A non-slip self-cleaning granular conveyor belt and its usage method
By designing an adjustable cleaning mechanism and material discharge mechanism on the anti-slip particle transport belt, the problem of self-cleaning and material discharge synchronization of conveyor belts is solved, and the sanitary transport and synchronous cleaning of particulate materials is achieved.
Patent Information
- Application Number
- CN202310326420.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-30
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2043-03-30
AI Technical Summary
The existing anti-slip particle transport belt lacks self-cleaning function when transporting food particulate materials, resulting in material pollution and anti-slip residues mixed, and the opening and closing state of the hopper is inconsistent with the conveyor belt transport, resulting in material accumulation.
An anti-slip self-cleaning particle transport belt is designed, equipped with an adjustable cleaning mechanism and a feed discharge mechanism, including a guide plate, a transmission member, a lifting adjustment member, a brush sweeper and a sealing member. Through the meshing of the transmission gear and the drive of the rotary rod, the synchronous brush sweeper and the feed discharge port of the conveyor belt surface is realized to ensure the synchronization of cleaning and transfer.
It realizes flexible cleaning of the surface of the conveyor belt, avoids material pollution and accumulation, improves transportation hygiene and synchronization, and ensures coordination between cleaning and transportation processes.
Smart Images

Figure CN116281017B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of material transportation, and in particular to an anti-skid self-cleaning particle conveyor belt and a use method thereof. Background Art
[0002] In some production and processing processes, it is necessary to transfer some granular materials through conveyor belts. Therefore, when transporting granular materials, the conveyor belt surface needs to have anti-slip properties.
[0003] In order to increase the anti-skid performance of this type of traditional anti-skid particle conveyor belt, some wavy grooves are engraved on the surface of the conveyor belt, and blocking strips are added for anti-skid blocking. Such conveyor belts can well complete the transportation work when transporting particulate matter, but these existing conveyor belts do not have the function of self-cleaning. Therefore, when transporting some food-like particulate materials, if the conveyor belt cannot perform self-cleaning, it will not only cause pollution during the material transportation, but also cause the residues blocked on the surface of the conveyor belt due to the anti-skid performance to be mixed with the particulate material, resulting in material pollution; and in order to facilitate the transportation of particulate materials, the current conveyor belts will be equipped with a discharge hopper on the top of the transport frame, but the opening and closing state of the existing discharge hopper cannot be synchronized with the conveyor belt transportation, which will cause the conveyor belt to suddenly stop rotating during transportation, resulting in continuous accumulation of materials. Summary of the invention
[0004] The object of the present invention is to provide a non-slip self-cleaning particle conveyor belt and a method of using the same to solve the problems raised in the above-mentioned background technology.
[0005] To achieve the above object, the present invention provides the following technical solution: an anti-skid self-cleaning particle conveyor belt, comprising:
[0006] The conveyor belt body comprises a conveyor frame, a conveyor belt is rotatably sleeved in the middle of the conveyor frame, both ends of the conveyor frame are rotatably connected with rotating rods, and two rotating rods are inserted at both ends of the conveyor belt to drive the conveyor belt to rotate;
[0007] The outer walls at both ends of the rotating rod are fixedly connected with a toggle rod, and the bottom of the transport frame is provided with an adjustable cleaning mechanism for brushing the surface of the conveyor belt;
[0008] The adjustable cleaning mechanism includes a guide plate, a transmission member, a lifting and lowering adjustment member and two sets of brushing members, wherein the transmission member includes a transmission box, wherein a driving gear and two driven gears are arranged in the transmission box, and the two driven gears are horizontally and centrally symmetrically meshed on both sides of the driving gear;
[0009] The lifting and adjusting mechanism includes an adjusting bolt, and the rod wall of the adjusting bolt is threadedly inserted through one end of the transmission box close to the back for controlling the height position of the transmission box;
[0010] A feeding mechanism is provided at the top of the transport rack. The feeding mechanism includes a feeding hopper and a blocking member. A feeding port is opened at the bottom of one end of the feeding hopper. A receiving groove is opened on the inner wall of the top of the feeding port. The blocking member is slidably arranged in the receiving groove and the feeding port for controlling the blocking of the feeding port.
[0011] Preferably, a plurality of blocking strips are provided on the outer wall of the conveyor belt, and a plurality of blocking grooves are opened between the plurality of blocking strips on the outer wall of the conveyor belt.
[0012] Preferably, support rods are fixedly connected to the front and back of the bottom end of the transport rack, and connecting rings are arranged in the middle of the two support rods for connecting the entire conveyor belt through the connecting rings.
[0013] Preferably, the top and bottom ends of the guide plate are fixedly connected to the bottom end of the transport rack and the top end of the connecting ring respectively. A sliding opening is opened on the front of the guide plate. A connecting slider is fixedly connected to the front of the transmission box, and the connecting slider is slidably inserted through the sliding opening.
[0014] Preferably, limiting sliding grooves are opened on the inner walls of both sides of the sliding opening, limiting sliders are fixedly connected to both sides of the connecting slider, and the two limiting sliders are respectively slidably inserted through the two limiting sliding grooves.
[0015] Preferably, a driving rotating rod is inserted through the middle of the driving gear, and one end of the front of the driving rotating rod penetrates through the front of the transmission box and extends outwards. A transmission belt is sleeved between the exposed end of the driving rotating rod and one end of one of the rotating rods. Driven rotating rods are respectively inserted through the middle of the two driven gears. The two driven rotating rods penetrate through the back of the transmission box, and the penetrating ends of the two driven rotating rods are fixedly connected to two groups of brushing members.
[0016] Preferably, the brushing member includes a brushing roller sleeved on the penetrating end of the driven rotating rod, and a plurality of bristles are arranged around the outer wall of the brushing roller.
[0017] Preferably, the top of the adjusting bolt is rotatably inserted through the middle of one end of the front of the transport rack. A control turning handle is fixedly connected to the top end of the adjusting bolt. A limiting ring groove is opened on the inner wall of the insertion part of the adjusting bolt and the transport rack. A limiting sleeve ring is sleeved on the top of the adjusting bolt, and the limiting sleeve ring is rotatably inserted through the limiting ring groove for limiting the adjusting bolt.
[0018] Preferably, the four corners of the bottom end of the discharge hopper are fixedly connected with support legs, the bottom ends of the four support legs are respectively fixedly connected to the sides of the top end of the transport frame, and the inner walls of the front and back sides of the discharge port are provided with through grooves;
[0019] The blocking member includes a blocking plate, which is slidably inserted and connected in the storage groove and the discharge port. The front and back sides of the top of the blocking plate are fixedly connected with support rods, and the two support rods are respectively slidably inserted and connected with the two through grooves.
[0020] A method for using an anti-skid self-cleaning particle conveyor belt, the method for using the conveyor belt comprising the following steps;
[0021] The first step is to fix the entire conveyor belt. After the connecting rod is connected through the middle of the two connecting rings, the position of the entire conveyor belt is fixed and restricted. Then, the conveying angle of the entire conveyor belt is adjusted according to the direction of material movement, and the end with the hopper is placed at the lowest point.
[0022] The second step is to adjust the height of the brush. At this time, you need to hold the control handle and then turn it. The control handle drives the adjusting bolt to rotate. In this way, with the cooperation of the thread, the transmission box will follow the rotation direction of the adjusting bolt to adjust the height position;
[0023] The third step is to connect one end of one of the rotating rods to the drive. At this time, the rotating rod rotates under the drive, and drives the conveyor belt and the other rotating rod to rotate. At this time, the toggle rod rotates with the connected rotating rod, and when passing under the supporting rod, it pushes and lifts it, thereby driving the blocking plate to reciprocate in the vertical direction. At this time, the discharge port will open and close intermittently. At the same time, under the drive belt, the active rotating rod rotates, and then drives the active gear to rotate. Under the meshing transmission, the two driven gears rotate, and at the same time drive the two driven rotating rods to rotate. Finally, the two brush rollers rotate, and the passing conveyor belt is brushed by the bristles;
[0024] The fourth step is to put the granular material to be transferred into the discharge hopper. At this time, the material in the discharge hopper will be discharged as the discharge port opens and closes. The discharged material will fall to the top of the conveyor belt and be transferred under the blocking restriction of the blocking groove and the blocking bar. The conveyor belt part that has been transferred will rotate to the bottom position of the transport frame and will be cleaned by the brush on the way through the brush.
[0025] Technical effects and advantages of the present invention:
[0026] (1) The present invention is provided with an adjustable cleaning mechanism, through which the surface of the conveyor belt can be brushed after the material transfer is completed or during the transfer process, and the position of the brushing member is adjustable, so that the degree of brushing on the surface of the conveyor belt can be adjusted, making the entire adjustable cleaning mechanism more flexible to use, and the material transfer is also more hygienic by cleaning the conveyor belt. At the same time, the adjustable cleaning mechanism is linked with the rotating rod used for driving the conveyor belt through the transmission belt, so that cleaning and transfer can be coordinated synchronously, making cleaning more convenient;
[0027] (2) The present invention adds a blocking piece to the discharge mechanism, so that the rotation of the toggle rod is driven by the rotating rod, so that the toggle rod is lifted when passing through the blocking piece, so that the opening and closing of the discharge port can be controlled. At the same time, the rotating rod is also a mechanism for controlling the operation of the conveyor belt. In this way, the discharge process is synchronized with the conveying process in some designs. Even if the conveyor belt stops in the middle of the process, the blocking mechanism will block the discharge port, thus avoiding the accumulation and scattering of materials. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 It is a schematic diagram of the overall structure of the conveyor belt of the present invention.
[0029] Figure 2 It is a structural schematic diagram of the adjustable cleaning mechanism of the present invention.
[0030] Figure 3 For the present invention Figure 2 A schematic diagram of the enlarged structure at point A in the middle.
[0031] Figure 4 It is a structural sectional view of the transmission member of the present invention.
[0032] Figure 5 This is a structural cross-sectional view of the connection between the adjusting bolt, the transport frame and the transmission box of the present invention.
[0033] Figure 6 It is a structural schematic diagram of the discharge mechanism of the present invention.
[0034] Figure 7 It is a structural sectional view of the discharge hopper of the present invention.
[0035] Figure 8 It is a structural sectional view of the discharge mechanism of the present invention.
[0036] In the figure: 1. Transport rack; 101. Conveyor belt; 102. Blocking groove; 103. Blocking bar; 104. Rotating rod; 105. Poking rod; 2. Support rod; 201. Connecting ring; 3. Transmission belt; 4. Guide plate; 401. Limiting chute; 5. Transmission box; 501. Connecting slider; 502. Limiting slider; 6. Driving gear; 601. Driving rotating rod; 7. Driven gear; 701. Driven rotating rod; 702. Brushing roller; 703. Brush bristles; 8. Adjusting bolt; 801. Control knob; 802. Limiting collar; 9. Feeding hopper; 901. Support leg; 902. Storage groove; 903. Feeding port; 904. Through groove; 10. Sealing plate; 1001. Support rod. Detailed implementation manner
[0037] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0038] Embodiment 1. The present invention provides a Figure 1-8 non-slip self-cleaning particle conveyor belt as shown in
[0039] The conveyor belt main body includes a transport rack 1. A conveyor belt 101 is rotatably sleeved in the middle of the transport rack 1. Rotating rods 104 are rotatably inserted through both ends of the transport rack 1, and the two rotating rods 104 are inserted at both ends of the conveyor belt 101 for driving the conveyor belt 101 to rotate.
[0040] A plurality of blocking bars 103 are arranged on the outer wall of the conveyor belt 101, and a plurality of blocking grooves 102 are formed on the outer wall of the conveyor belt 101 and located between the plurality of blocking bars 103.
[0041] The structural design of the blocking bars 103 and the blocking grooves 102 makes the surface of the conveyor belt 101 have stronger anti-slip ability. In this way, through these blocking methods, the transfer of granular materials can be more stable. And on the structure of the combination of the blocking bars 103 and the blocking grooves 102, corrugated grooves are also provided. These structures are all for improving the anti-slip performance of the surface of the conveyor belt 101.
[0042] Poking rods 105 are fixedly connected to the outer walls of both ends of the rotating rod 104. An adjustable cleaning mechanism is arranged at the bottom of the transport rack 1 for brushing the surface of the conveyor belt 101.
[0043] Support rods 2 are fixedly connected to the front and back of the bottom end of the transport rack 1. Connecting rings 201 are arranged in the middle of the two support rods 2 for connecting the entire conveyor belt through the connecting rings 201.
[0044] The adjustable cleaning mechanism includes a guide plate 4, a transmission member, a lifting adjustment member, and two sets of brush members. The transmission member includes a transmission box 5. An active gear 6 and two driven gears 7 are arranged in the transmission box 5. The two driven gears 7 are horizontally symmetrically meshed on both sides of the active gear 6;
[0045] Through the connection between the active gear 6 and the two driven gears 7, and the active gear 6 is arranged between the two driven gears 7, so that the two driven gears 7 rotate synchronously under meshing, and it is possible to avoid omission in one brush sweep through two brush sweeps, making the entire brush sweep cleaner.
[0046] A main drive rod 601 is inserted and connected in the middle of the active gear 6, and one end of the front surface of the main drive rod 601 penetrates through the front surface of the transmission box 5 and extends outwards. A transmission belt 3 is sleeved between the exposed end of the main drive rod 601 and one end of one of the rotating rods 104. Driven drive rods 701 are inserted through the middle of the two driven gears 7 respectively. The two driven drive rods 701 penetrate through the back surface of the transmission box 5, and the penetrating ends of the two driven drive rods 701 are fixedly connected to the two sets of brush members.
[0047] Through the transmission belt 3, the driving of the brush members is synchronized with the driving of the conveyor belt 101, so that the process of brushing while transporting can be realized.
[0048] The brush member includes a brush roller 702. The brush roller 702 is sleeved on the penetrating end of the driven drive rod 701, and a plurality of bristles 703 are arranged around the outer wall of the brush roller 702.
[0049] The top and bottom ends of the guide plate 4 are fixedly connected to the bottom end of the transport rack 1 and the top end of the connecting ring 201 respectively. A sliding opening is formed on the front surface of the guide plate 4. A connecting slider 501 is fixedly connected to the front surface of the transmission box 5. The connecting slider 501 is slidably inserted into the sliding opening.
[0050] Limit sliding grooves 401 are formed on the inner walls of both sides of the sliding opening. Limit sliders 502 are fixedly connected to both sides of the connecting slider 501. The two limit sliders 502 are respectively slidably inserted into the two limit sliding grooves 401.
[0051] The lifting adjustment mechanism includes an adjustment bolt 8. The rod wall of the adjustment bolt 8 is threadedly inserted through one end of the transmission box 5 close to the back surface for controlling the height position of the transmission box 5;
[0052] The top of the adjusting bolt 8 is rotationally inserted and connected to the middle of one end of the front side of the transport rack 1. The top end of the adjusting bolt 8 is fixedly connected with a control knob 801. And a limiting ring groove is opened on the inner wall of the insertion part of the adjusting bolt 8 and the transport rack 1. A limiting collar 802 is sleeved on the top of the adjusting bolt 8. The limiting collar 802 is rotationally inserted and connected in the limiting ring groove for limiting the adjusting bolt 8.
[0053] A feeding mechanism is arranged at the top end of the transport rack 1. The feeding mechanism includes a feeding hopper 9 and a blocking member. A feeding port 903 is opened at the bottom of one end of the feeding hopper 9. A receiving groove 902 is opened on the inner wall at the top of the feeding port 903. The blocking member is slidably arranged in the receiving groove 902 and the feeding port 903 for controlling the blocking of the feeding port 903.
[0054] Four corners at the bottom end of the feeding hopper 9 are fixedly connected with support legs 901 respectively. The bottom ends of the four support legs 901 are fixedly connected with the side edges at the top end of the transport rack 1 respectively. Through grooves 904 are opened on the inner walls of the front side and the back side of the feeding port 903.
[0055] The blocking member includes a blocking plate 10. The blocking plate 10 is slidably inserted and connected in the receiving groove 902 and the feeding port 903. The front side and the back side at the top of the blocking plate 10 are fixedly connected with support rods 1001 respectively. The two support rods 1001 are slidably inserted and connected with the two through grooves 904 respectively.
[0056] The working principle of the present invention: When using this device to transport granular materials, the following steps need to be carried out;
[0057] As Figure 1 shown, for the first step of operation, first fix the entire conveyor belt. After the inserted rod is connected through the middle parts of the two connecting rings 201, the inserted rod can limit the position of the entire conveyor belt by means of the inserted rod. In this way, the conveyor belt can rotate around the inserted rod to convert the angle. In this way, the position of the entire conveyor belt is fixed and restricted. Then, according to the direction of material movement, adjust the conveying angle of the entire conveyor belt, and place the end with the feeding hopper 9 at the low point.
[0058] As Figure 1 - Figure 5 shown, for the second step of operation, adjust the height of the brushing member. At this time, it is necessary to hold the control knob 801 and then rotate it. The control knob 801 drives the adjusting bolt 8 to rotate. At this time, the limiting collar 802 cooperates with the limiting ring groove to make the adjusting bolt 8 can only rotate and cannot move in position. At the same time, the cooperation between the connecting slider 501 and the limiting slider 502 and the sliding port and the limiting chute 401 makes the transmission box 5 unable to rotate. In this way, under the cooperation of the thread, the transmission box 5 will adjust the height position along the rotation direction of the adjusting bolt 8.
[0059] AsFigure 1 - Figure 8 As shown, the third step is to connect one end of one of the rotating rods 104 to the drive. At this time, the rotating rod 104 rotates under the drive, and drives the conveyor belt 101 and the other rotating rod 104 to rotate. At this time, the toggle rod 105 rotates following the connected rotating rod 104, and pushes and lifts the supporting rod 1001 when passing under it. In this way, the supporting rod 1001 drives the blocking plate 10 to reciprocate in the vertical direction during the lifting and lowering process. At this time, the blocking plate 10 of the discharge port 903 will open and close intermittently during the movement;
[0060] At the same time, driven by the transmission belt 3, the active rotating rod 601 rotates, thereby driving the active gear 6 to rotate. Under the meshing transmission, the two driven gears 7 rotate, and at the same time drive the two driven rotating rods 701 to rotate. Finally, the two brush rollers 702 rotate with the two driven rotating rods 701, and during the rotation of the brush rollers 702, the passing part of the conveyor belt 101 is brushed by the bristles 703.
[0061] Implement the fourth step of operation, put the granular material to be transferred into the discharge hopper 9, and the material in the discharge hopper 9 will be discharged as the discharge port 903 opens and closes, and the discharged material will fall to the top of the conveyor belt 101, and will be transferred under the blocking restriction of the blocking groove 102 and the blocking bar 103. The conveyor belt 101 part that has been transferred will rotate to the bottom position of the transport frame 1, and will be cleaned by the brush on the way through the sweeping piece.
[0062] Embodiment 2, a method for using a non-slip self-cleaning particle conveyor belt, the method for using the conveyor belt comprises the following steps;
[0063] The first step is to fix the entire conveyor belt by connecting the two connecting rings 201 through the middle of the connecting rod, so that the position of the entire conveyor belt is fixed and restricted, and then the conveying angle of the entire conveyor belt is adjusted according to the direction of material movement, and the end with the discharge hopper 9 is placed at the lowest point;
[0064] The second step is to adjust the height of the brush sweeping member. At this time, you need to hold the control handle 801 and then rotate it. The control handle 801 drives the adjusting bolt 8 to rotate. In this way, under the cooperation of the thread, the transmission box 5 will follow the rotation direction of the adjusting bolt 8 to adjust the height position;
[0065] In the third step, one end of one of the rotating rods 104 is connected to the drive. At this time, the rotating rod 104 rotates under the drive, and drives the conveyor belt 101 and the other rotating rod 104 to rotate. At this time, the toggle rod 105 rotates following the connected rotating rod 104, and when passing under the support rod 1001, it pushes and lifts it, thereby driving the blocking plate 10 to reciprocate in the vertical direction. At this time, the discharge port 903 will open and close intermittently. At the same time, driven by the transmission belt 3, the active rotating rod 601 rotates, thereby driving the active gear 6 to rotate. Under the meshing transmission, the two driven gears 7 rotate, and at the same time drive the two driven rotating rods 701 to rotate. Finally, the two brush rollers 702 rotate, and the passing part of the conveyor belt 101 is brushed by the bristles 703;
[0066] In the fourth step, the granular material to be transferred is put into the discharge hopper 9. At this time, the material in the discharge hopper 9 will be discharged as the discharge port 903 opens and closes. The discharged material will fall to the top of the conveyor belt 101 and be transferred under the blocking restriction of the blocking groove 102 and the blocking bar 103. The conveyor belt 101 part that has been transferred will rotate to the bottom position of the transport frame 1 and will be cleaned by the brush on the way through the sweeping piece.
[0067] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A non-slip self-cleaning particle conveyor belt, comprising: A conveyor belt main body, the conveyor belt main body includes a conveyor frame (1), a conveyor belt (101) is rotatably sleeved in the middle of the conveyor frame (1), and rotating rods (104) are rotatably inserted through both ends of the conveyor frame (1), and the two rotating rods (104) are inserted through both ends of the conveyor belt (101) for driving the conveyor belt (101) to rotate; Characterized in that, outer walls of both ends of the rotating rod (104) are fixedly connected with stirring rods (105), and an adjustable cleaning mechanism is arranged at the bottom of the conveyor frame (1) for brushing the surface of the conveyor belt (101); The adjustable cleaning mechanism includes a guide plate (4), a transmission member, a lifting adjustment mechanism and two groups of brushing members. The transmission member includes a transmission box (5), a driving gear (6) and two driven gears (7) are arranged in the transmission box (5), and the two driven gears (7) are horizontally symmetrically meshed on both sides of the driving gear (6); A driving rotating rod (601) is inserted through the middle of the driving gear (6), and one end of the front surface of the driving rotating rod (601) penetrates through the front surface of the transmission box (5) and extends outwards. A transmission belt (3) is sleeved between the exposed end of the driving rotating rod (601) and one end of one of the rotating rods (104). Driven rotating rods (701) are inserted through the middle of the two driven gears (7), and the two driven rotating rods (701) penetrate through the back surface of the transmission box (5), and the penetrating ends of the two driven rotating rods (701) are fixedly connected with two groups of brushing members; The lifting adjustment mechanism includes an adjustment bolt (8), and the rod wall of the adjustment bolt (8) is threadedly inserted through one end of the transmission box (5) close to the back surface for controlling the height position of the transmission box (5); A feeding mechanism is arranged at the top end of the conveyor frame (1), the feeding mechanism includes a feeding hopper (9) and a blocking member. A feeding port (903) is opened at the bottom of one end of the feeding hopper (9), and a receiving groove (902) is opened on the inner wall of the top end of the feeding port (903). The blocking member is slidably arranged in the receiving groove (902) and the feeding port (903) for controlling the blocking of the feeding port (903); The blocking member includes a blocking plate (10), the blocking plate (10) is slidably inserted through the receiving groove (902) and the feeding port (903), and support rods (1001) are fixedly connected to the front and back of the top of the blocking plate (10), and the two support rods (1001) are respectively slidably inserted through two through grooves (904).
2. The anti-slip self-cleaning particle conveyor belt according to claim 1, wherein A plurality of blocking strips (103) are arranged on the outer wall of the conveyor belt (101), and a plurality of blocking grooves (102) are opened on the outer wall of the conveyor belt (101) and between the plurality of blocking strips (103).
3. The anti-slip self-cleaning particle conveyor belt according to claim 1, wherein Support rods (2) are fixedly connected to the front and back of the bottom end of the conveyor frame (1), and connecting rings (201) are arranged in the middle of the two support rods (2) for connecting the entire conveyor belt through the connecting rings (201).
4. A non-slip self-cleaning particle conveyor belt according to claim 1, characterized in that, The top and bottom ends of the guide plate (4) are fixedly connected to the bottom end of the transport rack (1) and the top end of the connecting ring (201) respectively. A sliding opening is formed in the front surface of the guide plate (4). A connecting slider (501) is fixedly connected to the front surface of the transmission box (5). The connecting slider (501) is slidably inserted into the sliding opening.
5. The anti-slip self-cleaning particle conveyor belt according to claim 4, wherein, Limit sliding grooves (401) are formed in the inner walls on both sides of the sliding opening. Limit sliders (502) are fixedly connected to both sides of the connecting slider (501). The two limit sliders (502) are respectively slidably inserted into the two limit sliding grooves (401).
6. A non-slip self-cleaning particle conveyor belt according to claim 1, characterized in that, The brushing member includes a brushing roller (702). The brushing roller (702) is sleeved on the penetrating end of the driven rotating rod (701). A plurality of bristles (703) are arranged around the outer wall of the brushing roller (702).
7. A non-slip self-cleaning particle conveyor belt according to claim 1, characterized in that, The top of the adjusting bolt (8) is rotatably inserted through the middle of one end of the front surface of the transport rack (1). A control knob (801) is fixedly connected to the top end of the adjusting bolt (8). A limit ring groove is formed in the inner wall of the insertion part of the adjusting bolt (8) and the transport rack (1). A limit sleeve ring (802) is sleeved on the top of the adjusting bolt (8). The limit sleeve ring (802) is rotatably inserted into the limit ring groove for limiting the adjusting bolt (8).
8. A non-slip self-cleaning particle conveyor belt according to claim 1, characterized in that, Support legs (901) are fixedly connected to the four corners of the bottom end of the feeding hopper (9). The bottom ends of the four support legs (901) are respectively fixedly connected to the side edges of the top end of the transport rack (1). Through grooves (904) are formed in the inner walls of the front and back surfaces of the discharge opening (903).
9. A method for using an anti-slip self-cleaning particle conveyor belt, characterized in that, The using method of the conveyor belt includes the following steps; First step, first fix the entire conveyor belt. After passing through the middle parts of the two connecting rings (201) through the connected insertion rods, the position of the entire conveyor belt is fixed and restricted. Then, adjust the conveying angle of the entire conveyor belt according to the running direction of the material, and place the end with the feeding hopper (9) at a low point. Second step, adjust the height of the brushing member. At this time, hold the control knob (801) and then rotate it. The control knob (801) drives the adjusting bolt (8) to rotate. In this way, under the cooperation of the threads, the transmission box (5) will adjust its height position along the rotation direction of the adjusting bolt (8). The third step is to connect one end of one of the rotating rods (104) to a drive. At this time, driven by the drive, the rotating rod (104) rotates, and drives the conveyor belt (101) and the other rotating rod (104) to rotate. At this time, the toggle rod (105) rotates following the connected rotating rod (104), and when passing under the support rod (1001), it pushes and lifts it, thereby driving the blocking plate (10) to reciprocate in the vertical direction. At this time, the discharge port (903) will open and close intermittently. At the same time, driven by the transmission belt (3), the active rotating rod (601) rotates, thereby driving the active gear (6) to rotate. Under the meshing transmission, the two driven gears (7) rotate, and at the same time drive the two driven rotating rods (701) to rotate. Finally, the two brush rollers (702) rotate, and the brush bristles (703) are used to brush the passing part of the conveyor belt (101); In the fourth step, the granular material to be transported is placed into the discharge hopper (9). At this time, the material in the discharge hopper (9) is discharged as the discharge port (903) is opened and closed. The discharged material falls to the top of the conveyor belt (101) and is transported under the blocking restrictions of the blocking groove (102) and the blocking bar (103). The conveyor belt (101) that has been transported is rotated to the bottom position of the transport frame (1) and is swept by the sweeping member on the way.
Citation Information
Patent Citations
Belt conveyor
CN210064280U
Anti-slip equipment for conveying belt
CN213386136U
Coal mine electromechanical transportation transmission device
CN218057220U