Concrete curing device with waste water recycling mechanism

By introducing a wastewater recycling mechanism into the concrete curing device and utilizing the spray assembly and mobile box design, the problem of easy clogging of the filter screen is solved, enabling convenient cleaning and replacement, and improving the maintenance efficiency and service life of the device.

CN223671502UActive Publication Date: 2025-12-16ZHEJIANG KAIYE MUNICIPAL GARDEN CONSTR CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202423033180.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-12-16
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

The filters in existing concrete curing devices are prone to clogging and are difficult to disassemble, making cleaning and replacement challenging.

Method used

A concrete curing device with a wastewater recycling mechanism was designed, including a spray assembly, a drain pipe, a filter box, and a movable box. After water is sprayed by the spray assembly, the wastewater enters the filter box. When impurities accumulate, the movable box can move along the length of the filter box for easy cleaning and replacement.

Benefits of technology

It enables convenient cleaning and replacement of the filter screen, improves the maintenance efficiency of the device, reduces the accumulation of impurities, and extends the service life of the device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223671502U_ABST
    Figure CN223671502U_ABST
Patent Text Reader

Abstract

The concrete curing device comprises a curing box and a spraying assembly, the bottom of the curing box communicates with a drainage pipe, the other end of the drainage pipe communicates with a filtering box, a moving box is connected into the filtering box, the top of the moving box is open, a plurality of filtering holes are formed in the bottom of the moving box, and the drainage pipe is arranged above the moving box; a moving opening is formed in the filter box in the length direction of the filter box, the moving box is slidably connected into the filter box and the moving opening in the length direction of the filter box, the filter box is connected with a locking assembly, and the locking assembly is used for locking the moving box into the filter box. The locking assembly unlocks the moving box from the filter box, so that the moving box can move in the length direction of the filter box conveniently, the moving box is far away from the filter box, impurities in the moving box can be cleaned conveniently, the moving box is convenient to disassemble and assemble, and then the moving box is convenient to replace or clean.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the field of concrete detection equipment, and in particular to a concrete curing device with a wastewater recycling mechanism. BACKGROUND

[0002] In the field of construction, thermal insulation and waterproofing engineering is a crucial part. Building roofs usually use concrete pouring as the base layer, and add thermal insulation and waterproof layers. In modern construction processes, the quality of concrete is strictly controlled, and the performance of concrete needs to be tested before it can be formally put into use. When testing concrete test pieces, the concrete test pieces need to be placed in a concrete curing box for curing.

[0003] Chinese patent CN116373091A discloses a concrete curing device, which includes a box body, a placing box is arranged inside the box body, and an adjusting and fixing mechanism is arranged between the two placing boxes and the box body. The adjusting and fixing mechanism includes a sleeve plate, a pin plate, and a bidirectional threaded rod. The number of sleeve plates and pin plates is two, the sleeve plate is sleeved on the outer wall of the pin plate, the bidirectional threaded rod penetrates through one end of the two sleeve plates, and the outer wall of the bidirectional threaded rod is rotatably connected to the two sleeve plates through bearings. A recovery tank is fixedly installed at the bottom end of the box body, a leakage opening is formed in communication between the top end of the recovery tank and the bottom end of the box body, a filter screen is fixedly installed on the inner wall of the leakage opening, and a slope is fixedly installed on the inner wall bottom of the box body.

[0004] According to the related technology described above, a large amount of impurities can accumulate on the top of the filter screen after long-term use, which may block the filter screen. In addition, the filter screen is not easy to disassemble, which makes it inconvenient to clean and replace the filter screen. Practical new type content

[0005] In order to make the disassembly of the mobile box more convenient, facilitate cleaning or replacing the mobile box, the present application provides a concrete curing device with a wastewater recycling mechanism.

[0006] The concrete curing device with a wastewater recycling mechanism provided by the present application adopts the following technical scheme:

[0007] The utility model provides a concrete curing device with wastewater recycling mechanism, including curing box, spray subassembly, the spray subassembly is located in the curing box, the bottom of curing box is connected with drain pipe, the other end of drain pipe is connected with filter box, be connected with mobile box in filter box, the top of mobile box is open, the bottom of mobile box is provided with a plurality of filter holes, drain pipe is located above mobile box, filter box is along the length direction of it and is provided with mobile mouth, the length direction of mobile mouth is consistent with the width direction of filter box, mobile box is connected in filter box and mobile mouth along the length direction of filter box and is connected in the sliding, filter box is connected with locking assembly, locking assembly is used to lock mobile box in filter box.

[0008] Through adopting the technical scheme, when in use, the spray subassembly sprays water to the concrete blocks in the curing box, the wastewater is discharged from the curing box through the drain pipe and enters the filter box, the wastewater enters the mobile box and passes through the filter holes, so as to reduce the impurities in the wastewater, when the impurities are accumulated in the mobile box, the locking assembly unlocks the mobile box from the filter box, so as to facilitate the movement of the mobile box along the length direction of the filter box, so that the mobile box is away from the filter box, so as to facilitate the cleaning of the impurities in the mobile box, the mobile box is convenient to disassemble and assemble, and thus the replacement or cleaning of the mobile box is facilitated.

[0009] Optionally, the filter box is provided with a connecting port along the length direction thereof and away from one end of the mobile port, the length direction of the connecting port is consistent with the width direction of the filter box, and the mobile box is connected in the sliding along the length direction thereof in the connecting port, when in use, the mobile box is embedded in the connecting port and the mobile port at the two ends thereof respectively along the length direction thereof, a mounting groove is formed in the inner wall of one end of the connecting port along the vertical direction, the length direction of the mounting groove is consistent with the vertical direction, the locking assembly comprises a first spring and a locking block, the length direction of the first spring is consistent with the vertical direction, one end of the first spring is connected to the inner wall of the mounting groove, the other end of the first spring is connected to the locking block, and the locking block is connected in the sliding to the mounting groove along the vertical direction, one end of the mobile box is provided with a locking groove for embedding the locking block, and when in use, the locking block is embedded in the locking groove.

[0010] Through adopting the technical scheme, when the mobile box is embedded in the connecting port, the locking block is extruded by the mobile box and embedded in the mounting groove, the locking block extrudes the first spring and makes the first spring deform, so as to facilitate the embedding of the mobile box in the connecting port, when the mobile box is embedded in the connecting port, the mounting groove and the locking groove are communicated, the first spring restores the shape and pushes the locking block to be connected in the sliding to the mounting groove along the vertical direction, and drives the locking block to be embedded in the locking groove, so as to stably connect the mobile box in the filter box.

[0011] Optionally, the installation groove is provided with a sliding hole away from the inner wall of the filter box on one side, the length direction of the sliding hole is consistent with the vertical direction, the locking block is connected with a pushing block, the length direction of the pushing block is consistent with the length direction of the filter box, and the pushing block is slidingly connected in the sliding hole in the vertical direction.

[0012] By adopting the above technical scheme, when the moving box is disassembled, the pushing block is pushed in the vertical direction, the pushing block is slidingly connected in the sliding hole in the vertical direction, the pushing block drives the locking block away from the locking groove, and thus one end of the moving box is away from the connecting port, the moving box is convenient to take out from the filter box, and the moving box is more convenient to disassemble and assemble, and thus the cleaning and replacement of the moving box are facilitated.

[0013] Optionally, a drainage hole is formed in the bottom end of the inner wall on one side of the maintenance box, a drainage pipe is in communication with the maintenance box through the drainage hole, a guide plate is connected in the maintenance box, the guide plate is connected with the inner wall of the maintenance box on the whole side, one end of the guide plate is connected with the inner wall of the maintenance box along the length direction of the guide plate, and the other end of the guide plate is inclinedly arranged towards the side close to the drainage pipe, and the guide plate is used for guiding the wastewater into the drainage pipe.

[0014] By adopting the above technical scheme, when the spraying assembly sprays the concrete blocks in the maintenance box, the wastewater drops to the guide plate and moves along the guide plate, enters the drainage pipe through the drainage hole, the guide plate is additionally arranged, and thus the wastewater is accelerated to drain out of the maintenance box, and the wastewater collection rate is improved.

[0015] Optionally, two baffle plates are arranged on the top of the guide plate, the length direction of the baffle plate is consistent with the length direction of the guide plate, the two baffle plates are distributed on the two sides of the drainage hole along the width direction of the guide plate, the bottom of the baffle plate is in contact with the guide plate, and the baffle plate is in contact with the inner wall of the maintenance box along the length direction of the baffle plate and close to the end of the drainage hole.

[0016] By adopting the above technical scheme, when the wastewater enters the drainage pipe along the guide plate, part of the impurities is easy to accumulate at the lowest part of the guide plate, the baffle plate is additionally arranged, and thus the impurities accumulated at the lowest part of the guide plate are prevented from entering the drainage pipe along with the wastewater when the wastewater flows through the guide plate, and the impurities entering the filter box are reduced.

[0017] Optionally, cleaning holes are formed in the inner walls on the two sides of the guide plate along the width direction of the guide plate, the baffle plate is connected with a moving rod away from the other baffle plate, the length direction of the moving rod is consistent with the width direction of the guide plate, the moving rod corresponds to the cleaning hole in a one-to-one manner, the moving rod passes through and is slidingly connected in the cleaning hole along the length direction of the moving rod, the moving rod is sleeved with a sealing block, the sealing block is embedded in the cleaning hole, the sealing block is detachably connected with the maintenance box, and the sealing block is used for sealing the cleaning hole.

[0018] By adopting the technical scheme, when impurities are accumulated between the baffle and the inner wall of the curing box, the sealing block is disassembled from the curing box, and the sealing block is moved along the width direction of the guide plate, so that the sealing block is away from the cleaning hole, and the moving rod and the baffle are moved, the baffle pushes the impurities, so that the impurities are discharged from the curing box through the cleaning hole, thereby reducing the impurities accumulated in the curing box.

[0019] Optionally, the inner wall of the curing box is connected with two limiting blocks, the length direction of the limiting block is consistent with the width direction of the guide plate, the limiting block is respectively arranged on both sides of the drainage opening along the width direction of the guide plate, the baffle is provided with a limiting hole, and the limiting block passes through the limiting hole along the length direction and is slidably connected in the limiting hole.

[0020] By adopting the technical scheme, when the baffle is moved along the width direction of the guide plate, the limiting block is slidably connected in the limiting hole along the width direction of the guide plate, the limiting block and the limiting hole limit the moving direction of the baffle, so that the baffle is stably moved along the predetermined direction, and the cleaning effect of the baffle is improved.

[0021] Optionally, the curing box is connected with a collecting box on both sides along the width direction of the guide plate, the collecting box is provided with an opening at the top, the collecting box corresponds to the cleaning hole one by one, and the collecting box is arranged below the cleaning hole.

[0022] By adopting the technical scheme, when the impurities accumulated in the curing box are cleaned, the baffle is moved along the width direction of the guide plate, and the impurities are pushed through the cleaning hole and into the collecting box, so that the impurities are collected.

[0023] In summary, the present application has at least one of the following beneficial technical effects:

[0024] 1. In use, the spraying assembly sprays water to the concrete blocks in the curing box, the waste water is discharged from the curing box through the drain pipe and enters the filter box, the waste water enters the moving box and passes through the filter hole, thereby reducing the impurities in the waste water, when the impurities are accumulated in the moving box, the locking assembly unlocks the moving box from the filter box, thereby facilitating the movement of the moving box along the length direction of the filter box, so that the moving box is away from the filter box, thereby facilitating the cleaning of the impurities in the moving box, the moving box is convenient to disassemble and assemble, and the moving box is convenient to replace or clean.

[0025] 2. In installation, when the moving box is embedded in the connecting port, the locking block is embedded in the installation groove under the extrusion of the moving box, the locking block extrudes the first spring, and the first spring is deformed, thereby facilitating the embedding of the moving box in the connecting port, when the moving box is embedded in the connecting port, the installation groove is communicated with the locking groove, the first spring restores the shape and pushes the locking block to be slidably connected in the installation groove along the vertical direction, and drives the locking block to be embedded in the locking groove, thereby stably connecting the moving box in the filter box.

[0026] 3. When disassembling the moving box, the pushing block is pushed in the vertical direction, so that the pushing block is slidably connected in the vertical direction in the sliding hole, the pushing block drives the locking block away from the locking groove, so that one end of the moving box is away from the connecting port, the moving box is taken out of the filter box, the disassembly of the moving box is more convenient, and the cleaning and replacement of the moving box are facilitated. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 is a perspective view of the embodiment.

[0028] Figure 2 is a top view of the embodiment.

[0029] Figure 3 is a sectional view of the embodiment in A-A direction. Figure 2

[0030] Figure 4 is a sectional view of the embodiment in B-B direction. Figure 2

[0031] Figure 5 is an enlarged view of part C in the embodiment. Figure 3

[0032] Figure 6 is an enlarged view of part D in the embodiment. Figure 3

[0033] Figure 7 is an enlarged view of part E in the embodiment. Figure 3

[0034] Reference signs: 100, maintenance box; 110, support frame; 120, drainage port; 130, drainage pipe; 131, first valve; 140, guide plate; 150, baffle; 151, through hole; 152, limiting hole; 153, moving rod; 160, cleaning hole; 170, limiting block; 180, sealing block; 181, first block; 182, second block; 190, collection box; 200, spraying assembly; 210, water supply pipe; 220, water outlet pipe; 230, spray head; 300, filter box; 310, recovery pipe; 320, moving port; 330, connecting port; 331, mounting groove; 340, water retaining ring; 350, sealing layer; 360, sliding hole; 370, second magnetic block; 400, moving box; 410, filter hole; 420, locking groove; 430, mounting plate; 431, first magnetic block; 432, handle; 500, locking assembly; 510, first spring; 520, locking block; 521, pushing block. DETAILED DESCRIPTION

[0035] The application will be further described in detail below with reference to the accompanying drawings. Figures 1-7 The application will be further described in detail below with reference to the accompanying drawings.​​​​​

[0036] The embodiment of the present application discloses a concrete curing device with wastewater recycling mechanism. Figure 1 and Figure 2 The concrete curing device with wastewater recycling mechanism comprises a curing box 100, and the curing box 100 is vertically arranged.

[0037] Referring to Figure 1 and Figure 3 , the curing box 100 is connected with a spraying assembly 200 and a support frame 110, and the spraying assembly 200 is arranged at the top end of the curing box 100. The support frame 110 is horizontally arranged, and two support frames 110 are sequentially and spacedly arranged in the curing box 100 in the vertical direction, and the support frame 110 is arranged below the spraying assembly 200.

[0038] Referring to Figure 2 and Figure 3 , the curing box 100 is provided with a drainage port 120 in the inner wall of one end in the length direction of the curing box 100, and the curing box 100 is communicated with a drainage pipe 130, and the drainage pipe 130 is communicated with the curing box 100 through the drainage port 120. The other end of the drainage pipe 130 is communicated with a filter box 300, the filter box 300 is vertically arranged, and the drainage pipe 130 is communicated with the top end of the filter box 300. The drainage pipe 130 is connected with a first valve 131, the first valve 131 is used for controlling the opening and closing of the drainage pipe 130, the bottom end of the filter box 300 is communicated with a recycling pipe 310, and the recycling pipe 310 is used for guiding the wastewater in the filter box 300 into the next processing process.

[0039] Referring to Figure 3 and Figure 4 , the filter box 300 is provided with a moving port 320 in one end in the length direction of the filter box 300, and the filter box 300 is provided with a connecting port 330 in the other end. The length direction of the moving port 320 is consistent with that of the connecting port 330, and the length direction of the moving port 320 is consistent with the width direction of the filter box 300. The filter box 300 is slidably connected with a moving box 400, the moving box 400 is horizontally arranged, the length direction of the moving box 400 is consistent with that of the filter box 300, and the width direction of the moving box 400 is consistent with that of the filter box 300. The top of the moving box 400 is provided with an opening, and the bottom of the moving box 400 is provided with a plurality of filter holes 410. The moving box 400 is slidably connected with the filter box 300 and the moving port 320 in the length direction of the filter box 300.

[0040] Referring to Figure 3When in use, the moving box 400 is in contact with the inner wall of the corresponding side of the filter box 300 along the width direction of the moving box 400, and the moving box 400 is embedded in the moving port 320 and the connecting port 330 along the length direction of the moving box 400. The filter box 300 is connected with the locking assembly 500, and the locking assembly 500 is used for locking the moving box 400 in the filter box 300. When the moving box 400 is stacked with impurities, the locking assembly 500 unlocks the moving box 400 from the filter box 300, so that the moving box 400 moves away from the filter box 300 along the length direction of the moving box 400, thereby facilitating cleaning or replacing the moving box 400.

[0041] With reference to Figure 1 and Figure 3 The spraying assembly 200 comprises a water supply pipe 210, a water outlet pipe 220 and a plurality of spray heads 230. The length direction of the water outlet pipe 220 is consistent with the length direction of the curing box 100. The spray heads 230 are in communication with the water outlet pipe 220. The plurality of spray heads 230 are sequentially and spacedly distributed on the periphery of the water outlet pipe 220 along the length direction of the water outlet pipe 220, and the water outlets of the spray heads 230 are arranged towards the support frame 110. The water supply pipe 210 is in communication with the top of the water outlet pipe 220, and is used for inputting water into the water outlet pipe 220.

[0042] With reference to Figure 3 The curing box 100 is connected with a guide plate 140. The width direction of the guide plate 140 is consistent with the width direction of the curing box 100, and the periphery of the guide plate 140 is connected with the inner wall of the curing box 100. One end of the guide plate 140 along the length direction of the guide plate 140 is connected with the inner wall of the curing box 100 at one end of the curing box 100 along the length direction of the curing box 100. The other end of the guide plate 140 is inclinedly arranged towards the side close to the water outlet 120, and the lowest part of the guide plate 140 is arranged below the water outlet 120. The guide plate 140 is added to accelerate the speed of the waste water out of the curing box 100.

[0043] With reference to Figure 3 and Figure 4 Two baffle plates 150 are slidably connected with the top of the guide plate 140. A plurality of through holes 151 are formed in one side of the baffle plate 150 along the width direction of the guide plate 140, and the depth direction of the through holes 151 is consistent with the width direction of the guide plate 140. The bottom of the baffle plate 150 is in contact with the top of the guide plate 140, the length direction of the baffle plate 150 is consistent with the length direction of the guide plate 140, and the width direction of the baffle plate 150 is consistent with the width direction of the guide plate 140. One end of the baffle plate 150 along the length direction of the baffle plate 150 is in contact with the inner wall of the curing box 100 close to the water outlet 120. The two baffle plates 150 are spacedly distributed on both sides of the water outlet 120 along the width direction of the guide plate 140. The side walls on both sides of the curing box 100 along the width direction are each provided with a cleaning hole 160, and the cleaning hole 160 corresponds to the baffle plate 150. The baffle plate 150 is slidably connected with the guide plate and the cleaning hole 160 along the width direction of the guide plate 140.

[0044] With reference to Figure 4 And Figure 5 The maintenance box 100 is connected with two limiting blocks 170 along the length direction thereof and close to an inner wall of the water outlet 120, the two limiting blocks 170 are respectively arranged on both sides of the water outlet 120 along the width direction of the maintenance box 100, and the limiting block 170 is provided as a dovetail block.

[0045] With reference to Figure 4 The movable rod 153 is connected with the other side of the baffle 150 away from the baffle 150, the length direction of the movable rod 153 is consistent with the width direction of the guide plate 140, the movable rod 153 corresponds to the cleaning hole 160 one by one, and the end of the movable rod 153 away from the baffle 150 penetrates and is slidably connected in the cleaning hole 160 along the length direction thereof. The movable rod 153 is fixedly sleeved with a sealing block 180, the sealing block 180 comprises a first block 181 and a second block 182, the first block 181 is embedded in the cleaning hole 160, and the peripheral side of the first block 181 is in contact with the inner wall of the cleaning hole 160. The second block 182 is connected to the end of the first block 181 away from the baffle 150, the side close to the first block 182 is in contact with the outer wall of the maintenance box 100, and the second block 182 is detachably connected to the maintenance box 100 through bolts, the bolts penetrate the second block 182 along the width direction of the maintenance box 100 and are screw-connected to the side wall of the maintenance box 100. The maintenance box 100 is connected with a collecting box 190 on both sides of the outer wall along the width direction of the guide plate 140, the collecting box 190 corresponds to the cleaning hole 160 one by one, the collecting box 190 is arranged below the cleaning hole 160, and the top of the collecting box 190 is provided with an opening. When impurities are accumulated at the lowest part of the guide plate 140, the sealing block 180 is detached from the maintenance box 100, the movable rod 153 is moved along the length direction thereof, so that the baffle 150 is moved along the width direction of the guide plate 140, the baffle 150 pushes the impurities to pass through the cleaning hole 160 and enter the collecting box 190, so as to reduce the impurities in the maintenance box 100.

[0046] With reference to Figure 3 And Figure 6 The filter box 300 is connected with a water retaining ring 340, the water retaining ring 340 is provided as a square ring, and the water retaining ring 340 is arranged above the moving box 400.

[0047] With reference to Figure 6 And Figure 7The connecting port 330 and the moving port 320 are connected with the sealing layer 350. The connecting port 330 is provided with the mounting slot 331 in the inner wall of the vertical direction, the length direction of the mounting slot 331 is consistent with the vertical direction, the locking assembly 500 is provided with two, and the two locking assemblies 500 correspond to the mounting slot 331 one by one. The locking assembly 500 comprises the first spring 510 and the locking block 520, the length direction of the first spring 510 is consistent with the vertical direction, one end of the first spring 510 is connected to the inner wall of the mounting slot 331, the other end of the first spring 510 is connected to the locking block 520, and the locking block 520 is connected to the mounting slot 331 in the vertical direction. The moving box 400 is provided with the locking slot 420 in the length direction of the top and the bottom of one end, the depth direction of the locking slot 420 is consistent with the vertical direction, the locking block 520 corresponds to the locking slot 420 one by one. In use, the locking block 520 is embedded in the locking slot 420.

[0048] Referring to Figure 6 The filtering box 300 is provided with the sliding hole 360 in the length direction of the side wall of one end, the length direction of the sliding hole 360 is consistent with the vertical direction, the sliding hole 360 corresponds to the mounting slot 331 one by one, and the sliding hole 360 is communicated with the mounting slot 331. The locking block 520 is connected with the pushing block 521 in the length direction of one end, the length direction of the pushing block 521 is consistent with the length direction of the filtering box 300, the pushing block 521 passes through the sliding hole 360 in the length direction, and the pushing block 521 is connected to the sliding hole 360 in the vertical direction. When the moving box 400 is disassembled, the pushing block 521 is moved, so that the locking block 520 is moved in the vertical direction and away from the locking slot 420, so that the moving box 400 is away from the filtering box 300, and the moving box 400 is replaced or cleaned.

[0049] Referring to Figure 3 And Figure 7 The moving box 400 is connected with the mounting plate 430 away from the locking slot 420, the length direction of the mounting plate 430 is consistent with the width direction of the moving box 400, the first magnetic block 431 is embedded close to the end of the moving box 400, the second magnetic block 370 is embedded in the length direction of the side wall of the filtering box 300, and the second magnetic block 370 is arranged at one end of the filtering box 300 provided with the moving port 320. When the mounting plate 430 contacts with the side wall of the filtering box 300, the first magnetic block 431 and the second magnetic block 370 are attracted to each other. The handle 432 is connected to the end of the mounting plate 430 away from the moving box 400. The mounting plate 430 and the filtering box 300 are connected through the first magnetic block 431 and the second magnetic block 370, so that the moving box 400 is stably connected in the filtering box 300.

[0050] The implementation principle of the concrete curing device with the wastewater recycling mechanism is as follows: when in use, the spraying assembly 200 sprays water to the concrete block placed on the support frame 110, the wastewater drops on the guide plate 140 and moves into the drain pipe 130 along the guide plate 140, the wastewater enters the filter box 300 through the drain pipe 130, and the wastewater enters the moving box 400, the wastewater passes through the filter holes 410, and the impurities in the wastewater are reduced under the filtering effect of the filter holes 410, and the impurities are accumulated in the moving box 400. When the moving box 400 has impurities, the drain pipe 130 is closed through the first valve 131. The pushing block 521 is pushed in the vertical direction, the pushing block 521 is slidably connected in the vertical direction in the sliding hole 360, the locking block 520 moves in the vertical direction and away from the locking groove 420 following the pushing block 521, so that the moving box 400 is detached from the filter box 300, and the moving box 400 is convenient to clean and replace.

[0051] The above are preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A concrete curing device with wastewater recycling mechanism, comprising a curing box (100), a spraying assembly (200) arranged in the curing box (100), and a drain pipe (130) communicated with the bottom of the curing box (100), wherein the other end of the drain pipe (130) is communicated with a filter box (300), characterized in that: The filter box (300) is connected with a moving box (400), the moving box (400) is provided with an opening at the top, a plurality of filter holes (410) are formed in the bottom of the moving box (400), the drain pipe (130) is arranged above the moving box (400), the filter box (300) is provided with a moving opening (320) along the length direction, the length direction of the moving opening (320) is consistent with the width direction of the filter box (300), the moving box (400) is slidably connected in the filter box (300) and the moving opening (320) along the length direction of the filter box (300), and the filter box (300) is connected with a locking assembly (500).

2. A concrete curing apparatus with a waste water recovery mechanism as claimed in claim 1 wherein: The filter box (300) is provided with a connecting opening (330) along the length direction and away from one end of the moving opening (320), the length direction of the connecting opening (330) is consistent with the width direction of the filter box (300), the moving box (400) is slidably connected in the connecting opening (330) along the length direction, in use, the moving box (400) is embedded in the connecting opening (330) and the moving opening (320) along the length direction of the moving box (400) respectively, a mounting groove (331) is formed in the inner wall of one end of the connecting opening (330) along the vertical direction, the length direction of the mounting groove (331) is consistent with the vertical direction, the locking assembly (500) comprises a first spring (510) and a locking block (520), the length direction of the first spring (510) is consistent with the vertical direction, one end of the first spring (510) is connected to the inner wall of the mounting groove (331), the other end of the first spring (510) is connected to the locking block (520), the locking block (520) is slidably connected in the mounting groove (331) along the vertical direction, one end of the moving box (400) is provided with a locking groove (420) for embedding the locking block (520) along the vertical direction, in use, the locking block (520) is embedded in the locking groove (420).

3. A concrete curing apparatus with a waste water recovery mechanism as claimed in claim 2 wherein: The mounting groove (331) is provided with a sliding hole (360) in the inner wall away from the filter box (300), the length direction of the sliding hole (360) is consistent with the vertical direction, the locking block (520) is connected with a pushing block (521), the length direction of the pushing block (521) is consistent with the length direction of the filter box (300), and the pushing block (521) is slidably connected in the sliding hole (360) along the vertical direction.

4. A concrete curing apparatus with a waste water recovery mechanism as claimed in claim 1 wherein: One end of the moving box (400) is provided with a locking groove (420) for embedding the locking block (520) along the vertical direction, in use, the locking block (520) is embedded in the locking groove (420).

5. A concrete curing apparatus with a waste water recovery mechanism as claimed in claim 4 wherein: The top of the guide plate (140) is provided with two baffles (150), the length direction of the baffle (150) is consistent with the length direction of the guide plate (140), the two baffles (150) are distributed on both sides of the drain port (120) along the width direction of the guide plate (140), the bottom of the baffle (150) is in contact with the guide plate (140), and the baffle (150) is in contact with the inner wall of the curing box (100) along the length direction thereof and close to one end of the drain port (120).

6. A concrete curing apparatus with a waste water recovery mechanism as claimed in claim 5 wherein: The curing box (100) is provided with a cleaning hole (160) on the inner wall on both sides of the guide plate (140) along the width direction, the baffle (150) is connected with a moving rod (153) on the side away from the other baffle (150), the length direction of the moving rod (153) is consistent with the width direction of the guide plate (140), the moving rod (153) corresponds to the cleaning hole (160) one by one, the moving rod (153) passes through and is slidably connected in the cleaning hole (160) along the length direction thereof, the moving rod (153) is sleeved with a sealing block (180), the sealing block (180) is embedded in the cleaning hole (160), the sealing block (180) is detachably connected to the curing box (100), and the sealing block (180) is used for sealing the cleaning hole (160).

7. A concrete curing apparatus with a waste water recovery mechanism as claimed in claim 6 wherein: The inner wall of the curing box (100) is connected with two limiting blocks (170), the length direction of the limiting block (170) is consistent with the width direction of the guide plate (140), the limiting block (170) is arranged on both sides of the drain port (120) along the width direction of the guide plate (140), and the baffle (150) is provided with a limiting hole (152).

8. A concrete curing apparatus with a waste water recovery mechanism as claimed in claim 6 wherein: The curing box (100) is connected with a collecting box (190) on both sides along the width direction of the guide plate (140), the top of the collecting box (190) is provided with an opening, the collecting box (190) corresponds to the cleaning hole (160) one by one, and the collecting box (190) is arranged below the cleaning hole (160).

Citation Information

Patent Citations

  • Concrete curing device

    CN116373091A