An intelligent conveying and processing equipment for quartz sand ore processing

The servo motor-driven tensioning roller system and dust collection components solve the belt deformation and dust problems during the transportation of quartz sand ore, realize automatic belt tightening and dust treatment, and improve the transportation effect and environmental quality.

CN120423231BActive Publication Date: 2025-09-12LIANYUNGANG QIANGBANG QUARTZ PROD CO LTD
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Patent Information

Application Number
CN202510932688.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-07
Publication Date
2025-09-12
Estimated Expiration
2045-07-07

AI Technical Summary

Technical Problem

During the transportation process, the quartz sand ore exerts great pressure on the belt due to its own weight, causing the belt to deform and stretch, affecting the normal operation trajectory and wear on the pulley, and then causing slippage, affecting the transportation effect.

Method used

The servo motor-driven tensioning roller system automatically adjusts the belt tension through the distance sensor and control module. Combined with the dust collection component and dispersion component, it ensures that the belt always maintains a normal state and effectively handles dust.

Benefits of technology

The automatic tightening of the belt is realized, which improves the effect of quartz sand transportation, maintains a good working environment, prevents dust from flying, and ensures the stability and efficiency of the transportation process.

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Abstract

The present invention relates to the technical field of quartz sand ore conveying, and in particular to an intelligent conveying and processing equipment for quartz sand ore processing, comprising a base and a frame fixed to the base, the frame being rotatably connected with conveying rollers at even intervals, and a belt being wound between the conveying rollers. In the present invention, whenever the belt becomes deformed and loose after long-term use, the force exerted by the belt on the contact plate is reduced, the contact plate moves outward, driving the trigger block to move outward and disengage from the triangular block, and under the action of the compression spring, the triangular block drives the movable rod to move backward, and the distance between the movable rod and the distance sensor changes. The distance sensor controls the electric movable frame to start through the control module, so that the electric movable frame drives the hollow cylinder to move to the left, which also causes the tensioning roller to move to the left to tighten the belt, so that the belt is always in a normal state to convey the quartz sand ore, thereby improving the conveying effect of the quartz sand.
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Description

Technical Field

[0001] The present invention relates to the technical field of quartz sand ore transportation, and in particular to intelligent transportation and processing equipment for quartz sand ore processing. Background Art

[0002] As an important non-metallic mineral raw material, quartz sand is widely used in many industries such as glass, ceramics, casting, and metallurgy due to its unique physical and chemical properties. During the processing of quartz sand ore, in order to facilitate the subsequent treatment of quartz sand, the quartz sand ore needs to be transported to the next process for processing.

[0003] Chinese patent publication number CN118220759B discloses an ore belt conveyor, relating to the technical field of belt conveyors. The conveyor comprises a belt and a plurality of mounting plates, and also includes a deviation correction unit, wherein the deviation correction unit comprises two connecting rods (I) fixedly mounted on the plurality of mounting plates, two brackets fixedly mounted on each of the connecting rods (I), and a trigger structure mounted on each of the brackets, and a protective unit, wherein the protective unit comprises a hydraulic cylinder fixedly mounted on one of the connecting rods (I). Although the above patent can transport quartz sand ore, the quartz sand ore exerts a large pressure on the belt during transportation due to its own weight. Long-term heavy pressure can easily cause the belt to deform and elongate under the gravity of the quartz sand ore. This deformation not only affects the normal operation trajectory of the belt, but also may aggravate the wear between the belt and the pulley, resulting in loose contact between the belt and the pulley, and then slipping, affecting the efficiency of quartz sand transportation.

[0004] The present invention aims to solve the problems existing in the above patents. To this end, an intelligent conveying and processing equipment for quartz sand ore processing is proposed, which can automatically tighten a deformed belt so that the belt can be used normally at all times and improve the conveying effect of quartz sand. Summary of the Invention

[0005] In order to overcome the disadvantage that the quartz sand ore will generate great pressure on the belt during the transportation process due to its own weight, and the long-term heavy pressure will easily cause the belt to deform and stretch under the gravity of the quartz sand ore, such deformation will not only affect the normal operation trajectory of the belt, but also may aggravate the wear between the belt and the pulley, resulting in loose contact between the belt and the pulley, and then slipping, which affects the effect of quartz sand transportation. The present invention provides an intelligent conveying and processing equipment for quartz sand ore processing that can automatically tighten the deformed belt, so that the belt can be used normally all the time, thereby improving the quartz sand transportation effect.

[0006] The present invention is achieved through the following technical solutions:

[0007] The cam is provided with a toothed structure, and the toothed structure ...

[0008] Further explanation: the intelligent conveying and processing equipment for processing quartz sand ore also includes a swing plate rotatably connected to the feed hopper, the swing plate is inclined, and the swing plate is located above the flat belt of the conveying component.

[0009] Further explanation, the trigger assembly includes three groups of triangular blocks evenly spaced and fixed to the circumference of the movable rod, each group of triangular blocks has six triangular blocks, the inclined surface of the triangular block is on the rear side, and the tensioning roller is evenly spaced along the circumference and slidingly connected with a contact plate that contacts the belt. A return spring is symmetrically connected between the contact plate and the hollow cylinder, and trigger blocks that contact the inclined surface of the triangular block are evenly spaced and fixed on the contact plate.

[0010] Further explanation, the intelligent conveying and processing equipment for processing quartz sand ore also includes a dust collection component, which includes evenly spaced n-type plates clamped between the two sides of the frame, the inner side of the n-type plate is laterally connected to a porous cylinder, and the adjacent porous cylinders are connected by threads to filter and block the dust. A negative pressure pump is installed on the rightmost n-type plate, and the suction end of the negative pressure pump is connected to a connecting pipe. The tail end of the connecting pipe is connected to the rightmost n-type plate and is located in the rightmost porous cylinder. A discharge pipe is fixed on the rightmost n-type plate, and the feed end of the discharge pipe is located below the porous cylinder. A feeding component is provided on the n-type plate to drive the dust to move for transportation.

[0011] To further explain, the conveying assembly includes a drive motor installed on the leftmost n-type plate, the output shaft end of the drive motor is fixedly connected to the leftmost porous cylinder end, and a spiral plate is fixed to the inner side of the n-type plate to push the dust to the right for transportation.

[0012] Further explanation, the intelligent conveying and processing equipment for processing quartz sand ore also includes a bulk material component, which includes a contact rod fixed to the shaft of the swing plate, which is used to drive the swing plate to swing, and a rotating plate fixed to the inner side of the swing plate. There is a gap between the rotating plate and the bottom of the feed hopper for receiving the quartz sand ore, and a vertical plate fixed to the feed hopper, and a rotating shaft rotatably connected to the vertical plate. The rotating shaft and one of the ends of the conveying rollers are connected through a synchronous belt assembly, and a missing gear is fixed to the end of the rotating shaft, and protruding rods that contact the contact rod are fixed on the missing gear at evenly spaced circumferential directions, which are used to drive the contact rod to swing, and an intermittent unloading assembly is provided on the feed hopper to drive the quartz sand ore to fall intermittently.

[0013] Further explanation, the intermittent unloading assembly includes a fixed guide plate fixed to the inner side of the feed hopper, the fixed guide plate is set at an angle, and a movable guide plate is rotatably connected between the two sides of the feed hopper, the movable guide plate is set at an angle and contacts the fixed guide plate, and a V-shaped blocking plate is formed between the movable guide plate and the fixed guide plate, which is used to drive the quartz sand ore to fall intermittently. A spur gear corresponding to the missing gear is fixedly sleeved on the shaft of the movable guide plate, and connecting springs are evenly spaced between the movable guide plate and the feed hopper.

[0014] Further explanation: the intelligent conveying and processing equipment for processing quartz sand ore also includes an observation window symmetrically fixed and connected to the n-type plate.

[0015] The beneficial effects of the present invention are:

[0016] 1. Whenever the belt becomes deformed and loose after long-term use, the pressure exerted by the belt on the contact plate decreases, and the contact plate moves outward, driving the trigger block to move outward and disengage from the triangular block. Under the action of the compression spring, the triangular block drives the movable rod to move backward, and the distance between the movable rod and the distance sensor changes. The distance sensor controls the electric moving frame to start through the control module, so that the electric moving frame drives the hollow cylinder to move to the left, which also causes the tensioning roller to move to the left to tighten the belt, so that the belt is always in a normal state to transport the quartz sand ore, thereby improving the quartz sand transportation effect.

[0017] 2. Under the action of the porous cylinder and the spiral plate, the porous cylinder can extract the dust generated during the transportation of quartz sand ore, so that the dust adheres to the outer wall of the porous cylinder, and the spiral plate pushes the dust on the outer wall of the porous cylinder out. In this way, the dust generated during the transportation of quartz sand ore can be continuously extracted and processed to prevent the dust from floating around and affecting the working environment, thereby ensuring a good working environment.

[0018] 3. Under the action of the dispersion component, whenever the quartz sand ore is poured into the feed hopper, the dispersion component can drive the swing plate to swing up and down, so that the swing plate drops the quartz sand ore evenly onto the belt, thereby better conveying the quartz sand ore. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.

[0020] Figure 2 It is a schematic diagram of the three-dimensional structure of the conveying component, return plate and electric moving frame of the present invention.

[0021] Figure 3 It is a schematic diagram of the three-dimensional structure of the distance sensor, tensioning roller and movable rod of the present invention.

[0022] Figure 4 It is a schematic diagram of the three-dimensional structure of the hollow cylinder, contact plate and return spring of the present invention.

[0023] Figure 5 It is a schematic diagram of the three-dimensional structure of the triangular block and the trigger block of the present invention.

[0024] Figure 6 It is a schematic diagram of the three-dimensional structure of the dust collection component of the present invention.

[0025] Figure 7 It is a schematic diagram of the three-dimensional structure of the porous cylinder and spiral plate of the present invention.

[0026] Figure 8 Schematic diagram of the separation structure of the porous cylinder of the present invention.

[0027] Figure 9 It is a schematic diagram of the three-dimensional structure of the bulk material assembly of the present invention.

[0028] Figure 10 It is a schematic diagram of the three-dimensional structure of the fixed guide plate, the movable guide plate and the connecting spring of the present invention.

[0029] Figure 11 It is a schematic diagram of the three-dimensional structure of the observation window of the present invention.

[0030] Markings in the accompanying drawings: 1: base, 2: frame, 3: feed hopper, 4: swing plate, 5: belt, 51: conveyor roller, 52: servo motor, 6: return plate, 7: electric moving frame, 8: distance sensor, 9: tensioning roller, 10: movable rod, 101: hollow cylinder, 102: compression spring, 11: contact plate, 111: return spring, 112: triangular block, 113: trigger block, 12: n-type plate, 121: discharge pipe, 122: connecting pipe, 123: negative pressure pump, 124: porous cylinder, 125: spiral plate, 126: drive motor, 13: vertical plate, 132: rotating shaft, 133: missing gear, 134: protruding rod, 135: contact rod, 136: rotating plate, 137: spur gear, 1371: fixed guide plate, 138: movable guide plate, 139: connecting spring, 14: observation window. DETAILED DESCRIPTION

[0031] First of all, it should be noted that in the various described embodiments, identical components are provided with identical reference numerals or identical component names, wherein the disclosure contained throughout the entire description can be transferred to the same components having the same reference numerals or identical component names. Positional designations selected in the description, such as top, bottom, lateral, etc., also refer to the directly described and illustrated figures and are transferred to the new position in the event of a change in position.

[0032] Example: An intelligent conveying and processing equipment for processing quartz sand ore, please refer to Figures 1-8As shown, it includes a base 1 and a frame 2 fixed to the top of the base 1, four conveying rollers 51 are rotatably connected on the frame 2 at even intervals, and a belt 5 is wound between the four conveying rollers 51, a servo motor 52 is installed on the lower left side of the outer front side of the frame 2, and the output shaft end of the servo motor 52 is fixedly connected to the front end of the conveying roller 51 on the lower left side, a feed hopper 3 is fixed to the left side of the top of the base 1, and a swing plate 4 is rotatably connected to the lower right side of the feed hopper 3, the swing plate 4 is tilted, and the swing plate 4 is located above the flat belt 5 of the conveying assembly, and also includes a return plate 6, an electric moving frame 7, a distance sensor 8, a tensioning roller 9, a movable rod 10, a hollow cylinder 101, a compression spring 102 and a trigger assembly, the right side of the frame 2 is symmetrically fixed with a return plate 6, and the front and rear return plates 6 are both installed with electric moving frames 7, and the front and rear electric moving frames 7 are rotatably connected between the sides close to each other. A hollow cylinder 101, a tensioning roller 9 is fixedly mounted on the outer side of the hollow cylinder 101 along the circumferential direction, the tensioning roller 9 is in contact with the belt 5, a trigger assembly is provided between the tensioning roller 9 and the hollow cylinder 101, the trigger assembly is in contact with the belt 5, a movable rod 10 is slidably connected to the inner side of the hollow cylinder 101, the front end of the movable rod 10 is located in the front electric movable frame 7, a compression spring 102 is connected between the rear end of the movable rod 10 and the rear side surface inside the hollow cylinder 101, a distance sensor 8 is installed on the front side of the front electric movable frame 7, the distance sensor 8 corresponds to the movable rod 10, the distance sensor 8 is electrically connected to the electric movable frame 7 through a control module, when the distance sensor 8 detects that the movable rod 10 moves backward, the distance sensor 8 controls the electric movable frame 7 to move through the control module, and the electric movable frame 7 drives the tensioning roller 9 to move through the hollow cylinder 101, so that the tensioning roller 9 tightens the belt 5.

[0033] See also Figure 3-Figure 5 As shown, the trigger assembly includes a contact plate 11, a return spring 111, a triangular block 112 and a trigger block 113. Three groups of triangular blocks 112 are fixedly connected to the movable rod 10 at uniform intervals along the circumference. The number of triangular blocks 112 in each group is six, and the inclined surface of the triangular block 112 is at the rear side. Six contact plates 11 are slidingly connected to the tensioning roller 9 at uniform intervals along the circumference. The contact plate 11 is in contact with the belt 5. The return spring 111 is symmetrically connected between the inner side surface of the contact plate 11 and the outer side surface of the hollow cylinder 101. Three trigger blocks 113 are fixedly connected to the side of the contact plate 11 facing the hollow cylinder 101 at uniform intervals. The trigger block 113 is in contact with the inclined surface of the triangular block 112.

[0034] See also Figure 6-Figure 8As shown, the intelligent conveying and processing equipment for processing quartz sand ore also includes a dust collection component that is clamped on the frame 2. The dust collection component includes an n-type plate 12, a discharge pipe 121, a connecting pipe 122, a negative pressure pump 123, a porous cylinder 124 and a feeding component. The n-type plates 12 are evenly spaced between the upper parts of the front and rear sides of the frame 2. The upper part of the inner side of the n-type plate 12 is horizontally rotated and connected to the porous cylinder 124. The adjacent porous cylinders 124 are connected by threads. The porous cylinder 124 can filter and block the dust. A negative pressure pump 123 is installed on the front side of the outer top of the rightmost n-type plate 12. The suction end of the negative pressure pump 123 is connected to the connecting pipe 122. The tail end of the connecting pipe 122 is connected to the upper right side of the rightmost n-type plate 12. The n-type plate 12 is connected to the left and is located in the rightmost porous cylinder 124. A discharge pipe 121 is fixedly connected to the middle of the right side of the rightmost n-type plate 12. The feed end of the discharge pipe 121 is located below the porous cylinder 124. A feeding assembly is provided on the n-type plate 12. When the feeding assembly is in operation, the feeding assembly can drive the dust to move to the right for transportation; the transportation assembly includes a spiral plate 125 and a drive motor 126. A drive motor 126 is installed in the middle of the left side of the leftmost n-type plate 12. The output shaft end of the drive motor 126 is fixedly connected to the left end of the leftmost porous cylinder 124. A spiral plate 125 is fixedly connected to the middle of the top inside the n-type plate 12. When the porous cylinder 124 rotates, the spiral plate 125 can push the dust to move to the right for transportation.

[0035] Initially, the contact plate 11 in contact with the belt 5 is in a state of being retracted to the inside of the tensioning roller 9, the reset spring 111 is compressed, and the compression spring 102 is in a compressed state. First, the distance sensor 8 is started, and the distance between the distance sensor 8 and the movable rod 10 is at the set standard value. Then, the servo motor 52 rotates forward to drive the conveyor roller 51 to rotate forward, and the conveyor roller 51 rotates forward to drive the belt 5 to rotate forward. The belt 5 rotates forward to drive the tensioning roller 9 to rotate, and the rotation of the tensioning roller 9 drives the contact plate 11 to rotate. When the contact plate 11 rotates and contacts the belt 5, the tensioning force of the belt 5 drives the contact plate 11 to move inward and retract to the inside of the tensioning roller 9. The reset spring 111 is compressed, and the contact plate 11 moves inward to drive the trigger block 113 to move inward. The trigger block 113 moves inward and collides with the inclined surface of the triangular block 112 When the contact plate 111 is in contact with the belt 5, the trigger block 113 is limited to the triangular block 112, which also limits the movable rod 10. In this way, the contact plate 11 detects the tension of the belt 5. When the contact plate 11 continues to rotate and disengages from the belt 5, due to the action of the reset spring 111, the contact plate 11 moves outward and resets, driving the trigger block 113 to move outward and reset. The trigger block 113 is reset and disengaged from the corresponding triangular block 112. The contact plate 11 in contact with the belt 5 continues to detect the tension of the belt 5. This is repeated. As the tensioning roller 9 continuously drives the contact plate 11 to rotate, the contact plate 11 can continuously detect the tension of the belt 5. Subsequently, the discharge pipe 121 is externally connected to the purification equipment, and then the quartz sand ore is poured into the feed hopper 3. The quartz sand in the feed hopper 3 The raw ore is discharged into the swing plate 4, and the quartz sand raw ore in the swing plate 4 falls onto the belt 5. The belt 5 rotates forward to drive the quartz sand raw ore to move to the right for transportation. The quartz sand raw ore moves to the right and is in the n-type plate 12. Then the drive motor 126 is started to drive the porous cylinder 124 to rotate forward, and then the negative pressure pump 123 is started. The negative pressure pump 123 makes the porous cylinder 124 in a negative pressure state through the connecting pipe 122, and the porous cylinder 124 performs suction treatment on the n-type plate 12. Then, when dust appears in the process of transporting the quartz sand raw ore, the dust floats in the n-type plate 12, and the porous cylinder 124 extracts the dust floating in the n-type plate 12. The dust adheres to the surface of the porous cylinder 124, and then the forward rotation of the porous cylinder 124 drives the dust to rotate forward, and the spiral plate 125 drives the porous cylinder The dust attached to the surface of 124 moves to the right for transportation. When the dust moves to the right and reaches above the discharge pipe 121, the dust is scraped off by the spiral plate 125 and falls into the discharge pipe 121. The discharge pipe 121 discharges the dust into the purification equipment for purification treatment. In this way, the dust generated during the transportation of the quartz sand ore can be continuously extracted and treated to prevent the dust from flying around and affecting the working environment, thereby ensuring a good working environment. At the same time, when the quartz sand ore moves to the right and loses contact with the belt 5, the quartz sand ore falls into the next process for subsequent treatment. This is repeated to continuously transport the quartz sand ore. With a long period of transportation of the quartz sand ore, the belt 5 will be deformed and elongated under the action of the gravity of the quartz sand ore.The belt 5 will be in a loose state, and the pressure exerted by the belt 5 on the contact plate 11 will be reduced. Due to the action of the return spring 111, the contact plate 11 moves outward, driving the trigger block 113 to move outward. The trigger block 113 moves outward and disengages from the triangular block 112. Due to the action of the compression spring 102, the movable rod 10 moves backward, driving the triangular block 112 to move backward a distance. The inclined surface of the triangular block 112 contacts the trigger block 113 again. Due to the backward movement of the movable rod 10, the distance between the movable rod 10 and the distance sensor 8 changes. The distance sensor 8 controls the electric moving frame 7 to start through the control module. The electric moving frame 7 moves to the left, driving the distance sensor 8 and the hollow cylinder 101 to move to the left. The hollow cylinder 101 moves to the left, driving the movable rod 10 to move to the left. The movable rod 10 and the distance sensor 8 move to the left synchronously. The hollow cylinder 101 moves to the left, driving the tensioning roller 9 When the belt 5 moves to the left, the tensioning roller 9 moves to the left to tighten the belt 5, so that the belt 5 returns to its original tension force. The belt 5 drives the contact plate 11 to move inward and reset. The contact plate 11 drives the trigger block 113 to move inward and reset. The trigger block 113 resets and drives the triangular block 112 to move forward and reset. The triangular block 112 drives the movable rod 10 to move forward and reset. The compression spring 102 continues to be compressed, and the movable rod 10 moves forward to restore the standard distance with the distance sensor 8. The distance sensor 8 controls the electric movable frame 7 to stop moving through the control module, and the tensioning roller 9 also stops moving to the left. The belt 5 continues to rotate normally and drives the quartz sand ore to move to the right for transportation. In this way, whenever the belt 5 is deformed and loose, the tensioning roller 9 can automatically tighten the belt 5, so that the belt 5 is always in a normal state to transport the quartz sand ore, thereby improving the quartz sand transportation effect. When the quartz sand ore is transported, the servo motor 52 and the distance sensor 8 are turned off, the belt 5 stops rotating forward, and the belt 5 stops driving the tension roller 9. The negative pressure pump 123 and the drive motor 126 are then turned off, and the porous cylinder 124 stops rotating. The electric moving frame 7 is then started to drive the hollow cylinder 101 and the distance sensor 8 to move rightward and reset. The hollow cylinder 101 drives the tension roller 9 to move rightward and reset. The n-type plate 12 is then removed from the frame 2, and the adjacent porous cylinders 124 can be separated, making it easier to remove and place the n-type plate 12. Maintenance and replacement of the belt 5 are then started. After the maintenance and replacement of the belt 5 are completed, the adjacent porous cylinders 124 are connected together, and the n-type plate 12 is snapped back onto the frame 2.

[0036] See also Figure 9 and Figure 10As shown, the intelligent conveying and processing equipment for processing quartz sand ore also includes a bulk material assembly installed between the feed hopper 3 and the swing plate 4, the bulk material assembly includes a vertical plate 13, a rotating shaft 132, a missing gear 133, a protruding rod 134, a contact rod 135, a rotating plate 136 and an intermittent unloading assembly, the front side of the shaft of the swing plate 4 is fixed with a contact rod 135, the contact rod 135 can drive the swing plate 4 to swing, so that the quartz sand is dispersed on the belt 5, the left side of the bottom inner side of the swing plate 4 is fixed with a rotating plate 136, the rotating plate 1 There is a gap between 36 and the bottom of the feed hopper 3, and the rotating plate 136 can receive the quartz sand ore. The front side of the feed hopper 3 is fixed with a vertical plate 13, and the lower part of the vertical plate 13 is rotatably connected with a rotating shaft 132. The front side of the rotating shaft 132 is connected to the front end of the conveying roller 51 on the upper left by a synchronous belt assembly. The rear end of the rotating shaft 132 is fixed with a missing gear 133. The front side of the missing gear 133 is fixed with a protruding rod 134 at uniform intervals along the circumferential direction. The protruding rod 134 contacts the contact rod 135. When the protruding rod 134 rotates The convex rod 134 can drive the contact rod 135 to swing, and the feed hopper 3 is provided with an intermittent feeding assembly. When the intermittent feeding assembly is in operation, the intermittent feeding assembly can drive the quartz sand ore to fall intermittently downward; the intermittent feeding assembly includes a spur gear 137, a fixed guide plate 1371, a movable guide plate 138 and a connecting spring 139. The upper left side of the feed hopper 3 is fixedly connected with a fixed guide plate 1371, and the fixed guide plate 1371 is tilted. The movable guide plate 1371 is rotatably connected between the upper right side of the front and rear sides of the feed hopper 3. 8. The movable guide plate 138 is tilted and in contact with the fixed guide plate 1371. A V-shaped blocking plate is formed between the movable guide plate 138 and the fixed guide plate 1371. When the movable guide plate 138 swings up and down, the movable guide plate 138 can drive the quartz sand ore to fall intermittently. A spur gear 137 is fixedly mounted on the front side of the shaft of the movable guide plate 138. The spur gear 137 corresponds to the missing gear 133. Four connecting springs 139 are evenly spaced and connected between the bottom of the movable guide plate 138 and the lower part of the right side surface of the feed hopper 3.

[0037] When the servo motor 52 is started, the upper left conveying roller 51 rotates forward and drives the rotating shaft 132 to rotate forward through the synchronous belt assembly. The rotating shaft 132 rotates forward and drives the missing gear 133 to rotate forward. The missing gear 133 rotates forward and drives the protruding rod 134 to rotate forward. When the protruding rod 134 rotates forward and contacts the contact rod 135, the protruding rod 134 drives the contact rod 135 to swing downward. The contact rod 135 swings downward and drives the swing plate 4 to swing upward. The swing plate 4 swings upward so that the left side drives the rotating plate 136 to swing downward. When the protruding rod 134 continues to rotate forward and disengages from the contact rod 135, due to the action of gravity, the swing plate 4 swings downward and resets, and the swing plate 4 drives the rotating plate 136 to swing upward and reset. This is repeated, so that the swing plate 4 can intermittently swing up and down. At the same time, when the missing gear 133 rotates forward and meshes with the spur gear 137, the missing gear 133 drives the spur gear 137 to reverse, and the spur gear 137 reverses and drives the movable guide plate 138 When the gear 133 is in forward rotation and disengages from the spur gear 137, the spur gear 137 stops reversing. Due to the action of the connecting spring 139, the movable guide plate 138 swings upward and resets to continue contacting with the fixed guide plate 1371. In this way, the movable guide plate 138 can be intermittently swung up and down, and then when the quartz sand ore is poured into the feed hopper 3, the fixed guide plate 1371 and the movable guide plate 138 block the quartz sand ore. The movable guide plate 138 swings up and down to control the quartz sand ore to intermittently fall downward onto the rotating plate 136. The quartz sand ore on the rotating plate 136 slides onto the swinging plate 4. The swinging plate 4 swings up and down to drive the quartz sand ore to swing up and down evenly and fall onto the belt 5. Then the belt 5 drives the evenly dispersed quartz sand ore to move to the right for transportation. After the quartz sand ore is transported, the servo motor 52 is turned off, the conveying roller 51 stops driving the belt 5 to rotate forward, and the conveying roller 51 stops driving the rotating shaft 132 to rotate forward, and the swing plate 4 and the movable guide plate 138 stop swinging up and down. In this way, the quartz sand ore can be evenly distributed on the belt 5, thereby better transporting the quartz sand ore.

[0038] See also Figure 11 As shown, the intelligent conveying and processing equipment for processing quartz sand ore also includes an observation window 14, and the observation window 14 is fixedly connected to the upper part of the n-type plate 12 in a symmetrical manner in the front and back.

[0039] When the quartz sand ore is being transported, the operator can check the quartz sand ore transportation and dust conditions through the observation window 14. In this way, the operator can make corresponding treatments according to the transportation conditions of the quartz sand ore in a timely manner and can understand the transportation conditions of the quartz sand ore in a timely manner.

[0040] Finally, it is necessary to point out that the above content is only used to help understand the technical solution of the present invention and cannot be understood as limiting the scope of protection of the present invention; non-essential improvements and adjustments made by technical personnel in this field based on the above content of the present invention are all within the scope of protection required by the present invention.

Claims

1. An intelligent conveying and processing equipment for processing quartz sand ore, comprising a base (1) and a frame (2) fixedly connected to the base (1), the frame (2) being rotatably connected with conveying rollers (51) at even intervals, a belt (5) being wound between the conveying rollers (51), a servo motor (52) being mounted on the frame (2), the output shaft end of the servo motor (52) being fixedly connected to the end of one of the conveying rollers (51), a feed hopper (3) being fixedly connected to the base (1), characterized in that: The invention also includes a return plate (6) symmetrically fixedly connected to the frame (2), an electric movable frame (7) is installed on the return plate (6), a hollow cylinder (101) is rotatably connected between the electric movable frames (7), a tensioning roller (9) in contact with the belt (5) is fixedly sleeved on the hollow cylinder (101) along the circumferential direction, a trigger component in contact with the belt (5) is provided between the tensioning roller (9) and the hollow cylinder (101), a movable rod (10) is slidably connected to the inner side of the hollow cylinder (101), and a movable rod (10) is connected to the hollow cylinder (101). A compression spring (102), wherein a distance sensor (8) corresponding to the movable rod (10) is installed on one of the electric movable frames (7), and the distance sensor (8) is electrically connected to the electric movable frame (7) through a control module. When the distance sensor (8) detects that the movable rod (10) moves backward, the distance sensor (8) controls the electric movable frame (7) to move through the control module, and the electric movable frame (7) drives the tensioning roller (9) to move through the hollow cylinder (101), so that the tensioning roller (9) tightens the belt (5); The intelligent conveying and processing equipment for processing quartz sand ore further includes a swing plate (4) rotatably connected to the feed hopper (3), the swing plate (4) being inclined, and the swing plate (4) being located above the flat belt (5) of the conveying assembly; The trigger assembly includes three groups of triangular blocks (112) fixed to the circumference of the movable rod (10) at uniform intervals, each group of triangular blocks (112) has six triangular blocks (112), the inclined surfaces of the triangular blocks (112) are located at the rear side, and a contact plate (11) in contact with the belt (5) is slidably connected to the tensioning roller (9) at uniform intervals along the circumference, a return spring (111) is symmetrically connected between the contact plate (11) and the hollow cylinder (101), and trigger blocks (113) in contact with the inclined surfaces of the triangular blocks (112) are fixed to the contact plate (11) at uniform intervals.

2. The intelligent conveying and processing equipment for processing quartz sand ore according to claim 1 is characterized in that: The intelligent conveying and processing equipment for processing quartz sand ore also includes a dust collection component, which includes n-type plates (12) that are evenly spaced and clamped between the two sides of the frame (2). The inner side of the n-type plate (12) is laterally rotatably connected to a porous cylinder (124). Adjacent porous cylinders (124) are connected by threads to filter and block dust. A negative pressure pump (123) is installed on the rightmost n-type plate (12). The suction end of the negative pressure pump (123) is connected to a connecting pipe (122). The tail end of the connecting pipe (122) is connected to the rightmost n-type plate (12) and is located in the rightmost porous cylinder (124). A discharge pipe (121) is fixed to the rightmost n-type plate (12). The feed end of the discharge pipe (121) is located below the porous cylinder (124). A feeding component is provided on the n-type plate (12) to drive the dust to move for transportation.

3. The intelligent conveying and processing equipment for processing quartz sand ore according to claim 2 is characterized in that: The conveying assembly includes a driving motor (126) mounted on the leftmost n-type plate (12), the output shaft end of the driving motor (126) is fixedly connected to the end of the leftmost porous cylinder (124), and a spiral plate (125) is fixedly connected to the inner side of the n-type plate (12) for pushing the dust to move to the right for conveying.

4. The intelligent conveying and processing equipment for processing quartz sand ore according to claim 3 is characterized in that: The intelligent conveying and processing equipment for processing quartz sand ore also includes a bulk material component, which includes a contact rod (135) fixed on the shaft of the swing plate (4) for driving the swing plate (4) to swing, a rotating plate (136) fixed on the inner side of the swing plate (4), a gap between the rotating plate (136) and the bottom of the feed hopper (3) for receiving the quartz sand ore, a vertical plate (13) fixed on the feed hopper (3), a rotating plate (136) on the vertical plate (13) A rotating shaft (132) is connected therethrough, and the rotating shaft (132) is connected to the end of one of the conveying rollers (51) through a synchronous belt assembly. A missing gear (133) is fixed to the end of the rotating shaft (132). Protruding rods (134) in contact with the contact rod (135) are fixed to the missing gear (133) at even intervals along the circumference, and are used to drive the contact rod (135) to swing. An intermittent feeding assembly is provided on the feed hopper (3), and is used to drive the quartz sand ore to intermittently drop downward.

5. The intelligent conveying and processing equipment for processing quartz sand ore according to claim 4 is characterized in that: The intermittent feeding assembly includes a fixed guide plate (1371) fixed to the inner side of the feed hopper (3), the fixed guide plate (1371) is tilted, and a movable guide plate (138) is rotatably connected between the two sides of the feed hopper (3), the movable guide plate (138) is tilted and contacts the fixed guide plate (1371), and a V-shaped blocking plate is formed between the movable guide plate (138) and the fixed guide plate (1371) for driving the quartz sand ore to fall intermittently. A spur gear (137) corresponding to the missing gear (133) is fixedly sleeved on the shaft of the movable guide plate (138), and connecting springs (139) are evenly spaced and connected between the movable guide plate (138) and the feed hopper (3).

6. The intelligent conveying and processing equipment for processing quartz sand ore according to claim 5 is characterized in that: The intelligent conveying and processing equipment for processing quartz sand ore further comprises an observation window (14) symmetrically fixedly connected to the n-type plate (12).

Citation Information

Patent Citations

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    CN118220759B

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    CN214609823U

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    CN217894194U