Cement mortar test mold cleaning device

By designing an automated cement sand test mold cleaning device, the problem of inefficiency of traditional cleaning methods is solved, efficient automatic cleaning of test molds is achieved, and manual operation time is reduced.

CN223197588UActive Publication Date: 2025-08-08FUJIAN MINGHONGXIANG SAND POWDER TECH CO LTD
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Patent Information

Application Number
CN202422007846.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-08-08
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

The traditional cement sand test mold cleaning method consumes a lot of manpower, is inefficient, and is time-consuming and labor-intensive.

Method used

A cement sand test mold cleaning device is designed, including a box, a feeding mechanism, a clamping mechanism and a telescopic cleaning mechanism. The PLC controller is used to coordinate the feeding, clamping and cleaning processes to realize the automatic transmission and cleaning of the test mold.

Benefits of technology

It improves cleaning efficiency, reduces manual operation time, and achieves efficient cleaning that saves time and effort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a cement mortar test mold cleaning device which is characterized in that when test molds need to be cleaned in the actual production and use process, the openings of the test molds face downwards, the test molds are placed in a box body one by one through an inlet to be stacked, and when the test molds need to be cleaned, a first rotating driving part can be operated; then one rotating shaft drives the other rotating shaft to rotate synchronously through a transmission belt, so that the supporting part of the supporting disc located at the upper part of the rotating shaft rotates to one side far away from the test mold, and the bottommost part of the stacked test mold moves to the position above the supporting disc located at the lower part of the rotating shaft; then the test mold is supported through a supporting part of a supporting disc at the lower part of the rotating shaft, then the clamping assembly is operated to fix the test mold at the lowermost part in the box body, and the telescopic cleaning mechanism is operated to extend into the test mold for cleaning after fixation is completed.
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Description

Technical Field

[0001] The utility model relates to the technical field of cement mortar test mold cleaning, in particular to a cement mortar test mold cleaning device. Background Art

[0002] Cement: A powdered, hydraulic, inorganic cementitious material. When mixed with water, it forms a slurry that can harden in air or water, and can firmly bind materials like sand and stone together.

[0003] During cement production and construction, cement needs to be tested for flexural and compressive strength. During the strength test, cement mortar specimens need to be made in accordance with national standards. After the cement mortar specimens are formed and cured at a constant temperature and humidity for 24 hours, they need to be demolded and placed in constant temperature curing water for curing. After the specimens are demolded, the cement mortar molds need to be cleaned and reused.

[0004] Due to the large number of test molds, the traditional cleaning method usually uses manual cleaning one by one. After the cleaning of a test mold is completed, the test mold needs to be manually removed from the cleaning device and placed in the next test mold that needs to be cleaned. This requires a lot of manpower, greatly reduces the cleaning efficiency, and is time-consuming and labor-intensive. Utility Model Content

[0005] (1) Technical issues to be solved

[0006] In order to solve the above-mentioned problems of the prior art, the utility model provides a cement mortar test mold cleaning device, which can transport and clean the test mold more conveniently and efficiently, so that after cleaning one test mold, it can switch to the next test mold for cleaning more quickly, thereby improving cleaning efficiency, reducing manual operation time, and saving time and effort.

[0007] (2) Technical solution

[0008] In order to achieve the above-mentioned purpose, the main technical solutions adopted by this utility model include:

[0009] A cement mortar test mold cleaning device comprises a box, a feeding mechanism, a clamping mechanism, and a telescopic cleaning mechanism, wherein the upper portion of the box is provided with an inlet, the lower portion of the box is provided with an outlet, the feeding mechanism is designed inside the box, the clamping mechanism is provided between the feeding mechanisms, the telescopic cleaning mechanism is provided below the outlet, and the clamping mechanism and the telescopic cleaning mechanism are both connected to the box;

[0010] The feeding mechanism includes two groups of alternating feeding components, one of which is oppositely arranged inside the box, and the alternating feeding components include a first rotating driving member, a transmission belt, and an alternating component. One alternating component is provided on both sides of the box, and one alternating component is connected to the other alternating component through a transmission belt. The first rotating driving member is connected to the alternating component in a driving manner.

[0011] The alternating component includes a rotating shaft and two supporting plates, the rotating shaft is rotatably connected to the box body, a supporting plate is provided on both sides of the rotating shaft, one side of the supporting plate is provided as a supporting part, and the other side of the supporting plate is provided with a discharge trough, the discharge trough on one support plate and the discharge trough on the other support plate are staggered, one rotating shaft is driven and connected to the other rotating shaft through a transmission belt, and the first rotating driving member is driven and connected to one rotating shaft.

[0012] Furthermore, the clamping mechanism includes four pressing components, and one pressing component is provided on each of the four sides of the inside of the box body. The pressing component is arranged between two support plates. The pressing component includes a first linear drive component, a first slide rod and a pressure plate. The pressure plate is slidably connected to the box body through the first slide rod, and the first linear drive component is linearly driven and connected to the pressure plate.

[0013] Furthermore, the telescopic cleaning mechanism includes a second linear drive member, a second slide rod, a vertical moving assembly and a flushing assembly. The vertical moving assembly is arranged below the outlet. The vertical moving assembly is slidingly connected to the box body through the second slide rod. The second linear drive member is linearly driven and connected to the vertical moving assembly. The flushing assembly is connected to the vertical moving assembly.

[0014] Furthermore, the vertical moving assembly includes a second rotating drive member, a screw, a lifting rail, a slider and a lifting plate. The lifting rail is slidingly connected to the box through the second slide bar, the second linear drive member is linearly driven and connected to the lifting rail, one side of the slider is slidably connected to the lifting rail, and the lifting plate is provided on the other side of the slider. The screw is passed through the middle of the slider and is rotatably connected to the lifting rail. The second rotating drive member is rotationally driven and connected to the screw, and the flushing assembly is connected to the lifting plate.

[0015] Furthermore, the flushing assembly includes a rotating drive assembly, a mounting roller, a nozzle and a water diversion assembly. The mounting roller is rotatably connected to the lifting plate, the rotating drive assembly is drivingly connected to the lower part of the mounting roller, a flow channel is provided inside the mounting roller, and a plurality of nozzles are arranged around the outer surface of the mounting roller. The nozzles are all connected to the upper part of the flow channel, and the water diversion assembly is connected to the lower part of the flow channel.

[0016] Furthermore, the water diversion assembly includes a water diversion member and a water diversion pipe, and the water diversion member is connected to the flow channel through the water diversion pipe.

[0017] Furthermore, the rotation drive assembly includes a third rotation drive member, a first gear and a second gear, the first gear is sleeved on the outer surface of the mounting roller, the second gear is meshed with the first gear, and the third rotation drive member is drivingly connected to the second gear.

[0018] Furthermore, it also includes a PLC controller, which is electrically connected to the feeding mechanism, the clamping mechanism and the telescopic cleaning mechanism respectively.

[0019] (3) Beneficial effects

[0020] The beneficial effect of the present invention is that when the test molds need to be cleaned during actual production and use, the test molds can be placed one by one inside the box through the entrance with the opening facing downward for stacking. When the test molds need to be cleaned, the first rotating drive member can be operated to drive one rotating shaft to rotate, and then one rotating shaft drives the other rotating shaft to rotate synchronously through the transmission belt, so that the supporting part of the supporting disk located on the upper part of the rotating shaft is rotated to the side away from the test mold, so that the bottom of the stacked test molds is moved to above the supporting disk located below the rotating shaft, and then the test mold is supported by the supporting part of the supporting disk below the rotating shaft, and then the clamping assembly is operated to clamp the lowest test mold in the box. The first mold is fixed, and after the fixing is completed, the telescopic cleaning mechanism is operated to extend the telescopic cleaning mechanism into the inside of the test mold for cleaning. After the cleaning is completed, the telescopic cleaning mechanism is operated to reset the telescopic mechanism, and then the first rotating drive member is operated to rotate the supporting part of the supporting disk on the upper part of the rotating shaft to the test mold, so that the supporting disk separates the cleaned test mold from the previous test mold. At the same time, the supporting part of the supporting disk at the lower part of the rotating shaft is rotated away from the outside of the test mold, and the cleaned test mold is discharged to the outside of the device through the discharge chute, thereby making it more convenient and efficient to transport and clean the test mold, so that after cleaning a test mold, it is faster to switch to the next test mold for cleaning, thereby improving cleaning efficiency, reducing manual operation time, and saving time and effort. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a schematic diagram of the overall structure of a cement mortar test mold cleaning device according to an embodiment of the present utility model;

[0022] Figure 2 This is a front view of the overall structure of a cement mortar test mold cleaning device according to an embodiment of the present utility model;

[0023] Figure 3 This is a cross-sectional view of the overall structure of a cement mortar test mold cleaning device according to an embodiment of the present utility model;

[0024] Figure 4 Schematic diagram of the feeding mechanism and clamping mechanism of the cement mortar test mold cleaning device according to an embodiment of the present utility model;

[0025] Figure 5 A schematic diagram of a telescopic cleaning mechanism of a cement mortar test mold cleaning device according to an embodiment of the present utility model;

[0026] Figure 6 A schematic diagram of a telescopic cleaning mechanism of a cement mortar test mold cleaning device according to an embodiment of the present utility model;

[0027] Figure 7 This is a schematic diagram of a rotating unloading assembly of a cement mortar test mold cleaning device according to an embodiment of the present invention;

[0028] [Description of Reference Numerals]

[0029] Test mold 1, telescopic cleaning mechanism 2, base 3, clamping mechanism 4, box body 5, alternating unloading assembly 6, water diversion pipe 201, water diversion member 202, second linear drive member 203, second slide bar 204, second rotating drive member 205, nozzle 206, mounting roller 207, lifting plate 208, screw 209, lifting rail 210, second gear 211, third rotating drive member 212, first gear 213, pressing plate 401, first linear drive member 402, first slide bar 403, transmission belt 601, support plate 602, first rotating drive member 603, unloading chute 604, support part 605, rotating shaft 606. DETAILED DESCRIPTION

[0030] In order to better explain the present invention and facilitate understanding, the present invention is described in detail below through specific implementation methods in conjunction with the accompanying drawings.

[0031] Please refer to Figures 1 to 7 As shown, a cement mortar test mold cleaning device of the present invention includes a box body 5, a feeding mechanism, a clamping mechanism 4 and a telescopic cleaning mechanism 2. The box body 5 is provided with an inlet at the top and an outlet at the bottom. The feeding mechanism is designed inside the box body 5. The clamping mechanism 4 is provided between the feeding mechanisms. The telescopic cleaning mechanism 2 is provided below the outlet. The clamping mechanism 4 and the telescopic cleaning mechanism 2 are both connected to the box body 5.

[0032] The feeding mechanism includes two groups of alternating feeding components 6, one of which is oppositely disposed inside the box body 5. The alternating feeding components 6 include a first rotating driving member 603, a transmission belt 601, and an alternating component. One alternating component is disposed on both sides of the box body 5. One alternating component is connected to the other alternating component via the transmission belt 601, and the first rotating driving member 603 is connected to one alternating component.

[0033] The alternating component includes a rotating shaft 606 and two support plates 602. The rotating shaft 606 is rotatably connected to the box body 5. A support plate 602 is provided on both sides of the rotating shaft 606. One side of the support plate 602 is provided as a support portion 605. The other side of the support plate 602 is provided with a discharge trough 604. The discharge trough 604 on one support plate 602 is staggered with the discharge trough 604 on the other support plate 602. One rotating shaft 606 is driven and connected to the other rotating shaft 606 through a transmission belt 601. The first rotating drive member 603 is driven and connected to one rotating shaft 606.

[0034] The working principle of the present invention is as follows: when the test mold 1 needs to be cleaned during actual production and use, the test molds 1 can be placed one by one inside the box 5 through the entrance with the opening facing downwards for stacking; when the test mold 1 needs to be cleaned, the first rotating drive member 603 can be operated to drive a rotating shaft 606 to rotate, and then a rotating shaft 606 drives another rotating shaft 606 to rotate synchronously through a transmission belt 601, so that the support portion 605 of the support plate 602 located above the rotating shaft 606 is rotated to the side away from the test mold 1, so that the bottom of the stacked test mold 1 moves to above the support plate 602 located below the rotating shaft 606, and then the support plate 602 below the rotating shaft 606 is rotated. The support portion 605 supports the test mold 1, and then the clamping assembly is operated to fix the test mold 1 at the bottom of the box body 5. After the fixation is completed, the telescopic cleaning mechanism 2 is operated to extend the telescopic cleaning mechanism 2 into the inside of the test mold 1 for cleaning. After the cleaning is completed, the telescopic cleaning mechanism 2 is operated to reset the telescopic mechanism, and then the first rotating drive member 603 is operated to rotate the support portion 605 of the support plate 602 on the upper part of the rotating shaft 606 to the test mold 1, so that the support plate 602 separates the cleaned test mold 1 from the previous test mold 1. At the same time, the support portion 605 of the support plate 602 on the lower part of the rotating shaft 606 is rotated away from the outside of the test mold 1, and the cleaned test mold 1 is discharged from the outside of the device through the discharge chute 604.

[0035] Furthermore, the clamping mechanism 4 includes four pressing components, and one pressing component is provided on each of the four sides of the interior of the box body 5. The pressing component is provided between two support plates 602. The pressing component includes a first linear drive member 402, a first slide rod 403 and a pressure plate 401. The pressure plate 401 is slidably connected to the box body 5 through the first slide rod 403, and the first linear drive member 402 is linearly driven and connected to the pressure plate 401.

[0036] From the above description, it can be seen that when the test mold 1 at the bottom of the box 5 needs to be cleaned, the first linear drive member 402 can be operated to make the first linear drive member 402 drive the pressure plate 401 to move, so that the test mold 1 is fixed with the cooperation of the pressure plate 401. When the pressure plate 401 moves, the movement is more stable through the first slide bar 403. After the clamping mechanism 4 fixes the test mold 1, the telescopic cleaning mechanism 2 can better clean the test mold 1 and prevent the test mold 1 from moving during the cleaning process.

[0037] Furthermore, the telescopic cleaning mechanism 2 includes a second linear drive member 203, a second slide bar 204, a vertical moving component and a flushing component. The vertical moving component is arranged below the outlet. The vertical moving component is slidingly connected to the box body 5 through the second slide bar 204. The second linear drive member 203 is linearly driven and connected to the vertical moving component, and the flushing component is connected to the vertical moving component.

[0038] From the above description, it can be seen that when the test mold 1 needs to be cleaned, the second linear drive member 203 can be operated in advance, so that the second linear drive member 203 drives the flushing component to move to the bottom of the test mold 1 through the vertical moving component, and then the vertical moving component and the flushing component are operated to extend the flushing component into the interior of the test mold 1 for flushing.

[0039] Furthermore, the vertical moving assembly includes a second rotating drive member 205, a screw 209, a lifting rail 210, a slider and a lifting plate 208. The lifting rail 210 is slidingly connected to the box body 5 through the second slide bar 204. The second linear drive member 203 is linearly driven and connected to the lifting rail 210. One side of the slider is slidably connected to the lifting rail 210. The lifting plate 208 is provided on the other side of the slider. The screw 209 is penetrated through the middle of the slider and is rotatably connected to the lifting rail 210. The second rotating drive member 205 is rotationally driven and connected to the screw 209. The flushing assembly is connected to the lifting plate 208.

[0040] From the above description, it can be seen that when the flushing component needs to be extended into the test mold 1 for cleaning, the second linear drive member 203 can be moved first, so that the second linear drive member 203 drives the flushing component to move to the bottom of the test mold 1 through the vertical moving component, and then the second rotary drive member 205 is operated to drive the screw 209 to rotate, and then the slider drives the flushing component to rise through the lifting plate 208, so that the flushing component is extended into the interior of the test mold 1 for flushing.

[0041] Furthermore, the flushing assembly includes a rotating drive assembly, a mounting roller 207, a nozzle 206 and a water diversion assembly. The mounting roller 207 is rotatably connected to the lifting plate 208, the rotating drive assembly is driven and connected to the lower part of the mounting roller 207, a flow channel is provided inside the mounting roller 207, and a plurality of nozzles 206 are arranged around the outer surface of the mounting roller 207. The nozzles 206 are all connected to the upper part of the flow channel, and the water diversion assembly is connected to the lower part of the flow channel.

[0042] From the above description, it can be seen that when the test mold 1 needs to be cleaned, the water diversion component can be operated to allow the water diversion component to introduce water into the flow channel, and then flush the inside of the test mold 1 through the nozzle 206. At the same time, the rotation drive component can be operated to drive the installation roller 207 to rotate, so that the nozzle 206 can flush the inside of the test mold 1 more fully.

[0043] Furthermore, the water diversion assembly includes a water diversion member 202 and a water diversion pipe 201 , and the water diversion member 202 is connected to the flow channel through the water diversion pipe 201 .

[0044] From the above description, it can be seen that when the test mold 1 needs to be cleaned, the water guide member 202 can be operated to allow the water guide member 202 to introduce water into the flow channel through the water guide pipe 201, and then the water in the flow channel is flushed into the interior of the test mold 1 through the nozzle 206.

[0045] Furthermore, the rotation drive assembly includes a third rotation drive member 212, a first gear 213 and a second gear 211, the first gear 213 is sleeved on the outer surface of the mounting roller 207, the second gear 211 is engaged with the first gear 213, and the third rotation drive member 212 is driven and connected to the second gear 211.

[0046] From the above description, it can be seen that when it is necessary to flush the inside of the test mold 1 more thoroughly, the third rotating drive member 212 can be operated, so that the third rotating drive member 212 drives the first gear 213 to rotate through the second gear 211, thereby causing the first gear 213 to drive the installation roller 207 to rotate, so that the nozzle 206 on the installation roller 207 can rotate and spray inside the test mold 1.

[0047] Furthermore, it also includes a PLC controller, which is electrically connected to the feeding mechanism, the clamping mechanism 4 and the telescopic cleaning mechanism 2 respectively.

[0048] From the above description, it can be seen that it is beneficial to adjust the parameters of the cement mortar test mold 1 cleaning device through the PLC controller, and it is more convenient for the operator to operate the cement mortar test mold 1 cleaning device.

[0049] Example 1

[0050] Please refer to Figures 1 to 7 A cement mortar test mold 1 cleaning device includes a box body 5, a feeding mechanism, a clamping mechanism 4 and a telescopic cleaning mechanism 2. The box body 5 is provided with an inlet at the top and an outlet at the bottom. The feeding mechanism is designed inside the box body 5. The clamping mechanism 4 is provided between the feeding mechanisms. The telescopic cleaning mechanism 2 is provided below the outlet. The clamping mechanism 4 and the telescopic cleaning mechanism 2 are both connected to the box body 5.

[0051] The feeding mechanism includes two groups of alternating feeding components 6, one of which is oppositely disposed inside the box body 5. The alternating feeding components 6 include a first rotating driving member 603, a transmission belt 601, and an alternating component. One alternating component is disposed on both sides of the box body 5. One alternating component is connected to the other alternating component via the transmission belt 601, and the first rotating driving member 603 is connected to one alternating component.

[0052] The alternating assembly includes a rotating shaft 606 and two support plates 602. The rotating shaft 606 is rotatably connected to the box body 5. A support plate 602 is provided on both sides of the rotating shaft 606. One side of the support plate 602 is provided as a support portion 605. The other side of the support plate 602 is provided with a material discharge chute 604. The material discharge chute 604 on one support plate 602 is staggered with the material discharge chute 604 on the other support plate 602. One rotating shaft 606 is driven and connected to the other rotating shaft 606 via a transmission belt 601. The first rotating driving member 603 is driven and connected to one rotating shaft 606.

[0053] The box body 5 is provided with a mounting groove for the alternate material unloading component 6, the alternate material unloading component 6 is arranged inside the mounting groove, and the rotating shaft 606 is rotatably connected to the mounting groove;

[0054] The first rotating drive member 603 uses a servo motor, which is conducive to controlling the number of rotations of the rotating shaft 606, so that the support portion 605 on the support plate 602 and the discharge chute 604 can be better rotated to a suitable position;

[0055] The clamping mechanism 4 includes four pressing assemblies, one of which is provided on each of the four sides of the interior of the box body 5. The pressing assemblies are provided between the two support plates 602. The pressing assemblies include a first linear drive member 402, a first slide bar 403, and a pressing plate 401. The pressing plate 401 is slidably connected to the box body 5 via the first slide bar 403. The first linear drive member 402 is linearly driven and connected to the pressing plate 401.

[0056] The first linear drive members 402 are all cylinders;

[0057] There are two first sliding rods 403 in the pressing assembly. The box body 5 is provided with a first sliding hole adapted to the first sliding rod 403. One first sliding rod 403 is slidably connected to the inside of one first sliding hole.

[0058] The telescopic cleaning mechanism 2 includes a second linear drive member 203, a second slide bar 204, a vertical moving assembly and a flushing assembly. The vertical moving assembly is arranged below the outlet, and the vertical moving assembly is slidably connected to the box 5 through the second slide bar 204. The second linear drive member 203 is linearly driven and connected to the vertical moving assembly, and the flushing assembly is connected to the vertical moving assembly.

[0059] The second linear driving member 203 is a hydraulic cylinder;

[0060] The box body 5 is provided with a second sliding hole adapted to the second sliding rod 204, and the second sliding rod 204 is rotatably connected to the inside of the second sliding hole;

[0061] There are two second sliding rods 204;

[0062] The vertical movement assembly includes a second rotation drive member 205, a screw 209, a lifting rail 210, a slider and a lifting plate 208. The lifting rail 210 is slidably connected to the box 5 through the second slide bar 204. The second linear drive member 203 is linearly driven and connected to the lifting rail 210. One side of the slider is slidably connected to the lifting rail 210. The lifting plate 208 is provided on the other side of the slider. The screw 209 is provided in the middle of the slider and is rotatably connected to the lifting rail 210. The second rotation drive member 205 is rotationally driven and connected to the screw 209. The flushing assembly is connected to the lifting plate 208.

[0063] A through hole is provided in the middle of the slider, and an internal thread adapted to the screw rod 209 is provided inside the through hole, and the internal thread is meshed with the screw rod 209;

[0064] The flushing assembly includes a rotation drive assembly, a mounting roller 207, a nozzle 206, and a water diversion assembly. The mounting roller 207 is rotatably connected to the lifting plate 208. The rotation drive assembly is drivingly connected to the lower portion of the mounting roller 207. A flow channel is provided inside the mounting roller 207. A plurality of nozzles 206 are arranged around the outer surface of the mounting roller 207. The nozzles 206 are all connected to the upper portion of the flow channel. The water diversion assembly is connected to the lower portion of the flow channel.

[0065] The water diversion assembly includes a water diversion member 202 and a water diversion pipe 201, and the water diversion member 202 is connected to the flow channel through the water diversion pipe 201;

[0066] The water guide member 202 adopts a water pump;

[0067] The water diversion pipe 201 is rotatably connected to the lower portion of the mounting roller 207 via a rotary seal;

[0068] The rotation drive assembly includes a third rotation drive member 212, a first gear 213, and a second gear 211. The first gear 213 is sleeved on the outer surface of the mounting roller 207. The second gear 211 is meshed with the first gear 213. The third rotation drive member 212 is drivingly connected to the second gear 211.

[0069] The third rotation driving member 212 is a motor;

[0070] The first gear 213 and the second gear 211 are both rotatably connected to the lower portion of the lifting plate 208;

[0071] It also includes a base 3, and the lower surface of the box body 5 is welded to the base 3, which is conducive to more stable operation of the device and facilitates the discharge of the cleaned test mold 1 outside the device;

[0072] It also includes a PLC controller, which is electrically connected to the feeding mechanism, the clamping mechanism 4 and the telescopic cleaning mechanism 2 respectively;

[0073] The PLC controller model is DATA-7311, and the PLC controller is electrically connected to the first linear drive member 402, the second linear drive member 203, the first rotation drive member 603, the second rotation drive member 205, the third rotation drive member 212 and the water guide member 202 respectively.

[0074] The above shows and describes the basic principles, main features and advantages of the present invention, and the standard parts used in the present invention can be purchased from the market, and special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part adopt conventional means such as mature bolts, rivets, welding, etc. in the existing technology. The machinery, parts and equipment all adopt conventional models in the existing technology, and the circuit connection adopts the conventional connection method in the existing technology, which will not be described in detail here.

[0075] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent transformations made using the contents of the present invention specification and drawings, or directly or indirectly applied in related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A cement mortar test mold cleaning device, characterized by: It includes a box body, a feeding mechanism, a clamping mechanism and a telescopic cleaning mechanism. The upper part of the box body is provided with an inlet, the lower part of the box body is provided with an outlet, the feeding mechanism is designed inside the box body, the clamping mechanism is provided between the feeding mechanisms, the telescopic cleaning mechanism is provided below the outlet, and the clamping mechanism and the telescopic cleaning mechanism are both connected to the box body; The feeding mechanism includes two groups of alternating feeding components, one of which is oppositely arranged inside the box, and the alternating feeding components include a first rotating driving member, a transmission belt, and an alternating component. One alternating component is provided on both sides of the box, and one alternating component is connected to the other alternating component through a transmission belt. The first rotating driving member is connected to the alternating component in a driving manner. The alternating component includes a rotating shaft and two supporting plates, the rotating shaft is rotatably connected to the box body, a supporting plate is provided on both sides of the rotating shaft, one side of the supporting plate is provided as a supporting part, and the other side of the supporting plate is provided with a discharge trough, the discharge trough on one support plate and the discharge trough on the other support plate are staggered, one rotating shaft is driven and connected to the other rotating shaft through a transmission belt, and the first rotating driving member is driven and connected to one rotating shaft.

2. The cement mortar test mold cleaning device according to claim 1, characterized in that: The clamping mechanism includes four pressing components, and a pressing component is arranged on each of the four sides of the inside of the box body. The pressing component is arranged between two support plates. The pressing component includes a first linear drive component, a first slide rod and a pressure plate. The pressure plate is slidably connected to the box body through the first slide rod, and the first linear drive component is linearly driven and connected to the pressure plate.

3. The cement mortar test mold cleaning device according to claim 1, characterized in that: The telescopic cleaning mechanism includes a second linear drive member, a second slide rod, a vertical moving assembly and a flushing assembly. The vertical moving assembly is arranged below the outlet. The vertical moving assembly is slidingly connected to the box body through the second slide rod. The second linear drive member is linearly driven and connected to the vertical moving assembly. The flushing assembly is connected to the vertical moving assembly.

4. The cement mortar test mold cleaning device according to claim 3, characterized in that: The vertical moving assembly includes a second rotating drive member, a screw, a lifting rail, a slider and a lifting plate. The lifting rail is slidably connected to the box through the second sliding rod. The second linear drive member is linearly driven and connected to the lifting rail. One side of the slider is slidably connected to the lifting rail. The lifting plate is provided on the other side of the slider. The screw is passed through the middle of the slider and is rotatably connected to the lifting rail. The second rotating drive member is rotationally driven and connected to the screw. The flushing assembly is connected to the lifting plate.

5. The cement mortar test mold cleaning device according to claim 4, characterized in that: The flushing assembly includes a rotating drive assembly, a mounting roller, a nozzle and a water diversion assembly. The mounting roller is rotatably connected to the lifting plate. The rotating drive assembly is drivingly connected to the lower part of the mounting roller. A flow channel is provided inside the mounting roller. Several nozzles are arranged around the outer surface of the mounting roller. The nozzles are all connected to the upper part of the flow channel, and the water diversion assembly is connected to the lower part of the flow channel.

6. The cement mortar test mold cleaning device according to claim 5, characterized in that: The water diversion assembly includes a water diversion member and a water diversion pipe, and the water diversion member is connected to the flow channel through the water diversion pipe.

7. The cement mortar test mold cleaning device according to claim 5, characterized in that: The rotation drive assembly includes a third rotation drive member, a first gear and a second gear. The first gear is sleeved on the outer surface of the mounting roller, the second gear is meshed with the first gear, and the third rotation drive member is drivingly connected to the second gear.

8. The cement mortar test mold cleaning device according to claim 1, characterized in that: It also includes a PLC controller, which is electrically connected to the feeding mechanism, the clamping mechanism and the telescopic cleaning mechanism respectively.