An anti-deviation pearl cotton transfer and conveying assembly
Patent Information
- Application Number
- CN202411281426.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2044-09-13
AI Technical Summary
[0003]如现有技术中公开号为 CN214494522U的一种防止珍珠棉滑落的运输机构,该运输机构虽通过按压板与传动带配合,有效防止珍珠棉在输送过程中,因静电产生而导致珍珠棉发生输送掉落的问题,但是珍珠棉因其物理特性,在常态下常出现局部结构翘起的现象,且该运输机构无法实现珍珠棉的防偏移输送,仅是单纯的依赖按压板对珍珠棉进行压制输送,易出现偏移压制的现象,加剧珍珠棉边部翘起的问题,对后续诸如冲压裁切等高精度加工工序带来一定的困扰;
(1)本发明是通过物料输送带携带珍珠棉转运输送过程中,链板传动带带动抚平组件与物料输送带同速反向转动,抚平组件转动至链板传动带下方后,调节板上的纠偏板先与物料输送带接触,后随调节板的持续下降,借助通槽内的方型引导块,配合L型引导槽带动两组纠偏板相对运动,对珍珠棉实现夹持式防偏输送的目的,后迫使抚平辊挤压在珍珠棉的顶部,一方面避免珍珠棉转运输送过程中发生偏移或掉落的问题;另一方面结合在珍珠棉顶部进行往复滚动的多个抚平辊,以及加热托板对珍珠棉的间接式加热,实现输送的同时对珍珠棉进行抚平处理的效果,以便于后续对珍珠棉进行加工处理;
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Figure CN118992484B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of pearl cotton transfer and conveying technology, and in particular to a pearl cotton transfer and conveying assembly that prevents deviation. Background Technology
[0002] EPE foam is a new type of material. With the advancement of time and the continuous development and application of products, EPE foam will be more widely used in packaging and filling materials. In the production process of EPE foam, it needs to be transferred and transported between different workstations by conveyor.
[0003] For example, in the prior art, there is a conveying mechanism for preventing pearl cotton from slipping. Although the conveying mechanism effectively prevents the pearl cotton from falling during the conveying process due to static electricity by using a pressing plate and a transmission belt, the pearl cotton often exhibits localized warping under normal conditions due to its physical properties. Furthermore, the conveying mechanism cannot achieve anti-deviation conveying of the pearl cotton, but simply relies on the pressing plate to press and convey the pearl cotton, which is prone to deviation and exacerbates the problem of the pearl cotton warping at the edges, causing certain problems for subsequent high-precision processing steps such as stamping and cutting. To address the aforementioned technical shortcomings, a solution is proposed. Summary of the Invention
[0004] The purpose of this invention is to provide an anti-deviation EPE foam transfer and conveying assembly. As the smoothing assembly moves below the chain conveyor belt, two sets of correction plates, in conjunction with the material conveyor belt, first achieve a clamping and anti-deviation conveying effect on the EPE foam. Then, the smoothing roller is forced to press against the top of the EPE foam. Through the reciprocating rolling of the smoothing roller and the indirect heating of the heating plate, the problem of EPE foam falling is further prevented, while simultaneously achieving the anti-deviation smoothing and conveying effect. Furthermore, by adjusting the two sets of adjustment plates and the distance between the chain conveyor belt and the material conveyor belt, anti-deviation transfer and conveying of EPE foam of different sizes can be achieved, further improving the applicability of this transfer and conveying assembly and solving the aforementioned technical defects.
[0005] The objective of this invention can be achieved through the following technical solution: a pearl cotton transfer and conveying assembly for preventing deviation, including a base, mounting plates symmetrically fixedly connected to the top two sides of the base, and two sets of rotating rollers rotatably connected between the mounting plates, the rotating rollers being driven by an external material conveyor belt, and a heating tray slidably connected to the material conveyor belt being fixedly connected between the mounting plates, and an electric heating wire being provided inside the heating tray. A chain conveyor belt is installed above the material conveyor belt. Multiple smoothing components are equidistantly arranged on the chain conveyor belt. Each smoothing component includes a fixed frame, a mounting sleeve is fixedly connected to the fixed frame, and two sets of adjusting plates are symmetrically installed on the mounting sleeve. A correction plate is installed on the adjusting plate, and a movable plate is provided at the bottom of the adjusting plate. Multiple connecting telescopic rods are fixedly connected between the movable plates at equal intervals. Multiple smoothing rollers are rotatably installed on the opposite sides of the two sets of movable plates.
[0006] Preferably, mounting plates two are symmetrically arranged on both sides of the chain drive belt, and two sets of transmission sprockets adapted to the chain drive belt are symmetrically rotatably connected between the mounting plates two. A motor two for driving the corresponding transmission sprocket to rotate is bolted on the mounting plate two, and a motor one for driving the corresponding rotating roller to rotate is bolted on the mounting plate one.
[0007] Preferably, a fixed seat is welded to one side of the mounting plate one, an I-shaped block is fixedly connected to the mounting plate two and slidably connected to the corresponding fixed seat, a lead screw is rotatably connected to the inside of the fixed seat and threadedly connected to the I-shaped block, a motor three for driving the lead screw to rotate is bolted on the fixed seat, and guide telescopic rods are symmetrically fixedly connected between the mounting plate one and the mounting plate two.
[0008] Preferably, the fixed frame is slidably connected with a plurality of slide rods that are fixedly connected to the chain plate transmission belt. A smoothing guide groove is provided on one side of the mounting plate two and below the chain plate transmission belt. An inclined transition guide groove is provided on both sides of the smoothing guide groove. A clearance guide groove is provided between the transition guide grooves. Guide pins are symmetrically fixedly connected to both sides of the fixed frame.
[0009] Preferably, the mounting sleeve is rotatably connected to a rotating shaft, and one end of the rotating shaft extends through to the outside of the mounting sleeve and is fixedly connected to a handwheel. A gear is fixedly connected to the rotating shaft, the adjusting plate is slidably connected to the mounting sleeve, and a toothed plate that meshes with the gear is fixedly connected to the adjusting plate.
[0010] Preferably, the adjusting plate has a through groove that is slidably connected to the correction plate, and a square guide block is fixedly connected inside the through groove. The correction plate has an L-shaped guide groove that matches the square guide block. Multiple universal ball bearings are fixedly installed on the side of the correction plate away from the fixed frame.
[0011] Preferably, the bottom of the adjusting plate and the two sides of the correction plate are symmetrically fixedly connected to the fixing plate, and the side of the fixing plate is symmetrically fixedly connected to the slide rail. The movable plate is provided with a track groove that is slidably connected to the corresponding slide rail.
[0012] Preferably, a motor four is bolted onto one of the fixed plates, and a turntable is fixedly connected to the output shaft of the motor four. An actuating rod is eccentrically fixed to one side of the turntable, and an actuating groove is provided on the movable plate to slide and connect with the corresponding actuating rod.
[0013] The beneficial effects of this invention are as follows: (1) In this invention, during the transfer and transportation of pearl cotton carried by the material conveyor belt, the chain plate drive belt drives the smoothing component to rotate in the opposite direction at the same speed as the material conveyor belt. After the smoothing component rotates to below the chain plate drive belt, the correction plate on the adjustment plate first contacts the material conveyor belt. Then, as the adjustment plate continues to descend, with the help of the square guide block in the through groove and the L-shaped guide groove, the two sets of correction plates move relative to each other, so as to achieve the purpose of clamping and anti-deviation transportation of pearl cotton. Then, the smoothing roller is forced to press on the top of the pearl cotton, which on the one hand avoids the problem of pearl cotton deviating or falling during the transfer and transportation process; on the other hand, combined with the multiple smoothing rollers that reciprocate on the top of the pearl cotton and the indirect heating of the pearl cotton by the heating plate, the effect of smoothing the pearl cotton is achieved while it is being transported, so as to facilitate the subsequent processing of the pearl cotton. (2) The present invention also achieves the adjustment of the distance between the two sets of correction plates and the two sets of movable plates by rotating the shaft and combining the meshing gears and tooth plates, thereby facilitating the anti-deviation transfer and conveying of pearl cotton of different sizes. The height between the chain plate transmission belt and the material conveying belt can be adjusted by the screw and the I-shaped block, which facilitates the anti-deviation transfer and conveying of pearl cotton of different thicknesses. While realizing the anti-deviation transfer and conveying of pearl cotton of different sizes, a heating smoothing treatment is also performed, further improving the applicability of this transfer and conveying component. Attached Figure Description
[0014] The invention will now be further described with reference to the accompanying drawings; Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a schematic diagram of the installation of the material conveyor belt of the present invention; Figure 3 This is a schematic diagram of the installation of the chain plate drive belt of the present invention; Figure 4 This is a schematic diagram of the structure of mounting plate two of the present invention; Figure 5 This is a schematic diagram showing the disassembled installation sleeve and adjusting plate of the present invention; Figure 6 This is a schematic diagram of the structure of the smoothing roller of the present invention; Figure 7 This is a schematic diagram of the structure of the fixing plate of the present invention; Figure 8 This is a schematic diagram showing the cooperation between the correction plate and the adjustment plate of the present invention.
[0015] Legend: 1. Base; 11. Mounting plate one; 12. Rotating roller; 13. Material conveyor belt; 14. Heating pallet; 15. Motor one; 16. Fixed seat; 17. Lead screw; 18. Motor three; 19. Guide telescopic rod; 2. Chain plate drive belt; 21. Mounting plate two; 22. Drive sprocket; 23. Motor two; 24. I-shaped block; 25. Slide rod; 26. Smoothing guide groove; 27. Transition guide groove; 28. Yield guide groove; 3. Smoothing assembly; 31. Fixing bracket; 32. Mounting sleeve; 33. Adjusting plate; 34. Movable plate; 35. Connecting telescopic rod; 36. Smoothing roller; 37. Guide pin; 38. Rotating shaft; 39. Handwheel; 310. Gear; 311. Toothed plate; 312. Through slot; 313. Square guide block; 314. Fixing plate; 315. Motor 4; 316. Turntable; 317. Actuating lever; 318. Actuating groove; 4. Correction plate; 41. L-shaped guide groove; 42. Universal ball bearing. Detailed Implementation
[0016] 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 of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0017] Example 1: Please refer to Figures 1-8 As shown, the following solutions can be used to address the problems of not being able to prevent the pearl cotton from shifting during transport and the difficulty in smoothing out the pearl cotton with localized warping during transport. In this embodiment, an anti-deviation pearl cotton transfer and conveying assembly includes a base 1. Mounting plates 11 are symmetrically fixedly connected to the top two sides of the base 1, and two sets of rotating rollers 12 are rotatably connected between the mounting plates 11. The rotating rollers 12 are driven by an external material conveyor belt 13. The rotating rollers 12 drive the material conveyor belt 13 to rotate, thereby transferring and conveying the pearl cotton. During the conveying process, the distance between two adjacent sets of pearl cotton is equal to the distance between two adjacent sets of smoothing components 3. The pearl cotton is placed by an external robotic arm to control the placement spacing. A heating tray 14 is fixedly connected between the mounting plates 11 and the material conveyor belt 13, and the heating tray 14 is equipped with an electric heating wire inside. The heating tray 14 is used to support the material conveyor belt 13 above the rotating roller 12, thereby increasing the conveying stability of the pearl cotton. The heating tray 14 is heated by energizing the internal electric heating wire, which, together with the material conveyor belt 13, indirectly heats the pearl cotton during the transfer process. This, combined with the smoothing component 3, improves the smoothing effect of the pearl cotton. A chain plate drive belt 2 is installed above the material conveyor belt 13. The chain plate drive belt 2 is used to stably install the smoothing components 3 and drive multiple smoothing components 3 to rotate in the same speed and opposite direction as the material conveyor belt 13. Multiple smoothing components 3 are equidistantly arranged on the chain plate drive belt 2. The multiple smoothing components 3 can perform follow-up smoothing treatment on the pearl cotton during the conveying process to improve the heating and smoothing time and thus improve the smoothing effect. The smoothing component 3 includes a fixed frame 31, on which an installation sleeve 32 is fixedly connected. Two sets of adjusting plates 33 are symmetrically installed on the installation sleeve 32. Correcting plates 4 are installed on the adjusting plates 33. Through the relative movement of the two sets of correcting plates 4, the pearl cotton is clamped and conveyed in an anti-deviation manner. On the one hand, this avoids the problem of the pearl cotton shifting or falling during the transfer and conveying process. On the other hand, it works with the smoothing roller 36 to achieve a comprehensive heating and smoothing treatment of the pearl cotton, so as to improve the quality after smoothing. The bottom of the adjusting plate 33 is provided with a movable plate 34, and multiple connecting telescopic rods 35 are fixedly connected at equal intervals between the movable plates 34. Multiple smoothing rollers 36 are installed alternately on the opposite sides of the two sets of movable plates 34. After the multiple sets of smoothing rollers 36 come into contact with the top of the pearl cotton, they roll back and forth. Combined with the clamping of the two sets of correction plates 4, the movement of the pearl cotton on the material conveyor belt 13 is restricted. The electric heating wire in the heating tray 14 is energized and heats up, so that the pearl cotton is heated and smoothed while being conveyed to prevent deviation. The connecting telescopic rods 35 are provided for the synchronous relative movement of the two sets of movable plates 34.
[0018] Two mounting plates 21 are symmetrically arranged on both sides of the chain conveyor belt 2, and two sets of transmission sprockets 22 adapted to the chain conveyor belt 2 are symmetrically rotatably connected between the mounting plates 21. The mounting plates 21 and the transmission sprockets 22 are used for mounting the chain conveyor belt 2. A motor 23 for driving the corresponding transmission sprocket 22 is bolted on the mounting plate 21. The motor 23 drives the corresponding transmission sprocket 22 to rotate. The transmission sprocket 22 drives the chain conveyor belt 2 to rotate in the same speed and opposite direction to the material conveyor belt 13. A motor 15 for driving the corresponding rotating roller 12 is bolted on the mounting plate 11. The motor 15 drives the corresponding rotating roller 12 to rotate. The rotating roller 12 drives the material conveyor belt 13 to carry pearl cotton for transfer and conveying.
[0019] Multiple sliding rods 25, which are fixedly connected to the chain plate drive belt 2, are slidably connected to the fixed frame 31. They are used to install the fixed frame 31 and the chain plate drive belt 2, and do not interfere with the movement of the fixed frame 31 towards or away from the chain plate drive belt 2. A smoothing guide groove 26 is provided on one side of the mounting plate 21 and below the chain plate drive belt 2. An inclined transition guide groove 27 is provided on both sides of the smoothing guide groove 26. A clearance guide groove 28 is provided between the transition guide grooves 27. Guide pins 37 are symmetrically fixedly connected to both sides of the fixed frame 31. The chain drive belt 2, combined with the slide bar 25, carries the fixed frame 31 to move. When the fixed frame 31 moves above the chain drive belt 2, the guide pin 37 on the fixed frame 31 slides in the clearance guide groove 28, providing clearance space for the sliding of the guide pin 37. When the fixed frame 31 rotates to the bottom of the chain drive belt 2, the guide pin 37 enters the transition guide groove 27 from the clearance guide groove 28, causing the fixed frame 31 to slide on the slide bar 25, so that the fixed frame 31 moves away from the chain drive belt 2. Until the guide pin 37 enters the smoothing guide groove 26 from the transition guide groove 27, the fixed frame 31 completes its downward movement, driving the smoothing roller 36 to press onto the pearl cotton and move at the same speed as the pearl cotton for heating and smoothing treatment. When the fixed frame 31 rotates again above the chain plate transmission belt 2, the guide pin 37 enters the transition guide groove 27 from the smoothing guide groove 26 through the transition guide groove 27 on the other side, forcing the smoothing roller 36 to separate from the pearl cotton, so that the pearl cotton can be transferred to the next station for processing.
[0020] The adjusting plate 33 has a through groove 312 that is slidably connected to the correction plate 4, and a square guide block 313 is fixedly connected inside the through groove 312. The correction plate 4 has an L-shaped guide groove 41 that is adapted to the square guide block 313. Multiple universal balls 42 are fixedly installed on the side of the correction plate 4 away from the fixed frame 31. The universal balls 42 are used to reduce the contact friction between the correction plate 4 and the material conveyor belt 13, thereby improving the relative movement effect of the two sets of correction plates 4. During the descent of the fixed frame 31 under the guidance of the transition guide groove 27, the correction plate 4 is positioned on both sides of the pearl cotton. The universal ball bearings 42 on the correction plate 4 first contact the material conveyor belt 13, and then, as the fixed frame 31, together with the mounting sleeve 32, carries the adjusting plate 33, it continues to descend. With the help of the square guide block 313 in the through groove 312 and the inclined section on the L-shaped guide groove 41, the correction plate 4 is guided to move closer to the pearl cotton. Then, the square guide block 313 enters the vertical section on the L-shaped guide groove 41 to maintain the state of the correction plate 4 after movement, until the guide pin 37 enters the smoothing guide groove 26 from the transition guide groove 27. Through the relative movement of the two sets of correction plates 4, the pearl cotton is placed in the middle of the material conveyor belt 13 for clamping and anti-deviation conveying.
[0021] A fixed plate 314 is symmetrically fixedly connected to the bottom of the adjusting plate 33 and to both sides of the correction plate 4. This is used for the installation of the movable plate 34 and to avoid interference with the movement of the correction plate 4. A slide rail is symmetrically fixedly connected to one side of the fixed plate 314. The movable plate 34 has a track groove that slides and connects to the corresponding slide rail. The slide rail and track groove are used to enable the movable plate 34 to slide under the adjusting plate 33. The movable plate 34 is located below the through groove 312. After the two sets of correction plates 4 move relative to each other and clamp the pearl cotton, the edge of the pearl cotton is located below the smoothing roller 36. This allows the smoothing roller 36 to achieve a smoothing effect on the pearl cotton when it rolls back and forth.
[0022] One of the fixed plates 314 is bolted with a motor 315, and a turntable 316 is fixedly connected to the output shaft of the motor 315. An actuating rod 317 is eccentrically fixed to one side of the turntable 316. The movable plate 34 is provided with an actuating groove 318 that is slidably connected to the corresponding actuating rod 317. The two sets of correction plates 4 clamp the pearl cotton. After the smoothing roller 36 presses the pearl cotton, the motor 315 drives the turntable 316 to rotate. The eccentrically set actuating rod 317 rotates circumferentially and, in conjunction with the actuating groove 318, drives the corresponding movable plate 34 to reciprocate linearly. The other movable plate 34 moves synchronously with the cooperation of multiple sets of connecting telescopic rods 35, thereby driving multiple smoothing rollers 36 to reciprocate on the top of the pearl cotton.
[0023] Example 2: Please refer to Figures 1-3 and Figure 5 As shown, the following solutions can be used to address the problem of preventing deviation in the transfer and conveying of pearl cotton of different sizes; In this embodiment, a chain plate drive belt 2 is provided above the material conveyor belt 13. Multiple smoothing components 3 are equidistantly arranged on the chain plate drive belt 2. The smoothing component 3 includes a fixed frame 31. An installation sleeve 32 is fixedly connected to the fixed frame 31. Two sets of adjusting plates 33 are symmetrically installed on the installation sleeve 32. A correction plate 4 is installed on the adjusting plate 33. A movable plate 34 is provided at the bottom of the adjusting plate 33. Multiple connecting telescopic rods 35 are fixedly connected between the movable plates 34 at equal intervals. By using the connecting telescopic rod 35 between the two sets of movable plates 34, the two sets of movable plates 34 can move synchronously without interfering with the adjustment of the distance between them. Multiple smoothing rollers 36 are installed alternately on the opposite sides of the two sets of movable plates 34. By distributing the multiple smoothing rollers 36 alternately on the two sets of movable plates 34, the area between the two sets of movable plates 34 can be fully pressed after the two sets of movable plates 34 move apart, thus avoiding the problem of missed pressure and reduced overall smoothing effect.
[0024] A fixed seat 16 is welded to one side of the mounting plate 11. An I-shaped block 24, which is slidably connected to the corresponding fixed seat 16, is fixedly connected to the mounting plate 21. A lead screw 17, which is threadedly connected to the I-shaped block 24, is rotatably connected inside the fixed seat 16. A motor 3 18, which drives the lead screw 17 to rotate, is bolted to the fixed seat 16. The motor 3 18 drives the lead screw 17 to rotate, and the lead screw 17, in conjunction with the I-shaped block 24, drives the mounting plate 21 to move up and down, thereby adjusting the distance between the chain plate transmission belt 2 and the material conveyor belt 13, and thus transferring and conveying pearl cotton of different thicknesses without deviation. Guide telescopic rods 19 are symmetrically fixedly connected between the mounting plate 11 and the mounting plate 21. Multiple sets of guide telescopic rods 19 are used to improve the stability of the chain plate transmission belt 2 during the lifting process.
[0025] The mounting sleeve 32 is rotatably connected to a rotating shaft 38, and one end of the rotating shaft 38 extends through to the outside of the mounting sleeve 32 and is fixedly connected to a handwheel 39. A gear 310 is fixedly connected to the rotating shaft 38. The adjusting plate 33 is slidably connected to the mounting sleeve 32, and a toothed plate 311 that meshes with the gear 310 is fixedly connected to the adjusting plate 33. The adjusting plate 33 has a clearance cavity for the corresponding toothed plate 311 to move, so as to avoid interference to the relative movement of the two sets of adjusting plates 33. By rotating the handwheel 39, the rotating shaft 38 is driven to rotate. The rotating shaft 38 carries the gear 310 and, together with the toothed plate 311, drives the two sets of adjusting plates 33 to move relative to or away from each other, thereby adjusting the distance between the two sets of correcting plates 4. This helps to correct the position of pearl cotton of different sizes on the material conveyor belt 13, as well as to smooth the edges of pearl cotton of different sizes. In conjunction with the adjustment of the height between the chain plate drive belt 2 and the material conveyor belt 13, it is possible to achieve anti-deviation transfer and conveying of pearl cotton of different sizes while performing heated smoothing treatment, further improving the applicability of this transfer and conveying component.
[0026] Example 3: Please refer to Figures 1-8 As shown, the present invention also proposes a method for using an anti-deviation pearl cotton transfer and conveying assembly, comprising the following steps: Step 1: Motor 15 drives the corresponding rotating roller 12 to rotate, and the rotating roller 12 drives the material conveyor belt 13 to carry the pearl cotton for transfer and conveying. Motor 23 drives the corresponding transmission sprocket 22 to rotate, and the transmission sprocket 22 drives the chain plate transmission belt 2 to rotate in the same speed and opposite direction to the material conveyor belt 13. Step 2: The chain plate drive belt 2, combined with the slide bar 25, carries the fixed frame 31 to move. During the movement of the fixed frame 31 above the chain plate drive belt 2, the guide pin 37 on the fixed frame 31 slides in the clearance guide groove 28. When the fixed frame 31 rotates to the bottom of the chain plate drive belt 2, the pearl cotton moves to the bottom of the corresponding fixed frame 31 under the drive of the material conveyor belt 13 and moves at the same speed. Then the guide pin 37 enters the transition guide groove 27 from the clearance guide groove 28, causing the fixed frame 31 to slide on the slide bar 25, so that the fixed frame 31 moves away from the chain plate drive belt 2. Step 3: During the descent of the fixed frame 31, the correction plate 4 is positioned on both sides of the pearl cotton, and the universal ball bearings 42 on the correction plate 4 first contact the material conveyor belt 13. Then, as the fixed frame 31, together with the mounting sleeve 32, carries the adjusting plate 33, it continues to descend. With the help of the through groove 312 and the square guide block 313 on the adjusting plate 33, and the L-shaped guide groove 41, the two sets of correction plates 4 move relative to each other until the guide pin 37 enters the smoothing guide groove 26 from the transition guide groove 27, placing the pearl cotton in the middle of the material conveyor belt 13 for clamping anti-deviation conveying. Step 4: After the two sets of correction plates 4 complete the positioning of the pearl cotton through relative movement, the smoothing rollers 36 on the movable plate 34 abut against the top of the pearl cotton. Combined with the clamping of the two sets of correction plates 4, the motor 4 315 drives the turntable 316 to rotate. Through the actuating rod 317, the actuating groove 318 and the connecting telescopic rod 35, multiple smoothing rollers 36 are driven to reciprocate on the top of the pearl cotton. Then, the electric heating wire in the heating tray 14 is energized to heat up the pearl cotton while preventing it from deviating and performing heating and smoothing treatment. Step 5: The lead screw 17 is driven to rotate by the motor 3 18. The lead screw 17, together with the I-shaped block 24, drives the mounting plate 21 to move up and down, thereby adjusting the distance between the chain plate transmission belt 2 and the material conveyor belt 13, and thus transferring and conveying pearl cotton of different thicknesses in an anti-deviation manner. Step Six: By rotating the handwheel 39, the rotating shaft 38 is driven to rotate. The rotating shaft 38 carries the gear 310 and works with the toothed plate 311 to drive the two sets of adjusting plates 33 to move relative to or away from each other, thereby adjusting the distance between the two sets of correction plates 4, and thus correcting the position of pearl cotton of different sizes on the material conveyor belt 13, as well as smoothing the edges of pearl cotton of different sizes.
[0027] The above description is only 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. An anti-deviation epe foam transfer conveying assembly comprising a base (1), characterized in that, The base (1) has mounting plates (11) fixedly connected symmetrically on both sides of its top, and two sets of rotating rollers (12) are rotatably connected between the mounting plates (11). The rotating rollers (12) are connected by a material conveyor belt (13) on the periphery. The mounting plates (11) are fixedly connected to a heating plate (14) that is slidably connected to the material conveyor belt (13), and the heating plate (14) is provided with an electric heating wire inside. A chain plate drive belt (2) is provided above the material conveyor belt (13). Multiple smoothing components (3) are equidistantly arranged on the chain plate drive belt (2). The smoothing component (3) includes a fixed frame (31). An installation sleeve (32) is fixedly connected to the fixed frame (31). Two sets of adjusting plates (33) are symmetrically installed on the installation sleeve (32). A correction plate (4) is installed on the adjusting plate (33). A movable plate (34) is provided at the bottom of the adjusting plate (33). Multiple connecting telescopic rods (35) are fixedly connected between the movable plates (34) at equal intervals. Multiple smoothing rollers (36) are installed alternately on the opposite sides of the two sets of movable plates (34). The chain drive belt (2) is symmetrically provided with mounting plates two (21) on both sides, and two sets of transmission sprockets (22) adapted to the chain drive belt (2) are symmetrically rotatably connected between the mounting plates two (21). The mounting plates two (21) are bolted with motor two (23) for driving the corresponding transmission sprockets (22) to rotate, and the mounting plates one (11) are bolted with motor one (15) for driving the corresponding rotating roller (12) to rotate. A fixed seat (16) is welded to one side of the mounting plate one (11). An I-shaped block (24) is fixedly connected to the mounting plate two (21) and slidably connected to the corresponding fixed seat (16). A screw rod (17) is rotatably connected to the inside of the fixed seat (16) and threadedly connected to the I-shaped block (24). A motor three (18) for driving the screw rod (17) to rotate is bolted on the fixed seat (16). Guide telescopic rods (19) are symmetrically fixedly connected between the mounting plate one (11) and the mounting plate two (21). The fixed frame (31) is slidably connected with a plurality of slide rods (25) that are fixedly connected to the chain plate transmission belt (2). A smoothing guide groove (26) is provided on one side of the mounting plate (21) and below the chain plate transmission belt (2). An inclined transition guide groove (27) is provided on both sides of the smoothing guide groove (26). A clearance guide groove (28) is provided between the transition guide grooves (27). Guide pins (37) are symmetrically fixedly connected on both sides of the fixed frame (31). The mounting sleeve (32) is rotatably connected to a rotating shaft (38), and one end of the rotating shaft (38) extends through to the outside of the mounting sleeve (32) and is fixedly connected to a handwheel (39). A gear (310) is fixedly connected to the rotating shaft (38). The adjusting plate (33) is slidably connected to the mounting sleeve (32), and a toothed plate (311) that meshes with the gear (310) is fixedly connected to the adjusting plate (33). The adjusting plate (33) has a through groove (312) that is slidably connected to the correction plate (4), and a square guide block (313) is fixedly connected inside the through groove (312). The correction plate (4) has an L-shaped guide groove (41) that is adapted to the square guide block (313). Multiple universal ball bearings (42) are fixedly installed on the side of the correction plate (4) away from the fixed frame (31).
2. The anti-deviation EPE pearl cotton transfer conveying assembly according to claim 1, characterized in that, The bottom of the adjusting plate (33) and the two sides of the correction plate (4) are symmetrically fixedly connected to the fixing plate (314), and the side of the fixing plate (314) is symmetrically fixedly connected to the slide rail. The movable plate (34) is provided with a track groove that is slidably connected to the corresponding slide rail.
3. The anti -drift epe foam transfer assembly of claim 2, wherein, One of the fixed plates (314) is bolted with a motor four (315), and a turntable (316) is fixedly connected to the output shaft of the motor four (315). A toggle rod (317) is eccentrically fixed to one side of the turntable (316), and a toggle groove (318) is provided on the movable plate (34) to slide and connect with the corresponding toggle rod (317).
Citation Information
Patent Citations
Transportation mechanism capable of preventing pearl wool from sliding off
CN214494522U
Conveying mechanism for processing rear end of EPE pearl wool
CN214827689U
Unpowered flexible package smoothing device
CN217599033U