A non-woven fabric feeding machine

By designing wrinkle removal components and adjustment components in the non-woven feeder, the wrinkles on the non-woven fabric are automatically smoothed, which solves the wrinkle problems caused by tension and improves processing efficiency and product quality.

CN119142881BActive Publication Date: 2025-05-06YIZHENG HUAKAI NON WOVEN EQUIP

Patent Information

Application Number
CN202411652800.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-05-06
Estimated Expiration
2044-11-19

AI Technical Summary

Technical Problem

When the non-woven fabric is introduced into the processing device through the feeder, due to the influence of tension, wrinkles are prone to occur, which affects the quality, and the prior art requires manual flattening, which reduces the processing efficiency.

Method used

A non-woven fabric feeder is designed, including a wrinkle removal assembly. The rotating roller is driven by a No. 1 motor to drive the non-woven fabric to move to both sides, automatically smooth the wrinkle, and adjust the height and operating time of the rotating roller through the adjustment assembly and monitoring mechanism to improve wrinkle removal efficiency.

Benefits of technology

The automatic leveling of wrinkles on non-woven fabrics is achieved, the processing efficiency of the feeder is improved, manual operation is reduced, and product quality is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a non-woven fabric feeding machine, which belongs to the technical field of non-woven fabric production, and comprises a mounting frame, wherein a cloth roll is arranged on one side of the outer surface of the mounting frame, a conveyor belt is arranged on the upper side of the inner wall of the mounting frame, a processing device is fixedly connected to the side of the upper surface of the mounting frame close to the conveyor belt, and a wrinkle removal component is arranged on the inner wall of the mounting frame above the conveyor belt, and the wrinkle removal component comprises a No. 1 mounting rod arranged above the conveyor belt. By arranging the wrinkle removal component, two rotating rollers in a V shape are driven by a No. 1 motor to rotate outward at the same time, and the two rotating rollers are in contact with the upper surface of the non-woven fabric, so that the two rotating rollers can drive the non-woven fabric to move to both sides when rotating, so that the non-woven fabric can be stretched to both sides, and then the wrinkles on the non-woven fabric can be smoothed, so that the wrinkles on the non-woven fabric can be automatically smoothed, and the processing efficiency of the non-woven fabric by the feeding machine is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of nonwoven fabric production, and more particularly to a nonwoven fabric feeding machine. Background Art

[0002] Non-woven fabric, also known as non-woven fabric, is a fabric that does not require spinning and weaving. Textile staple fibers or filaments are oriented or randomly arranged to form a fiber web structure, which is then reinforced by mechanical, thermal bonding or chemical methods. Non-woven fabrics have broken through the traditional textile principles and have the characteristics of short process flow, fast production rate, high output, low cost, wide use, and multiple sources of raw materials.

[0003] According to different production processes, non-woven fabrics can be divided into spunlace non-woven fabrics, heat-bonded non-woven fabrics, wet-laid non-woven fabrics and spunbond non-woven fabrics. The produced non-woven fabrics are subsequently coated with a layer of protective coating or printed on the surface according to needs to increase the functionality and appearance of the product. Therefore, a feeder is required to introduce the non-woven fabric into the processing device for secondary processing. However, when the non-woven fabric is introduced into the processing device through the feeder, due to the influence of the tension of the non-woven fabric, the non-woven fabric is prone to wrinkles during transportation, affecting the quality of the non-woven fabric after processing. Therefore, using a tension adjustment device to adjust the tension of the non-woven fabric can reduce the appearance of wrinkles, but the wrinkles that have already appeared still need to be manually flattened, which greatly reduces the processing efficiency of the feeder for non-woven fabrics. Summary of the invention

[0004] In view of the problems existing in the prior art, the object of the present invention is to provide a nonwoven fabric feeding machine.

[0005] To solve the above problems, the present invention adopts the following technical solutions.

[0006] A nonwoven fabric feeding machine comprises a mounting frame, a fabric roll is arranged on one side of the outer surface of the mounting frame, a conveyor belt is arranged on the upper side of the inner wall of the mounting frame, a processing device is fixedly connected to one side of the upper surface of the mounting frame close to the conveyor belt, and a wrinkle removal component is arranged on the inner wall of the mounting frame above the conveyor belt;

[0007] The wrinkle removal assembly includes a No. 1 mounting rod arranged above the conveyor belt, a V-shaped rod is fixedly connected to the lower end of one side of the outer surface of the No. 1 mounting rod, and No. 1 mounting grooves are provided on both sides of the lower surface of the V-shaped rod, and a rotating roller is rotatably connected inside the No. 1 mounting groove;

[0008] A monitoring mechanism is arranged on the upper surface of the mounting frame located above the conveyor belt, and the monitoring mechanism comprises a No. 2 mounting rod fixedly connected to one side of the upper surface of the mounting frame located above the conveyor belt and close to the V-shaped rod, a No. 2 mounting groove is arranged on the lower surface of the No. 2 mounting rod, a No. 2 straight rod is fixedly connected to the lower end of the No. 2 mounting groove, the outer cylindrical surface of the No. 2 straight rod is rotatably connected to a plurality of evenly distributed rotating baffles, one side of the outer cylindrical surface of the rotating baffle is fixedly connected to a fixing block, the fixing block is fixedly connected with electrical connection columns running through both ends of the fixing block, and all the electrical connection columns are electrically connected to each other, a single-chip microcomputer is fixedly connected to one side of the upper surface of the No. 2 mounting rod, and both ends of the electrical connection columns connected to each other are electrically connected to the single-chip microcomputer, a controller is fixedly connected to one side of the upper surface of the No. 2 mounting rod close to the single-chip microcomputer, and the controller is electrically connected to the single-chip microcomputer, the No. 1 motor and the telescopic rod;

[0009] An alarm light is fixedly connected to one side of the upper surface of the second mounting rod close to the controller, and the alarm light is electrically connected to the controller;

[0010] A moving component is arranged between the electrical connection column and the single-chip microcomputer, and the moving component includes two sliders slidably connected to the inside of the No. 2 mounting groove, one side of the outer surface of the No. 2 mounting rod is fixedly connected to the No. 2 motor, the output end of the No. 2 motor is fixedly connected to a bidirectional threaded rod, and the bidirectional threaded rod passes through the two sliders and is threadedly connected to the two sliders, the upper surface of the fixed block is fixedly connected to an electrical connection block, and the electrical connection block is electrically connected to the electrical connection column, the lower surfaces of the two sliders are fixedly connected to an electrical arc block, and the two electrical arc blocks can be electrically connected to the electrical connection block, one side of the upper surface of the electrical arc block is fixedly connected to an electrical straight rod, and the upper end of the electrical straight rod passes through the upper surface of the slider and is fixedly connected to an electrical connection head, two sliding grooves are provided on one side of the upper end of the inner wall of the No. 2 mounting groove, and the two electrical connection heads are respectively slidably connected in the two sliding grooves, the upper ends of the inner walls of the two sliding grooves are fixedly connected to electrical boards, and the two electrical connection heads are respectively electrically connected to the two electrical boards, and the two electrical boards are electrically connected to the single-chip microcomputer.

[0011] Furthermore, a mounting cavity No. 1 is provided inside the tip of the V-shaped rod, one end of the rotating roller on one side extends into the mounting cavity No. 1 and is fixedly connected to a second bevel gear, and one end of the rotating roller on the other side extends into the mounting cavity No. 1 and is fixedly connected to a fourth bevel gear. A position on the upper surface of the V-shaped rod near the mounting cavity No. 1 is fixedly connected to a motor, an output end of the motor No. 1 is fixedly connected to a rotating shaft, and the rotating shaft extends into the mounting cavity No. 1, an upper side of an outer circumferential surface of the rotating shaft is fixedly connected to a first bevel gear, and the first bevel gear is meshingly connected to the second bevel gear, and a lower side of the outer circumferential surface of the rotating shaft is fixedly connected to a third bevel gear, and the third bevel gear is meshingly connected to the fourth bevel gear.

[0012] Furthermore, three groups of evenly distributed support rods are fixedly connected between the No. 1 mounting rod and the V-shaped rod, and evenly distributed protrusions are fixedly connected to the outer circumferential surfaces of the two rotating rollers.

[0013] Furthermore, an adjustment assembly is provided on the upper surface of the No. 1 mounting rod, and the adjustment assembly includes a U-shaped mounting plate fixedly connected to the upper surface of the mounting frame above the No. 1 mounting rod, and two telescopic rods are fixedly connected to the upper end of the inner wall of the U-shaped mounting plate, and the lower ends of the two telescopic rods are fixedly connected to the No. 1 mounting rod.

[0014] Furthermore, both ends of the No. 1 mounting rod are fixedly connected with T-shaped sliders, the lower sides of both sides of the inner wall of the U-shaped mounting plate are provided with T-shaped sliding grooves, and the two T-shaped sliders are respectively slidably connected with the inside of the two T-shaped sliding grooves.

[0015] Furthermore, a control component is provided on the lower surface of the No. 1 mounting rod, and the control component includes a No. 2 mounting cavity opened at the inner middle position of the No. 1 mounting rod, and a No. 1 straight plate is provided inside the No. 2 mounting cavity, and three No. 1 straight rods are fixedly connected to the lower surface of the No. 1 straight plate, and the lower ends of the three No. 1 straight rods pass through the lower surface of the No. 1 mounting rod and are fixedly connected to the No. 2 straight plate, and the upper surface of the No. 1 straight plate is fixedly connected to an electrical connecting plate, and an upper end of an inner wall of the No. 2 mounting cavity near one end of the electrical connecting plate is fixedly connected to an electrical positive electrode, and an upper end of an inner wall of the No. 2 mounting cavity near the other end of the electrical connecting plate is fixedly connected to an electrical negative electrode, and both the electrical negative electrode and the electrical positive electrode are electrically connected to the telescopic rod.

[0016] Furthermore, a bracket is fixedly connected to one side of the outer surface of the mounting frame, and the cloth roll is arranged in the bracket. A tension adjustment device is arranged on the inner wall of the mounting frame between the conveyor belt and the bracket.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] (1) The present application sets a wrinkle removal component, and drives two V-shaped rotating rollers through a No. 1 motor to rotate outward at the same time. The two rotating rollers are in contact with the upper surface of the non-woven fabric, so that the two rotating rollers can drive the non-woven fabric to move to both sides when rotating, so that the non-woven fabric can be stretched to both sides, and then the wrinkles on the non-woven fabric can be smoothed out, thereby realizing automatic smoothing of the wrinkles on the non-woven fabric and improving the processing efficiency of the feeder for the non-woven fabric.

[0019] (2) The present application sets an adjustment component, which drives the U-shaped mounting plate to move up and down through a telescopic rod, thereby driving the two rotating rollers to move up and down, so that the heights of the two rotating rollers can be adjusted, so that the two rotating rollers can fit the upper surface of non-woven fabrics of different thicknesses, thereby improving the practicality of the wrinkle removal component and further improving the processing efficiency of the feeder.

[0020] (3) The present application sets a monitoring mechanism. When the wrinkles on the non-woven fabric move to the bottom of the mounting frame, it will drive some of the rotating baffles to rotate, making it impossible for all the rotating baffles to remain in the same straight line, thereby disconnecting the electrical connection between the electrical connection columns. After the electrical connection between the electrical connection columns is disconnected, the disconnection signal will be transmitted to the single-chip microcomputer, and then the controller will control the No. 1 motor and the telescopic rod to start, so that the rotating roller is in contact with the upper surface of the non-woven fabric. At the same time, the rotating roller rotates to smooth the wrinkled non-woven fabric, reducing the wear on the non-woven fabric caused by the continuous rotation of the rotating roller, and at the same time improving the convenience of the wrinkle removal component. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0022] Figure 2 It is a schematic diagram of the overall cross-sectional structure of the present invention;

[0023] Figure 3 It is a cross-sectional structural schematic diagram of the wrinkle removal component of the present invention;

[0024] Figure 4 For the present invention Figure 3 A is a schematic diagram of the enlarged structure of the middle part;

[0025] Figure 5 It is a schematic cross-sectional structure diagram of the adjustment component of the present invention;

[0026] Figure 6 It is a schematic diagram of the cross-sectional structure of the control component of the present invention;

[0027] Figure 7 It is a schematic diagram of the cross-sectional structure of the monitoring mechanism of the present invention;

[0028] Figure 8 For the present invention Figure 7 A schematic diagram of the enlarged structure of B;

[0029] Fig. 9 It is a schematic cross-sectional structural diagram of a mobile assembly of the present invention;

[0030] Fig.10 For the present invention Fig. 9 Schematic diagram of the enlarged structure of C in the figure.

[0031] Description of the numbers in the figure:

[0032] 1. Mounting frame; 2. Cloth roll; 3. Tension adjustment device; 4. Conveyor belt;

[0033] 5. Wrinkle removal assembly; 51. No. 1 mounting rod; 52. V-shaped rod; 53. Support rod; 54. No. 1 mounting groove; 55. Rotating roller; 56. Protrusion; 57. No. 1 mounting cavity; 58. No. 1 motor; 59. Rotating shaft; 510. No. 1 bevel gear; 511. No. 2 bevel gear; 512. No. 3 bevel gear; 513. No. 4 bevel gear;

[0034] 6. Adjustment assembly; 61. U-shaped mounting plate; 62. Telescopic rod; 63. T-shaped slide groove; 64. T-shaped slide block;

[0035] 7. Control assembly; 71. No. 2 mounting cavity; 72. No. 1 straight plate; 73. No. 1 straight rod; 74. No. 2 straight plate; 75. Electrical positive electrode; 76. Electrical negative electrode; 77. Electrical connection board;

[0036] 8. Monitoring mechanism; 81. No. 2 mounting rod; 82. No. 2 mounting slot; 83. No. 2 straight rod; 84. Rotating baffle; 85. Fixed block; 86. Electrical connection column; 87. Single chip microcomputer; 88. Controller; 89. Alarm light;

[0037] 9. Moving assembly; 91. Sliding block; 92. No. 2 motor; 93. Bidirectional threaded rod; 94. Electrical connection block; 95. Electrical arc block; 96. Electrical straight rod; 97. Electrical connection head; 98. Sliding groove; 99. Electrical board;

[0038] 10. Bracket; 11. Processing device. DETAILED DESCRIPTION

[0039] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention; it is obvious that the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments, and all other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making creative work are within the scope of protection of the present invention.

[0040] See also Figures 1 to 10 A nonwoven fabric feeding machine comprises a mounting frame 1, a fabric roll 2 is arranged on one side of the outer surface of the mounting frame 1, a conveyor belt 4 is arranged on the upper side of the inner wall of the mounting frame 1, a processing device 11 is fixedly connected to one side of the upper surface of the mounting frame 1 close to the conveyor belt 4, and a wrinkle removal component 5 is arranged on the inner wall of the mounting frame 1 above the conveyor belt 4;

[0041] The wrinkle removal assembly 5 includes a No. 1 mounting rod 51 arranged above the conveyor belt 4, a V-shaped rod 52 is fixedly connected to the lower end of one side of the outer surface of the No. 1 mounting rod 51, and No. 1 mounting grooves 54 are provided on both sides of the lower surface of the V-shaped rod 52, and a rotating roller 55 is rotatably connected inside the No. 1 mounting groove 54.

[0042] like Figure 2 , Figure 3 , Figure 4 As shown, a mounting cavity 57 is provided inside the tip of the V-shaped rod 52, one end of the rotating roller 55 on one side extends into the mounting cavity 57 and is fixedly connected with a second bevel gear 511, and one end of the rotating roller 55 on the other side extends into the mounting cavity 57 and is fixedly connected with a fourth bevel gear 513. A motor 58 is fixedly connected to the upper surface of the V-shaped rod 52 near the mounting cavity 57, a rotating shaft 59 is fixedly connected to the output end of the motor 58, and the rotating shaft 59 extends into the mounting cavity 57, a bevel gear 510 is fixedly connected to the upper side of the outer circumferential surface of the rotating shaft 59, and the bevel gear 510 is meshingly connected to the bevel gear 510 and the second bevel gear 511, and a bevel gear 512 is fixedly connected to the lower side of the outer circumferential surface of the rotating shaft 59, and the third bevel gear 512 is meshingly connected to the fourth bevel gear 513.

[0043] like Figure 2 As shown, three groups of evenly distributed support rods 53 are fixedly connected between the No. 1 mounting rod 51 and the V-shaped rod 52 , and evenly distributed protrusions 56 are fixedly connected to the outer circumferential surfaces of the two rotating rollers 55 .

[0044] like Figure 1 As shown, a bracket 10 is fixedly connected to one side of the outer surface of the mounting frame 1, and the cloth roll 2 is arranged in the bracket 10. A tension adjustment device 3 is arranged on the inner wall of the mounting frame 1 between the conveyor belt 4 and the bracket 10.

[0045] When in use, the cloth roll 2 is first placed in the bracket 10, and the cloth roll 2 can rotate in the bracket 10, then the non-woven fabric on the cloth roll 2 is pulled out, and then the non-woven fabric passes through the tension adjusting device 3 and is placed on the conveyor belt 4, the tension of the non-woven fabric is adjusted by the tension adjusting device 3, and then the conveyor belt 4 is started to introduce the non-woven fabric into the processing device 11, so as to perform secondary processing on the non-woven fabric, thereby improving the functionality and appearance of the non-woven fabric product.

[0046] However, in the process of feeding the non-woven fabric into the processing device 11, due to the influence of tension, the non-woven fabric is prone to wrinkles and needs to be manually flattened, which reduces the processing efficiency of the feeding machine for the non-woven fabric. Therefore, a wrinkle removal component 5 is set. When the non-woven fabric is wrinkled, the No. 1 motor 58 is started to drive the rotating shaft 59 to rotate, thereby driving the No. 1 bevel gear 510 and the No. 3 bevel gear 512 to rotate at the same time, and the No. 1 bevel gear 510 and the No. 3 bevel gear 512 are respectively meshed with the No. 2 bevel gear 511 and the No. 4 bevel gear 513, thereby driving the No. 2 bevel gear 511 and the No. 4 bevel gear 513 to rotate at the same time, and then driving the two rotating rollers 55 to rotate outward inside the No. 1 mounting cavity 57 at the same time. Because the two rotating rollers 55 are located in the No. 1 mounting cavity 57, On both sides of the V-shaped rod 52, the two rotating rollers 55 are in a V shape, and at the same time, the two rotating rollers 55 rotate outward, and the two rotating rollers 55 are in contact with the upper surface of the non-woven fabric, so that the two rotating rollers 55 can drive the non-woven fabric to move to both sides when rotating, so that the non-woven fabric can be stretched to both sides, and then the wrinkles on the non-woven fabric can be smoothed, thereby realizing automatic smoothing of the wrinkles on the non-woven fabric, and improving the processing efficiency of the non-woven fabric of the feeding machine, and the protrusions 56 fixedly connected to the outer circumferential surfaces of the two rotating rollers 55, so that the two rotating rollers 55 can better drive the non-woven fabric to move to both sides, and three groups of support rods 53 are fixedly connected between the V-shaped rod 52 and the No. 1 mounting rod 51, thereby improving the overall stability of the wrinkle removal assembly 5.

[0047] like Figure 2 , Figure 5 As shown, an adjustment assembly 6 is provided on the upper surface of the No. 1 mounting rod 51, and the adjustment assembly 6 includes a U-shaped mounting plate 61 fixedly connected to the upper surface of the mounting frame 1 above the No. 1 mounting rod 51, and two telescopic rods 62 are fixedly connected to the upper end of the inner wall of the U-shaped mounting plate 61, and the lower ends of the two telescopic rods 62 are fixedly connected to the No. 1 mounting rod 51.

[0048] like Figure 5 As shown, both ends of the No. 1 mounting rod 51 are fixedly connected with T-shaped sliders 64, the lower sides of both sides of the inner wall of the U-shaped mounting plate 61 are provided with T-shaped slide grooves 63, and the two T-shaped sliders 64 are slidably connected with the inside of the two T-shaped slide grooves 63 respectively.

[0049] like Figure 3 , Figure 6As shown, a control component 7 is provided on the lower surface of the No. 1 mounting rod 51, and the control component 7 includes a No. 2 mounting cavity 71 opened at the inner middle position of the No. 1 mounting rod 51, and a No. 1 straight plate 72 is provided inside the No. 2 mounting cavity 71, and three No. 1 straight rods 73 are fixedly connected to the lower surface of the No. 1 straight plate 72, and the lower ends of the three No. 1 straight rods 73 pass through the lower surface of the No. 1 mounting rod 51 and are fixedly connected to the No. 2 straight plate 74, and the upper surface of the No. 1 straight plate 72 is fixedly connected to an electrical connection plate 77, and an electrical positive electrode 75 is fixedly connected to a position of the upper end of the inner wall of the No. 2 mounting cavity 71 near one end of the electrical connection plate 77, and an electrical negative electrode 76 is fixedly connected to a position of the upper end of the inner wall of the No. 2 mounting cavity 71 near the other end of the electrical connection plate 77, and both the electrical negative electrode 76 and the electrical positive electrode 75 are electrically connected to the telescopic rod 62.

[0050] In the above embodiment, the two rotating rollers 55 are fitted with the upper surface of the non-woven fabric, and then the two rotating rollers 55 are driven to rotate simultaneously by the No. 1 motor 58, which can drive the non-woven fabric to move to both sides, thereby flattening the wrinkles on the non-woven fabric. However, because the thicknesses of different non-woven fabrics are different, the two rotating rollers 55 cannot fit with different upper surfaces of non-woven fabrics, which reduces the practicality of the wrinkle removal component 5. Therefore, an adjustment component 6 is set, and first, the telescopic rod 62 fixed on the U-shaped mounting plate 61 is started, so that the No. 1 mounting rod 51 can be driven to move up and down, and then the V-shaped rod 52 can be driven to move up and down, so that the V-shaped rod 52 drives the two rotating rollers 55 to move up and down, so that the height of the two rotating rollers 55 can be adjusted, so that the two rotating rollers 55 can fit to the upper surface of non-woven fabrics of different thicknesses, thereby improving the practicality of the wrinkle removal component 5, and then improving the processing efficiency of the feeder, and the T-shaped sliders 64 fixed at both ends of the No. 1 mounting rod 51 slide in the T-shaped slide groove 63, thereby improving the stability of the movement of the adjustment component 6.

[0051] In the above embodiment, the height of the two rotating rollers 55 can be adjusted by the telescopic rod 62, so that the two rotating rollers 55 can be attached to the upper surface of non-woven fabrics of different thicknesses. Although the height of the two rotating rollers 55 can be controlled by the extension and retraction of the telescopic rod 62, it is impossible to accurately control the fitting of the rotating rollers 55 and the upper surface of the non-woven fabric. Therefore, a control component 7 is provided. When the telescopic rod 62 drives the No. 1 mounting rod 51 to move downward, the lower surface of the No. 2 straight plate 74 is firstly fitted with the upper surface of the non-woven fabric, and then the No. 1 mounting rod 51 is moved downward by the telescopic rod 62, so that the No. 2 straight plate 74 moves upward. Thereby, the No. 1 straight plate 72 is driven to move upward through the No. 1 straight rod 73, and then the electrical connecting plate 77 is driven to move upward. Then, when the rotating roller 55 is in contact with the upper surface of the non-woven fabric, the electrical connecting plate 77 is in contact with the electrical positive electrode 75 and the electrical negative electrode 76 at the same time, so that the electrical positive electrode 75 and the electrical negative electrode 76 are connected, so that the telescopic rod 62 can be controlled to stop, and then the rotating roller 55 stops moving downward, so that the rotating roller 55 stops moving downward as soon as it is in contact with the upper surface of the non-woven fabric, so that the rotating roller 55 can be accurately controlled to be in contact with the upper surface of the non-woven fabric, thereby improving the accuracy of the adjustment component 6.

[0052] like Figure 2 , Figure 5 , Figure 7 , Figure 8 As shown, the upper surface of the mounting frame 1 is located above the conveyor belt 4 and is provided with a monitoring mechanism 8, and the monitoring mechanism 8 includes a No. 2 mounting rod 81 fixedly connected to the upper surface of the mounting frame 1 located above the conveyor belt 4 and close to the V-shaped rod 52, and a No. 2 mounting groove 82 is provided on the lower surface of the No. 2 mounting rod 81, and a No. 2 straight rod 83 is fixedly connected to the lower end of the No. 2 mounting groove 82, and the outer circumferential surface of the No. 2 straight rod 83 is rotatably connected to a plurality of evenly distributed rotating baffles 84, and one side of the outer circumferential surface of the rotating baffle 84 is fixedly connected There is a fixed block 85, in which electrical connection columns 86 are fixedly connected and pass through both ends of the fixed block 85, and all the electrical connection columns 86 are electrically connected to each other. A single-chip microcomputer 87 is fixedly connected to one side of the upper surface of the No. 2 mounting rod 81, and both ends of the electrical connection columns 86 connected to each other are electrically connected to the single-chip microcomputer 87. A controller 88 is fixedly connected to one side of the upper surface of the No. 2 mounting rod 81 close to the single-chip microcomputer 87, and the controller 88 is electrically connected to the single-chip microcomputer 87, the No. 1 motor 58 and the telescopic rod 62.

[0053] like Figure 7 As shown, an alarm light 89 is fixedly connected to one side of the upper surface of the second mounting rod 81 close to the controller 88 , and the alarm light 89 is electrically connected to the controller 88 .

[0054] like Figure 8 , Fig. 9 , Fig.10As shown, a moving assembly 9 is provided between the electrical connection column 86 and the single-chip computer 87, and the moving assembly 9 includes two sliders 91 slidably connected to the inside of the No. 2 mounting groove 82, a No. 2 motor 92 is fixedly connected to one side of the outer surface of the No. 2 mounting rod 81, a bidirectional threaded rod 93 is fixedly connected to the output end of the No. 2 motor 92, and the bidirectional threaded rod 93 passes through the two sliders 91 and is threadedly connected to the two sliders 91, an electrical connection block 94 is fixedly connected to the upper surface of the fixed block 85, and the electrical connection block 94 is electrically connected to the electrical connection column 86, and the lower surfaces of the two sliders 91 are fixedly connected to electrical arc blocks 95, and the two electrical arc blocks 95 are electrically connected to the electrical connection block 94, one side of the upper surface of the electrical arc block 95 is fixedly connected with an electrical straight rod 96, and the upper end of the electrical straight rod 96 passes through the upper surface of the slider 91 and is fixedly connected with an electrical connection head 97, two slide grooves 98 are opened on one side of the upper end of the inner wall of the second installation groove 82, and the two electrical connection heads 97 are respectively slidably connected inside the two slide grooves 98, the upper ends of the inner walls of the two slide grooves 98 are fixedly connected with electrical plates 99, and the two electrical connection heads 97 are respectively electrically connected to the two electrical plates 99, and the two electrical plates 99 are electrically connected to the single-chip computer 87.

[0055] In the above embodiment, the wrinkles on the non-woven fabric are smoothed out by the rotation of the two rotating rollers 55, but the two rotating rollers 55 are rotating all the time, so that the rotating rollers 55 also smooth the flat non-woven fabric, which will cause certain wear on the non-woven fabric. At the same time, the wrinkle removal component 5 is always in operation, which reduces the convenience of the wrinkle removal component 5. Therefore, a monitoring mechanism 8 is set. When the non-woven fabric moves on the conveyor belt 4, it will drive all the rotating baffles 84 to rotate on the No. 2 straight rod 83, and because the surface of the non-woven fabric is flat, all the rotating baffles 84 are kept in the same straight line. At the same time, the fixed block 85 on one side of the rotating baffle 84 rotates around the No. 2 straight rod 83 in the No. 2 mounting groove 82, and the fixed block 85 is fixedly connected with an electrical connection column 86 that passes through both ends of the fixed block 85. At the same time, all the electrical connection columns 86 are electrically connected to each other. When the wrinkles on the non-woven fabric move to the bottom of the No. 2 mounting rod 81, it will drive part of the rotating baffles 84 to rotate on the No. 2 straight rod 83. The upper rotation makes it impossible for all rotating baffles 84 to remain in the same straight line, thereby disconnecting the electrical connection between the electrical connection columns 86, and the two ends of the electrical connection columns 86 connected to each other are electrically connected to the single-chip microcomputer 87, so that after the electrical connection between the electrical connection columns 86 is disconnected, the disconnection signal will be transmitted to the single-chip microcomputer 87, and then the signal will be processed by the single-chip microcomputer 87, and the processed signal will be transmitted to the controller 88, and the controller 88 will control the No. 1 motor 58 and the telescopic rod 62 to start, so that the rotating roller 55 is in contact with the upper surface of the non-woven fabric, and the rotating roller 55 rotates to smooth the wrinkled non-woven fabric, reducing the wear on the non-woven fabric caused by the continuous rotation of the rotating roller 55, and at the same time improving the convenience of the wrinkle removal component 5, and the alarm light 89 is electrically connected to the controller 88. When the controller 88 controls the No. 1 motor 58 and the telescopic rod 62 to start, the alarm light 89 is started at the same time to remind the staff.

[0056] In the above embodiment, although the movement of the fold position of the non-woven fabric makes it impossible for all the rotating baffles 84 to remain in the same straight line, so that the electrical connection between the electrical connection columns 86 is disconnected, so that the first motor 58 and the telescopic rod 62 are controlled by the controller 88 to start, but because the widths of different non-woven fabrics are different, the non-woven fabrics cannot drive all the rotating baffles 84 to rotate at the same time, which reduces the practicality of the monitoring mechanism 8. Therefore, a moving component 9 is set to start the second motor 92 to drive the bidirectional threaded rod 93 to rotate, thereby driving the two sliders 91 to move in the opposite direction at the same time inside the second mounting groove 82, and at the same time drive the two electrical arc blocks 95 to move in the opposite direction at the same time. The monitoring mechanism 8 is movable, and the two electrical arc blocks 95 are electrically connected to the two electrical connecting columns 86 respectively, and the electrical connecting column 86 is electrically connected to the electrical connecting block 94, and the electrical arc block 95 is electrically connected to the electrical connecting head 97 through the electrical straight rod 96, and the two electrical connecting heads 97 are electrically connected to the two electrical plates 99 respectively, and the two electrical plates 99 are electrically connected to the single-chip computer 87. By adjusting the distance between the two sliders 91, the number of connected rotating baffles 84 can be adjusted, so that the length of the connected rotating baffles 84 matches the width of the non-woven fabric, thereby facilitating the use of the monitoring mechanism 8 and improving the practicability of the monitoring mechanism 8.

[0057] Instructions for use: first place the cloth roll 2 into the bracket 10, then draw out the non-woven fabric on the cloth roll 2, then pass the non-woven fabric through the tension adjustment device 3 and place it on the conveyor belt 4, then start the conveyor belt 4 to introduce the non-woven fabric into the processing device 11, and at the same time, the number of rotating baffles 84 connected can be adjusted by the moving component 9, so that the length of the connected rotating baffles 84 matches the width of the non-woven fabric. When wrinkles appear on the non-woven fabric, when the wrinkles move below the No. 2 mounting rod 81, the wrinkles are detected by the monitoring mechanism 8, thereby controlling the adjustment component 6 to move the telescopic rod 62 downward, and at the same time, when the telescopic rod 62 is attached to the upper surface of the non-woven fabric through the control component 7, the adjustment component 6 is immediately controlled to stop operating, and at the same time, the No. 1 motor 58 is started to drive the two rotating rollers 55 to rotate at the same time, which can drive the non-woven fabric to move to both sides, so that the wrinkles on the non-woven fabric can be smoothed.

[0058] The above is only a preferred specific implementation of the present invention; however, the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical solution and its improved conception within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A nonwoven fabric feeding machine, comprising a mounting frame (1), a fabric roll (2) being arranged on one side of the outer surface of the mounting frame (1), a conveyor belt (4) being arranged on the upper side of the inner wall of the mounting frame (1), and a processing device (11) being fixedly connected to one side of the upper surface of the mounting frame (1) close to the conveyor belt (4), characterized in that; A wrinkle removal component (5) is arranged on the inner wall of the mounting frame (1) above the conveyor belt (4); The wrinkle removal assembly (5) comprises a No. 1 mounting rod (51) arranged above the conveyor belt (4); a V-shaped rod (52) is fixedly connected to the lower end of one side of the outer surface of the No. 1 mounting rod (51); No. 1 mounting grooves (54) are provided on both sides of the lower surface of the V-shaped rod (52); and a rotating roller (55) is rotatably connected to the inside of each of the No. 1 mounting grooves (54); The upper surface of the mounting frame (1) is located above the conveyor belt (4) and is provided with a monitoring mechanism (8). The monitoring mechanism (8) comprises a No. 2 mounting rod (81) fixedly connected to a side of the upper surface of the mounting frame (1) located above the conveyor belt (4) and close to the V-shaped rod (52). The lower surface of the No. 2 mounting rod (81) is provided with a No. 2 mounting groove (82). A No. 2 straight rod (83) is fixedly connected to the lower end of the No. 2 mounting groove (82). The outer circumferential surface of the No. 2 straight rod (83) is rotatably connected to a plurality of evenly distributed rotating baffles (84). One side of the outer circumferential surface of each rotating baffle (84) is fixedly connected to a fixed A fixed block (85), wherein an electrical connection column (86) penetrating both ends of the fixed block (85) is fixedly connected inside the fixed block (85), and all the electrical connection columns (86) are electrically connected to each other; a single-chip computer (87) is fixedly connected to one side of the upper surface of the second mounting rod (81), and both ends of the electrical connection columns (86) connected to each other are electrically connected to the single-chip computer (87); a controller (88) is fixedly connected to one side of the upper surface of the second mounting rod (81) close to the single-chip computer (87), and the controller (88) is electrically connected to the single-chip computer (87), the first motor (58) and the telescopic rod (62); An alarm light (89) is fixedly connected to a side of the upper surface of the second mounting rod (81) close to the controller (88), and the alarm light (89) is electrically connected to the controller (88); A moving assembly (9) is provided between the electrical connection column (86) and the single-chip computer (87), the moving assembly (9) comprising two sliders (91) slidably connected to the inside of the No. 2 mounting groove (82), a No. 2 motor (92) is fixedly connected to one side of the outer surface of the No. 2 mounting rod (81), a bidirectional threaded rod (93) is fixedly connected to the output end of the No. 2 motor (92), and the bidirectional threaded rod (93) passes through the two sliders (91) and is threadedly connected to the two sliders (91), an electrical connection block (94) is fixedly connected to the upper surface of the fixed block (85), and the electrical connection block (94) is electrically connected to the electrical connection column (86), and an electrical arc block (94) is fixedly connected to the lower surfaces of the two sliders (91). 5), and the two electrical arc blocks (95) are electrically connected to the electrical connection block (94), one side of the upper surface of the electrical arc block (95) is fixedly connected to an electrical straight rod (96), and the upper end of the electrical straight rod (96) passes through the upper surface of the slider (91) and is fixedly connected to an electrical connection head (97), one side of the upper end of the inner wall of the second installation groove (82) is provided with two slide grooves (98), and the two electrical connection heads (97) are respectively slidably connected inside the two slide grooves (98), the upper ends of the inner walls of the two slide grooves (98) are fixedly connected to electrical plates (99), and the two electrical connection heads (97) are respectively electrically connected to the two electrical plates (99), and the two electrical plates (99) are electrically connected to the single-chip computer (87).

2. A nonwoven fabric feeding machine according to claim 1, characterized in that: A first installation cavity (57) is provided inside the tip of the V-shaped rod (52); one end of the rotating roller (55) on one side extends into the first installation cavity (57) and is fixedly connected to a second bevel gear (511); one end of the rotating roller (55) on the other side extends into the first installation cavity (57) and is fixedly connected to a fourth bevel gear (513); a first motor (58) is fixedly connected to the upper surface of the V-shaped rod (52) near the first installation cavity (57); a rotating shaft (59) is fixedly connected to the output end of the first motor (58), and the rotating shaft (59) extends into the first installation cavity (57); a first bevel gear (510) is fixedly connected to the upper side of the outer circumferential surface of the rotating shaft (59), and the first bevel gear (510) and the second bevel gear (511) are meshingly connected; a third bevel gear (512) is fixedly connected to the lower side of the outer circumferential surface of the rotating shaft (59), and the third bevel gear (512) and the fourth bevel gear (513) are meshingly connected.

3. A nonwoven fabric feeding machine according to claim 1, characterized in that: Three groups of evenly distributed support rods (53) are fixedly connected between the No. 1 mounting rod (51) and the V-shaped rod (52), and evenly distributed protrusions (56) are fixedly connected to the outer circumferential surfaces of the two rotating rollers (55).

4. A nonwoven fabric feeding machine according to claim 1, characterized in that: An adjustment assembly (6) is provided on the upper surface of the No. 1 mounting rod (51), the adjustment assembly (6) comprising a U-shaped mounting plate (61) fixedly connected to the upper surface of the mounting frame (1) and located above the No. 1 mounting rod (51), two telescopic rods (62) being fixedly connected to the upper end of the inner wall of the U-shaped mounting plate (61), and the lower ends of the two telescopic rods (62) being fixedly connected to the No. 1 mounting rod (51).

5. A nonwoven fabric feeding machine according to claim 4, characterized in that: Both ends of the No. 1 mounting rod (51) are fixedly connected with T-shaped sliding blocks (64), the lower sides of both sides of the inner wall of the U-shaped mounting plate (61) are provided with T-shaped sliding grooves (63), and the two T-shaped sliding blocks (64) are respectively slidably connected to the inside of the two T-shaped sliding grooves (63).

6. A nonwoven fabric feeding machine according to claim 1, characterized in that: A control assembly (7) is provided on the lower surface of the No. 1 mounting rod (51), the control assembly (7) comprising a No. 2 mounting cavity (71) opened at the middle position inside the No. 1 mounting rod (51), a No. 1 straight plate (72) is provided inside the No. 2 mounting cavity (71), three No. 1 straight rods (73) are fixedly connected to the lower surface of the No. 1 straight plate (72), and the lower ends of the three No. 1 straight rods (73) penetrate through the lower surface of the No. 1 mounting rod (51) and are fixedly connected to the No. 2 straight rods (73). A straight plate (74), the upper surface of the first straight plate (72) is fixedly connected to an electrical connection plate (77), the upper end of the inner wall of the second installation cavity (71) is fixedly connected to an electrical positive electrode (75) at a position close to one end of the electrical connection plate (77), the upper end of the inner wall of the second installation cavity (71) is fixedly connected to an electrical negative electrode (76) at a position close to the other end of the electrical connection plate (77), and both the electrical negative electrode (76) and the electrical positive electrode (75) are electrically connected to the telescopic rod (62).

7. A nonwoven fabric feeding machine according to claim 1, characterized in that: A bracket (10) is fixedly connected to one side of the outer surface of the mounting frame (1), and the cloth roll (2) is arranged in the bracket (10). A tension adjustment device (3) is arranged on the inner wall of the mounting frame (1) between the conveyor belt (4) and the bracket (10).

Citation Information

Patent Citations

  • Supporting device for continuous unreeling of reeled yarn

    CN107043042A

  • Sensitivity-adjustable film wrinkle detection equipment

    CN112047166A

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