be adjusted according to the actual processing situation. Through this adjustment, it can be ensured that when the cotton mixing roller rotates, the cotton hooks arranged thereon can pass through the cotton hooking grooves on all the conveying plates, thereby preventing incomplete mixing due to the large distance between multiple conveying plates and the limited length of the cotton hooks. Furthermore, in order to improve the transportation of the cotton layer, the present invention is provided with a crawler on the conveying plate, and the rotation of the crawler assists the cotton layer to move into the main cabin, thereby preventing the cotton hook from idling due to the untimely falling of the cotton layer. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 Three-dimensional structure of the cotton mixing device Figure 1 .
[0023] Figure 2Three-dimensional structure of the cotton mixing device Figure 2 .
[0024] Figure 3 This is the internal structure diagram of the cotton mixing device.
[0025] Figure 4 This is a plan view of the internal structure of the cotton mixing device.
[0026] Figure 5 This is a structural diagram of the cotton hooking component of the cotton mixing device.
[0027] Figure 6 This is a structural diagram of the conveying components of the cotton mixing device.
[0028] The corresponding relationship between the various figure labels and component names in the figure is as follows:
[0029] 100, general cabin; 100a, clearance hole; 100b, protective cover; 100c, connecting plate; 101, conveying plate; 101a, cotton hook groove; 102, cotton mixing roller; 102a, cotton hook; 102b, gear plate; 102c, motor; 102d, belt; 103, crawler track; 103a, coupling; 103a-1, motor; 103b, cylinder; 103b-1, connecting rod. DETAILED DESCRIPTION
[0030] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are described in detail below in conjunction with the accompanying drawings.
[0031] In the following description, many specific details are set forth to facilitate a full understanding of the present invention, but the present invention may also be implemented in other ways different from those described herein, and those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0032] Secondly, the term "one embodiment" or "embodiment" as used herein refers to a specific feature, structure or characteristic that may be included in at least one implementation of the present invention. The term "in one embodiment" that appears in different places in this specification does not refer to the same embodiment, nor is it a separate or selective embodiment that is mutually exclusive with other embodiments. The present invention provides the following embodiments.
[0033] See also Figure 1 and Figure 2This is a structural diagram of a color spinning and cotton blending device in this embodiment. The cotton blending device in this embodiment includes a general cabin 100, which is divided into a box-type cavity and an inclined cavity, wherein the box-type cavity is a mixing area, and the inclined cavity is a conveying area for the cotton layer. A pair of mixing rollers 102 are provided in the box-type cavity, and a plurality of conveying plates 101 are provided in the inclined cavity. In this embodiment, the cotton layer is conveyed toward the box-type cavity by the conveying plate 101. When the cotton layer reaches the junction of the box-type cavity and the inclined cavity, the multiple cotton layers are mixed by the mixing roller 102 to form a new mixed cotton layer.
[0034] See also Figure 3 In order to achieve mixing of cotton wool of multiple cotton layers in this embodiment, multiple conveying plates 101 are longitudinally distributed in the main cabin 100, and the upper and lower ends of the conveying plates 101 are horizontal, and multiple cotton hooking grooves 101a are equidistantly provided at the lower end of the conveying plates 101. In this embodiment, a pair of mixing rollers 102 are arranged on one side of the multiple longitudinally distributed conveying plates 101, and multiple cotton hooks 102a are circumferentially provided on the mixing rollers 102. When the mixing rollers 102 rotate, the cotton hooks 102a provided on the mixing rollers 102 pass through the cotton hooking grooves 101a on the multiple conveying plates 101 in sequence, so that the cotton layer laid on the upper surface of the conveying plate 101 is hooked and connected with the lower conveying plate 101. The cotton layers on the conveying plate 101 are squeezed and fitted to form mixed cotton wool, thereby achieving the purpose of cotton mixing; in this embodiment, the rotating cotton mixing roller 102 drives the cotton hook 102a to hook out the cotton layer on the conveying plate 101. Since the conveying plate 101 is provided with multiple layers, each layer can be placed with cotton wool from different cotton bags. When the cotton hook 102a is working, the cotton wool of the upper layer and the cotton wool of the lower layer are hooked out in turn, so that different cotton wools stick to each other to form mixed cotton wool. Compared with stirring and mixing, the cotton hook 102a in this embodiment will not damage the length of the cotton wool fiber when hooking out the cotton wool, thereby ensuring the quality during subsequent processing on the one hand, and on the other hand, reducing the problem of hair wool diffusion caused by the destruction of the cotton wool fiber to a certain extent.
[0035] See also Figure 2 and Figure 6In order to enable the conveying plate 101 to obtain supporting force, in this embodiment, connecting shafts 103a are penetrated at the upper and lower ends of the conveying plate 101, and the connecting shafts 103a penetrate the outer wall of the main cabin 100, and the conveying plate 101 is connected to the main cabin 100 through the connecting shafts 103a. Furthermore, in order to ensure that the cotton hooks 102a arranged on the mixing roller 102 can pass through the hooking grooves 101a on all the conveying plates 101 when rotating, and to prevent the situation that the mixing is not thoroughly mixed due to the large distance between the multiple conveying plates 101 and the limited length of the cotton hooks 102a, in this embodiment, both ends of the connecting shaft 103a located at the lower end of the conveying plate 101 are fixedly sleeved with connecting rods 103b-1, and the ends of the connecting rods 103b-1 are rotatably connected with cylinders 103b. In this embodiment, the cylinder 10 The extension and retraction of 3b drives the connecting shaft 103a at the lower end of the conveying plate 101 to rise and fall to a certain extent, thereby controlling the distance between the lower ends of the conveying plates 101. Matching this, in order to provide space for the connecting shaft 103a at the lower end of the conveying plate 101 to rise and fall, this embodiment provides clearance holes 100a on both sides of the outer wall of the lower end of the ramp cavity of the general cabin 100, and the connecting shaft 103a at the lower end of the conveying plate 101 extends to the outside of the ramp cavity through the clearance holes 100a. The opening of the clearance holes 100a ensures that the connecting shaft 103a at the lower end of the conveying plate 101 has sufficient space during operation without being interfered with. At the same time, the cylinder 103b is fixed to the side of the clearance hole 100a at the lower end of the ramp cavity to ensure that the cylinder 103b has sufficient stability during operation.
[0036] Considering that the opening of the give way holes 100a enables the internal space of the general cabin 100 to be connected with the outside world, it is inevitable that there will be a certain amount of flying catkins during mixing, and the opening of the give way holes 100a will cause the flying catkins to float to the outside world and cause pollution. Therefore, in this embodiment, a protective cover 100b is provided on the outer wall of the ramp cavity, and the protective cover 100b covers the give way holes 100a and the outside of the cylinder 103b, so as to shield the give way holes 100a and prevent the problem of flying catkins.
[0037] See also Figure 6 In order to improve the transportation of the cotton layer, a rectangular through hole is opened on the conveying plate 101 in this embodiment, and a part of the connecting shaft 103a that passes through the conveying plate 101 is exposed in the through hole. The part of the connecting shaft 103a exposed in the through hole is sleeved with a track roller, and the track rollers are sleeved with a track 103. The rotation of the track 103 assists the cotton layer to move into the main cabin 100, thereby preventing the cotton hook 102a from idling due to the untimely falling of the cotton layer.
[0038] See also Figure 2 and Figure 3In this embodiment, the connecting shaft 103a at the lower end of the conveying plate 101 is lifted and lowered to a certain extent by the extension and contraction of the cylinder 103b, thereby controlling the distance between the lower ends of the conveying plates 101. Therefore, the upper end of the conveying plate 101 needs to be able to rotate. Therefore, in this embodiment, a connecting plate 100c is fixedly provided on the outer wall of the upper end of the ramp cavity. The connecting plate 100c has a C-shaped structure. Both ends of the connecting shaft 103a at the upper end of the conveying plate 101 are connected to the connecting plate 100c through bearings. The conveying plate 101 is connected to the connecting plate 100c by the connecting shaft 103a at the upper end of the conveying plate 101. Therefore, the connecting shaft 103a at the upper end of the conveying plate 101 can provide a supporting force without affecting the rotation of the upper end of the conveying plate 101.
[0039] It is worth noting that in this embodiment, the height of the conveying plate 101 is adjustable, and the corresponding upper end of the conveying plate 101 needs to be rotated in order to adapt to the angle change problem caused by the height adjustment of the lower end of the conveying plate 101. Therefore, the installation method of the track rollers at the upper and lower ends of the conveying plate 101 in this embodiment is also different. In this embodiment, the track rollers on the connecting shaft 103a at the lower end of the conveying plate 101 are connected to it through bearings, and the track rollers on the connecting shaft 103a at the upper end of the conveying plate 101 are fixedly connected to it. A motor 103a-1 is installed on one of the connecting plates 100c, and the motor 103a-1 is connected to one end of the connecting shaft 103a at the upper end of the conveying plate 101. In this embodiment, the motor 103a-1 is used to drive the track rollers at The coupling shaft 103a at the upper end of the conveying plate 101 rotates, and the track roller on the coupling shaft 103a at the upper end of the conveying plate 101 rotates accordingly because it is fixedly connected, so that the track 103 is driven to rotate by the rotating track roller, and the coupling shaft 103a at the lower end of the conveying plate 101 is height-adjustable, so it cannot be fixed, and the track roller on the coupling shaft 103a at the lower end of the conveying plate 101 is movably connected to the coupling shaft 103a at the lower end of the conveying plate 101 through a bearing. When the track 103 rotates, the track roller on the coupling shaft 103a at the lower end of the conveying plate 101 is driven to rotate by friction, thereby converting static friction into rolling friction, which reduces the power loss problem of the track 103 to a certain extent, and reduces the wear of the track 103.
[0040] See also Figure 1-4 In order to facilitate the placement of cotton bales onto the conveying plate 10, the length of the horizontal upper ends of the multiple conveying plates 101 is gradually increased from top to bottom in this embodiment, so that the cotton bales are placed on the corresponding horizontal upper ends of the conveying plates 101 for feeding. In order to ensure that the cotton hooks 102a pass through the cotton hooking grooves 101a on the conveying plates 101 and the amount of cotton hooked out is of equal relative mass, the ends of the horizontal lower ends of different multiple conveying plates 101 are aligned in this embodiment.
[0041] See also Figure 1 , Figure 3 as well as Figure 5 In order to make the cotton wool hooked by the cotton hook 102a form mixed cotton wool, in this embodiment, a pair of mixing rollers 102 are axially arranged in the box-type cavity, and a gear plate 102b is fixedly sleeved at one end of the mixing roller 102, and the gear plates 102b are meshed with each other. In this embodiment, a pulley is fixedly connected at the center of the outer surface of the gear plate 102b at the end of the upper gear plate 102b, and a belt 102d is sleeved on the pulley. A motor 102c is installed on the upper surface of the box-type cavity, and two ends of the belt 102d are sleeved on the driving belt of the motor 102c. At the moving end, the motor 102c drives the pulley to rotate, and the pulley synchronously drives the gear plate 102b located at the end of the upper gear plate 102b to rotate. When the gear plate 102b located at the end of the upper gear plate 102b rotates, the upper mixing roller 102 is rotated, and the gear plates 102b that mesh with each other are synchronously used to drive the lower mixing roller 102 to rotate, so that the cotton wool hooked out from the multiple conveying plates 101 is finally squeezed by the cotton hooks 102a on the upper and lower groups of mixing rollers 102 to form a new mixed cotton layer.
[0042] It should be noted that since the cotton hook 102a needs to pass through the cotton hooking grooves 101a on multiple conveying plates 101, the lengths of the cotton hooks 102a on the upper and lower mixing rollers 102 will overlap. In order to prevent the cotton hooks 102a from colliding with each other when the mixing rollers 102 rotate, a speed difference needs to be formed between the rotation speeds of a pair of mixing rollers 102. Therefore, the diameters of the gear plates 102b at the ends of a pair of mixing rollers 102 in this embodiment are different. At the same time, in order to better enable the cotton hook 102a to hook out cotton wool, the end of the cotton hook 102a in this embodiment is in an arc-shaped structure, and a through groove is provided in the center of the arc-shaped end of the cotton hook 102a.
[0043] In summary, the present invention drives the cotton hook 102a to hook out the cotton layer on the conveying plate 101 through a pair of rotating cotton mixing rollers 102. In order to facilitate the cotton hook 102a to contact the cotton layer without being interfered by the conveying plate 101, the present invention opens a cotton hooking groove 101a on the conveying plate 101. Since the conveying plate 101 is provided with multiple layers, each layer can be used to place cotton wool of different cotton bags. When the cotton hook 102a is working, the cotton wool of the upper layer and the cotton wool of the lower layer are hooked out in turn, so that different cotton wools stick to each other to form mixed cotton wools. Compared with stirring and mixing, the cotton hook 102a of the present invention will not damage the length of the cotton wool fibers when hooking out the cotton wool, thereby ensuring that the quality can be guaranteed during subsequent processing on the one hand, and on the other hand, it reduces the damage caused by the cotton wool fibers to a certain extent. In order to solve the problem of lint diffusion caused by the destruction of the cotton fibers, further, in order to ensure that the cotton hooks 102a arranged on the mixing roller 102 can pass through the cotton hooking grooves 101a on all the conveying plates 101 when they rotate, and to prevent incomplete mixing due to the large distance between multiple conveying plates 101 and the limited length of the cotton hooks 102a, in this embodiment, both ends of the connecting shaft 103a located at the lower end of the conveying plate 101 are fixedly sleeved with connecting rods 103b-1, and the end of the connecting rod 103b-1 is rotatably connected to the cylinder 103b. In this embodiment, the connecting shaft 103a located at the lower end of the conveying plate 101 is driven to rise and fall to a certain extent by the extension and contraction of the cylinder 103b, thereby controlling the distance between the lower ends of the conveying plates 101.
[0044] The above content is a further detailed description of the present invention in combination with specific implementation methods. It cannot be determined that the specific implementation of the present invention is limited to these descriptions. For ordinary technicians in the technical field to which the present invention belongs, several simple deductions or substitutions can be made without departing from the concept of the present invention, which should be regarded as belonging to the scope of protection determined by the claims submitted for the present invention.
Claims
1. A color spinning and cotton mixing device, comprising a main cabin (100), the main cabin (100) being divided into a box-type cavity and an inclined cavity, a pair of cotton mixing rollers (102) being arranged in the box-type cavity, and a plurality of conveying plates (101) being arranged in the inclined cavity, Features: A plurality of conveying plates (101) are longitudinally distributed in the main cabin (100), and the upper and lower ends of the conveying plates (101) are both horizontal; a plurality of cotton hooking grooves (101a) are equidistantly provided at the lower end of the conveying plates (101); a plurality of cotton hooks (102a) are circumferentially provided on the cotton mixing roller (102); when the cotton mixing roller (102) rotates, the cotton hooks (102a) pass through the cotton hooking grooves (101a); Connecting shafts (103a) are provided through both upper and lower ends of the conveying plate (101), and the connecting shafts (103a) pass through the outer wall of the main cabin (100), wherein both ends of the connecting shaft (103a) located at the lower end of the conveying plate (101) are fixedly sleeved with connecting rods (103b-1), and the ends of the connecting rods (103b-1) are rotatably connected to the cylinders (103b).
2. The color spinning and cotton mixing device according to claim 1, characterized in that: A through hole of a rectangular structure is provided on the conveying plate (101), a portion of a connecting shaft (103a) passing through the conveying plate (101) is exposed in the through hole, a track roller is sleeved on the portion of the connecting shaft (103a) exposed in the through hole, and a track (103) is sleeved between the track rollers.
3. The color spinning and cotton mixing device according to claim 1, characterized in that: The outer wall of the lower end of the ramp cavity of the general cabin (100) is provided with clearance holes (100a) on both sides, and the connecting shaft (103a) located at the lower end of the conveying plate (101) extends to the outside of the ramp cavity through the clearance holes (100a), the cylinder (103b) is fixed to the side of the clearance hole (100a) at the lower end of the ramp cavity, and the outer wall of the ramp cavity is provided with a protective cover (100b) covering the clearance hole (100a) and the outside of the cylinder (103b).
4. The color spinning and cotton mixing device according to claim 2, characterized in that: A connecting plate (100c) is fixedly provided on the outer wall of the upper end of the inclined channel cavity. The connecting plate (100c) is in a C-shaped structure. Both ends of the connecting shaft (103a) located at the upper end of the conveying plate (101) are connected to the connecting plate (100c) via bearings.
5. The color spinning and cotton mixing device according to claim 4, characterized in that: The track roller on the connecting shaft (103a) at the lower end of the conveying plate (101) is connected thereto via a bearing, and the track roller on the connecting shaft (103a) at the upper end of the conveying plate (101) is fixedly connected thereto, and a motor (103a-1) is mounted on one of the connecting plates (100c), and the motor (103a-1) is connected to one end of the connecting shaft (103a) at the upper end of the conveying plate (101).
6. The color spinning and cotton mixing device according to claim 1, characterized in that: The lengths of the horizontal upper ends of the plurality of conveying plates (101) gradually increase from top to bottom, and the ends of the horizontal lower ends of the plurality of conveying plates (101) are aligned.
7. The color spinning and cotton mixing device according to claim 1, characterized in that: A pair of mixing rollers (102) are axially arranged in the box-type cavity; a gear plate (102b) is fixedly sleeved on one end of the mixing roller (102); the gear plates (102b) are meshed with each other; and the gear plates (102b) at the ends of the pair of mixing rollers (102) have different diameters.
8. The color spinning and cotton mixing device according to claim 7, characterized in that: A pulley is fixedly connected to the center of the outer surface of the gear plate (102b) at the end of the upper gear plate (102b), a belt (102d) is sleeved on the pulley, a motor (102c) is installed on the upper surface of the box-type cavity, and two ends of the belt (102d) are sleeved on the driving end of the motor (102c).
9. The color spinning and cotton mixing device according to claim 1, characterized in that: The end of the cotton hook (102a) is in an arc-shaped structure, and a through groove is provided in the center of the arc-shaped end of the cotton hook (102a).
Citation Information
Patent Citations
Cotton blending device for spinning colored spun yarn
CN117403355A
Cotton blending device for colored spun yarns
CN221566399U