Mortar mixer

By designing a mortar mixer with a combination of multiple mixing rods and threaded sleeves, the problem of uneven mixing in existing mixers has been solved, realizing multiple mixing functions and post-mixing storage, thereby improving mixing efficiency and concrete quality.

CN224170128UActive Publication Date: 2026-04-28BENGBU FANGZHEN COMMERCIAL CONCRETE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
BENGBU FANGZHEN COMMERCIAL CONCRETE CO LTD
Filing Date
2025-05-13
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing mortar mixers lack multi-stage mixing capabilities, resulting in a reduced market share, increased workload for users, uneven concrete mixing, easy separation, and compromised quality.

Method used

A mortar mixer comprising a shock-absorbing box, a processing table, a storage box, and a delivery pump was designed. Through the combination of multiple mixing rods and threaded sleeves, multiple mixing processes are achieved. It is equipped with a storage box and a delivery pump to facilitate the storage and delivery of the mixed mortar. The box door and handle are provided for easy maintenance. The guide rail and guide rod limit the mixing rods.

Benefits of technology

It achieves multiple mixing functions, improves mixing efficiency, reduces user workload, ensures concrete uniformity, improves quality, and provides a convenient solution for post-mixing storage and transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The mortar mixer comprises a damping box and a machining table, a first motor is fixedly installed at the left end of the top of the machining table through a support, a first threaded rod is fixedly installed at the output end of the first motor, and a first threaded sleeve is installed on the front surface of the first threaded rod in a threaded mode; and connecting plates are fixedly mounted on the two sides of the first threaded sleeve correspondingly, a stirring box is fixedly mounted at the tops of the connecting plates, a cover plate is arranged at the top of the stirring box, and second motors are fixedly mounted on the two sides of the top of an inner cavity of the cover plate correspondingly. According to the technical scheme, the problems that the market share is indirectly reduced, the workload of a user is increased, uniform stirring of concrete is not facilitated, layering of the concrete is easily caused, and the mixing efficiency of the concrete is influenced due to the facts that existing mortar mixers do not have multiple stirring and mixing functions and most of the mortar mixers are stirred through independent stirring barrels are solved. The quality of the concrete is influenced.
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Description

Technical Field

[0001] This utility model relates to the field of mortar technology, specifically a mortar mixer. Background Technology

[0002] Mortar is made by mixing inorganic cementitious materials, fine aggregates, and water in a certain proportion. It is also called mortar and is used for masonry and plastering projects. It can be divided into masonry mortar and plastering mortar. The former is used for the masonry of bricks, stones, blocks, etc., as well as the installation of components; the latter is used for plastering the surfaces of walls, floors, roofs, and beam and column structures to achieve protection and decoration requirements. However, existing mortar mixers do not have the function of multiple mixing. Most of them are mixed by a single mixing tank, which indirectly reduces the market share, increases the workload of users, is not conducive to the uniform mixing of concrete, and easily leads to concrete segregation, affecting the quality of concrete. Utility Model Content

[0003] The purpose of this invention is to provide a mortar mixer that has the advantage of multiple mixing functions.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a mortar mixer, comprising a shock-absorbing box and a processing table, wherein a first motor is fixedly installed on the left end of the top of the processing table via a bracket, a first threaded rod is fixedly installed on the output end of the first motor, a first threaded sleeve is threadedly installed on the front surface of the first threaded rod, connecting plates are fixedly installed on both sides of the first threaded sleeve, a mixing box is fixedly installed on the top of the connecting plate, a cover plate is provided on the top of the mixing box, a second motor is fixedly installed on both sides of the top of the inner cavity of the cover plate, a second threaded rod is fixedly installed on the output end of the second motor, a second threaded sleeve is threadedly installed on the front surface of the second threaded rod, a support plate is fixedly installed at the end of the second threaded sleeve that is close to each other, a third motor is fixedly installed on the bottom of the support plate, and a mixing rod is fixedly installed on the output end of the third motor.

[0005] As a preferred embodiment, a storage box is fixedly installed on the right end of the top of the processing table, and a delivery pump is fixedly installed on the left end of the top of the storage box. The output end of the delivery pump is connected to the inner cavity of the storage box through a pipe.

[0006] As a preferred embodiment, the shock absorber box has doors movably installed on both sides of its front surface, and handles are fixedly installed on the ends of the front surfaces of the doors that are close to each other.

[0007] As a preferred embodiment, mounting plates are fixedly installed on all four sides of the outer surface of the shock absorber box, and mounting bolts are threaded into the inner cavity of the mounting plates.

[0008] As a preferred embodiment, a guide rail is fixedly installed on the top of the processing table, and the inner cavity of the guide rail is fixedly installed on the bottom of the first threaded sleeve by a guide rod.

[0009] As a preferred embodiment, a spring is fixedly installed at the bottom of the inner cavity of the shock absorber box, and a fixing plate is fixedly installed at the top of the spring. The top of the fixing plate is fixedly installed at the bottom of the processing table by a bracket.

[0010] As a preferred embodiment, a smooth rod is fixedly installed on both sides of the inner cavity of the shock absorber box, and a slip ring is slidably installed on the front surface of the smooth rod. The ends of the slip rings that are close to each other are fixedly installed on both sides of the fixed plate.

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0012] This utility model solves the problem that existing mortar mixers do not have multiple mixing functions, and most of them use a single mixing tank for mixing, which indirectly reduces market share, increases the workload of users, is not conducive to uniform mixing of concrete, and easily leads to concrete segregation, affecting the quality of concrete.

[0013] This utility model, through the setting of a storage box and a delivery pump, facilitates the user to transport the mixed mortar into the storage box for storage. The setting of a box door and a handle facilitates the user to perform routine maintenance on the shock-absorbing box. The setting of a guide rail and a guide rod achieves the effect of limiting the first threaded sleeve. Attached Figure Description

[0014] Figure 1 This is a first-view perspective structural perspective view of the present invention;

[0015] Figure 2 This is a second-view perspective structural perspective view of the present invention;

[0016] Figure 3 This is a schematic diagram of the cover plate structure of this utility model;

[0017] Figure 4 This is a cross-sectional view of the shock absorber box structure of this utility model.

[0018] In the diagram: 1. Shock absorber box; 2. Processing table; 3. Storage box; 4. Delivery pump; 5. Mixing box; 6. Cover plate; 7. Connecting plate; 8. Box door; 9. Handle; 10. Mounting plate; 11. First threaded sleeve; 12. First motor; 13. First threaded rod; 14. Second motor; 15. Second threaded rod; 16. Second threaded sleeve; 17. Mixing rod; 18. Third motor; 19. Support plate; 20. Smooth rod; 21. Slip ring; 22. Fixing plate; 23. Spring. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] Secondly, the term "an embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that excludes other embodiments. Example 1

[0021] Please see Figures 1-3 As shown, this utility model provides a mortar mixer, including a shock-absorbing box 1 and a processing table 2. A first motor 12 is fixedly installed on the left end of the top of the processing table 2 via a bracket. A first threaded rod 13 is fixedly installed on the output end of the first motor 12. A first threaded sleeve 11 is threaded on the front surface of the first threaded rod 13. Connecting plates 7 are fixedly installed on both sides of the first threaded sleeve 11. A mixing box 5 is fixedly installed on the top of the connecting plate 7. A cover plate 6 is provided on the top of the mixing box 5. A second motor 14 is fixedly installed on both sides of the top of the inner cavity of the cover plate 6. A second threaded rod 15 is fixedly installed on the output end of the second motor 14. A second threaded sleeve 16 is threaded on the front surface of the second threaded rod 15. A support plate 19 is fixedly installed at the end of the second threaded sleeve 16 that is close to each other. A third motor 18 is fixedly installed at the bottom of the support plate 19. A mixing rod 17 is fixedly installed on the output end of the third motor 18.

[0022] This technical solution addresses the problem that existing mortar mixers lack multi-stage mixing capabilities, relying mostly on a single mixing drum. This indirectly reduces market share, increases user workload, hinders uniform concrete mixing, and easily leads to concrete segregation, thus affecting concrete quality. Example 2

[0023] Based on Embodiment 1, this utility model is as follows: Figure 1As shown, a storage box 3 is fixedly installed on the right end of the top of the processing table 2, and a conveying pump 4 is fixedly installed on the left end of the top of the storage box 3. The output end of the conveying pump 4 is connected to the inner cavity of the storage box 3 through a pipe. Box doors 8 are movably installed on both sides of the front surface of the shock absorber box 1. Handles 9 are fixedly installed on the near ends of the front surfaces of the box doors 8. Mounting plates 10 are fixedly installed around the outer surface of the shock absorber box 1. Mounting bolts are threaded into the inner cavity of the mounting plates 10. A guide rail is fixedly installed on the top of the processing table 2, and the inner cavity of the guide rail is fixedly installed to the bottom of the first threaded sleeve 11 through a guide rod.

[0024] By adopting the above technical solution, the storage tank 3 and the delivery pump 4 facilitate the user to transport the mixed mortar to the storage tank 3 for storage. The door 8 and the handle 9 facilitate the user to perform routine maintenance on the shock absorber box 1. The guide rail and guide rod achieve the effect of limiting the first threaded sleeve 11. Example 3

[0025] This utility model is as follows Figure 4 As shown, a spring 23 is fixedly installed at the bottom of the inner cavity of the shock absorber box 1, and a fixing plate 22 is fixedly installed at the top of the spring 23. The top of the fixing plate 22 is fixedly installed at the bottom of the processing table 2 by a bracket. Smooth rods 20 are fixedly installed on both sides of the inner cavity of the shock absorber box 1. Slip rings 21 are slidably installed on the front surface of the smooth rods 20. The ends of the slip rings 21 that are close to each other are fixedly installed on both sides of the fixing plate 22.

[0026] By adopting the above technical solution, the spring 23 is used to buffer and dampen the device, and the guide rod 20 and slip ring 21 are used to guide the fixed plate 22.

[0027] The working principle of this utility model is as follows: The first motor 12 is started to drive the first threaded rod 13 to rotate. The rotation of the first threaded rod 13 drives the first threaded sleeve 11 to move left and right. The left and right movement of the first threaded sleeve 11 drives the connecting plate 7 to move left and right. The left and right movement of the connecting plate 7 mixes the mortar inside the mixing tank 5. Then, the second motor 14 is started to drive the second threaded rod 15 to rotate. The rotation of the second threaded rod 15 drives the second threaded sleeve 16 to adjust its height. The height adjustment of the second threaded sleeve 16 drives the support plate 19 to adjust its height. The height adjustment of the support plate 19 drives the third motor 18 to adjust its height. Then, the third motor 18 is started to drive the stirring rod 17 to rotate. The rotation of the stirring rod 17 performs multiple mixing processes on the mortar. Then, the delivery pump 4 is started to drive the mixed mortar through the pipeline to the storage tank 3 for storage. Finally, the spring 23 can provide shock absorption and buffering for the device.

[0028] It is important to note that the constructions and arrangements of this application shown in several different exemplary embodiments are merely illustrative. Although only a few embodiments are described in detail in this disclosure, those who consult this disclosure will readily understand that many modifications are possible (e.g., changes in the size, dimensions, structure, shape and proportion of various elements, as well as parameter values ​​(e.g., temperature, pressure, etc.), mounting arrangements, use of materials, color, orientation, etc.) without substantially departing from the novel teachings and advantages of the subject matter described in this application). For example, an element shown as integrally formed may be composed of multiple parts or elements, the position of elements may be inverted or otherwise altered, and the nature or number or position of discrete elements may be changed or altered. Therefore, all such modifications are intended to be included within the scope of this utility model. The order or sequence of any process or method steps may be changed or reordered according to alternative embodiments. In the claims, any "device plus function" clause is intended to cover the structure described herein that performs the function, and not only structural equivalents but also equivalent structures. Without departing from the scope of this invention, other substitutions, modifications, alterations, and omissions may be made in the design, operation, and arrangement of the exemplary embodiments. Therefore, this invention is not limited to the specific embodiments, but extends to various modifications that still fall within the scope of the appended claims.

[0029] Furthermore, in order to provide a concise description of exemplary embodiments, not all features of actual embodiments (i.e., those features that are not relevant to the best mode of carrying out the present invention as currently considered, or those features that are not relevant to implementing the present invention) may be omitted.

[0030] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit the scope of protection of this utility model. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the essence and scope of the technical solutions of this utility model.

Claims

1. A mortar mixer, comprising a shock-absorbing box (1) and a processing table (2), characterized in that: A first motor (12) is fixedly installed on the left end of the top of the processing table (2) by a bracket. A first threaded rod (13) is fixedly installed on the output end of the first motor (12). A first threaded sleeve (11) is threaded on the front surface of the first threaded rod (13). A connecting plate (7) is fixedly installed on both sides of the first threaded sleeve (11). A mixing tank (5) is fixedly installed on the top of the connecting plate (7). A cover plate (6) is provided on the top of the mixing tank (5). A second motor (14) is fixedly installed on both sides of the top of the inner cavity of the cover plate (6). A second threaded rod (15) is fixedly installed on the output end of the second motor (14). A second threaded sleeve (16) is threaded on the front surface of the second threaded rod (15). A support plate (19) is fixedly installed on one end of the second threaded sleeve (16) that is close to each other. A third motor (18) is fixedly installed on the bottom of the support plate (19). A stirring rod (17) is fixedly installed on the output end of the third motor (18).

2. The mortar mixer according to claim 1, characterized in that: A storage box (3) is fixedly installed on the right end of the top of the processing table (2), and a delivery pump (4) is fixedly installed on the left end of the top of the storage box (3). The output end of the delivery pump (4) is connected to the inner cavity of the storage box (3) through a pipe.

3. A mortar mixer according to claim 1, characterized in that: Both sides of the front surface of the shock absorber box (1) are movably installed with box doors (8), and a handle (9) is fixedly installed at one end of the front surface of the box doors (8) that is close to each other.

4. A mortar mixer according to claim 1, characterized in that: The shock absorber box (1) is fixedly installed with mounting plates (10) on all four sides of its outer surface, and mounting bolts are threaded into the inner cavity of the mounting plates (10).

5. A mortar mixer according to claim 1, characterized in that: The top of the processing table (2) is fixedly installed with a guide rail, and the inner cavity of the guide rail is fixedly installed at the bottom of the first threaded sleeve (11) by a guide rod.

6. A mortar mixer according to claim 1, characterized in that: A spring (23) is fixedly installed at the bottom of the inner cavity of the shock-absorbing box (1), and a fixing plate (22) is fixedly installed on the top of the spring (23). The top of the fixing plate (22) is fixedly installed on the bottom of the processing table (2) by a bracket.

7. A mortar mixer according to claim 1, characterized in that: Both sides of the inner cavity of the shock-absorbing box (1) are fixedly installed with light rods (20), and slip rings (21) are slidably installed on the front surface of the light rods (20). The ends of the slip rings (21) that are close to each other are fixedly installed on both sides of the fixing plate (22).