Sandstone aggregate sand washing system

By designing a sand and gravel aggregate washing system, impurities and water are collected and separated using a collection box and separator, solving the problem of water waste in existing sand washing machines and realizing water resource recovery and improving the stability and efficiency of the sand washing process.

CN224100896UActive Publication Date: 2026-04-10FUGONG ZHUCHENG CONCRETE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUGONG ZHUCHENG CONCRETE CO LTD
Filing Date
2025-05-06
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing sand washing machines cannot effectively collect and treat water resources when washing sand and gravel aggregates, resulting in water waste.

Method used

Design a sand and gravel aggregate washing system, including a positioning frame, a drive motor, a transmission shaft, a wheel-type sand washer, a collection box, a water storage tank, and a separator. The collection box collects impurities and used water, and the separator separates them to avoid water loss.

Benefits of technology

It enables the recycling and reuse of water resources, improves the stability of the sand washing process and the efficiency of impurity separation, and avoids the waste of water resources.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a sandstone aggregate sand washing system which structurally comprises a positioning frame, a driving machine, a transmission shaft, a wheel type sand washer and a collecting box, the positioning frame positions the driving machine, and the driving machine is movably connected with the transmission shaft and drives the wheel type sand washer to be movably matched; the collecting box is additionally arranged at the lower end of the wheel type sand washer, the transverse operation stability of the wheel type sand washer can be improved by means of the vertical positioning state of the collecting box, and meanwhile impurities output by the wheel type sand washer and used water sources can be collected by the partition box of the collecting box through the water storage tank. In the process, impurities and a water source can be separated through a separator, so that the situation that the impurities are difficult to treat in the later period due to mutual mixing can be avoided, and then the waste situation caused by continuous loss of water resources can be avoided; and the effect of saving water resources is achieved, and impurities are collected to facilitate follow-up special treatment.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of wet aggregate production technology, and specifically relates to a sandstone aggregate sand washing system. BACKGROUND

[0002] Sandstone aggregate is a material used in water conservancy projects and building projects, mainly including sand, gravel, crushed stone, block stone and material stone. These materials play a role in the framework or filling of concrete and masonry structures, and are one of the important raw materials indispensable in infrastructure construction;

[0003] Therefore, sandstone aggregate needs to be removed of impurities carried by itself through a dedicated sand washing system of a sand washing machine before production, so as to effectively improve the quality of sandstone aggregate and ensure that the sandstone aggregate produced can meet the standard of building sand, thereby indirectly improving the quality effect of the building.

[0004] However, the existing sand washing machine still has the following defects: when the current sand washing machine cleans sandstone aggregate, it needs to continuously release water resources. However, the wheel type sand washing part of the current sand washing machine will gradually discharge water resources and impurities during sand washing, so it cannot collect water resources and impurities at the origin for subsequent special treatment, which causes waste of water resources. UTILITY MODEL CONTENT

[0005] In view of the above problems, the utility model provides a sandstone aggregate sand washing system.

[0006] In order to achieve the above purpose, the utility model is realized through the following technical scheme: a sandstone aggregate sand washing system, the structure of which comprises a positioning frame, a driving machine, a transmission shaft, a wheel type sand washer and a collection box. The positioning frame positions the driving machine. The driving machine is movably connected with the transmission shaft and drives the wheel type sand washer to move in coordination. The wheel type sand washer is embedded in the collection box and is spaced apart from the bottom of the collection box.

[0007] Furthermore, the collection box is provided with a load-bearing body, which is embedded in the bottom of the partition box and has a water storage tank opened in the interior of the partition box. The guide block is fixed to the interior bottom layer of the partition box through the water storage tank. An output pipe is also connected to the outside of the side edge of the partition box and communicates with one end of the guide block. The separator is fixed in parallel to the interior center of the partition box through the water storage tank and is spaced apart from the guide block.

[0008] Further, the wheel type sand washer lower end area increases the collection box as the foundation, using the collection box to position the wheel type sand washer, then the impurities separated by the wheel type sand washer and the used water source are uniformly collected into the water storage tank of the partition box, the water storage tank uses the separator in the middle section to separate the impurities and the water source, and finally the guide block at the bottom combines the external output pipe to separately discharge the water source.

[0009] Further, the separator is further provided with a pull groove, the pull groove is opened in the central area of the pull block, and the lower end of the pull block is welded with an elastic separation net which is perpendicular to the center, and the bottom of the elastic separation net is provided with a water source output block.

[0010] Further, the pull groove is circular in shape and matches the semicircular shape of the top of the pull block, and the bottom is perpendicular to the center of the surface layer of the elastic separation net, the bottom of the elastic separation net is parallel to the water source output block, and the left and right ends are inclined.

[0011] Further, the load-bearing body at the bottom of the partition box is further provided with a connecting clamping block, the connecting clamping block is fixed to the surface center area of the contact block, and the bottom of the contact block is fixed with a carbon steel block, and the lower end of the carbon steel block is further connected with a damping block.

[0012] Further, the length of the connecting clamping block is less than the length of the contact block, and the contact block is fixed to the lower end of the partition box in combination with the connecting clamping block to form a detachable connection, the carbon steel block is solid in shape and perpendicular to the lower end damping block. Advantages

[0013] Compared with the prior art, the utility model has the following advantages:

[0014] 1. The utility model discloses a wheel type sand washer lower end position increases the collection box as the foundation, using the vertical positioning state of the collection box can improve the transverse operation stability of the wheel type sand washer, and the partition box of the collection box can collect the impurities and the used water source output by the wheel type sand washer, and the separator can separate the impurities and the water source in the process, so that the mixing of the impurities and the water source can be avoided, and the waste caused by the continuous loss of water resources can be avoided, the used water source can be recycled through the collection state, the effect of saving water resources is achieved, and the impurities are collected to facilitate subsequent special treatment.

[0015] 2. The bottom load-bearing body of the partition box is further improved, the contact block and the bottom of the partition box are stably connected according to the connecting clamping block, then the carbon steel block parallel to the contact block can receive the weight of the whole device system, and the stability of the wheel type sand washer in the collection box is improved by combining the bottom damping block, so that the instability caused by the continuous vibration of the parts during operation is avoided. DRAWINGS

[0016] Figure 1 It is a structure schematic view of the sandstone aggregate sand washing system of the utility model.

[0017] Figure 2 It is a structure schematic view of the improved sectional view of the collecting box.

[0018] Figure 3 It is a structure schematic view of the improved front view of the separator.

[0019] Figure 4 It is a structure schematic view of the improved front view of the load-bearing body.

[0020] In the figure: positioning frame-1, driving machine-2, transmission shaft-3, wheel type sand washer-4, collecting box-5;

[0021] Load-bearing body-51, partition box-52, water storage tank-53, guide block-54, output pipe-55, separator-56;

[0022] Pulling groove-561, pulling block-562, elastic separation net-563, water source output block-564;

[0023] Connecting clamping block-511, contact block-512, carbon steel block-513, damping block-514. DETAILED DESCRIPTION

[0024] The technical solutions of the utility model will be described clearly and completely below in combination with the drawings. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0025] In the description of the utility model, it should be explained that the directions or position relations indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like are the directions or position relations shown in the drawings, which are only for the convenience of describing the utility model and simplifying the description, and cannot be understood as indicating or implying that the indicated devices or elements must have a particular direction, be constructed and operated in a particular direction, and therefore cannot be understood as limiting the utility model. In addition, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance. EMBODIMENT

[0026] As Figures 1-4 shown, the utility model provides a sandstone aggregate sand washing system,

[0027] The structure comprises: positioning frame 1, drive machine 2, transmission shaft 3, wheel type sand washer 4, collection box 5, the positioning frame 1 positions drive machine 2, drive machine 2 is movably connected with transmission shaft 3 and drives wheel type sand washer 4 to movably cooperate, wheel type sand washer 4 is embedded in collection box 5 and is spaced apart from the bottom.

[0028] Wherein, the collection box 5 is provided with a load-bearing body 51, the load-bearing body 51 is embedded in the bottom of the partition box 52 and the inside of the partition box 52 is opened to the water storage tank 53, the guide block 54 is fixed to the inside bottom layer of the partition box 52 through the water storage tank 53, and the output pipe 55 is connected to the outside of the side edge of the partition box 52 and communicated with one end of the guide block 54, the separator 56 is fixed in parallel to the inside center of the partition box 52 through the water storage tank 53, and the separator 56 is spaced apart from the guide block 54.

[0029] Wherein, the wheel type sand washer 4 increases the collection box 5 at the lower end area, the wheel type sand washer 4 is positioned by the collection box 5, then the impurities separated by the wheel type sand washer 4 and the used water source are uniformly collected into the water storage tank 53 of the partition box 52, the impurities and the water source are separated by the separator 56 at the middle section of the water storage tank 53, and finally the water source is separately discharged by the guide block 54 at the bottom in combination with the output pipe 55 outside.

[0030] Wherein, the separator 56 is further provided with a pull groove 561, the pull groove 561 is opened in the central area of the pull block 562, and the elastic separation net 563 is welded to the lower end of the pull block 562 and is perpendicular to the center thereof, and the water source output block 564 is arranged at the bottom of the elastic separation net 563.

[0031] Wherein, the pull groove 561 is circular in shape and matches the semicircular shape of the top of the pull block 562, and the bottom is perpendicular to the surface center of the elastic separation net 563, the bottom of the elastic separation net 563 is parallel to the water source output block 564, and the left and right ends are inclined.

[0032] Wherein, the load-bearing body 51 at the bottom of the partition box 52 is further provided with a connecting clamping block 511, the connecting clamping block 511 is fixed to the surface center area of the contact block 512, and the carbon steel block 513 is fixed to the bottom of the contact block 512, and the damping block 514 is further connected to the lower end of the carbon steel block 513.

[0033] Wherein, the length of the connecting clamping block 511 is less than the length of the contact block 512, and the contact block 512 is fixed to the lower end of the partition box 52 in combination with the connecting clamping block 511 to form a detachable connection, the carbon steel block 513 is solid in shape and perpendicular to the lower end damping block 514.

[0034] The working principle of the utility model is as follows: the sandstone aggregate sand washing system is integrated with the sand washer, then the driving machine 2 is positioned by the positioning frame 1, so that the driving machine 2 can drive the transmission shaft 3 to rotate, the transmission shaft 3 can drive the wheel type sand washer 4 to rotate, the wheel type sand washer 4 can combine the continuous pouring of the water source and the rotation to clean the sandstone aggregate, in the process, the collecting box 5 added at the lower end of the wheel type sand washer 4 can receive the sewage and impurities discharged by the wheel type sand washer 4, so that the effect of collection and recovery is achieved, the waste water resources caused by the original continuous loss are replaced, the recovered water resources can be used again after special treatment, the characteristics of saving water resources are achieved, the vertical stability of the whole system device is improved by the bottom bearing body 51 of the partition box 52, then the impurities and sewage discharged by the wheel type sand washer 4 are received by the water storage tank 53 in the partition box 52, the collection characteristics are achieved, the use intensity of the system device is improved, the separator 56 carried in the center of the water storage tank 53 can separate the impurities and the sewage, so that the impurities are collected on the separator 56, then the sewage penetrates the separator 56 and seeps into the guiding block 54 area downwards, finally the output pipe 55 outside the partition box 52 can be connected with other pipelines, so that the sewage in the water storage tank 53 can be discharged separately by combining the triangular guiding block 54 after the output pipe 55 is opened, in the process, the interception of the separator 56 can prevent the impurities and the sewage from being discharged from the output pipe 55 area together, so that the impurities and the sewage can be effectively separated and treated, the elastic separation net 563 and the water source output block 564 of the separator 56 can be matched with the inner wall shape of the partition box 52 in the state of mutual parallelism and the inclined shape of the left and right two ends, so that when the impurities need to be taken out and treated, the wheel type sand washer 4 is first dismounted and maintained, the pulling block 562 and the pulling groove 561 in the top center are exposed in the space, then the elastic separation net 563 and the water source output block 564 can be pulled out from the water storage tank 53 by manually pulling the pulling block 562, so that the effect of simple disassembly and assembly is achieved, the impurities can be intercepted on the surface layer of the elastic separation net 563, the sewage can penetrate downwards from the water source output block 564 area by the centrifugal force, and the separation of the impurities and the sewage is completed, finally the bearing body 51 at the bottom of the partition box 52 can be embedded in the bottom of the partition box 52 by the contact block 512 and the connecting clamping block 511 on the top of the carbon steel block 513, so that the original point positioning stability effect of the partition box 52 can be improved by combining the cooperation of the carbon steel block 513, the shock absorbing block 514 at the lower end of the carbon steel block 513 can receive the vibration generated by the operation of the system device, the effect of relieving is achieved, and the instability caused by the continuous operation of the components is prevented, and the stability of the sandstone aggregate washing is improved.

[0035] Any technical features in the above-described embodiments can be combined in any manner, and for brevity, not all possible combinations are described, but it is understood that the scope of the specification includes all possible combinations.

[0036] Therefore, from any point of view, the embodiments should be considered as exemplary and non-limiting, the scope of the utility model being defined by the appended claims and not by the above description, therefore all variations falling within the meaning and the scope of the equivalent elements of the claims are intended to be encompassed by the utility model. Any reference signs in the claims should not be considered as limiting the claims involved.

Claims

1. A sand and aggregate washing system comprising: Positioning frame (1), drive machine (2), transmission shaft (3), wheel type sand washer (4), collection box (5), the positioning frame (1) positions the drive machine (2), the drive machine (2) is movably connected with the transmission shaft (3) and drives the wheel type sand washer (4) to movably cooperate, the wheel type sand washer (4) is embedded in the collection box (5) and is spaced from the bottom, characterized by: The collection box (5) is provided with a bearing body (51), the bearing body (51) is embedded in the bottom of the partition box (52), and the inside of the partition box (52) is provided with a water storage tank (53), the guide block (54) is fixed to the inside bottom layer of the partition box (52) through the water storage tank (53), and the output pipe (55) is connected to the outside of the side of the partition box (52) and communicates with one end of the guide block (54), the separator (56) is fixed in parallel to the inside center of the partition box (52) through the water storage tank (53), and the separator (56) is spaced from the guide block (54).

2. The sand and gravel washing system according to claim 1, characterized in that: The wheel type sand washer (4) is positioned by the collection box (5), then the impurities separated by the wheel type sand washer (4) and the used water are uniformly collected in the water storage tank (53) of the partition box (52), the impurities and the water are separated by the separator (56) in the middle section of the water storage tank (53), and finally the water is separately discharged by the guide block (54) at the bottom in combination with the output pipe (55) outside.

3. The sand and gravel washing system according to claim 1, characterized in that: The separator (56) is also provided with a pull groove (561), the pull groove (561) is opened in the center area of the pull block (562), and the elastic separation net (563) is welded to the lower end of the pull block (562) and is perpendicular to the center thereof, and the water outlet block (564) is arranged at the bottom of the elastic separation net (563); The pull groove (561) is circular in shape and matches the semicircular shape of the top of the pull block (562), and the bottom is perpendicular to the center of the surface layer of the elastic separation net (563), the bottom of the elastic separation net (563) is parallel to the water outlet block (564), and the left and right ends are inclined.

4. The sand and gravel washing system according to claim 3, characterized in that: The bearing body (51) at the bottom of the partition box (52) is also provided with a connecting clamping block (511), the connecting clamping block (511) is fixed to the surface center area of the contact block (512), and the carbon steel block (513) is fixed to the bottom of the contact block (512), and the damping block (514) is further connected to the lower end of the carbon steel block (513); The length of the connecting clamping block (511) is less than the length of the contact block (512), and the contact block (512) is fixed to the lower end of the partition box (52) in combination with the connecting clamping block (511) to form a detachable connection, the carbon steel block (513) is solid in shape and perpendicular to the lower damping block (514).