A gelling material storage and conveying system applied to a concrete mixing plant

By designing the gelling material storage and conveying system for rotating parts and conveying parts, the problems of multiple round trip operations and small storage volume in the prior art are solved, and automatic separation and efficient transportation between cement and cement bags are realized, and work efficiency and equipment stability are improved.

CN115649589BActive Publication Date: 2025-07-18GUODIAN DADU RIVER JINCHUAN HYDROPOWER CONSTR CO LTD
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Patent Information

Application Number
CN202211262905.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-13
Publication Date
2025-07-18
Estimated Expiration
2042-10-13

AI Technical Summary

Technical Problem

The existing gelling material conveying structure requires multiple round trip operations, and the storage volume is small, resulting in low working efficiency and inability to achieve automation.

Method used

A cementitious material storage and transportation system including rotating parts, conveying parts and auxiliary parts is designed. Cement bags are cut through cutting knives, crescent knife wraps around cement bags, conveying cement with conveyor belts, dust collection in exhaust system, and stable structural fixing equipment to realize automatic separation and efficient transportation between cement and cement bags.

Benefits of technology

Automatic separation between cement and cement bags is achieved, material storage is increased, manual round-trip operation is reduced, dust pollution is reduced, and work efficiency and equipment stability is improved.

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Abstract

The present invention discloses a gelling material storage and conveying system applied to a concrete mixing plant, which includes a fixing frame, a rotating component for cutting and collecting cement bags, a conveying component for conveying cement bags, and an auxiliary component. The rotating component includes two support rods arranged on the fixing frame, a first rotating groove opened in the upper part of the support rods, a first conveying shaft arranged in the first rotating groove, a protective cover arranged between the support rods, a plurality of cutting knives arranged in the protective cover, a vibrating bin arranged on one side of the protective cover, first circular grooves opened on both sides of the vibrating bin, and a bidirectional rotating shaft arranged in the vibrating bin. By setting the support rods, the first rotating groove, the first conveying shaft, the protective cover, the cutting knives, the vibrating bin, the first circular grooves, and the bidirectional rotating shaft, the present invention solves the problems that the gelling material needs to be operated back and forth multiple times during conveying, the storage capacity is too small to affect the working efficiency, it cannot achieve automation, and the working efficiency is reduced.
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Description

Technical Field

[0001] The present invention belongs to the technical field of the storage and transportation of cementitious materials, and particularly relates to a storage and transportation system for cementitious materials applied to a concrete mixing plant. Background Art

[0002] In modern concrete mixing plant technology, it is necessary to mix various sands, cementitious materials, and auxiliary materials to meet various requirements at the construction site. Cementitious materials account for a large proportion among them. In a concrete mixing plant, the consumption of cementitious materials is relatively large, so the storage and transportation of cementitious materials are relatively important.

[0003] The existing patent CN212331427U discloses a conveying structure for cementitious materials for foamed light soil, which includes a trolley, a shock absorption device, a lifting device, a rotating disc, a fixed top plate, and a conveying device. The shock absorption device, the lifting device, the rotating disc, the fixed top plate, and the conveying device are sequentially arranged at the placement end of the trolley from bottom to top. This device can freely adjust its posture according to the actual working environment, facilitating the transportation of cementitious materials.

[0004] Based on the retrieval of the above patent and the discovery in the existing cementitious material conveying structures in the prior art, it is found that when the above cementitious material conveying structure is applied, it can convey cementitious materials through a trolley. However, when used manually, it is necessary to push the trolley and make multiple round trips to the cementitious material point for manual feeding, which is a time-consuming process. Moreover, the storage capacity of the trolley is relatively small, consuming time and effort, and reducing the working efficiency when in use. Summary of the Invention

[0005] Aiming at the problems existing in the prior art, the present invention provides a storage and transportation system for cementitious materials applied to a concrete mixing plant, which has the capabilities of automatically conveying bagged cement, automatically cutting bagged cement, completely separating the cement from the cement bag, realizing the storage of cement and the recycling of cement bags, and solving the problems that the existing cementitious materials need multiple round-trip operations during transportation, the storage capacity is too small to affect the working efficiency, and it cannot achieve automation, thus reducing the working efficiency.

[0006] The present invention is implemented as follows. A cementitious material storage and conveying system applied to a concrete mixing plant includes a fixing frame, a rotating component for cutting and collecting cement bags, a conveying component for conveying cement bags, and an auxiliary component. The rotating component includes two support rods provided on the fixing frame, a first rotating groove opened in the upper part of the support rods, a first conveying shaft provided in the first rotating groove, a protective cover provided between the support rods, a plurality of cutting knives provided in the protective cover, a vibrating bin provided on one side of the protective cover, a first circular groove opened on both sides of the vibrating bin, a bidirectional rotating shaft provided in the vibrating bin, two clamping blocks provided on the bidirectional rotating shaft, a rotating ring provided on the bidirectional rotating shaft, a clamping groove opened inside the rotating ring, a plurality of crescent knives provided on the rotating ring, discs provided on both sides of the crescent knives, a first rotating hole opened at the center of the discs, a cylindrical piece provided on one side of the discs, an electric telescopic column provided on one side of the cylindrical piece, an electric control box provided on one side of the electric telescopic column, a forward and reverse motor provided above the electric control box, a connecting cover provided on one side of the discs, a second circular groove opened on both sides of the connecting cover, a bag removing box provided on one side of the connecting cover, a third circular groove opened on both sides of the bag removing box, a fixing block provided on one side of the bag removing box, a second rotating hole opened in the fixing block, and a telescopic hole opened below the second rotating hole. The fixing frame is fixedly connected to the support rods. The support rods are rotatably connected to the first conveying shaft. The protective cover is fixedly connected to the support rods. The protective cover is rotatably connected to the first conveying shaft. The protective cover is fixedly connected to the cutting knives. The protective cover is fixedly connected to the vibrating bin. The bidirectional rotating shaft is fixedly connected to the clamping blocks. The rotating ring is clamped with the clamping blocks. The rotating ring is fixedly connected to the crescent knives. The discs are rotatably connected to the rotating ring and do not separate. The clamping groove is slidably connected to the clamping blocks. The connecting cover is fixedly connected to the vibrating bin. The bidirectional rotating shaft is rotatably connected to the connecting cover. The connecting cover is fixedly connected to the bag removing box. The bag removing box is rotatably connected to the bidirectional rotating shaft. The bag removing box is fixedly connected to the fixing block. The fixing block is rotatably connected to the bidirectional rotating shaft. The cylindrical piece is fixedly connected to the discs. The cylindrical piece is fixedly connected to the electric telescopic column. The electric telescopic column is fixedly connected to the electric control box.

[0007] Preferably, the conveying component includes a rain cover disposed on the other side of the protective cover, a support plate disposed under the rain cover, a conveyor belt disposed in the rain cover, a second conveying shaft disposed at one end of the conveyor belt, a second pulley groove formed on the second conveying shaft, a first pulley groove formed on the first conveying shaft, brackets disposed on both sides of the second conveying shaft, second rotating grooves formed on the brackets, a base disposed under the brackets, a motor base disposed on the base, a conveying motor disposed on the motor base, a placement table disposed on one side of the second conveying shaft, and a support column disposed under the placement table. The protective cover is fixedly connected to the rain cover, the rain cover is fixedly connected to the support plate, the conveyor belt is in transmission connection with the first conveying shaft, the conveyor belt is in transmission connection with the second conveying shaft, the second conveying shaft is rotatably connected to the brackets, the brackets are fixedly connected to the base, the base is fixedly connected to the motor base, and the motor base is fixedly connected to the conveying motor.

[0008] Preferably, the auxiliary component includes an exhaust port formed in the upper part of the bag removing box, an exhaust hood disposed on the exhaust port, an exhaust hole formed on one side of the exhaust hood, an exhaust pipe disposed on one side of the exhaust hole, an exhaust fan disposed in the exhaust pipe, a plurality of fan blades disposed in the exhaust fan, a small motor disposed in the exhaust fan, a dust box disposed at one end of the exhaust pipe, a drawer disposed in the dust box, and a handle disposed on one side of the drawer. The exhaust hood is fixedly connected to the bag removing box, the exhaust hood is fixedly connected to the exhaust pipe, the exhaust pipe is fixedly connected to the exhaust fan, the exhaust pipe is fixedly connected to the dust box, the dust box is slidably connected to the drawer, and the drawer is fixedly connected to the handle.

[0009] Preferably, the auxiliary component includes a fixing plate disposed on one side of the vibrating bin, two support columns disposed on the fixing plate, and a fixing column disposed under the fixing plate. The vibrating bin is fixedly connected to the fixing plate, the fixing plate is fixedly connected to the support columns, the support columns are fixedly connected to the connecting cover, the support columns are fixedly connected to the bag removing box, and the fixing plate is fixedly connected to the fixing column.

[0010] Preferably, the auxiliary component includes a bag throwing port formed on one side of the bag removing box and a bag conveying pipe disposed on one side of the bag throwing port. The bag removing box is fixedly connected to the bag conveying pipe.

[0011] Preferably, the auxiliary component includes a bag storage box disposed under the bag conveying pipe, a plurality of universal wheels disposed at the bottom of the bag storage box, and a handle disposed on one side of the bag storage box. The bag storage box is fixedly connected to the universal wheels, and the bag storage box is fixedly connected to the handle.

[0012] Preferably, the auxiliary component includes a cement tank disposed under the vibrating bin, a material leakage port formed above the cement tank, and a sieve disposed in the material leakage port. The vibrating bin is fixedly connected to the cement tank, the sieve is fixedly connected to the material leakage port, and the material leakage port is located at the bottom of the vibrating bin.

[0013] Preferably, the auxiliary component includes a platform disposed at the bottom of the dust box, a placement hole formed on the platform, a plurality of stabilizing columns disposed below the platform, a stabilizing rod disposed between the plurality of stabilizing columns, and a plurality of stabilizing blocks disposed between the stabilizing rod and the platform. The dust box is fixedly connected to the platform, the platform is fixedly connected to the cement silo, the platform is fixedly connected to the stabilizing columns, the stabilizing columns are fixedly connected to the stabilizing rod, the stabilizing rod is fixedly connected to the stabilizing blocks, and the stabilizing blocks are fixedly connected to the platform.

[0014] Preferably, the auxiliary component includes a placement column disposed on the platform, a placement groove formed on the placement column, a stabilizing plate disposed on the placement groove, and an electric control groove formed below the stabilizing plate. The platform is fixedly connected to the placement column, the stabilizing plate is fixedly connected to the placement column, the stabilizing plate is fixedly connected to the forward and reverse motor, the electric control box is located in the electric control groove, and the electric control box is fixedly connected to the electric control groove.

[0015] Preferably, a staircase is disposed on one side of the platform, and the staircase is fixedly connected to the platform.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0017] 1. By the cooperative use of the support rod, the first conveying shaft, the protective cover, the cutting knife, the vibrating bin, the bidirectional rotating shaft, the clamping block, the rotating ring, the crescent knife, the disc, the cylindrical piece, the electric telescopic column, the electric control box, the forward and reverse motor, the connecting cover, the bag removing box, the fixing block and the auxiliary component, the protective cover is fixedly connected to the cutting knife, so that the bagged cement can be cut by the cutting knife when passing through the protective cover. The protective cover is fixedly connected to the vibrating bin, the bidirectional rotating shaft is fixedly connected to the clamping block, the rotating ring is clamped with the clamping block, and the rotating ring is fixedly connected to the crescent knife, so that the cement bag can be put on the crescent knife and wound around it. The disc is rotatably connected to the rotating ring and does not separate, and the card slot is slidably connected to the clamping block, so that the bidirectional rotating shaft can drive the rotating ring to rotate. The connecting cover is fixedly connected to the vibrating bin, the bidirectional rotating shaft is rotatably connected to the connecting cover, the connecting cover is fixedly connected to the bag removing box, and the bag removing box is rotatably connected to the bidirectional rotating shaft. The cylindrical piece is fixedly connected to the disc, so that the rotating ring and the crescent knife can be moved to the bag removing box through the electric telescopic rod, and the cement bag can be separated from the crescent knife by the flipping of the forward and reverse motor, solving the problems of the separation of the cement bag and the cement, the insertion of the bagged cement, the recycling of the cement bag, and the cement residue due to the softness of the cement bag.

[0018] 2. By providing a rain cover, a support plate, a conveyor belt, a second conveyor shaft, a bracket, and a base conveyor motor, and fixedly connecting the rain cover to the support plate, the bagged cement can be well protected. The connection between the first conveyor shaft and the second conveyor shaft by a belt enables the efficient conveyance of the bagged cement, solving the problem of large cement demand and time-consuming and laborious transportation.

[0019] 3. By providing an exhaust port, an exhaust hood, an exhaust pipe, an exhaust fan, a dust box, and a drawer, with the exhaust port located above the bag-removing box, the exhaust hood fixedly connected to the bag-removing box, and the exhaust hood fixedly connected to the exhaust pipe, dust in the air can be absorbed during bag removal in the bag-removing box and discharged through the exhaust pipe. The dust box is fixedly connected to the exhaust pipe, enabling effective collection of the dust, thus solving the problem of environmental pollution caused by dust generated during bag removal in the bag-removing box.

[0020] 4. By providing a fixing plate, support columns, and fixing columns, the connecting cover and the bag-removing box can be well fixed, improving the stability during use.

[0021] 5. By providing a bag-throwing port and a bag-sending pipe, during bag removal in the bag-removing box, the conveyance of the cement bags can be ensured, avoiding the situation of jamming due to excessive cement bags during bag removal.

[0022] 6. By providing a bag storage box, universal wheels, and a handle, the transportation and handling of cement bags can be facilitated, solving the problem of difficult handling due to excessive accumulation of cement bags.

[0023] 7. By providing a cement tank and a sieve, the cement can easily fall into the cement tank, solving the problem of large-scale cement storage.

[0024] 8. By providing a platform, placing holes, stabilizing columns, stabilizing rods, and stabilizing blocks, the cement tank can be fixed, the fixing frame can be made firm and stable, improving the stability between the cement tank and the platform and preventing it from tilting due to long-term use.

[0025] 9. By providing placing columns and stabilizing plates, the forward and reverse motor and the electric control box can be fixed, improving the stability during motor operation and preventing deviation.

[0026] 10. By providing a staircase, it is convenient to climb onto the platform for dust treatment, observing the equipment situation, and facilitating maintenance, improving the practicality and flexibility of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 is a schematic structural diagram provided by an embodiment of the present invention;

[0028] Figure 2 is a right view provided by an embodiment of the present invention;

[0029] Figure 3 is the three-dimensional sectional view at A-A in Figure 2 ;

[0030] Figure 4 is the enlarged view at A in Figure 3 ;

[0031] Figure 5 is the three-dimensional sectional view at D-D in Figure 2 ;

[0032] Figure 6 is the top view provided by the embodiment of the present invention;

[0033] Figure 7 is the Figure 6 three-dimensional sectional view at C-C in

[0034] Figure 8 is the Figure 7 enlarged view at B in

[0035] In the figure: 1, fixing frame; 21, support rod; 22, first rotating groove; 23, first conveying shaft; 24, protective cover; 25, cutting knife; 26, vibrating bin; 27, first circular groove; 28, bidirectional rotating shaft; 29, clamping block; 30, rotating ring; 31, clamping slot; 32, crescent knife; 33, disc; 34, first rotating hole; 35, cylindrical piece; 36, electric telescopic column; 37, electric control box; 38, forward and reverse motor; 39, connecting cover; 40, second circular groove; 41, bag removing box; 42, third circular groove; 43, fixing block; 44, second rotating hole; 45, telescopic hole; 51, rain cover; 52, support plate; 53, conveyor belt; 54, second conveying shaft; 55, second belt groove; 56, first belt groove; 57, bracket; 58, second rotating groove; 59, base; 60, motor base; 61, conveying motor; 62, placing table; 63, support column; 71, exhaust port; 72, exhaust hood; 73, exhaust hole; 74, exhaust pipe; 75, exhaust fan; 76, fan blade; 77, small motor; 78, dust box; 79, drawer; 80, handle; 91, fixing plate; 92, support column; 93, fixing column; 101, bag throwing port; 102, bag feeding pipeline; 111, bag storage box; 112, universal wheel; 113, handle; 121, cement tank; 122, material leakage port; 123, sieve; 131, platform; 132, placing hole; 133, stabilizing column; 134, stabilizing rod; 135, stabilizing block; 141, placing column; 142, placing groove; 143, stabilizing plate; 144, electric control groove; 151, staircase. Detailed implementation manners

[0036] To further understand the content, features and effects of the present invention, the following embodiments are exemplified and described in detail with reference to the accompanying drawings as follows.

[0037] The structure of the present invention will be described in detail below with reference to the accompanying drawings.

[0038] As Figures 1 to 8As shown in the figure, a cementitious material storage and conveying system applied to a concrete mixing plant provided by an embodiment of the present invention includes a fixed frame 1, a rotating component for cutting and collecting cement bags, a conveying component for conveying cement bags, and an auxiliary component. The rotating component includes two support rods 21 provided on the fixed frame 1, a first rotating groove 22 opened in the upper part of the support rod 21, a first conveying shaft 23 provided in the first rotating groove 22, a protective cover 24 provided between the support rods 21, a plurality of cutting knives 25 provided in the protective cover 24, a vibrating bin 26 provided on one side of the protective cover 24, a first circular groove 27 opened on both sides of the vibrating bin 26, a bidirectional rotating shaft 28 provided in the vibrating bin 26, two clamping blocks 29 provided on the bidirectional rotating shaft 28, a rotating ring 30 provided on the bidirectional rotating shaft 28, a clamping groove 31 opened inside the rotating ring 30, a plurality of crescent knives 32 provided on the rotating ring 30, discs 33 provided on both sides of the crescent knives 32, a first rotating hole 34 opened at the center of the disc 33, a cylindrical piece 35 provided on one side of the disc 33, an electric telescopic column 36 provided on one side of the cylindrical piece 35, an electric control box 37 provided on one side of the electric telescopic column 36, a forward and reverse motor 38 provided above the electric control box 37, a connecting cover 39 provided on one side of the disc 33, a second circular groove 40 opened on both sides of the connecting cover 39, a bag removing box 41 provided on one side of the connecting cover 39, a third circular groove 42 opened on both sides of the bag removing box 41, a fixing block 43 provided on one side of the bag removing box 41, a second rotating hole 44 opened in the fixing block 43, and a telescopic hole 45 opened below the second rotating hole 44. The fixed frame 1 is fixedly connected to the support rod 21, the support rod 21 is rotatably connected to the first conveying shaft 23, the protective cover 24 is fixedly connected to the support rod 21, the protective cover 24 is rotatably connected to the first conveying shaft 23, the protective cover 24 is fixedly connected to the cutting knife 25, the protective cover 24 is fixedly connected to the vibrating bin 26, the bidirectional rotating shaft 28 is fixedly connected to the clamping block 29, the rotating ring 30 is clamped to the clamping block 29, the rotating ring 30 is fixedly connected to the crescent knife 32, the disc 33 is rotatably connected to the rotating ring 30 and does not separate, the clamping groove 31 is slidably connected to the clamping block 29, the connecting cover 39 is fixedly connected to the vibrating bin 26, the bidirectional rotating shaft 28 is rotatably connected to the connecting cover 39, the connecting cover 39 is fixedly connected to the bag removing box 41, the bag removing box 41 is rotatably connected to the bidirectional rotating shaft 28, the bag removing box 41 is fixedly connected to the fixing block 43, the fixing block 43 is rotatably connected to the bidirectional rotating shaft 28, the cylindrical piece 35 is fixedly connected to the disc 33, the cylindrical piece 35 is fixedly connected to the electric telescopic column 36, and the electric telescopic column 36 is fixedly connected to the electric control box 37.

[0039] Reference Figure 1 and Figure 6, the conveying component includes a rain cover 51 provided on the other side of the protective cover 24, a support plate 52 provided under the rain cover 51, a conveyor belt 53 provided in the rain cover 51, a second conveying shaft 54 provided at one end of the conveyor belt 53, a second belt groove 55 opened on the second conveying shaft 54, a first belt groove 56 opened on the first conveying shaft 23, brackets 57 provided on both sides of the second conveying shaft 54, second rotation grooves 58 opened on the brackets 57, a base 59 provided under the brackets 57, a motor base 60 provided on the base 59, a conveying motor 61 provided on the motor base 60, a placement table 62 provided on one side of the second conveying shaft 54, and a support column 63 provided under the placement table 62. The protective cover 24 is fixedly connected to the rain cover 51, the rain cover 51 is fixedly connected to the support plate 52, the conveyor belt 53 is drivingly connected to the first conveying shaft 23, the conveyor belt 53 is drivingly connected to the second conveying shaft 54, the second conveying shaft 54 is rotatably connected to the brackets 57, the brackets 57 are fixedly connected to the base 59, the base 59 is fixedly connected to the motor base 60, and the motor base 60 is fixedly connected to the conveying motor 61.

[0040] Adopting the above solution: By providing the rain cover 51, the support plate 52, the conveyor belt 53, the second conveying shaft 54, the brackets 57, the base 59, and the conveying motor 61, and the fixed connection between the rain cover 51 and the support plate 52, the bagged cement can be well protected. The connection between the first conveying shaft 23 and the second conveying shaft 54 through the belt enables the efficient conveying of the bagged cement, solving the problem of large cement demand and time-consuming and laborious transportation.

[0041] Reference Figure 1 、 Figure 4 and Figure 5 , the auxiliary component includes an exhaust port 71 opened on the upper part of the bag-removing box 41, an exhaust hood 72 provided on the exhaust port 71, an exhaust hole 73 opened on one side of the exhaust hood 72, an exhaust pipe 74 provided on one side of the exhaust hole 73, an exhaust fan 75 provided in the exhaust pipe 74, a plurality of fan blades 76 provided in the exhaust fan 75, a small motor 77 provided in the exhaust fan 75, a dust box 78 provided at one end of the exhaust pipe 74, a drawer 79 provided in the dust box 78, and a handle 80 provided on one side of the drawer 79. The exhaust hood 72 is fixedly connected to the bag-removing box 41, the exhaust hood 72 is fixedly connected to the exhaust pipe 74, the exhaust pipe 74 is fixedly connected to the exhaust fan 75, the exhaust pipe 74 is fixedly connected to the dust box 78, the dust box 78 is slidably connected to the drawer 79, and the drawer 79 is fixedly connected to the handle 80.

[0042] Adopting the above solution: By setting the exhaust port 71, exhaust hood 72, exhaust pipe 74, exhaust fan 75, dust box 78 and drawer 79, the exhaust port 71 is arranged above the bag-removing box 41, the exhaust hood 72 is fixedly connected to the bag-removing box 41, and the exhaust hood 72 is fixedly connected to the exhaust pipe 74, it can absorb dust in the air when the bag-removing box 41 removes the bag and can be discharged through the exhaust pipe 74. The dust box 78 is fixedly connected to the exhaust pipe 74, which can effectively collect the dust, solving the problem of environmental pollution caused by dust generated when the bag-removing box 41 removes the bag.

[0043] Reference Figure 1 and Figure 4 The auxiliary components include a fixing plate 91 arranged on one side of the vibrating bin 26, two support columns 92 arranged on the fixing plate 91, and a fixing column 93 arranged at the lower part of the fixing plate 91. The vibrating bin 26 is fixedly connected to the fixing plate 91, the fixing plate 91 is fixedly connected to the support columns 92, the support columns 92 are fixedly connected to the connecting cover 39, the support columns 92 are fixedly connected to the bag-removing box 41, and the fixing plate 91 is fixedly connected to the fixing column 93.

[0044] Adopting the above solution: By setting the fixing plate 91, support columns 92 and fixing column 93, the connecting cover 39 and the bag-removing box 41 can be well fixed, improving the stability during use.

[0045] Reference Figure 1 and Figure 5 The auxiliary components include a bag-throwing port 101 opened on one side of the bag-removing box 41 and a bag-sending pipe 102 arranged on one side of the bag-throwing port 101. The bag-removing box 41 is fixedly connected to the bag-sending pipe 102.

[0046] Adopting the above solution: By setting the bag-throwing port 101 and the bag-sending pipe 102, during the bag removal of the bag-removing box 41, the transportation of the cement bag can be ensured, avoiding the situation of jamming due to excessive cement bags when the bag-removing box 41 removes the bag.

[0047] Reference Figure 1 and Figure 2 The auxiliary components include a bag storage box 111 arranged below the bag-sending pipe 102, a plurality of universal wheels 112 arranged at the bottom of the bag storage box 111, and a handle 113 arranged on one side of the bag storage box 111. The bag storage box 111 is fixedly connected to the universal wheels 112, and the bag storage box 111 is fixedly connected to the handle 113.

[0048] Adopting the above solution: By setting the bag storage box 111, universal wheels 112 and handle 113, the transportation and handling of cement bags can be facilitated, solving the problem of difficult handling due to excessive accumulation of cement bags.

[0049] Reference Figure 1 , Figure 3 andFigure 8 The auxiliary component includes a cement silo 121 provided at the lower part of the vibrating bin 26, a material leakage opening 122 opened above the cement silo 121, and a sieve 123 provided in the material leakage opening 122. The vibrating bin 26 is fixedly connected to the cement silo 121. The sieve 123 is fixedly connected to the material leakage opening 122. The material leakage opening 122 is located at the bottom of the vibrating bin 26.

[0050] Adopting the above solution: By providing the cement silo 121 and the sieve 123, the cement can easily fall into the cement silo 121, solving the problem of the need for a large amount of cement storage.

[0051] Reference Figure 1 and Figure 3 The auxiliary component includes a platform 131 provided at the bottom of the dust box 78, a placement hole 132 opened on the platform 131, a plurality of stabilizing columns 133 provided below the platform 131, a stabilizing rod 134 provided between the plurality of stabilizing columns 133, and a plurality of stabilizing blocks 135 provided between the stabilizing rod 134 and the platform 131. The dust box 78 is fixedly connected to the platform 131. The platform 131 is fixedly connected to the cement silo 121. The platform 131 is fixedly connected to the stabilizing columns 133. The stabilizing columns 133 are fixedly connected to the stabilizing rod 134. The stabilizing rod 134 is fixedly connected to the stabilizing blocks 135. The stabilizing blocks 135 are fixedly connected to the platform 131.

[0052] Adopting the above solution: By providing the platform 131, the placement hole 132, the stabilizing columns 133, the stabilizing rod 134, and the stabilizing blocks 135, the cement silo 121 can be fixed, the fixing frame 1 can be made firm and stable, the stability between the cement silo 121 and the platform 131 can be improved, and it will not be skewed due to long-term use.

[0053] Reference Figure 1 and Figure 2 The auxiliary component includes a placement column 141 provided on the platform 131, a placement groove 142 opened on the placement column 141, a stabilizing plate 143 provided on the placement groove 142, and an electric control groove 144 opened below the stabilizing plate 143. The platform 131 is fixedly connected to the placement column 141. The stabilizing plate 143 is fixedly connected to the placement column 141. The stabilizing plate 143 is fixedly connected to the forward and reverse motor 38. The electric control box 37 is located in the electric control groove 144. The electric control box 37 is fixedly connected to the electric control groove 144.

[0054] Adopting the above solution: By providing the placement column 141 and the stabilizing plate 143, the forward and reverse motor 38 can be fixed, the electric control box 37 can be fixed, the stability during the operation of the motor can be improved, and no deviation will occur.

[0055] Reference Figure 1 and Figure 2, a staircase 151 is provided on one side of the platform 131, and the staircase 151 is fixedly connected to the platform 131.

[0056] Adopting the above solution: By setting the staircase 151, it is possible to conveniently climb onto the platform 131 for dust treatment, observe the equipment conditions, and facilitate maintenance, improving the practicality and flexibility of the equipment.

[0057] The working principle of the present invention:

[0058] During use, first turn on the conveying motor 61. Since the conveyor belt 53 is connected to the first conveying shaft 23 and the second conveying shaft 54, the second conveying shaft 54 rotates following the conveying motor 61, and at the same time drives the second conveying shaft 54 to rotate through the belt. At this time, the bagged cement is pushed onto the conveyor belt 53 through the placement table 62. The rapid rotation of the conveyor belt 53 causes the bagged cement to pass through the protective cover 24. Because the protective cover 24 is fixedly connected to the cutting knife 25, when the bagged cement leaves the conveyor belt 53, it hits the cutting knife 25 under acceleration. At this time, the cutting knife 25 cuts open the bagged cement. After being cut open, the cement and the cement bag continue to fall along the protective cover 24 into the vibrating bin 26. At this time, the positive and negative motor 38 causes the bidirectional rotating shaft 28 to rotate clockwise. Because there are bumps on the bidirectional rotating shaft 28, the bumps are clamped with the rotating ring 30 on the bidirectional rotating shaft 28, and the rotating ring 30 is fixedly connected to the crescent knife 32, so the crescent knife 32 rotates clockwise following the bidirectional rotating shaft 28. When the crescent knife 32 rotates rapidly, it just intersects with the falling cement bag. Under the action of the rotational force of the crescent knife 32, the cement bag is threaded onto the crescent knife 32, and the cement leaks into the cement tank 121 through the sieve 123 below the vibrating bin 26. When the amount of cement bags on the crescent knife 3 becomes certain, the electric control box 37 controls the electric telescopic column 36 to drag the disc 33. Since the disc 33 rotates with the rotating ring 30 and does not separate, the clamping block 29 on the bidirectional rotating shaft 28 slides with the card slot 31 in the rotating ring 30, so the electric telescopic column 36 pulls the rotating ring 30 and the crescent knife 32 through the connecting cover 39 and drags them to the bag removing box 41. At this time, the positive and negative motor 38 is installed reversely, causing the crescent knife 32 to rotate counterclockwise along the bidirectional rotating shaft 28. The cement bag rotates and detaches under the counterclockwise rotation of the crescent knife 32 and falls into the bag conveying pipe 102, and then is sent to the bag storage box 111. When de-bagging in the bag removing box 41, the generated dust is discharged from the exhaust port 71 above the bag removing box 41. Under the action of the exhaust fan 75, the dust is collected in the dust box 78 through the exhaust pipe 74. When the dust box 78 is full of dust, it is possible to climb onto the platform 131 through the staircase 151 for collection and treatment, so as to realize the storage and conveying of the gelling material in sequence.

[0059] In summary, for the cementitious material storage and conveying system on the concrete batching plant, by setting the rotating component, conveying component, auxiliary component, support rod 21, first conveying shaft 23, protective cover 24, cutting knife 25, vibrating bin 26, bidirectional rotating shaft 28, clamping block 29, rotating ring 30, crescent knife 32, disc 33, cylindrical piece 35, electric telescopic column 36, electric control box 37, forward and reverse motor 38, connecting cover 39, bag removal box 41, fixing block 43, the problems that the cementitious material needs to be operated back and forth multiple times during conveying, the storage capacity is too small to affect the work efficiency, it cannot be automated, and the work efficiency is reduced are solved.

[0060] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0061] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A gelling material storage and conveying system applied to a concrete mixing plant, comprising a fixed frame (1), a rotating member for cutting and collecting cement bags, a conveying member for conveying cement bags, and an auxiliary member, characterized in that: The rotating member includes two support rods (21) provided on the fixed frame (1), a first rotating groove (22) opened in the upper part of the support rod (21), a first conveying shaft (23) provided in the first rotating groove (22), a protective cover (24) provided between the two support rods (21), a plurality of cutting knives (25) provided in the protective cover (24), a vibrating hopper (26) provided on one side of the protective cover (24), a first circular groove (27) opened on both sides of the vibrating hopper (26), a bidirectional rotating shaft (28) provided in the vibrating hopper (26), two clamping blocks (29) provided on the bidirectional rotating shaft (28), a rotating ring (30) provided on the bidirectional rotating shaft (28), a clamping groove (31) opened inside the rotating ring (30), a plurality of crescent knives (32) provided on the rotating ring (30), discs (33) provided on both sides of the crescent knife (32), a first rotating hole (34) opened at the center of the disc (33), a cylindrical piece (35) provided on one side of the disc (33), an electric telescopic column (36) provided on one side of the cylindrical piece (35), an electric control box (37) provided on one side of the electric telescopic column (36), a forward and reverse motor (38) provided above the electric control box (37), a connecting cover (39) provided on one side of the disc (33), a second circular groove (40) opened on both sides of the connecting cover (39), a bag removing box (41) provided on one side of the connecting cover (39), a third circular groove (42) opened on both sides of the bag removing box (41), a fixing block (43) provided on one side of the bag removing box (41), a second rotating hole (44) opened in the fixing block (43), and a telescopic hole (45) opened below the second rotating hole (44). The fixed frame (1) is fixedly connected to the support rod (21), the support rod (21) is rotatably connected to the first conveying shaft (23), the protective cover (24) is fixedly connected to the support rod (21), the protective cover (24) is rotatably connected to the first conveying shaft (23), the protective cover (24) is fixedly connected to the cutting knife (25), the protective cover (24) is fixedly connected to the vibrating hopper (26), the bidirectional rotating shaft (28) is fixedly connected to the clamping block (29), the rotating ring (30) is clamped to the clamping block (29), the rotating ring (30) is fixedly connected to the crescent knife (32), the disc (33) is rotatably connected to the rotating ring (30) and does not disengage, the clamping groove (31) is slidably connected to the clamping block (29), the connecting cover (39) is fixedly connected to the vibrating hopper (26), the bidirectional rotating shaft (28) is rotatably connected to the connecting cover (39), the connecting cover (39) is fixedly connected to the bag removing box (41), the bag removing box (41) is rotatably connected to the bidirectional rotating shaft (28), the bag removing box (41) is fixedly connected to the fixing block (43), the cylindrical piece (35) is fixedly connected to the disc (33), the cylindrical piece (35) is fixedly connected to the electric telescopic column (36), and the electric telescopic column (36) is fixedly connected to the electric control box (37).

2. The cementitious material storage and conveying system applied to a concrete mixing plant according to claim 1, characterized in that: The conveying component includes a rain cover (51) provided on the other side of the protective cover (24), a support plate (52) provided under the rain cover (51), a conveyor belt (53) provided in the rain cover (51), a second conveying shaft (54) provided at one end of the conveyor belt (53), a second pulley groove (55) formed on the second conveying shaft (54), a first pulley groove (56) formed on the first conveying shaft (23), brackets (57) provided on both sides of the second conveying shaft (54), second rotation grooves (58) formed on the brackets (57), a base (59) provided under the brackets (57), a motor base (60) provided on the base (59), a conveying motor (61) provided on the motor base (60), a placement table (62) provided on one side of the second conveying shaft (54), and a support column (63) provided under the placement table (62). The protective cover (24) is fixedly connected to the rain cover (51), the rain cover (51) is fixedly connected to the support plate (52), the conveyor belt (53) is drivingly connected to the first conveying shaft (23), the conveyor belt (53) is drivingly connected to the second conveying shaft (54), the second conveying shaft (54) is rotatably connected to the brackets (57), the brackets (57) are fixedly connected to the base (59), the base (59) is fixedly connected to the motor base (60), and the motor base (60) is fixedly connected to the conveying motor (61).

3. The cementitious material storage and conveying system applied to a concrete mixing plant according to claim 1, characterized in that: The auxiliary component includes an exhaust port (71) formed in the upper part of the bag-removing box (41), an exhaust hood (72) provided on the exhaust port (71), an exhaust hole (73) formed on one side of the exhaust hood (72), an exhaust pipe (74) provided on one side of the exhaust hole (73), an exhaust fan (75) provided in the exhaust pipe (74), a plurality of fan blades (76) provided in the exhaust fan (75), a small motor (77) provided in the exhaust fan (75), a dust box (78) provided at one end of the exhaust pipe (74), a drawer (79) provided in the dust box (78), and a handle (80) provided on one side of the drawer (79). The exhaust hood (72) is fixedly connected to the bag-removing box (41), the exhaust hood (72) is fixedly connected to the exhaust pipe (74), the exhaust pipe (74) is fixedly connected to the exhaust fan (75), the exhaust pipe (74) is fixedly connected to the dust box (78), the dust box (78) is slidably connected to the drawer (79), and the drawer (79) is fixedly connected to the handle (80).

4. The cementitious material storage and conveying system applied to a concrete mixing plant as claimed in claim 1, wherein: The auxiliary component includes a fixing plate (91) provided on one side of the vibrating bin (26), two support columns (92) provided on the fixing plate (91), and a fixing column (93) provided at the lower part of the fixing plate (91). The vibrating bin (26) is fixedly connected to the fixing plate (91), the fixing plate (91) is fixedly connected to the support columns (92), the support columns (92) are fixedly connected to the connecting cover (39), the support columns (92) are fixedly connected to the bag-removing box (41), and the fixing plate (91) is fixedly connected to the fixing column (93).

5. The cementitious material storage and conveying system applied to a concrete mixing plant according to claim 1, characterized in that: The auxiliary component includes a bag-throwing opening (101) formed on one side of the bag-removing box (41) and a bag-sending pipeline (102) arranged on one side of the bag-throwing opening (101), and the bag-removing box (41) is fixedly connected to the bag-sending pipeline (102).

6. The cementitious material storage and conveying system applied to a concrete batching plant according to claim 5, wherein: The auxiliary component includes a bag storage box (111) arranged below the bag-sending pipeline (102), a plurality of universal wheels (112) arranged at the bottom of the bag storage box (111), and a handle (113) arranged on one side of the bag storage box (111). The bag storage box (111) is fixedly connected to the universal wheels (112), and the bag storage box (111) is fixedly connected to the handle (113).

7. The gelling material storage and conveying system applied to a concrete mixing plant according to claim 1, characterized in that: The auxiliary component includes a cement tank (121) arranged at the lower part of the material shaking bin (26), a material leakage opening (122) formed above the cement tank (121), and a leakage net (123) arranged in the material leakage opening (122). The material shaking bin (26) is fixedly connected to the cement tank (121), the leakage net (123) is fixedly connected to the material leakage opening (122), and the material leakage opening (122) is located at the bottom of the material shaking bin (26).

8. The cementitious material storage and conveying system applied to a concrete mixing plant according to claim 3, characterized in that: The auxiliary component includes a platform (131) arranged at the bottom of the dust box (78), a placement hole (132) formed on the platform (131), a plurality of stabilizing columns (133) arranged below the platform (131), a stabilizing rod (134) arranged between the plurality of stabilizing columns (133), and a plurality of stabilizing blocks (135) arranged between the stabilizing rod (134) and the platform (131). The dust box (78) is fixedly connected to the platform (131), the platform (131) is fixedly connected to the cement tank (121), the platform (131) is fixedly connected to the stabilizing columns (133), the stabilizing columns (133) are fixedly connected to the stabilizing rod (134), the stabilizing rod (134) is fixedly connected to the stabilizing blocks (135), and the stabilizing blocks (135) are fixedly connected to the platform (131).

9. The gelling material storage and conveying system applied to a concrete mixing plant as described in claim 8, characterized in that: The auxiliary component includes a placement column (141) arranged on the platform (131), a placement groove (142) formed on the placement column (141), a stabilizing plate (143) arranged on the placement groove (142), and an electric control groove (144) formed below the stabilizing plate (143). The platform (131) is fixedly connected to the placement column (141), the stabilizing plate (143) is fixedly connected to the placement column (141), the stabilizing plate (143) is fixedly connected to the forward and reverse motor (38), the electric control box (37) is located in the electric control groove (144), and the electric control box (37) is fixedly connected to the electric control groove (144).

10. A cementitious material storage and conveying system applied to a concrete mixing plant as claimed in claim 8, characterized in that: A staircase (151) is arranged on one side of the platform (131), and the staircase (151) is fixedly connected to the platform (131).

Citation Information

Patent Citations

  • Mixing conveying device

    CN106144448A

  • Cement conveying auxiliary device in cement concrete mixing station

    CN212862179U