Rolling and packaging equipment for wool quilt processing
By using automatic winding and air removal technology in wool quilt processing and packaging equipment, the problems of manual labor and complex equipment after wool quilt processing have been solved, achieving automated winding and efficient packaging.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- TONGZHOU DONGSHENG TEXTILE MACHINERY
- Filing Date
- 2025-12-30
- Publication Date
- 2026-05-01
AI Technical Summary
Existing wool quilts require tools to remove internal air after processing, and both folding and rolling packaging methods require manual labor. The equipment is complex, the power source cannot be fully utilized, and the packaging cycle is long.
The wool quilt processing and packaging equipment adopts components such as adjusting liner, fixed support rod, movable support rod, centrifugal turntable, twisting rope and inner locking rod. It realizes automatic winding and shaping of wool quilts by twisting rope and centrifugal force, and uses extrusion rod and return spring to expel air, simplifying the equipment structure and adapting to the size changes of wool quilts.
It has enabled automated rolling of wool quilts, reducing manpower requirements, simplifying equipment structure, shortening packaging cycle, improving work efficiency, and effectively reducing packaging volume.
Smart Images

Figure CN121948181A_ABST
Abstract
Description
Rolling and packaging equipment for wool quilt processing Technical Field
[0001] This invention relates to the field of wool quilt processing technology, and in particular to rolling and packaging equipment for wool quilt processing. Background Technology
[0002] The curly wool contains a large amount of air, and air has a very low heat transfer rate, which effectively prevents the entry of cold air from the outside and the dissipation of hot air from the inside, thus achieving a high level of insulation. At the same time, wool has excellent moisture absorption and release properties, continuously absorbing moisture and sweat emitted from the human body and releasing it into the air, keeping the bedding dry and comfortable. Its luster is soft, and it is elastic and not easily stained, maintaining comfort even after years of use.
[0003] After processing, wool quilts are filled with a lot of air. Most existing wool quilts are rolled into a square shape by folding them several times, or rolled into a roller shape by using rollers. Before packaging, tools are needed to remove the air inside in order to reduce the packaging volume and reduce the space required for subsequent transportation. However, both folding and rolling packaging methods require manual labor, and the packaging equipment is complex in structure, and the power source consumed cannot be fully utilized, resulting in a long working cycle for packaging and rolling.
[0004] To address the above issues, improvements were made to the existing equipment, and a rolling and packaging device for wool quilt processing was proposed. Summary of the Invention
[0005] The purpose of this invention is to provide a rolling and packaging device for wool quilt processing, which solves the problem that after wool quilts are processed, they are filled with a large amount of air. In the prior art, wool quilts are mostly rolled into a square shape by folding several times, or rolled into a roller shape by using a roller. Before packaging, tools are needed to remove the air inside in order to reduce the packaging volume and reduce the subsequent transportation space. However, whether it is a folding or rolling packaging method, it requires manual assistance, and the packaging equipment has a complex structure, the power source cannot be fully utilized, and the working cycle of packaging and rolling is long.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a wool quilt processing and rolling packaging equipment, comprising an adjusting frame and a fixed support rod disposed on the surface of the adjusting frame, a movable support rod installed on one side of the fixed support rod, a centrifugal turntable disposed at the top of the fixed support rod and the movable support rod, two sets of centrifugal turntables disposed, a connecting clamping column disposed between the two sets of centrifugal turntables, a twisting rope disposed at the center of the outer side of the two sets of centrifugal turntables, a smoothing pressing component disposed on one side of the connecting clamping column, both ends of the smoothing pressing component being connected to the centrifugal turntable, an inner locking rod disposed on the inner side of the connecting clamping column, one end of the inner locking rod being connected to the center of one set of centrifugal turntables, the centrifugal turntable comprising a force-applying turntable and a component disposed on the outer side of the force-applying turntable. The movable handle ring, fixed support rod, and one end of the movable support rod are connected to the lower surfaces of the two sets of movable handle rings. A receiving groove is formed on the circumferential side surface of the force-applying turntable, and a receiving shaft is installed inside the receiving groove. An annular sliding surface is formed on the inner surface of the movable handle ring, and a limiting roller is fitted onto the surface of the receiving shaft, connecting the limiting roller to the annular sliding surface. The twisting action rope includes a splicing handle block located in the center of the force-applying turntable and traction branch ropes installed at both ends of the splicing handle block. The two sets of traction branch ropes are twisted into a knotted rope, one end of which is connected to the adjusting bushing. The connecting clamp includes a central column sleeve located between the two sets of force-applying turntables and an extended profile component installed on the outside of the central column sleeve. The extended profile component is... There are three sets of inner locking rods. The upper and lower surfaces of the inner locking rods have corresponding extrusion grooves, and there are four sets of extrusion grooves. Both ends of the extrusion grooves have arc-shaped end faces. The outer surfaces of both ends of the inner locking rods have locking slots. The extended contour component includes arc-shaped outer contour top plates evenly distributed on the outside of the central column sleeve and extrusion rods installed inside the arc-shaped outer contour top plates. An adjustment box is installed on the inner wall of the central column sleeve. The arc-shaped outer contour top plates correspond to the adjustment box. The bottom end of the extrusion rod connects to the inner bottom surface of the extrusion groove and the outer surface of the inner locking rod. A limiting block is fitted onto the surface of the extrusion rod. The adjustment box has a movable cavity inside, and the limiting block is located inside the movable cavity. Both the front and rear ends of the adjustment box have through-holes. The inlet is connected to the extrusion rod. A first return spring is installed on one side of the limiting block. The first return spring is sleeved on the surface of the extrusion rod and is located inside the movable cavity. A clamping notch is opened on the surface of the central column sleeve. A connecting shaft is provided at both ends of the clamping notch. An extension rod is installed on the surface of the connecting shaft. A clamping member is provided at one end of the extension rod. A docking locking rod is installed on the lower surface of one end of the clamping member. The clamping member includes a long handle rod connected to the extension rod and a wool clamp provided at one end of the long handle rod. One set of long handle rods is equipped with two sets of wool clamps, and the installation positions of the two sets of wool clamps are opposite to each other. One end of the docking locking rod is connected to the locking slot hole.
[0007] Furthermore, the smoothing pressing component includes a combing handle and an outward sliding groove formed on the surface of the combing handle. One end of the combing handle is connected to a movable rotating handle ring, and the other end of the combing handle is in contact with a force-applying turntable. There are four sets of combing handles, and a pressing push rod is installed between two sets of combing handles. An adjustment chamber is formed inside the combing handle, and a connecting center rod is installed in the center of the adjustment chamber.
[0008] Furthermore, a movable sliding block is fitted on the surface of the sleeve center rod, a second return spring is fitted on one side of the movable sliding block, and the second return spring is fitted on the surface of the sleeve center rod. A connecting slide rod is installed on the side surface of the movable sliding block, one end of the connecting slide rod is connected to one end of the pressing push rod, and the connecting slide rod is connected to the outer sliding groove.
[0009] Furthermore, the adjusting liner includes a bottom liner rod and an outwardly movable splicing end block installed at one end of the bottom liner rod. The upper surfaces of the bottom liner rod and the outwardly movable splicing end block are provided with displacement grooves. Supporting feet are provided at both ends of the bottom liner rod and the outwardly movable splicing end block. Vertical struts are provided at both ends of the upper surfaces of the bottom liner rod and the outwardly movable splicing end block. The displacement groove is located between the two sets of vertical struts.
[0010] Furthermore, a traction beam is installed on the side surface of the top of the vertical strut, one end of the knotted rope is connected to one end of the traction beam, the movable strut is connected to the adjusting liner through the displacement groove, and the bottom end of the fixed strut is connected to the upper surface of the bottom liner.
[0011] Furthermore, the traction beam has an internal cavity, and a short dividing rod is provided in the center of the cavity. The size of the short dividing rod is shorter than the internal size of the cavity. One side of the short dividing rod has a closed end face, and the other side of the short dividing rod has an open end face.
[0012] Furthermore, a pulley is installed at one end of the short dividing rod, and an adjusting telescopic rod is provided on the inner bottom surface of the closed end face. One end of the knotted rope passes through the open end face, goes around the pulley, and extends into the inner side of the closed end face, and one end of the knotted rope is connected to one end of the adjusting telescopic rod.
[0013] Furthermore, a splicing sleeve is provided on the side surface of the outward splicing end block, and a sliding locking rod is installed on the inner surface of the splicing sleeve.
[0014] Furthermore, the bottom liner has a matching sliding groove inside, the splicing slide sleeve is connected to the matching sliding groove, the matching sliding groove is connected to the displacement slide groove, and the movable support rod passes through the displacement slide groove and connects to the upper surface of the splicing slide sleeve.
[0015] Furthermore, a threaded rod is provided on the inner bottom surface of the matching sliding groove. The threaded rod matches the interior of the splicing sliding sleeve, and the splicing sliding sleeve is connected to the threaded rod through a sliding clip rod.
[0016] Compared with the prior art, the beneficial effects of the present invention are: 1. The wool quilt processing and packaging equipment proposed in this invention has one end of the wool quilt wrapped around a long handle rod, and the two corners of one end of the wool quilt are clamped by two sets of wool quilt clamps. The extension rod, through the connecting shaft, inserts the clamping member and the docking locking rod into the interior of the central column sleeve along the clamping notch groove, and inserts one end of the docking locking rod into the locking groove hole to fix the inner locking rod in the center of the inner side of the central column sleeve, and fixes one end of the wool quilt. By adjusting the bushing, the outer end of the twisting rope is stretched outward, and the twisting action... After one end of the rope is subjected to an outward stretching force, the twisted rope, in a twisted state, rotates in the opposite direction of the twist to conform to the force. Due to the connecting force of the splicing handle on the force-applying turntable and the twisting rope, the force-applying turntable begins to rotate through centrifugal force. The wool quilt then winds around the central column sleeve. Once the force on the force-applying turntable is unloaded, the wool quilt is wound into shape. Workers then tie it to the outside to initially shape it. The wool quilt is then loosened using the quilt clamps, and the clamps and connecting locking rods are then connected. As the clamping notch disengages from the interior of the central column sleeve, one end of the locking rod disengages from the locking slot, gradually separating the entire centrifugal turntable from one end of the connecting clamping column. Initially, the end of the pressing rod is pressed against the outer surface of the inner locking rod. As the centrifugal turntable shifts, the inner locking rod moves along the interior of the central column sleeve, causing the end of the pressing rod to come into contact with the bottom surface of the pressing groove. Through the elastic force of the first return spring, the pressing rod drives the arc-shaped outer contour top piece to move rapidly downward, causing the arc-shaped outer contour top piece to come into contact with the outer surface of the central column sleeve, evenly. The volume of the several sets of arc-shaped outer contour top pieces is reduced, which in turn increases the gap in the central space formed by the wool quilt in the roller state. At this time, it is convenient to adjust the packaging shape of the wool quilt. When the inner locking rod disengages from the inside of the central column sleeve, the wool quilt in the coiled state can be smoothly disassembled from the outside of the central column sleeve, thus completing the packaging process of a wool quilt. It can be achieved by only applying force to the twisting rope, saving power source. The components are simple and ingenious. The force applied to the twisting rope can be adjusted according to the coiling size of the wool quilt, and the equipment has a strong adaptability.
[0017] 2. The wool quilt processing and packaging equipment proposed in this invention, during the winding process of the wool quilt by the central column sleeve, utilizes the extensibility of the second return spring to allow the movable sliding block to slide along the sleeved central rod. The pressing push rod continuously adjusts its distance from the central column sleeve, and the pressing push rod always presses and adheres to the wound wool quilt to improve the tightness of the winding. The centrifugal force applied to the wool quilt by the force-applying turntable and the combined force of the pressing push rod help to expel the air inside the wool quilt to a certain extent during the winding process, minimizing the packaging volume. When it is necessary to adjust the force of the twisting rope, the adjusting telescopic rod is activated. The greater the adjustment length of the twisting rope, the greater the force on the twisting rope, which facilitates the control of the rotation of the force-applying turntable to adapt to the size of the packaged wool quilt.
[0018] 3. The wool quilt processing and packaging equipment proposed in this invention features a matching sliding groove connected to a displacement sliding groove. A movable support rod passes through the displacement sliding groove and connects to the upper surface of the splicing sleeve. A threaded rod is provided on the inner bottom surface of the matching sliding groove, and the threaded rod matches the interior of the splicing sleeve. The splicing sleeve is connected to the threaded rod via a sliding locking rod. After the wool quilt is wound into shape and one end of the docking locking rod disengages from the locking groove hole, the threaded rod is activated. The sliding locking rod connects to the rotating threaded rod, and the threaded rod gradually separates along the inner side of the splicing sleeve. The distance between the bottom liner rod and the outer splicing end block gradually increases, causing a set of centrifugal turntables to gradually separate from one end of the connecting clamping column. This allows the wound wool quilt to be easily disassembled. The equipment facilitates the loading and unloading of wool quilts, has high working efficiency, and shortens the packaging and winding cycle. Attached Figure Description
[0019] Figure 1 is a schematic diagram of the overall structure of the wool quilt processing and packaging equipment of the present invention; Figure 2 is a schematic diagram of the assembly structure of the centrifugal turntable and the twisting rope of the wool quilt processing and packaging equipment of the present invention; Figure 3 is a schematic diagram of the internal locking rod structure of the wool quilt processing and packaging equipment of the present invention; Figure 4 is a schematic diagram of the connecting clamping column structure of the wool quilt processing and packaging equipment of the present invention; Figure 5 is a schematic diagram of the internal planar structure of the centrifugal turntable and the twisting rope of the wool quilt processing and packaging equipment of the present invention; Figure 6 is a schematic diagram of the internal planar structure of the central column sleeve of the wool quilt processing and packaging equipment of the present invention; Figure 7 is an enlarged view of point A in Figure 5 of the present invention; Figure 8 is a schematic diagram of the overall structure of the smoothing pressing component of the wool quilt processing and packaging equipment of the present invention; Figure 9 is a schematic diagram of the internal planar structure of the combing handle of the wool quilt processing and packaging equipment of the present invention; Figure 10 is a schematic diagram of the adjusting liner structure of the wool quilt processing and packaging equipment of the present invention; Figure 11 is a schematic diagram of the internal planar structure of the traction beam of the wool quilt processing and packaging equipment of the present invention; Figure 12 is a schematic diagram of the internal planar structure of the matching sliding groove of the wool quilt processing and packaging equipment of the present invention.
[0020] In the diagram: 1. Adjusting bushing; 11. Bottom bushing rod; 111. Matching sliding groove; 112. Threaded rod; 12. Outward splicing end block; 121. Splicing sleeve; 122. Sliding locking rod; 13. Displacement groove; 14. Support foot block; 15. Vertical support rod; 16. Traction beam rod; 161. Receiving chamber; 162. Dividing short rod; 163. Closed end face; 164. Open end face; 165. Pulley component; 166. Adjusting telescopic rod; 2. Fixed support rod; 3. Movable support rod; 4. Centrifugal turntable; 41. Force-applying turntable; 42. Movable rotating handle ring; 43. Receiving groove; 44. Receiving shaft rod; 45. Annular sliding surface; 46. Limiting roller; 5. Connecting clamping column; 51. Central column sleeve; 511. Clamping notch groove; 512. Connecting shaft component; 5 13. Extension rod; 514. Clamping component; 5141. Long handle rod; 5142. Wool quilt clamp; 515. Connecting locking rod; 52. Extended contour component; 521. Arc-shaped outer contour top plate; 522. Extrusion insert rod; 523. Adjustment box; 524. Limiting block; 525. Movable slot cavity; 526. Inlet slot; 527. First return spring; 6. Twisting action rope; 61. Splicing handle block; 62. Traction branch rope; 63. Twisting rope; 7. Smoothing pressing component; 71. Combing handle rod; 72. Extrusion push rod; 73. Outer sliding groove; 74. Adjustment chamber; 75. Sleeve center rod; 76. Movable sliding block; 77. Second return spring; 78. Connecting slide rod; 8. Inner locking rod; 81. Extrusion groove; 82. Arc-shaped end face; 83. Locking slot hole. Detailed Implementation
[0021] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0022] To address the technical problems of both folding and rolling packaging methods requiring manual labor, complex packaging equipment with insufficient power utilization, and long packaging and rolling cycles, as shown in Figures 1-7, the following preferred technical solution is provided: a rolling packaging device for wool quilt processing, comprising an adjusting frame 1 and a fixed support rod 2 mounted on the surface of the adjusting frame 1. A movable support rod 3 is mounted on one side of the fixed support rod 2. Centrifugal turntables 4 are mounted at the top of the fixed support rod 2 and the movable support rod 3. Two sets of centrifugal turntables 4 are provided, and a connecting clamp 5 is provided between the two sets of centrifugal turntables 4. A twisting rope 6 is mounted in the center of the outer side of the two sets of centrifugal turntables 4. A smoothing pressure piece 7 is provided on one side, and both ends of the smoothing pressure piece 7 are connected to the centrifugal turntable 4. An inner locking rod 8 is installed on the inner side of the connecting clamping column 5. One end of the inner locking rod 8 is connected to the center of a set of centrifugal turntables 4. The centrifugal turntable 4 includes a force-applying turntable 41 and a movable rotating handle ring 42 provided on the outer side of the force-applying turntable 41. One end of the fixed support rod 2 and the movable support rod 3 is connected to the lower surface of the two sets of movable rotating handle rings 42. A receiving groove 43 is opened on the circumferential side surface of the force-applying turntable 41. A receiving shaft rod 44 is installed on the inner side of the receiving groove 43. An annular sliding surface 45 is opened on the inner surface of the movable rotating handle ring 42. A limiting roller 46 is sleeved on the surface of the receiving shaft rod 44. The limiting roller 46 is connected to the annular sliding surface 45.
[0023] The twisting rope 6 includes a splicing handle block 61 located in the center of the force-applying turntable 41 and traction branch ropes 62 installed at both ends of the splicing handle block 61. The two sets of traction branch ropes 62 are twisted into a knotted rope 63. One end of the knotted rope 63 is connected to the adjusting bushing 1. The connecting clamp 5 includes a central column sleeve 51 located between the two sets of force-applying turntables 41 and an extended contour member 52 installed on the outside of the central column sleeve 51. Three sets of extended contour members 52 are provided. The upper and lower surfaces of the inner locking rod 8 are correspondingly provided with compression grooves 81. Four sets of compression grooves 81 are provided. Both ends of the extrusion groove 81 are equipped with arc-shaped end faces 82, and both ends of the inner locking rod 8 have locking slot holes 83 on their outer surfaces. The extended contour member 52 includes an arc-shaped outer contour top piece 521 evenly arranged on the outside of the central column sleeve 51 and an extrusion insert 522 installed on the inside of the arc-shaped outer contour top piece 521. An adjustment box 523 is installed on the inner wall of the central column sleeve 51. The arc-shaped outer contour top piece 521 corresponds to the adjustment box 523. The bottom end of the extrusion insert 522 is connected to the inner bottom surface of the extrusion groove 81 and the outer surface of the inner locking rod 8.
[0024] A limiting block 524 is fitted onto the surface of the extrusion rod 522. A movable cavity 525 is formed inside the adjusting box 523, and the limiting block 524 is located inside the movable cavity 525. Both the front and rear ends of the adjusting box 523 have inlet slots 526 connected to the extrusion rod 522. A first return spring 527 is installed on one side of the limiting block 524, fitted onto the surface of the extrusion rod 522, and located inside the movable cavity 525. A clamping notch 511 is formed on the surface of the central column sleeve 51. Both ends of the slot 511 are provided with connecting shafts 512. An extension rod 513 is installed on the surface of the connecting shaft 512. A clamping member 514 is provided at one end of the extension rod 513. A docking locking rod 515 is installed on the lower surface of one end of the clamping member 514. The clamping member 514 includes a long handle 5141 connected to the extension rod 513 and a wool clamp 5142 provided at one end of the long handle 5141. One set of long handle 5141 is equipped with two sets of wool clamps 5142, and the two sets of wool clamps 5142 are installed in opposite positions. One end of the docking locking rod 515 is connected to the locking slot hole 83.
[0025] Specifically, one end of the wool blanket passes over the long handle 5141, and the two corners of one end of the wool blanket are clamped by two sets of wool blanket clamps 5142. The extension rod 513, through the connecting shaft 512, guides the clamping member 514 and the docking locking rod 515 into the interior of the central column sleeve 51 along the clamping notch 511, and inserts one end of the docking locking rod 515 into the locking groove 83, so as to fix the inner locking rod 8 in the center of the inner side of the central column sleeve 51 and fix one end of the wool blanket. By adjusting the liner 1, the outer end of the twisting rope 6 is stretched outward. After the one end of the twisting rope 6 is subjected to the outward stretching force, it is... In the twisted state, the knotted rope 63 rotates in the opposite direction of the twisting to conform to the force. Due to the connecting force of the splicing handle block 61 on the force-applying turntable 41 and the twisting rope 6, the force-applying turntable 41 starts to rotate through centrifugal force. Then, the wool quilt is wound around the central column sleeve 51 as the axis. After the force on the force-applying turntable 41 is unloaded, the wool quilt has been wound into shape. The workers tie it on the outside to preliminarily shape it. Then, the wool quilt clamp 5142 is used to release the clamp on the wool quilt, and the clamp 514 and the docking locking rod 515 are released along the clamping notch 511. Inside the central column sleeve 51, one end of the locking rod 515 disengages from the locking groove 83, gradually separating the entire set of centrifugal discs 4 from one end of the connecting clamping column 5. Initially, the end of the pressing rod 522 is pressed against the outer surface of the inner locking rod 8. As the centrifugal discs 4 shift, the inner locking rod 8 moves along the interior of the central column sleeve 51, causing the end of the pressing rod 522 to come into contact with the bottom surface of the pressing groove 81. Through the elastic force of the first return spring 527, the pressing rod 522 drives the arc-shaped outer contour top piece 521 to move rapidly downward, causing the arc-shaped outer contour top piece 521 to come into contact with the outer surface of the central column sleeve 51. With the surfaces in close contact, the contour volume of several sets of arc-shaped outer contour top pieces 521 becomes smaller, thereby increasing the gap in the central space formed by the wool quilt in the roller state. At this time, it is convenient to adjust the packaging shape of the wool quilt. When the inner locking rod 8 disengages from the inside of the central column sleeve 51, the wool quilt in the coiled state can be smoothly disassembled from the outside of the central column sleeve 51, thus completing the packaging process of a wool quilt. This can be achieved by applying force to the twisting rope 6, saving power source. The components are simple and ingenious. The force applied to the twisting rope 6 can be adjusted according to the coiling size of the wool quilt, and the equipment has a strong adaptability.
[0026] To address the technical problem of needing to remove the air trapped inside the packaging before it is formed, as shown in Figures 8-11, the following preferred technical solution is provided: The smoothing pressing component 7 includes a combing handle 71 and an outward sliding groove 73 formed on the surface of the combing handle 71. One end of the combing handle 71 is connected to a movable rotating handle ring 42, and the other end of the combing handle 71 is attached to a force-applying turntable 41. Four sets of combing handles 71 are provided, and a pressing push rod 72 is installed between two sets of combing handles 71. An adjustment chamber 74 is formed inside the combing handle 71. A connecting center rod 75 is installed in the center of the adjustment chamber 74. A movable sliding block 76 is fitted on the surface of the connecting center rod 75. A second return spring 77 is fitted on one side of the movable sliding block 76, and the second return spring 77 is fitted on the surface of the connecting center rod 75. A connecting slide rod 78 is installed, one end of which is connected to one end of the pressing push rod 72, and the connecting slide rod 78 is connected to the outward sliding groove 73. The adjusting liner 1 includes a bottom liner rod 11 and an outward splicing end block 12 installed at one end of the bottom liner rod 11. The upper surfaces of the bottom liner rod 11 and the outward splicing end block 12 are provided with displacement grooves 13. Support feet 14 are provided at both ends of the bottom liner rod 11 and the outward splicing end block 12. Vertical support rods 15 are provided at both ends of the upper surfaces of the bottom liner rod 11 and the outward splicing end block 12. The displacement groove 13 is located between the two sets of vertical support rods 15. A traction beam rod 16 is installed on the side surface of the top of the vertical support rod 15. One end of the knotted rope 63 is connected to one end of the traction beam rod 16. The movable support rod 3 is connected to the adjusting liner 1 through the displacement groove 13. The bottom end of the fixed support rod 2 is connected to the upper surface of the bottom liner rod 11.
[0027] Specifically, during the process of the central column sleeve 51 winding the wool quilt, the movable sliding block 76 slides along the sleeved central rod 75 using the elasticity of the second return spring 77. The pressing push rod 72 continuously adjusts its distance from the central column sleeve 51, and the pressing push rod 72 always presses and adheres to the wound wool quilt to improve the tightness of the wool quilt winding. The centrifugal force applied to the wool quilt by the force-applying turntable 41 and the combined force of the pressing push rod 72 help to expel the air inside the wool quilt to a certain extent during the winding process, minimizing the packaging volume. When it is necessary to adjust the force of the twisting action rope 6, the adjusting telescopic rod 166 is activated. The greater the adjustment length of the twisting action rope 6, the greater the force on the twisting action rope 6, which makes it easier to control the number of rotations of the force-applying turntable 41 to adapt to the size of the packaged wool quilt.
[0028] To better address the technical challenge of smoothly unwinding coiled wool, as shown in Figures 10 and 12, the following preferred technical solution is provided: A receiving chamber 161 is provided inside the traction beam 16. A short dividing rod 162 is positioned in the center of the receiving chamber 161. The size of the short dividing rod 162 is shorter than the internal size of the receiving chamber 161. A closed end face 163 is provided on one side of the short dividing rod 162, and an open end face 164 is provided on the other side. A pulley 165 is installed at one end of the short dividing rod 162. An adjusting telescopic rod 166 is provided on the inner bottom surface of the closed end face 163. One end of the knotted rope 63 passes through the open end face 164, around the pulley 165, and extends into the closed end face 163. The inner side of the splicing end block 12 is provided with a splicing slide sleeve 121, and a sliding locking rod 122 is installed on the inner surface of the splicing slide sleeve 121. A matching sliding groove 111 is opened inside the bottom liner rod 11. The splicing slide sleeve 121 is connected to the matching sliding groove 111. The matching sliding groove 111 is connected to the displacement sliding groove 13. The movable support rod 3 passes through the displacement sliding groove 13 and is connected to the upper surface of the splicing slide sleeve 121. A threaded rod 112 is provided on the inner bottom surface of the matching sliding groove 111. The threaded rod 112 matches the inside of the splicing slide sleeve 121. The splicing slide sleeve 121 is connected to the threaded rod 112 through the sliding locking rod 122.
[0029] Specifically, after the wool quilt is wound into shape and one end of the locking rod 515 disengages from the locking slot 83, the threaded rod 112 is activated, and the sliding locking rod 122 connects with the rotating threaded rod 112. Then, the threaded rod 112 gradually separates along the inner side of the splicing sleeve 121, and the distance between the bottom liner rod 11 and the outer splicing end block 12 gradually increases, so that a set of centrifugal turntables 4 as a whole gradually separates from one end of the connecting clamping column 5. Thus, the wound wool quilt can be easily disassembled. The equipment is convenient for loading and unloading wool quilts, has high working efficiency, and shortens the packaging and rolling work cycle.
[0030] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A rolling and packaging device for processing wool quilts, comprising an adjusting frame (1) and a fixed support rod (2) disposed on the surface of the adjusting frame (1), wherein a movable support rod (3) is installed on one side of the fixed support rod (2), characterized in that: Centrifugal discs (4) are provided at the top of the fixed support rod (2) and the movable support rod (3). There are two sets of centrifugal discs (4). A connecting clamp (5) is provided between the two sets of centrifugal discs (4). A twisting rope (6) is installed at the center of the outer side of the two sets of centrifugal discs (4). A smoothing pressure piece (7) is provided on one side of the connecting clamp (5). Both ends of the smoothing pressure piece (7) are connected to the centrifugal discs (4). An inner locking rod (8) is installed on the inner side of the connecting clamp (5). One end of the inner locking rod (8) is connected to the center of one set of centrifugal discs (4). The centrifugal discs (4) include a force-applying disc (41) and a... A movable rotating ring (42) is set on the outside of the force-applying turntable (41). One end of the fixed support rod (2) and the movable support rod (3) are connected to the lower surface of the two sets of movable rotating rings (42). A receiving groove (43) is opened on the circumferential side surface of the force-applying turntable (41). A receiving shaft (44) is installed on the inner side of the receiving groove (43). An annular sliding surface (45) is opened on the inner surface of the movable rotating ring (42). A limiting roller (46) is sleeved on the surface of the receiving shaft (44). The limiting roller (46) is connected to the annular sliding surface (45). The twisting action rope (6) includes a rope set on the force-applying turntable (41). The central splicing handle block (61) and the traction ropes (62) installed at both ends of the splicing handle block (61) are twisted into a knotted rope (63). One end of the knotted rope (63) is connected to the adjusting bushing (1). The connecting clamp (5) includes a central column sleeve (51) set between two sets of force-applying turntables (41) and an extended contour piece (52) installed on the outside of the central column sleeve (51). There are three sets of extended contour pieces (52). The upper and lower surfaces of the inner locking rod (8) are correspondingly provided with compression grooves (81). There are four sets of compression grooves (81). Both ends of the inner locking rod (8) are equipped with arc-shaped end faces (82), and both ends of the inner locking rod (8) are provided with locking groove holes (83). The extended contour part (52) includes an arc-shaped outer contour top piece (521) evenly arranged on the outside of the central column sleeve (51) and a pressing rod (522) installed on the inside of the arc-shaped outer contour top piece (521). An adjustment box (523) is installed on the inner wall of the central column sleeve (51). The arc-shaped outer contour top piece (521) corresponds to the adjustment box (523). The bottom end of the pressing rod (522) is connected to the inner bottom surface of the pressing groove (81) and the outer surface of the inner locking rod (8).A limiting block (524) is fitted onto the surface of the extrusion rod (522). An adjustable box (523) has an internal movable cavity (525). The limiting block (524) is located inside the movable cavity (525). The front and rear ends of the adjustable box (523) both have inlet slots (526) connected to the extrusion rod (522). A first return spring (527) is installed on one side of the limiting block (524). The first return spring (527) is fitted onto the surface of the extrusion rod (522) and is located inside the movable cavity (525). A clamping notch (511) is formed on the surface of the central column sleeve (51). Both ends of the slot (511) are provided with connecting shafts (512). An extension rod (513) is mounted on the surface of the connecting shaft (512). A clamping member (514) is provided at one end of the extension rod (513). A docking locking rod (515) is mounted on the lower surface of one end of the clamping member (514). The clamping member (514) includes a long handle rod (5141) connected to the extension rod (513) and a wool quilt clip (5142) provided at one end of the long handle rod (5141). One set of long handle rods (5141) is equipped with two sets of wool quilt clips (5142), and the two sets of wool quilt clips (5142) are installed in opposite positions. One end of the docking locking rod (515) is connected to the locking slot hole (83).
2. The wool quilt processing and packaging equipment as described in claim 1, characterized in that: The smoothing press (7) includes a combing handle (71) and an outward sliding groove (73) opened on the surface of the combing handle (71). One end of the combing handle (71) is connected to the movable rotating handle ring (42), and the other end of the combing handle (71) is in contact with the force application turntable (41). There are four sets of combing handles (71), and a pressing push rod (72) is installed between two sets of combing handles (71). An adjustment chamber (74) is opened inside the combing handle (71), and a connecting center rod (75) is installed in the center of the adjustment chamber (74).
3. The wool quilt processing and packaging equipment as described in claim 2, characterized in that: A movable sliding block (76) is fitted on the surface of the sleeve center rod (75). A second return spring (77) is fitted on one side of the movable sliding block (76), and the second return spring (77) is fitted on the surface of the sleeve center rod (75). A connecting slide rod (78) is installed on the side surface of the movable sliding block (76). One end of the connecting slide rod (78) is connected to one end of the pressing push rod (72), and the connecting slide rod (78) is connected to the outer sliding groove (73).
4. The wool quilt processing and packaging equipment as described in claim 1, characterized in that: The adjusting liner (1) includes a bottom liner rod (11) and an outward splicing end block (12) installed at one end of the bottom liner rod (11). The upper surfaces of the bottom liner rod (11) and the outward splicing end block (12) are provided with displacement grooves (13). Supporting feet (14) are provided at both ends of the bottom liner rod (11) and the outward splicing end block (12). Vertical struts (15) are provided at both ends of the upper surfaces of the bottom liner rod (11) and the outward splicing end block (12). The displacement groove (13) is located between the two sets of vertical struts (15).
5. The wool quilt processing and packaging equipment as described in claim 4, characterized in that: A traction beam (16) is installed on the side surface of the top of the vertical support rod (15). One end of the knotted rope (63) is connected to one end of the traction beam (16). The movable support rod (3) is connected to the adjusting liner (1) through the displacement slide (13). The bottom end of the fixed support rod (2) is connected to the upper surface of the bottom liner rod (11).
6. The wool quilt processing and packaging equipment as described in claim 5, characterized in that: The traction beam (16) has an internal receiving chamber (161), and a dividing short rod (162) is provided in the center of the receiving chamber (161). The size of the dividing short rod (162) is shorter than the internal size of the receiving chamber (161). A closed end face (163) is provided on one side of the dividing short rod (162), and an open end face (164) is provided on the other side of the dividing short rod (162).
7. The wool quilt processing and packaging equipment as described in claim 6, characterized in that: A pulley (165) is installed at one end of the dividing short rod (162), and an adjusting telescopic rod (166) is provided on the inner bottom surface of the closed end face (163). One end of the twisted rope (63) passes through the open end face (164), goes around the pulley (165), and extends into the inner side of the closed end face (163). One end of the twisted rope (63) is connected to one end of the adjusting telescopic rod (166).
8. The wool quilt processing and packaging equipment as described in claim 4, characterized in that: The side surface of the outward splicing end block (12) is provided with a splicing slide sleeve (121), and the inner surface of the splicing slide sleeve (121) is equipped with a sliding locking rod (122).
9. The wool quilt processing and packaging equipment as described in claim 8, characterized in that: The bottom liner (11) has a matching sliding groove (111) inside. The splicing sleeve (121) is connected to the matching sliding groove (111). The matching sliding groove (111) is connected to the displacement sliding groove (13). The movable support rod (3) passes through the displacement sliding groove (13) and is connected to the upper surface of the splicing sleeve (121).
10. The wool quilt processing and packaging equipment as described in claim 9, characterized in that: The inner bottom surface of the matching sliding groove (111) is provided with a threaded rod (112), which matches the interior of the splicing sliding sleeve (121). The splicing sliding sleeve (121) is connected to the threaded rod (112) through the sliding clip rod (122).