Novel wet-mixed mortar admixture reaction kettle
The wet mix mortar additive reaction vessel with a multi-position sampling system addresses the challenge of inconsistent reaction monitoring by ensuring consistent quality through real-time material sampling and detection.
Patent Information
- Application Number
- CN202421758641.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-07-24
AI Technical Summary
It is difficult to monitor the reaction conditions of materials at different locations in real time during the reaction process of existing wet-mixed mortar admixture reactors, which may not meet the quality standards when discharged.
A new wet-mixed mortar admixture reactor is designed, equipped with a movable sampling branch structure, including a positioning cylinder, a suction tube and a suction head. Multi-position sampling and testing is carried out through a suction pump, and a cleaning end structure is equipped for cleaning.
Real-time monitoring of the reaction conditions of multiple location materials in the reactor is achieved, ensuring that the discharge quality meets the standards and avoiding discharge problems due to failure to meet the standards.
Smart Images

Figure CN223096755U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of wet-mixed mortar admixture reaction, and particularly relates to a novel wet-mixed mortar admixture reaction kettle. Background Art
[0002] Wet mix mortar admixture is a kind of admixture added to wet mix mortar to increase the quality of wet mix mortar after construction, and the reactor is an instrument for stirring and mixing various raw materials in the wet mix mortar admixture and then reacting them. In this way, the reaction process of various materials is efficient and better applied, but it is not convenient to know the reaction conditions of materials at different positions inside during the reaction process, so it is easy to fail to meet the required standards when discharging after work. Utility Model Content
[0003] In order to solve the above technical problems, the utility model provides a novel wet-mix mortar admixture reactor, which realizes the function of multi-position sampling in the container, so as to know the material reaction situation and avoid failing to meet the required standards.
[0004] The technical solution is as follows: a new type of wet-mixed mortar admixture reactor, comprising a reactor body, a discharge valve being threadedly connected to the lower end of the reactor body; a sealing cover being boltedly installed on the upper end of the reactor body; a feed head being welded on the left side inside the sealing cover; an agitator being boltedly installed on the upper end of the sealing cover; a movable sampling branch pipe structure being supported on the right side of the upper part of the sealing cover, and a suction pump is not installed at the movable sampling branch pipe structure point; the agitator is electrically connected to the PLC, and is characterized in that the movable sampling branch pipe structure comprises a positioning cylinder, a suction pipe being inserted inside the positioning cylinder; a suction head being threadedly connected to the lower end of the suction pipe; a protective net being welded on the front end of the suction head; and a cleaning terminal structure being installed at the right end of the positioning cylinder.
[0005] Preferably, the positioning cylinder is welded to the right side inside the sealing cover, and the inside is adapted to the suction tube.
[0006] Preferably, one end of the suction tube is connected to the suction pump through a hose, and the other end is connected to the suction head.
[0007] Compared with the prior art, the beneficial effects of the utility model are:
[0008] In the utility model, the positioning cylinder is arranged to install the suction tube and adjust the lifting and lowering thereof.
[0009] In the utility model, the arrangement of the suction head and the protective net, in coordination with the adjustment of the suction tube, can realize multi-position material work, facilitate knowing the material reaction conditions, and avoid failing to meet the required standards when discharging the material. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 It is a structural schematic diagram of the utility model.
[0011] Figure 2 It is a schematic structural diagram of the movable sampling branch pipe structure of the present utility model.
[0012] Figure 3 It is a schematic structural diagram of the cleaning end structure of the present utility model.
[0013] In the figure:
[0014] 1. Reactor body; 2. Discharge valve; 3. Sealing cover; 4. Feeding head; 5. Stirrer; 6. Movable sampling branch pipe structure; 61. Positioning cylinder; 62. Suction pipe; 63. Suction head; 64. Protection net; 65. Cleaning end structure; 651. Installation cylinder; 652. Spraying pipe; 653. Sprinkler head; 7. PLC; 8. Suction pump. Specific embodiments
[0015] The following further describes the present utility model in conjunction with the accompanying drawings:
[0016] Embodiment:
[0017] As shown in the attached Figure 1 As shown, a new type of wet-mixed mortar admixture reactor includes a reactor body 1, and a discharge valve 2 is threadedly connected to the lower end of the reactor body 1; a sealing cover 3 is bolted to the upper end of the reactor body 1; a feeding head 4 is welded to the left side inside the sealing cover 3; a stirrer 5 is bolted to the upper end of the sealing cover 3; a movable sampling branch pipe structure 6 is supported on the right side of the upper part of the sealing cover 3, and a suction pump 8 is installed at the point of the movable sampling branch pipe structure 6; the stirrer 5 is electrically connected to the PLC 7.
[0018] As shown in the attached Figure 2 As shown, in the above embodiment, specifically, the movable sampling branch pipe structure 6 includes a positioning cylinder 61, and a suction pipe 62 is inserted inside the positioning cylinder 61; a suction head 63 is threadedly connected to the lower end of the suction pipe 62; a protection net 64 is welded to the front end of the suction head 63; a cleaning end structure 65 is installed at the right end of the positioning cylinder 61; the position of the suction head 63 is adjusted by lifting the suction pipe 62, and at the same time, the suction pump 8 is driven to suck materials for sampling and detection.
[0019] As shown in the attached Figure 3 As shown, in the above embodiment, specifically, the cleaning end structure 65 includes an installation cylinder 651, and a spraying pipe 652 is threadedly connected inside the installation cylinder 651; a sprinkler head 653 is threadedly connected to the left end of the spraying pipe 652; the spraying pipe 652 is connected to a water injection pipe and sprays out from the sprinkler head 653 to clean the suction pipe 62.
[0020] In the above embodiment, specifically, the positioning cylinder 61 is welded to the right side inside the sealing cover 3 and is adapted to the suction pipe 62 inside.
[0021] In the above embodiments, specifically, one end of the suction pipe 62 is connected to the suction pump 8 through a hose, and the other end is communicated with the suction head 63.
[0022] In the above embodiments, specifically, a cavity is provided inside the suction head 63, and a through hole is provided at the front end of the suction head 63, and the through hole is connected to the protective net 64 to intercept impurities during the suction sampling process and prevent the pipeline from being blocked during suction.
[0023] In the above embodiments, specifically, the mounting cylinder 651 is welded to the right end of the positioning cylinder 61, a bolt is provided inside the positioning cylinder 61 to tightly press against the outer wall of the suction pipe 62, and scale lines are engraved on the outer wall of the suction pipe 62.
[0024] In the above embodiments, specifically, the nozzle 653 at the end of the spraying pipe 652 corresponds to the suction pipe 62, and water can be sprayed to clean the suction head 63, the protective net 64 and the suction pipe 62.
[0025] Working principle
[0026] The working principle of the present utility model: Pour the materials of various wet-mixed mortar admixtures into the reaction kettle body 1 through the feeding head 4 and drive the stirrer 5 to stir, so that the materials of the wet-mixed mortar admixtures can be mixed and reacted. During the reaction process, the lifting suction pipe 62 is adjusted to position the suction head 63, and at the same time, the suction pump 8 is driven to suck the materials for sampling and detection. After the qualified materials meet the requirements, the discharge valve 2 is opened to discharge the materials to complete the work. After the work is completed, the spraying pipe 652 is connected to the water injection pipe and water is sprayed from the nozzle 653 to clean the suction pipe 62.
[0027] Using the technical solution of the present utility model, or those skilled in the art being inspired by the technical solution of the present utility model to design a similar technical solution and achieving the above technical effects shall fall within the protection scope of the present utility model.
Claims
1. A new type of reaction kettle for wet-mixed mortar admixture. This new type of reaction kettle for wet-mixed mortar admixture includes a reaction kettle body (1), and a discharge valve (2) is threadedly connected to the lower end of the reaction kettle body (1); a sealing cover (3) is bolted to the upper end of the reaction kettle body (1); a feeding head (4) is welded to the left side inside the sealing cover (3); a stirrer (5) is bolted to the upper end of the sealing cover (3); a movable sampling branch pipe structure (6) is supported on the right side of the upper part of the sealing cover (3), and a suction pump (8) is installed at the point of the movable sampling branch pipe structure (6); the stirrer (5) is electrically connected to a PLC (7), and it is characterized in that, The described active sampling branch pipe structure (6) includes a positioning cylinder (61), and a suction pipe (62) is inserted into the positioning cylinder (61); a suction head (63) is threadedly connected to the lower end of the suction pipe (62); a protective net (64) is welded to the front end of the suction head (63); a cleaning end structure (65) is installed at the right end of the positioning cylinder (61).
2. The novel wet-mixed mortar admixture reactor according to claim 1, wherein, The described cleaning end structure (65) includes a mounting cylinder (651), and a spray pipe (652) is threadedly connected to the inside of the mounting cylinder (651); a spray head (653) is threadedly connected to the left end of the spray pipe (652).
3. The novel wet-mixed mortar admixture reactor according to claim 1, characterized in that, The described positioning cylinder (61) is welded to the right side inside the sealing cover (3) and is adapted to the suction pipe (62) inside.
4. The novel wet-mixed mortar admixture reactor according to claim 1, characterized in that, One end of the described suction pipe (62) is connected to a suction pump (8) through a hose, and the other end is communicated with the suction head (63).
5. The novel wet-mixed mortar admixture reactor according to claim 2, characterized in that, A cavity is provided inside the described suction head (63), and through holes are provided at the front end of the suction head (63), and the through holes are connected to the protective net (64).
6. The novel wet-mixed mortar admixture reactor according to claim 2, characterized in that, The described mounting cylinder (651) is welded to the right end of the positioning cylinder (61), bolts are provided inside the positioning cylinder (61) to tightly press against the outer wall of the suction pipe (62), and scale lines are engraved on the outer wall of the suction pipe (62).