Cement mortar compaction table and positioning tool for same

By designing a cement sand vibrating table including a load bearing plate, a positioning frame, a fixing rod and an elastic locking mechanism, the problems of poor fixing effect and inconvenient operation of the pilot mold in the prior art are solved, and the accurate compression and operational stability of the test mold is achieved.

CN222952059UActive Publication Date: 2025-06-06江苏中意建筑材料有限公司
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Patent Information

Application Number
CN202421147933.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-24
Publication Date
2025-06-06
Estimated Expiration
2034-05-24

AI Technical Summary

Technical Problem

The compression fixing tooling of the existing cement glue sand vibrating table has poor fixing effect on the test mold and is inconvenient to operate.

Method used

A cement-glue sand vibrating table including a load bearing plate, a positioning frame, a fixing rod and an elastic locking mechanism is designed. Through the rotation of the positioning frame and the role of the elastic locking mechanism, accurate compression and fixation of the test mold is achieved.

Benefits of technology

It realizes good compression and fixation of the test mold, which is convenient to operate. The fixed connection is completed by only controlling the interaction between the two operating parts and the two elastic parts.

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Abstract

The utility model provides a cement mortar jolt ramming table and a positioning tool thereof, and belongs to the technical field of cement detection, the cement mortar jolt ramming table comprises a bearing plate, a positioning frame, two fixing rods and two elastic locking mechanisms, the bearing plate is provided with an operation cavity, a feeding and discharging port and two limiting blocks, the limiting blocks are provided with sliding holes, and the positioning frame is provided with a positioning hole. The positioning frame is provided with a rotating hole and a positioning surface, and the fixing rod is provided with a through hole; the elastic locking mechanism is installed on the limiting block, the elastic locking mechanism comprises a connecting rod, an elastic piece and an operation part, and the connecting rod is connected into the sliding hole in a sliding mode and arranged in the through hole in a penetrating mode; the elastic piece is installed on the limiting block and connected with the connecting rod. The cement mortar jolt ramming table is used for positioning a tool, the two connecting rods penetrate through the two fixing rods respectively so that the positioning frame can well press and fix a test mold, the positioning frame can be fixedly connected only by controlling the interaction of the two operation parts and the two elastic pieces, and operation is convenient and fast.
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Description

Technical Field

[0001] The utility model belongs to the technical field of cement detection, and more specifically relates to a cement mortar vibrating table for positioning tooling. Background Art

[0002] The cement mortar vibrating table is used to prepare cement mortar specimens for cement strength testing. The cement mortar specimen is prepared by adding the cement to be tested, standard sand and mixing water into a test mold, placing the test mold on the compacting fixture on the cement mortar vibrating table, and using inertia to compact the materials in the test mold to form a cement mortar specimen. At present, the compacting fixture in the cement mortar vibrating table has a poor effect on the fixing and compacting of the test mold, and is inconvenient to operate. Utility Model Content

[0003] The utility model aims to provide a cement mortar vibrating table for positioning tooling and the cement mortar vibrating table, so as to solve the technical problems existing in the prior art of poor fixing and pressing effect on the test mold and inconvenient operation.

[0004] In order to achieve the above-mentioned purpose, the technical solution adopted by the utility model is: to provide a cement mortar vibrating table for positioning tooling, including:

[0005] The load-bearing plate has an operation cavity at the upper end and a material inlet and outlet connected to the operation cavity at one side; two limit blocks are provided on the outer side of the load-bearing plate, and the two limit blocks are respectively provided with coaxially arranged sliding holes;

[0006] A positioning frame is installed on the carrying plate and is located above the operating cavity; the positioning frame is provided with a rotation hole for rotationally connecting with the carrying plate, and the lower end of the positioning frame is provided with a positioning surface for extruding on the test mold;

[0007] There are two fixing rods, which are respectively installed at one end of the positioning frame away from the rotating hole; the fixing rods are perpendicular to the positioning surface, and the two fixing rods correspond to the two limit blocks one by one. The fixing rods are provided with through holes corresponding to the sliding holes, and the two fixing rods are used to be arranged on the outsides of the two limit blocks;

[0008] There are two elastic locking mechanisms, which are respectively installed on the two limit blocks; the elastic locking mechanism includes a connecting rod, an elastic member and an operating part, one end of the connecting rod is slidably connected to the sliding hole and is used to pass through the through hole; the elastic member is installed on the limit block and connected to the connecting rod; the operating part is installed on the other end of the connecting rod.

[0009] In a possible implementation, a receiving groove for installing an elastic member is provided on the side away from the limit block, and the sliding hole is penetrated through the bottom surface of the receiving groove; the connecting rod is provided with a limiting flange located on the side of the receiving groove away from the sliding hole, and the elastic member is located between the limiting flange and the bottom surface of the receiving groove.

[0010] In a possible implementation, the operating portion is a vertically arranged long strip, and an arc groove is provided on a side of the long strip close to the corresponding limit block.

[0011] In a possible implementation, a guide block is provided on one side of the two limit blocks away from the corresponding operating part, the guide block is fixedly mounted on the supporting plate, and a limit groove penetrating from top to bottom is provided on the side of the guide block away from the supporting plate; the fixing rod is cooperatively mounted in the limit groove; the upper end surface of the guide block is located below the sliding hole.

[0012] In a possible implementation manner, the guide block and the limit block are integrally formed.

[0013] In a possible implementation, the supporting plate is further provided with two column structures installed in the operating cavity, and the two column structures are arranged at intervals; one end of the positioning frame is provided with a first mounting plate installed between the two column structures, and the first mounting plate is provided with a rotation hole; the two column structures are provided with a rotating shaft on one side close to each other, which is installed in cooperation with the rotating hole and is arranged horizontally.

[0014] In a possible implementation, the column structure includes a base, multiple adjustment washers, a screw, a sleeve and a nut. The base is fixedly mounted on the bottom surface of the operating chamber, the screw is vertically arranged, and the lower end is fixedly mounted on the base; multiple adjustment washers are sleeved on the screw and installed on the base; the sleeve is sleeved on the screw, and the lower end is supported on the adjustment washers; the nut is threadedly connected to the screw and is located above the sleeve, and is used to lock and fix the sleeve; the rotating shaft is fixedly mounted on the outer surface of the sleeve.

[0015] In a possible implementation, the other end of the positioning frame is provided with two second mounting plates extending outward, and one end of the second mounting plate away from the positioning frame is located outside the supporting plate; the upper end of the fixing rod is fixedly mounted on the other end of the second mounting plate.

[0016] In a possible implementation, two baffles arranged vertically to each other and used to limit the trial mold position are provided on the bottom surface of the operating chamber.

[0017] The cement mortar vibrating table provided by the utility model has the beneficial effect of being used for positioning tooling: compared with the prior art, the cement mortar vibrating table provided by the utility model is used for positioning tooling. When in use, the test mold is installed on the inlet and outlet of the self-carrying plate and added into the operating cavity. After being installed to the accurate position, the positioning frame is operated to rotate around the carrying plate toward the test mold, and at the same time, the two operating parts are manipulated to be close to each other so that the two connecting rods overcome the elastic force of the elastic member and slide in the sliding hole, so that the ends of the connecting rods form an avoidance operation; and the lower end surface of the positioning frame is pressed on the upper end surface of the test mold, and the two fixing rods on the positioning frame are respectively Move to the position close to the two limit blocks, and the through hole on the fixing rod is coaxially aligned with the sliding hole on the limit block, and finally release the two operating parts. The two connecting rods move toward the fixing rod under the action of the elastic member, and the ends of the two connecting rods are respectively inserted into the through holes of the two fixing rods, so as to realize the limit fixation of the positioning frame and firmly press and fix the test mold; in this way, the positioning frame can be pressed and fixed to the test mold well by means of the two connecting rods passing through the two fixing rods respectively, and the fixed connection of the positioning frame can be completed by only manipulating the interaction between the two operating parts and the two elastic members, which is convenient to operate.

[0018] Another object of the utility model is to provide a cement mortar vibrating table, including any one of the above-mentioned cement mortar vibrating tables for positioning tooling.

[0019] The cement mortar vibrating table provided by the utility model adopts the cement mortar vibrating table for positioning tooling, and uses two connecting rods to pass through two fixing rods respectively to realize that the positioning frame can press and fix the test mold well, and only needs to control the interaction between two operating parts and two elastic parts to complete the fixed connection of the positioning frame, which is easy to operate. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative labor.

[0021] Figure 1 A front view of a cement mortar compaction table provided in an embodiment of the utility model for positioning a tool;

[0022] Figure 2 for Figure 1 The enlarged view of point A in the middle;

[0023] Figure 3 A top view of a cement mortar compaction table provided in an embodiment of the utility model for positioning tooling;

[0024] Figure 4for Figure 3 The enlarged view of point B in the middle;

[0025] Figure 5 A cross-sectional view of a cement mortar vibrating table provided in an embodiment of the utility model for positioning tooling;

[0026] Figure 6 A structural schematic diagram of a column structure provided in an embodiment of the utility model.

[0027] Among them, the reference numerals in the figure are:

[0028] 1. Loading plate; 11. Operating cavity; 12. Inlet and outlet; 13. Limit block; 14. Sliding hole; 15. Accommodating groove; 16. Guide block; 17. Limit groove; 18. Baffle; 2. Positioning frame; 21. Rotating hole; 22. First mounting plate; 23. Second mounting plate; 3. Fixed rod; 31. Through hole; 4. Elastic locking mechanism; 41. Connecting rod; 42. Elastic member; 43. Operating part; 44. Limit flange; 5. Column structure; 51. Rotating shaft; 52. Base; 53. Adjusting gasket; 54. Screw; 55. Sleeve; 56. Nut. DETAILED DESCRIPTION

[0029] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0030] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.

[0031] It should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0032] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In the description of the present utility model, the meaning of "plurality" is two or more, unless otherwise clearly and specifically defined.

[0033] See also Figures 1 to 6 , the cement mortar vibrating table provided by the utility model is now described for use in positioning tooling. A cement mortar vibrating table is used for positioning tooling, comprising a bearing plate 1, a positioning frame 2, a fixing rod 3 and an elastic locking mechanism 4. An operating cavity 11 is provided at the upper end of the bearing plate 1, and a material inlet and outlet 12 connected to the operating cavity 11 is provided on one side; two limit blocks 13 are provided on the outer surface of the bearing plate 1, and coaxially arranged sliding holes 14 are respectively provided on the two limit blocks 13; the positioning frame 2 is installed on the bearing plate 1 and is located above the operating cavity 11; a rotating hole 21 for rotationally connecting with the bearing plate 1 is provided on the positioning frame 2, and a positioning surface for extrusion on a test mold is provided at the lower end of the positioning frame 2; there are two fixing rods 3, which are respectively installed on the positioning frame 2 away from the rotating One end of the hole 21; the fixing rod 3 is perpendicular to the positioning surface, the two fixing rods 3 correspond to the two limit blocks 13 one by one, and the fixing rod 3 is provided with a through hole 31 corresponding to the sliding hole 14, and the two fixing rods 3 are used to be arranged on the outside of the two limit blocks 13; the number of the elastic locking mechanism 4 is two, and they are respectively installed on the two limit blocks 13; the elastic locking mechanism 4 includes a connecting rod 41, an elastic member 42 and an operating part 43, one end of the connecting rod 41 is slidably connected to the sliding hole 14, and is used to be inserted into the through hole 31; the elastic member 42 is installed on the limit block 13 and connected to the connecting rod 41; the operating part 43 is installed at the other end of the connecting rod 41.

[0034] The cement mortar vibrating table provided by the utility model is used for positioning tooling. Compared with the prior art, when in use, the test mold is installed on the inlet and outlet port 12 of the self-carrying plate 1 and added into the operating cavity 11. After being installed to the accurate position, the positioning frame 2 is operated to rotate around the carrying plate 1 toward the test mold, and at the same time, the two operating parts 43 are manipulated to be close to each other so that the two connecting rods 41 overcome the elastic force of the elastic member 42 and slide in the sliding hole 14, so that the end of the connecting rod 41 forms an avoidance operation; and the lower end surface of the positioning frame 2 is pressed on the upper end surface of the test mold, and the two fixing rods 3 on the positioning frame 2 are respectively moved to be close to the two limit blocks 13, and the fixing rods The through hole 31 on the limit block 3 is coaxially aligned with the sliding hole 14 on the limit block 13, and finally the two operating parts 43 are loosened. The two connecting rods 41 move toward the fixing rod 3 under the action of the elastic member 42, and the ends of the two connecting rods 41 are respectively inserted into the through holes 31 of the two fixing rods 3, so as to realize the limited fixation of the positioning frame 2 and firmly press and fix the test mold; in this way, with the help of the two connecting rods 41 passing through the two fixing rods 3 respectively, the positioning frame 2 can press and fix the test mold well, and only the interaction between the two operating parts 43 and the two elastic members 42 is required to complete the fixed connection of the positioning frame 2, which is convenient to operate.

[0035] See also Figures 1 to 4 As a specific embodiment of the cement mortar vibrating table provided by the utility model for positioning tooling, a receiving groove 15 for installing an elastic member 42 is provided on the side away from the limiting block 13, and the sliding hole 14 is penetrated on the groove bottom surface of the containing groove 15; a limiting flange 44 is provided on the connecting rod 41, which is located on the side of the containing groove 15 away from the sliding hole 14, and the elastic member 42 is located between the limiting flange 44 and the groove bottom surface of the containing groove 15; the cross-sectional area of ​​the containing groove 15 is larger than the cross-sectional area of ​​the sliding hole 14, so that the containing groove 15 and the sliding hole 14 form a step shape, and the elastic member 42 is installed in the containing groove 15, and the connecting rod 41 is slidably penetrated in the containing groove 15 and the sliding hole 14, and also passes through the elastic member 42, and the elastic member 42 is limited by the limiting flange 44 and the containing groove 15, thereby stably compressing or releasing the elastic member 42. The limiting flange 44 is the shoulder of the connecting rod 41, and does not need to be specially installed. In this way, the interaction between the elastic member 42 and the connecting rod 41 is made smoother and more effective.

[0036] See also Figure 1 and Figure 3As a specific embodiment of the cement mortar vibrating table provided by the utility model for positioning tooling, the operating part 43 is a vertically arranged long strip, and an arc groove is provided on the side of the long strip close to the corresponding limit block 13; the connecting rod 41 is arranged horizontally, and the long strip is arranged vertically. The long strip can be fixed by welding and is located on the side of the connecting rod 41 away from the bearing plate 1. The staff can conveniently use two fingers of one hand to hold the two long strips to control the connecting rod 41 to move in the sliding hole 14, and insert or pull it out from the through hole 31. An arc groove is provided on the long strip, and the arc groove is adapted to the shape of the finger.

[0037] See also Figures 1 to 4 As a specific implementation of the cement mortar vibrating table provided by the utility model for positioning tooling, a guide block 16 is provided on the side of the two limit blocks 13 away from the corresponding operating part 43, and the guide block 16 is fixedly installed on the carrier plate 1, and a limit groove 17 penetrating up and down is provided on the side of the guide block 16 away from the carrier plate 1; the fixing rod 3 is installed in the limit groove 17; the upper end surface of the guide block 16 is located below the sliding hole 14; the guide block 16 is fixed to the outer side of the carrier plate 1 and is located on one side of the limit block 13, and a limit groove 17 is provided on the guide block 16, which penetrates up and down, so that the fixing rod 3 on the positioning frame 2 rotated to a horizontal state enters the limit groove 17, and the fixing rod 3 is limited by the limit groove 17, so that the connecting rod 41 accurately penetrates into the through hole 31.

[0038] Preferably, as a specific implementation of the cement mortar compaction table provided by the utility model for positioning tooling, the guide block 16 and the limit block 13 are integrally formed; the guide block 16 and the limit block 13 are a whole block structure, and the guide block 16 and the limit block 13 can be more firmly installed on the supporting plate 1.

[0039] See also Figure 1 , Figure 3 , Figure 5 and Figure 6As a specific implementation of the cement mortar vibrating table provided by the utility model for positioning tooling, the bearing plate 1 is also provided with two column structures 5 installed in the operating cavity 11, and the two column structures 5 are arranged at intervals; one end of the positioning frame 2 is provided with a first mounting plate 22 installed between the two column structures 5, and the first mounting plate 22 is provided with a rotating hole 21; the two column structures 5 are provided with a rotating shaft 51 that is installed in cooperation with the rotating hole 21 and is arranged horizontally on the adjacent side; the two column structures 5 are both installed in the operating cavity 11, and are arranged close to an inner wall of the operating cavity 11. The two column structures 5 are arranged at intervals along the length direction of the inner wall. After the positioning frame 2 is installed in the operating cavity 11, one end thereof is arranged close to the two column structures 5. The end is provided with two first mounting plates 22 extending outward. The two first mounting plates 22 are located between the two column structures 5, and the two first mounting plates 22 are respectively close to the corresponding column structures 5, and the rotating holes 21 on the first mounting plates 22 are rotatably matched and connected with the rotating shafts 51 on the column structures 5, so that the positioning frame 2 is stably and reliably rotatably connected to the supporting plate 1.

[0040] See also Figure 6 As a specific implementation of the cement mortar vibrating table provided by the utility model for positioning tooling, the column structure 5 includes a base 52, a plurality of adjusting gaskets 53, a screw 54, a sleeve 55 and a nut 56. The base 52 is fixedly installed on the bottom surface of the operating chamber 11, and the screw 54 is arranged vertically, and the lower end is fixedly installed on the base 52; a plurality of adjusting gaskets 53 are sleeved on the screw 54 and installed on the base 52; the sleeve 55 is sleeved on the screw 54, and the lower end is supported on the adjusting gasket 53; the nut 56 is threadedly connected to the screw 54 and is located above the sleeve 55, and is used to lock and fix the sleeve 55; the rotating shaft 51 is fixedly installed on the outer surface of the sleeve 55; that is, the staff can change the installation height of the sleeve 55 by increasing or decreasing the number of adjusting gaskets 53, and then adjust the height of the positioning frame 2, so as to be suitable for trial molds of different height sizes. When the column structure 5 is used, the base 52 is fixedly installed on the bottom surface of the operating chamber 11, and then a plurality of adjustment washers 53 and sleeves 55 are sequentially mounted on the screw rod 54, and then the nut 56 is screwed onto the screw rod 54 from top to bottom to achieve a fixed connection of the sleeve 55.

[0041] See also Figure 1 and Figure 3As a specific implementation of the cement mortar vibrating table provided by the utility model for positioning tooling, the other end of the positioning frame 2 is provided with two second mounting plates 23 extending outward, and the end of the second mounting plate 23 away from the positioning frame 2 is located outside the bearing plate 1; the upper end of the fixing rod 3 is fixedly mounted on the other end of the second mounting plate 23; two second mounting plates 23 are arranged at the end of the positioning frame 2 away from the rotating hole 21, and the extension direction of the second mounting plate 23 is opposite to the extension direction of the first mounting plate 22, one end of the second mounting plate 23 is located outside the bearing plate 1, and the fixing rod 3 is fixedly mounted on the end of the second mounting plate 23, and the length direction of the fixing rod 3 is perpendicular to the length direction of the second mounting plate 23, so that the two fixing rods 3 can move more accurately and reliably with the rotation of the positioning frame 2.

[0042] See also Figure 1 and Figure 2 As a specific embodiment of the cement mortar vibrating table provided by the utility model for positioning tooling, two baffles 18 arranged vertically and used to limit the position of the test mold are provided on the bottom surface of the operating chamber 11. The two baffles 18 are installed in the operating chamber 11 of the bearing plate 1 and are arranged along the side wall of the operating chamber 11; the two baffles 18 are long strips and are perpendicular to each other. When installing the test mold, the two adjacent sides of the test mold are respectively abutted against the two baffles 18, that is, the accurate installation of the test mold is completed. Two groups of limit rods are fixedly arranged on the bottom surface of the operating chamber 11, and the limit rods are provided with threaded sections. Each group of limit rods includes two spaced limit rods. The baffle 18 is provided with two long strip holes corresponding to the two limit rods of the same group and connected in a sliding manner, and the limit rod is provided with a nut 56. By controlling the baffle 18 to slide in the operating chamber 11, the relative position between the two baffles 18 is changed to adapt to test molds of different sizes, and finally fixed with the nut 56 threadedly connected to the limit rod.

[0043] Not shown in the figures, an embodiment of the utility model further provides a cement mortar vibrating table, the cement mortar vibrating table comprising any one of the above-mentioned cement mortar vibrating tables for positioning tooling.

[0044] The cement mortar vibrating table provided by the utility model adopts the above-mentioned cement mortar vibrating table for positioning tooling. Therefore, the positioning frame 2 is pressed and fixed to the test mold well by means of two connecting rods 41 passing through the two fixing rods 3 respectively, and only the interaction between the two operating parts 43 and the two elastic parts 42 is operated to complete the fixed connection of the positioning frame 2, which is convenient to operate.

[0045] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A cement mortar vibrating table is used for positioning tooling, characterized in that: include: The load-bearing plate has an operation cavity at the upper end and a material inlet and outlet connected to the operation cavity at one side; two limit blocks are provided on the outer side of the load-bearing plate, and the two limit blocks are respectively provided with coaxially arranged sliding holes; A positioning frame is installed on the carrying plate and is located above the operating cavity; the positioning frame is provided with a rotation hole for rotationally connecting with the carrying plate, and the lower end of the positioning frame is provided with a positioning surface for extruding on the test mold; There are two fixing rods, which are respectively installed at one end of the positioning frame away from the rotating hole; the fixing rods are perpendicular to the positioning surface, and the two fixing rods correspond to the two limit blocks one by one. The fixing rods are provided with through holes corresponding to the sliding holes, and the two fixing rods are used to be arranged on the outsides of the two limit blocks; There are two elastic locking mechanisms, which are respectively installed on the two limit blocks; the elastic locking mechanism includes a connecting rod, an elastic member and an operating part, one end of the connecting rod is slidably connected to the sliding hole and is used to pass through the through hole; the elastic member is installed on the limit block and connected to the connecting rod; the operating part is installed on the other end of the connecting rod.

2. The cement mortar vibrating table as claimed in claim 1 is used for positioning tooling, characterized in that: A receiving groove for installing an elastic member is provided on the side away from the limit block, and the sliding hole is penetrated through the bottom surface of the receiving groove; a limiting flange is provided on the connecting rod, which is located on the side of the receiving groove away from the sliding hole, and the elastic member is located between the limiting flange and the bottom surface of the receiving groove.

3. The cement mortar vibrating table as claimed in claim 2 is used for positioning tooling, characterized in that: The operating portion is a long strip plate arranged vertically, and an arc groove is provided on one side of the long strip plate close to the corresponding limiting block.

4. The cement mortar vibrating table as claimed in claim 1 is used for positioning tooling, characterized in that: A guide block is provided on one side of the two limit blocks away from the corresponding operating part, and the guide block is fixedly installed on the supporting plate, and a limit groove penetrating from top to bottom is provided on the side of the guide block away from the supporting plate; the fixing rod is cooperated and installed in the limit groove; the upper end surface of the guide block is located below the sliding hole.

5. The cement mortar vibrating table as claimed in claim 4 is used for positioning tooling, characterized in that: The guide block and the limiting block are integrally formed.

6. The cement mortar vibrating table as claimed in claim 1 is used for positioning tooling, characterized in that: The supporting plate is also provided with two column structures installed in the operating cavity, and the two column structures are arranged at intervals; one end of the positioning frame is provided with a first mounting plate installed between the two column structures, and the first mounting plate is provided with a rotating hole; the two column structures are provided with a rotating shaft that is installed in cooperation with the rotating hole and is arranged horizontally on one side close to each other.

7. The cement mortar vibrating table as claimed in claim 6 is used for positioning tooling, characterized in that: The column structure includes a base, multiple adjustment washers, a screw, a sleeve and a nut. The base is fixedly installed on the bottom surface of the operating chamber. The screw is arranged vertically and the lower end is fixedly installed on the base; multiple adjustment washers are sleeved on the screw and installed on the base; the sleeve is sleeved on the screw and the lower end is supported on the adjustment washers; the nut is threadedly connected to the screw and is located above the sleeve for locking and fixing the sleeve; the rotating shaft is fixedly installed on the outer surface of the sleeve.

8. The cement mortar vibrating table as claimed in claim 6 is used for positioning tooling, characterized in that: The other end of the positioning frame is provided with two second mounting plates extending outward, and one end of the second mounting plate away from the positioning frame is located outside the bearing plate; the upper end of the fixing rod is fixedly mounted on the other end of the second mounting plate.

9. The cement mortar vibrating table as claimed in claim 1 is used for positioning tooling, characterized in that: Two baffles arranged vertically and used for limiting the position of the trial mold are arranged on the bottom surface of the operating cavity.

10. A cement mortar vibrating table, characterized in that: A cement mortar compaction table as described in any one of claims 1 to 9 is used for positioning tooling.