Heavy apron conveyor
By introducing pushing, resetting, cooling and cleaning components into the heavy-duty scale conveyor, the problems of raw material jamming and scale deformation are solved, smooth material unloading and scale recovery are achieved, and the operating efficiency of the equipment is improved.
Patent Information
- Application Number
- CN202510861948.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-25
- Publication Date
- 2025-10-14
AI Technical Summary
When existing heavy-duty scale plate conveyors are used to transport large pieces of raw materials, the raw materials are easily stuck in the frame plates, making it difficult to complete the unloading work. In addition, the scale plates are easily deformed at high temperatures and are difficult to restore to their original shape.
A pushing component, a resetting component, a cooling component and a cleaning component are designed to scrape, impact, cool down and clean the frame plate and scale plate respectively to ensure smooth unloading of raw materials and restoration of the scale plate to its original state.
It effectively solves the problem of raw material jamming, ensures smooth material unloading, and restores the scale shape by resetting and cooling components, reducing damage and improving equipment operation efficiency.
Smart Images

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Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of conveying, in particular to a heavy scale plate conveyor. BACKGROUND
[0002] The scale plate conveyor is a fixed mechanical conveying equipment with steel plate as the carrying tank body, which is suitable for conveying large amount of bulk materials and single heavy objects. The equipment is particularly good at handling large, heavy, high-temperature or corrosive special materials, such as the transportation of hot castings in the foundry workshop. During the conveying process, multiple industrial processes such as removing sprues, material cooling and drying treatment can be completed synchronously.
[0003] In the utility model patent with publication number CN219669196U, a high-efficiency heavy scale plate conveyor is disclosed, which sets a side baffle above the conveying belt, the side baffle includes a rectangular baffle, thereby effectively protecting the scale plate conveyed on the conveying belt. In addition, the inside of the rectangular baffle is movably connected with a rolling wheel, thereby effectively assisting the conveying of the scale plate in the conveying process and preventing the scale plate from being damaged due to impact with the rectangular baffle. However, when transporting raw materials, the raw materials move downward through the conveyor to complete the discharging work. Since the raw materials are large, they are easy to get stuck in the frame plate, making it difficult to complete the discharging work. SUMMARY
[0004] In order to overcome the problem that when transporting raw materials, the raw materials move downward through the conveyor to complete the discharging work, and since the raw materials are large, they are easy to get stuck in the frame plate, making it difficult to complete the discharging work, the present application provides a heavy scale plate conveyor, which comprises a machine body; a frame plate, which is installed inside the machine body, and a scale plate installed on the top of the frame plate; a connecting mechanism, which is installed at the bottom of the machine body and comprises a first connecting frame, a second connecting frame, a third connecting frame and a fourth connecting frame; a processing mechanism, which is connected with the connecting mechanism and comprises a pushing assembly, which is installed outside the first connecting frame and comprises a first push rod, the telescopic end of which is provided with a triangular plate, and the first push rod is used to control the movement of the triangular plate in the discharging direction.
[0005] Preferably, the processing mechanism further comprises: a reset assembly, which is connected with the second connecting frame and is used to control the scale plate to return to the original position after feeding; a cooling assembly, which is connected with the third connecting frame and is used to promote the cooling of the frame plate after feeding; a cleaning assembly, which is connected with the fourth connecting frame and is used to clean the frame plate after feeding.
[0006] Preferably, the pushing assembly further comprises: a first sliding block fixedly connected to the inside of the first connecting frame, the first sliding block being connected to the fixed end of the first push rod; a connecting piece installed on the outside of the triangular plate, the outside of the connecting piece being provided with a receiving box; a trapezoidal table connected to the outside of the connecting piece, the top of the trapezoidal table being provided with a scraping piece, the trapezoidal table being made of rubber.
[0007] Preferably, the pushing assembly further comprises: a second push rod, the fixed end of the second push rod being installed on the top of the first connecting frame, the telescopic end of the second push rod being connected to the receiving box through a rubber gasket; a spring, the spring being installed on the bottom of the receiving box, the spring being provided with two springs and being symmetrically arranged; a limiting frame installed on the bottom of the receiving box, the limiting frame being arranged on the outside of the spring.
[0008] Preferably, the resetting assembly comprises: a fixed block installed on the inside of the second connecting frame; a third push rod, the third push rod being provided with two third push rods, the two third push rods being respectively installed on the two sides of the fixed block; a second sliding block installed on the outside of the third push rod, the second sliding block being slidingly connected to the inside of the second connecting frame.
[0009] Preferably, the resetting assembly further comprises: a fourth push rod installed on the top of the second sliding block, the top of the fourth push rod being provided with a first clamping plate; a fifth push rod installed on the top of the second connecting frame, the top of the fifth push rod being provided with a second clamping plate.
[0010] Preferably, the cooling assembly comprises: a second case installed on the outside of the third connecting frame, the inside of the second case being provided with a second motor; a second rotating shaft connected to the output end of the second motor; a second rotating drum connected to the second rotating shaft, the inside of the second rotating drum being provided with a through groove, the through groove being provided with a plurality of through grooves.
[0011] Preferably, the cooling assembly further comprises: a temperature controller installed on the inside of the second rotating drum; An outer cylinder is installed outside the temperature controller, and a second telescopic rod is installed inside the outer cylinder. A connecting plate is installed outside the second telescopic rod, and a heat-conducting plate is installed outside the connecting plate.
[0012] Preferably, the cleaning assembly comprises: A first machine case is installed outside the fourth connecting frame, and a first motor is arranged inside the first machine case. A first rotating shaft is connected with the output end of the first motor. A first rotating cylinder is connected with the first rotating shaft, and a first telescopic rod is installed outside the first rotating cylinder. A brush head is installed outside the first telescopic rod, and a plurality of first brush heads are arranged on the first telescopic rod and the first brush head.
[0013] The present application provides a heavy scale plate conveyor. 1. The heavy scale plate conveyor, by setting the push assembly at the feeding position and the discharging position, the frame plate just discharged and the frame plate about to be fed are scraped. When the frame plate just discharged contacts the scraper, the larger raw material not separated from the frame plate is separated from the frame plate by the scraper. With the movement of the triangular plate, the triangular plate guides the larger raw material and pushes the raw material that has been normally discharged to move away from the machine body, providing working space for subsequent discharging and reducing the possibility of raw material accumulation. With the movement of the frame plate to the feeding position, the scraper cleans the bottom of the frame plate to promote the dust in the feeding area to separate from the frame plate. The rubber gasket spring is provided to reserve a descending space for the scraper, avoiding the contact between the scraper and the protruding edge of the frame plate, which may cause damage to the scraper.
[0014] 2. The heavy scale plate conveyor, by setting the reset assembly, the scale plate is impacted to promote the scale plate to restore to its original state. During the transportation of the raw material, due to the large size and high temperature of the raw material, the scale plate may be slightly deformed. After long-term use, the scale plate is difficult to restore to its original state. Therefore, the reset assembly is provided to impact the scale plate at high temperature by using the first clamping plate and the second clamping plate to promote the scale plate to restore to its original state, thereby solving the above problems.
[0015] 3. The heavy scale plate conveyor, by setting the cooling assembly, the frame plate is contacted and cooled. After the reset work of the scale plate is completed, the multiple heat-conducting plates are used in turn to contact the frame plate for contact cooling. The heat-conducting plates are provided with multiple heat-conducting plates. When the heat-conducting plates are used in turn, the heat-conducting plates other than the heat-conducting plates in contact with the frame plate are in contact with the temperature controller, so that the other heat-conducting plates are in a low-temperature state.
[0016] 4、The heavy scale conveyor, when using the equipment, the body starts to drive the frame plate and the scale plate to move, and then drives the material to move. With the material unloading, the frame plate and the scale plate conveying the material contact the pushing assembly, the reset assembly, the cooling assembly, the cleaning assembly and another pushing assembly in turn to complete the unloading of the frame plate, the resetting of the scale plate, the cooling and cleaning of the frame plate. The existing equipment transports raw materials, and the raw materials move downward through the conveyor to complete the unloading work. Because the raw materials are large, the raw materials are easy to be stuck in the frame plate, and it is difficult to complete the unloading work, so the pushing assembly is arranged to scrape and push the raw materials in the frame plate, so as to solve the above problems. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the overall structure schematic diagram of the present application; Figure 2 It is the side structure schematic diagram of the present application; Figure 3 It is the connecting mechanism and processing mechanism structure schematic diagram of the present application; Figure 4 It is the pushing assembly structure schematic diagram of the present application; Figure 5 It is the side structure schematic diagram of the pushing assembly of the present application; Figure 6 It is the reset assembly structure schematic diagram of the present application; Figure 7 It is the cooling assembly structure schematic diagram of the present application; Figure 8 It is the second rotary drum sectional view of the present application; Figure 9 It is the cleaning assembly structure schematic diagram of the present application.
[0018] In the figure: 1. body; 2. frame plate; 3. scale plate; 4. connecting mechanism; 401. first connecting frame; 402. second connecting frame; 403. third connecting frame; 404. fourth connecting frame; 5. processing mechanism; 501. pushing assembly; 5011. first slider; 5012. first push rod; 5013. triangle plate; 5014. connecting piece; 5015. receiving box; 5016. trapezoidal platform; 5017. second push rod; 5018. spring; 5019. limiting frame; 502. reset assembly; 5021. fixing block; 5022. third push rod; 5023 , second slider; 5024, fourth push rod; 5025, first splint; 5026, fifth push rod; 5027, second splint; 503, cooling assembly; 5031, second chassis; 5032, second rotating shaft; 5033, second rotating drum; 5034, thermostat; 5035, outer cylinder; 5036, second telescopic rod; 5037, connecting plate; 5038, heat conducting plate; 5039, through groove; 504, cleaning assembly; 5041, first chassis; 5042, first rotating shaft; 5043, first rotating drum; 5044, first telescopic rod; 5045, brush head. DETAILED DESCRIPTION
[0019] The present invention will be described in further detail below with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are provided for purposes of illustration and description and are not intended to be exhaustive or to limit the invention to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are chosen and described to better illustrate the principles of the invention and its practical application, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for specific applications.
[0020] like Figures 1-9 As shown, the present invention provides a technical solution: comprising a body 1; Frame plate 2, frame plate 2 is installed inside the body 1, and scale plate 3 is installed on the top of frame plate 2, and multiple frame plates 2 and scale plates 3 are provided; Connecting mechanism 4 is mounted on the bottom of the body 1 and includes a first connecting frame 401, a second connecting frame 402, a third connecting frame 403, and a fourth connecting frame 404. The first connecting frame 401, the second connecting frame 402, the third connecting frame 403, and the fourth connecting frame 404 are all mounted on the bottom of the body 1. Two first connecting frames 401 are provided, and the two first connecting frames 401 are respectively disposed at both ends of the body 1. The processing mechanism 5 is connected with the connecting mechanism 4, and the processing mechanism 5 comprises two push assemblies 501, and the two push assemblies 501 are respectively installed outside the two first connecting frames 401. The push assembly 501 comprises a first push rod 5012, and the telescopic end of the first push rod 5012 is provided with a triangular plate 5013. The first push rod 5012 is used for controlling the triangular plate 5013 to move to the discharging direction.
[0021] The processing mechanism 5 further comprises: A reset assembly 502 is connected with the second connecting frame 402, and the reset assembly 502 is used for controlling the scale plate 3 to return to the original position after feeding; A cooling assembly 503 is connected with the third connecting frame 403, and the cooling assembly 503 is used for promoting the frame plate 2 to cool down after feeding; A cleaning assembly 504 is connected with the fourth connecting frame 404, and the cleaning assembly 504 is used for cleaning the frame plate 2 after feeding.
[0022] When the device is used, the machine body 1 is started, the machine body 1 drives the frame plate 2 and the scale plate 3 to move, and drives the material to move. With the material discharging, the frame plate 2 and the scale plate 3 conveyed through the material successively contact the push assembly 501, the reset assembly 502, the cooling assembly 503, the cleaning assembly 504 and the other push assembly 501, and the processing work of the frame plate 2 and the scale plate 3 is completed.
[0023] The push assembly 501 further comprises: A first sliding block 5011 is fixedly connected to the inside of the first connecting frame 401, and the first sliding block 5011 is connected with the fixed end of the first push rod 5012; A connecting piece 5014 is installed outside the triangular plate 5013, and a receiving box 5015 is installed outside the connecting piece 5014. The connecting piece 5014 is composed of an arc-shaped plate and an extension plate; A trapezoidal table 5016 is connected outside the connecting piece 5014, and a scraping piece is installed on the top of the trapezoidal table 5016. The trapezoidal table 5016 is made of rubber; A second push rod 5017 is installed at the top of the first connecting frame 401, and the telescopic end of the second push rod 5017 is connected with the receiving box 5015 through a rubber gasket; A spring 5018 is installed at the bottom of the receiving box 5015, and the spring 5018 is provided with two springs which are symmetrically arranged; A limiting frame 5019 is installed at the bottom of the receiving box 5015, and the limiting frame 5019 is arranged outside the spring 5018.
[0024] Two push components 501 are respectively arranged at the feeding position and the discharging position. When the frame plate 2 at the discharging position contacts the push component 501, the second push rod 5017 is opened, the second push rod 5017 drives the receiving box 5015, the trapezoidal table 5016 and the scraper to move upward, the scraper starts to contact the frame plate 2, and promotes the larger raw materials that have not fallen off the frame plate 2 to fall off. Subsequently, the larger raw materials move to the triangular plate 5013 through the connecting piece 5014.
[0025] The first push rod 5012 is opened to the reciprocating mode, the first push rod 5012 drives the triangular plate 5013 to move, and the raw materials move away from the push component 501 through the triangular plate 5013. Meanwhile, the triangular plate 5013 can push the raw materials to move away from the machine body 1, thereby providing a working space for the raw materials falling subsequently.
[0026] When the first push rod 5012 is in the reciprocating mode, the telescopic plate is in a state of being extruded or stretched. When the second push rod 5017 is in the open state, the receiving box 5015 pulls the spring 5018, and the spring 5018 is in a state of being stretched. When the scraper contacts the raised edge of the frame plate 2, the scraper, the trapezoidal table 5016 and the receiving box 5015 slightly drop. At this time, the rubber gasket and the spring 5018 are extruded, thereby reserving a dropping space for the scraper.
[0027] When the frame plate 2 and the scale plate 3 move to the feeding position, the push component 501 at the feeding position repeats the above work, thereby promoting the dust and impurities that move to the frame plate 2 due to feeding to fall off.
[0028] By arranging the push component 501 at the feeding position and the discharging position respectively, the frame plate 2 that has just been discharged and the frame plate 2 that is about to be fed are scraped. When the frame plate 2 that has just been discharged contacts the scraper, the larger raw materials that have not fallen off the frame plate 2 are driven by the scraper to fall off the frame plate 2. Meanwhile, the triangular plate 5013 moves to guide the larger raw materials that have fallen off, and pushes the raw materials that have normally been discharged to move away from the machine body 1, thereby providing a working space for subsequent discharging and reducing the possibility of raw material accumulation. When the frame plate 2 moves to the feeding position, the scraper cleans the bottom of the frame plate 2, thereby promoting the dust in the feeding area to fall off the frame plate 2. Moreover, the rubber gasket spring 5018 is arranged to reserve a dropping space for the scraper, thereby avoiding the contact between the scraper and the raised edge of the frame plate 2, and preventing the scraper from being damaged.
[0029] The reset component 502 comprises: A fixed block 5021 is arranged inside the second connecting frame 402; Two third push rods 5022 are arranged on both sides of the fixed block 5021; The second sliding block 5023 is installed outside the third push rod 5022 and is in sliding connection inside the second connecting frame 402; The fourth push rod 5024 is installed on the top of the second sliding block 5023, and the top of the fourth push rod 5024 is provided with the first clamping plate 5025; both the fourth push rod 5024 and the first clamping plate 5025 are provided with two and are symmetrically arranged; The fifth push rod 5026 is installed on the top of the second connecting frame 402, and the top of the fifth push rod 5026 is provided with the second clamping plate 5027; both the fifth push rod 5026 and the second clamping plate 5027 are provided with two and are symmetrically arranged.
[0030] Before using the device, the fifth push rod 5026 is turned on, the fifth push rod 5026 drives the second clamping plate 5027 to move upward, then the fourth push rod 5024 is turned on, the fourth push rod 5024 drives the first clamping plate 5025 to move upward. Then the third push rod 5022 is turned on to the reciprocating mode, the third push rod 5022 drives the second sliding block 5023, the fourth push rod 5024 and the first clamping plate 5025 to move towards the second clamping plate 5027, and the first clamping plate 5025 starts to repeatedly hit the scale plate 3. The other side of the scale plate 3 hits the second clamping plate 5027, promoting the scale plate 3 to restore to its original state.
[0031] By setting the reset assembly 502, the scale plate 3 is hit to promote the scale plate 3 to restore to its original state. During the transportation of raw materials, due to the large size and high temperature of the raw materials, the scale plate 3 is prone to slight deformation, and after long-term use, the scale plate 3 is difficult to restore to its original state. Therefore, the reset assembly 502 is set, and the first clamping plate 5025 and the second clamping plate 5027 are used to hit the scale plate 3 at high temperature to promote the scale plate 3 to restore to its original state, thereby solving the above problems.
[0032] The cooling assembly 503 comprises: The second machine case 5031 is installed outside the third connecting frame 403, and the second machine case 5031 is internally provided with a second motor; The second rotating shaft 5032 is connected with the output end of the second motor; The second rotating drum 5033 is connected with the second rotating shaft 5032, and the inside of the second rotating drum 5033 is provided with a plurality of through grooves 5039; The temperature controller 5034 is installed inside the second rotating drum 5033; The outer drum 5035 is installed outside the temperature controller 5034, and the inside of the outer drum 5035 is installed with a second telescopic rod 5036; The connecting plate 5037 is installed outside the second telescopic rod 5036, and the outer part of the connecting plate 5037 is provided with a heat conduction plate 5038. The second telescopic rod 5036, the connecting plate 5037, and the heat conduction plate 5038 are all provided with a plurality of plates and are evenly arranged.
[0033] The second motor is started, the second motor drives the second rotating shaft 5032 and the second rotating drum 5033 to rotate intermittently, the temperature controller 5034 is started, and the low temperature is gradually transmitted to the external heat conduction plate 5038 through the temperature controller 5034. With the rotation of the second rotating drum 5033, a plurality of second telescopic rods 5036 are started in turn, the second telescopic rod 5036 drives the connecting plate 5037 and the heat conduction plate 5038 to move towards the frame plate 2, the heat conduction plate 5038 contacts the frame plate 2, and the cooling work of the frame plate 2 is promoted.
[0034] The cooling assembly 503 is arranged to contact and cool the frame plate 2. After the reset work of the scale plate 3 is completed, a plurality of heat conduction plates 5038 are used in turn to contact the frame plate 2 for contact cooling, and the heat conduction plates 5038 are provided with a plurality of plates. When the heat conduction plates 5038 are used in turn, in addition to the heat conduction plates 5038 in contact with the frame plate 2, the other heat conduction plates 5038 are in contact with the temperature controller 5034, so that the other heat conduction plates 5038 are in a low temperature state.
[0035] The cleaning assembly 504 comprises: The first machine box 5041 is installed outside the fourth connecting frame 404, and the inside of the first machine box 5041 is provided with a first motor; The first rotating shaft 5042 is connected with the output end of the first motor; The first rotating drum 5043 is connected with the first rotating shaft 5042, and the outside of the first rotating drum 5043 is provided with a first telescopic rod 5044; The brush head 5045 is installed outside the first telescopic rod 5044, and the first telescopic rod 5044 and the first brush head 5045 are both provided with a plurality of plates.
[0036] Before using the equipment, the first motor is started, the first motor drives the first rotating shaft 5042 to rotate, the first rotating shaft 5042 drives the first rotating drum 5043 to rotate, a plurality of first telescopic rods 5044 are started, a plurality of first telescopic rods 5044 drive a plurality of brush heads 5045 to rotate, and a plurality of brush heads 5045 are in contact with the frame plate 2. With the rotation of the first rotating drum 5043, the first telescopic rod 5044 and the brush head 5045, the frame plate 2 is cleaned by contact.
[0037] Working principle: when using the device, turn on the machine body 1, the machine body 1 starts to drive the frame plate 2 and the scale plate 3 to move, and drive the material to move. With the discharging of the material, the frame plate 2 and the scale plate 3 of the conveying material successively contact the pushing assembly 501, the reset assembly 502, the cooling assembly 503, the cleaning assembly 504 and another pushing assembly 501, completing the processing work of the frame plate 2 and the scale plate 3.
[0038] Two pushing assemblies 501 are respectively arranged at the feeding position and the discharging position. When the frame plate 2 and the scale plate 3 at the discharging position contact the pushing assembly 501, the second push rod 5017 is turned on, the second push rod 5017 drives the receiving box 5015, the trapezoidal table 5016 and the scraper to move upward, and the scraper starts to contact the frame plate 2, promoting the larger raw materials on the frame plate 2 to fall off, and then the larger raw materials move to the triangular plate 5013 through the connecting piece 5014.
[0039] The first push rod 5012 is turned on to the reciprocating mode, the first push rod 5012 drives the triangular plate 5013 to move, and the raw materials move away from the pushing assembly 501 through the triangular plate 5013, and at the same time, the triangular plate 5013 can push the raw materials to move away from the machine body 1, providing working space for the subsequent falling raw materials.
[0040] When the first push rod 5012 is in the reciprocating mode, the telescopic plate is in the state of being extruded or stretched. When the second push rod 5017 is in the open state, the receiving box 5015 pulls the spring 5018, and the spring 5018 is in the state of being stretched. When the scraper contacts the convex edge of the frame plate 2, the scraper, the trapezoidal table 5016 and the receiving box 5015 slightly descend, and at this time, the rubber gasket and the spring 5018 are extruded, reserving the descending space for the scraper.
[0041] Before using the device, the fifth push rod 5026 is turned on, the fifth push rod 5026 drives the second clamping plate 5027 to move upward, and then the fourth push rod 5024 is turned on, the fourth push rod 5024 drives the first clamping plate 5025 to move upward. When the frame plate 2 and the scale plate 3 move to the reset assembly 502, the third push rod 5022 is turned on to the reciprocating mode, the third push rod 5022 drives the second sliding block 5023, the fourth push rod 5024 and the first clamping plate 5025 to move to the direction of the second clamping plate 5027, and the first clamping plate 5025 starts to repeatedly hit the scale plate 3, and the other side of the scale plate 3 hits the second clamping plate 5027, promoting the scale plate 3 to restore to the original state.
[0042] The second motor is started, the second motor drives the second rotating shaft 5032 and the second rotating drum 5033 to rotate intermittently, the temperature controller 5034 is started, and low temperature is gradually transmitted to the external heat conduction plate 5038 through the temperature controller 5034. With the rotation of the second rotating drum 5033, the plurality of second telescopic rods 5036 are started in turn, the second telescopic rods 5036 drive the connecting plates 5037 and the heat conduction plates 5038 to move towards the frame plate 2, the heat conduction plates 5038 are in contact with the frame plate 2, and the cooling work of the frame plate 2 is promoted.
[0043] Before using the device, the first motor is started, the first motor drives the first rotating shaft 5042 to rotate, the first rotating shaft 5042 drives the first rotating drum 5043 to rotate, a plurality of first telescopic rods 5044 are started, the plurality of first telescopic rods 5044 drive a plurality of brush heads 5045 to rotate, the plurality of brush heads 5045 are in contact with the frame plate 2, and the frame plate 2 is contacted and cleaned with the rotation of the first telescopic rods 5044 and the brush heads 5045 driven by the first rotating drum 5043.
[0044] With the movement of the frame plate 2 and the scale plate 3 to the feeding position, the pushing assembly 501 at the feeding position repeats the above work, and the dust and impurities moved to the frame plate 2 due to feeding are promoted to fall off.
[0045] Obviously, the described embodiments are only part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art and related fields without creative labor should belong to the protection scope of the present application. The structures, devices and operation methods not specifically described and explained in the present application, if not specially described and limited, are implemented according to the conventional means in the art.
Claims
1. A heavy-duty scale plate conveyor, comprising a body (1), characterized in that: A frame plate (2), the frame plate (2) being installed inside the machine body (1), and a scale plate (3) being installed on the top of the frame plate (2); A connecting mechanism (4), the connecting mechanism (4) being installed at the bottom of the body (1), the connecting mechanism (4) comprising a first connecting frame (401), a second connecting frame (402), a third connecting frame (403), and a fourth connecting frame (404); A processing mechanism (5) is connected to the connecting mechanism (4), and the processing mechanism (5) includes a pushing assembly (501). The pushing assembly (501) is installed outside the first connecting frame (401). The pushing assembly (501) includes a first push rod (5012). A triangular plate (5013) is installed at the telescopic end of the first push rod (5012). The first push rod (5012) is used to control the triangular plate (5013) to move in the discharge direction.
2. The heavy-duty scale plate conveyor according to claim 1, characterized in that: The processing mechanism (5) further comprises: A reset component (502), the reset component (502) being connected to the second connecting frame (402), and the reset component (502) being used to control the scale plate (3) to return to its original position after feeding; A cooling component (503), the cooling component (503) being connected to the third connecting frame (403), the cooling component (503) being used to promote cooling of the frame plate (2) after feeding; A cleaning component (504) is connected to the fourth connecting frame (404), and the cleaning component (504) is used to clean the frame plate (2) after feeding.
3. The heavy-duty scale plate conveyor according to claim 1, characterized in that: The push component (501) further includes: A first slider (5011), the first slider (5011) is fixedly connected to the inside of the first connecting frame (401), and the first slider (5011) is connected to the fixed end of the first push rod (5012); A connecting member (5014), the connecting member (5014) being mounted on the outside of the triangular plate (5013), and a receiving box (5015) being mounted on the outside of the connecting member (5014); A trapezoidal platform (5016) is connected to the outside of the connecting piece (5014), a scraper is installed on the top of the trapezoidal platform (5016), and the trapezoidal platform (5016) is made of rubber.
4. The heavy-duty scale plate conveyor according to claim 3, characterized in that: The push component (501) further includes: a second push rod (5017), wherein the fixed end of the second push rod (5017) is mounted on the top of the first connecting frame (401), and the telescopic end of the second push rod (5017) is connected to the receiving box (5015) via a rubber gasket; A spring (5018), the spring (5018) being installed at the bottom of the receiving box (5015), and two springs (5018) being provided and symmetrically arranged; A limiting frame (5019) is installed at the bottom of the receiving box (5015), and the limiting frame (5019) is arranged outside the spring (5018).
5. The heavy-duty scale plate conveyor according to claim 2, characterized in that: The reset component (502) includes: A fixing block (5021), the fixing block (5021) being installed inside the second connecting frame (402); A third push rod (5022), wherein two third push rods (5022) are provided, and the two third push rods (5022) are respectively installed on both sides of the fixed block (5021); A second slider (5023), the second slider (5023) is installed on the outside of the third push rod (5022), and the second slider (5023) is slidably connected to the inside of the second connecting frame (402).
6. The heavy-duty scale plate conveyor according to claim 5, characterized in that: The reset component (502) further includes: a fourth push rod (5024), the fourth push rod (5024) being mounted on the top of the second sliding block (5023), and a first clamping plate (5025) being mounted on the top of the fourth push rod (5024); A fifth push rod (5026) is mounted on the top of the second connecting frame (402), and a second clamping plate (5027) is mounted on the top of the fifth push rod (5026).
7. The heavy-duty scale plate conveyor according to claim 2, characterized in that: The cooling assembly (503) comprises: a second chassis (5031), the second chassis (5031) being mounted on the outside of the third connecting frame (403), and a second motor being mounted inside the second chassis (5031); a second rotating shaft (5032), the second rotating shaft (5032) being connected to an output end of the second motor; The second rotating drum (5033) is connected to the second rotating shaft (5032). A through slot (5039) is provided inside the second rotating drum (5033), and a plurality of through slots (5039) are provided.
8. The heavy-duty scale plate conveyor according to claim 7, characterized in that: The cooling assembly (503) further comprises: a temperature controller (5034), the temperature controller (5034) being installed inside the second rotating drum (5033); An outer cylinder (5035), the outer cylinder (5035) being installed outside the temperature controller (5034), and a second telescopic rod (5036) being installed inside the outer cylinder (5035); A connecting plate (5037) is installed on the outside of the second telescopic rod (5036), and a heat conducting plate (5038) is installed on the outside of the connecting plate (5037).
9. The heavy-duty scale plate conveyor according to claim 2, characterized in that: The cleaning component (504) includes: a first chassis (5041), the first chassis (5041) being mounted on the outside of the fourth connecting frame (404), and a first motor being provided inside the first chassis (5041); A first rotating shaft (5042), the first rotating shaft (5042) being connected to an output end of the first motor; a first rotating drum (5043), the first rotating drum (5043) being connected to the first rotating shaft (5042), and a first telescopic rod (5044) being installed on the outside of the first rotating drum (5043); A brush head (5045) is mounted on the outside of the first telescopic rod (5044), and a plurality of the first telescopic rod (5044) and the first brush head (5045) are provided.
Citation Information
Patent Citations
High-efficiency heavy apron conveyor
CN219669196U
Cited By
Horizontal hydraulic non-metal packing machine
CN121848734A