一种减水剂泌水性检测装置
By designing a stable, tilted water-reducing agent bleeding detection device, the problems of difficult water sampling and unstable molds were solved, achieving efficient and safe bleeding detection and simplifying the operation process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZIGONG XINGXING CHEM BUILDING MATERIALS CO LTD
- Filing Date
- 2025-06-26
- Publication Date
- 2026-07-17
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Figure CN224518683U_ABST
Abstract
Claims
1. A device for detecting the bleeding properties of water-reducing agents, characterized in that, Includes a base plate (1), on which a pair of lugs (10) are installed by screws, and the upper end of the lugs (10) is provided with a U-shaped groove (11). A base (3) is provided between the lugs (10), and a can (4) is provided on the base (3). The upper end of the can (4) is connected to the can lid (5) by a thread. A pair of round rods (30) are welded on the outer periphery of the base (3). The round rods (30) are coaxially arranged and placed in the arc section of the U-shaped groove (11). A lower plate (2) is installed on the base plate (1) by screws. A pair of vertical rods (22) are welded on the lower plate (2). A movable seat (23) is movably provided on the vertical rods (22). A screw rod (20) is connected to the movable seat (23) by thread. The lower end of the screw rod (20) is rotatably mounted on a bearing on the lower plate (2). A rotating head (21) is welded to the upper end of the screw rod (20). A pair of inner extension horizontal plates (24) are welded to the inner wall of the movable seat (23). A transverse hole (25) is opened on the inner extension horizontal plate (24). A movable pin (26) passes through the transverse hole (25). One end of the movable pin (26) is limited by a cotter pin. A protrusion (27) is formed on the outer periphery of the base (3). The movable pin (26) passes through the protrusion (27).
2. The water-reducing agent bleeding property detection device according to claim 1, characterized by An inner ring (32) is formed on the upper surface of the base (3). The inner ring (32) has an isosceles trapezoidal cross section along its axial direction. An inner groove (40) is provided at the lower end of the tank (4). The inner ring (32) is inserted into the inner groove (40), and the outer periphery of the inner ring (32) abuts against the inner periphery of the inner groove (40). An inner convex plate (33) is formed on the upper surface of the base (3). The inner convex plate (33) extends into the interior of the tank (4), and the outer periphery of the inner convex plate (33) abuts against the inner wall of the tank (4).
3. The water-reducing agent bleeding property detection device according to claim 1, characterized by Multiple protruding plates (42) are welded on the outer periphery of the tank body (4). A strip hole (43) is opened on the protruding plate (42). A through rod (44) is movably installed in the strip hole (43). A pressing nut (45) is threaded to the upper end of the through rod (44). The lower end of the pressing nut (45) abuts against the upper end of the protruding plate (42). An upper pull plate (46) is welded to the lower end of the through rod (44). A slot (31) is opened on the lower wall of the base (3). The upper pull plate (46) passes through the slot (31).
4. The water-reducing agent bleeding property detection device according to claim 1, characterized by The upper inner wall of the can body (4) is formed with a conical wall (41), the lower end of the conical wall (41) is the small end, the upper outer periphery of the can body (4) is formed with a convex ring (47), the upper inner part of the can lid (5) is formed with a frustum (51), and the outer periphery of the frustum (51) abuts against the inner periphery of the conical wall (41).
5. The water-reducing agent bleeding property detection device according to claim 4, characterized by The upper end of the convex ring (47) has a conical structure, and the inner circumference of the can lid (5) is formed with a conical wall (52). The outer circumference of the upper end of the convex ring (47) abuts against the inner circumference of the conical wall (52).