Cement compressive strength detection equipment
By installing protective barriers and casters on the cement compressive strength testing equipment, the problems of splashing and inconvenience in moving cement samples during testing were solved, achieving both safety protection and convenient testing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-03-24
AI Technical Summary
Traditional cement compressive strength testing equipment poses a safety hazard during testing, as cement samples can easily splash into the surrounding area. Furthermore, it is not easy to move and requires long-distance transportation to the laboratory for testing.
A cement compressive strength testing device with a protective barrier and casters was designed. The protective barrier is combined with the testing platform through a lifting front baffle to prevent cement samples from splashing, and the casters facilitate the movement of the device on the construction site.
It effectively prevents cement samples from splashing around during the testing process, reducing safety hazards, and allows the equipment to be used directly on the construction site, saving time and effort.
Smart Images

Figure CN224035137U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to detection equipment field especially relates to a cement compressive strength detection equipment. BACKGROUND
[0002] In engineering construction, in order to verify whether cement is suitable for specific engineering environment and construction requirement, avoid the engineering quality problem such as building cracking, deformation and even collapse caused by insufficient or unstable cement strength, usually need to use detection equipment to carry out compressive detection to cement.
[0003] Traditional cement compressive strength detection equipment, in the process of carrying out compressive strength detection to cement, cement sample is easy to splash around after being pressed to the limit, thereby generating certain security risk to staff, and traditional compressive strength detection equipment is inconvenient to move, need to take cement sample to laboratory for detection, it is more inconvenient.
[0004] Therefore, in view of the above traditional cement compressive strength detection equipment, there is certain security risk, and it is inconvenient to move, can design a kind of cement compressive strength detection equipment, by installing corresponding protective structure around detection table, and installing universal wheel at bottom, it can move, thereby facilitating to solve the above problem. SUMMARY
[0005] In order to overcome the problem that the traditional cement compressive strength detection equipment, in the process of carrying out compressive strength detection to cement, cement sample is easy to splash around after being pressed to the limit, thereby generating certain security risk to staff, and traditional compressive strength detection equipment is inconvenient to move, need to take cement sample to laboratory for detection, it is more inconvenient.
[0006] The technical scheme of the utility model is as follows: a cement compressive strength detection equipment, including detection table, universal wheel, fixed column, fixed frame, pressure mechanism and protective fence, the front end of detection table is equipped with pressure mechanism for pressing cement block, the surface rear end of detection table is equipped with fixed column for supporting pressure mechanism, the upper end of fixed column is equipped with fixed frame for fixing pressure mechanism, the surface both sides of detection table are equipped with protective fence for preventing cement from splashing, the front end between two groups of protective fence is equipped with discharge port, the inside of discharge port is equipped with lifting front baffle matched with protective fence, the lower end of detection table is equipped with universal wheel for moving conveniently.
[0007] Preferably, the application is combined by detection table, universal wheel, pressure mechanism and protective fence, so that when working, staff can first move the equipment to the construction site through the universal wheel, then place the cement sample block on the detection table, so that it is located below the pressure mechanism, then lower the lifting front baffle, so that it cooperates with the protective fence.
[0008] Preferably, the two side walls of the feeding opening are provided with lifting chutes, the rear side of the lifting front baffle extends into the lifting chute, and the surface of the lifting front baffle is provided with a handle.
[0009] Preferably, the surface of the two protective fences is provided with two observation windows, the interior of the two observation windows is provided with a glass clamping groove, the interior of the observation window is fixedly installed with a tempered glass plate, and the edge of the tempered glass plate extends into the interior of the glass clamping groove.
[0010] Preferably, the pressing mechanism comprises a hydraulic push rod, the center of the fixed frame is provided with a fixed hole for accommodating the hydraulic push rod, the hydraulic push rod is located in the fixed hole, the upper end of the hydraulic push rod is provided with a hydraulic pump, and the lower end of the hydraulic push rod is provided with a pressure plate.
[0011] Preferably, a connecting seat is arranged between the hydraulic push rod and the pressure plate, the hydraulic push rod and the pressure plate are fixedly connected through the connecting seat, four reinforcing ribs are arranged around the outer end of the connecting seat, and an equal force pressing ring is arranged between the four reinforcing ribs.
[0012] Preferably, the lower end of the detection table is provided with a pressure strengthening mechanism corresponding to the pressing assembly.
[0013] Preferably, the universal wheel is provided with four groups, and the four groups of universal wheels are uniformly distributed at the bottom corners of the detection table.
[0014] Compared with the traditional cement compressive strength detection equipment, the present application has certain safety hazards and is inconvenient to move. The protective fence arranged on both sides of the surface of the detection table can effectively block the situation that the cement sample splashes around after being pressed to the limit, and provides a reliable safety protection barrier for the staff, greatly reducing the safety hazards. At the same time, the lifting front baffle at the front end of the protective fence is lowered after the cement sample is placed, and cooperates with the protective fence to further strengthen the blocking effect of the splashing cement, comprehensively guaranteeing the personal safety of the staff. The four groups of universal wheels installed at the lower end of the detection table make the equipment extremely convenient to move, and the staff can easily move the equipment in the construction site. There is no need to transport the cement sample to the laboratory for detection, which greatly saves time and effort and improves detection efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 The overall structure schematic diagram of the detection equipment of the present application is shown.
[0016] Figure 2 The protective fence structure schematic diagram of the detection equipment of the present application is shown.
[0017] Figure 3 The fixed column and fixed frame structure schematic diagram of the detection equipment of the present application is shown.
[0018] Figure 4 The pressure mechanism structure schematic view of the detection equipment is shown.
[0019] Mark explanation: 1, detection table; 2, universal wheel; 3, fixed column; 4, fixed frame; 5, pressure mechanism; 6, discharge port; 7, protective fence; 8, pressure receiving reinforcing mechanism; 9, observation window; 10, glass clamping groove; 11, lifting sliding groove; 12, lifting front baffle; 13, handle; 14, fixing hole; 15, tempered glass plate; 16, hydraulic push rod; 17, hydraulic pump; 18, pressure plate; 19, reinforcing rib; 20, uniform force pressing ring; 21, connecting seat. DETAILED DESCRIPTION
[0020] The utility model is further explained in connection with the drawings and examples.
[0021] Please refer to Figures 1-4 The utility model provides a kind of cement compression strength detection equipment in an embodiment: including detection table 1, universal wheel 2, fixed column 3, fixed frame 4, pressure mechanism 5 and protective fence 7;The front end of detection table 1 is equipped with the pressure mechanism 5 for being used to pressurize cement block, the surface of detection table 1 is equipped with the fixed column 3 for being used to support pressure mechanism 5, the upper end of fixed column 3 is equipped with the fixed frame 4 for being used to fix pressure mechanism 5, the surface both sides of detection table 1 are equipped with the protective fence 7 for being used to prevent cement spatter, discharge port 6 is opened between the front end of two groups of protective fence 7, the inside of discharge port 6 is equipped with the lifting front baffle 12 matched with protective fence 7, the lower end of detection table 1 is equipped with universal wheel 2 for being used to move conveniently.
[0022] Please refer to Figures 2-3 In the embodiment, lifting sliding groove 11 is opened in the two side walls of discharge port 6, the rear side of lifting front baffle 12 is extended to the inside of lifting sliding groove 11, the surface of lifting front baffle 12 is equipped with handle 13, lifting front baffle 12 is combined with lifting sliding groove 11, so that when loading, staff can lift lifting front baffle 12 along lifting sliding groove 11 by pulling handle 13, so that cement sample is placed on detection table 1 from discharge port 6, lifting front baffle 12 is lowered along lifting sliding groove 11 after loading, so that it is matched with protective fence 7, two groups of observation windows 9 are opened in the surface of two groups of protective fence 7, glass clamping groove 10 is opened in the inside of two groups of observation windows 9, tempered glass plate 15 is fixedly installed in the inside of observation window 9, the edge of tempered glass plate 15 is extended to the inside of glass clamping groove 10, observation window 9 is combined with glass clamping groove 10, so that staff can fix tempered glass plate 15 in observation window 9 by glass clamping groove 10, so that staff can watch detection process.
[0023] Please refer to Figures 2-3In the embodiment, the lower end of the detection table 1 is provided with a pressure receiving reinforcing mechanism 8 corresponding to the pressing assembly. Through the pressure receiving reinforcing mechanism 8, the structural strength of the detection table 1 when bearing pressure can be enhanced, effectively reducing deformation or damage caused by long-term pressure. The universal wheels 2 are provided in four groups and are distributed at the bottom corners of the detection table 1. Through the cooperation of the four groups of universal wheels 2, the detection equipment can be uniformly moved to the construction site, without the need to transport the cement samples to the laboratory for detection, greatly saving time and effort.
[0024] Please refer to Figures 3-4 In the embodiment, the pressing mechanism 5 includes a hydraulic push rod 16. The center of the fixed frame 4 is provided with a fixed hole 14 for accommodating the hydraulic push rod 16. The hydraulic push rod 16 is located inside the fixed hole 14. The upper end of the hydraulic push rod 16 is provided with a hydraulic pump 17. The lower end of the hydraulic push rod 16 is provided with a pressure plate 18. Through the combination of the hydraulic push rod 16 and the pressure plate 18, when detecting, the hydraulic pump 17 works to make the hydraulic push rod 16 extend downward in the fixed hole 14. The pressure plate 18 at the lower end of the hydraulic push rod 16 stably applies pressure to the cement sample under the action of the connecting seat 21, the reinforcing ribs 19 and the uniform force pressing ring 20. The hydraulic push rod 16 and the pressure plate 18 are fixedly connected through the connecting seat 21. The outer end of the connecting seat 21 is surrounded by four groups of reinforcing ribs 19. The four groups of reinforcing ribs 19 are provided with a uniform force pressing ring 20. Through the combination of the four groups of reinforcing ribs 19 and the uniform force pressing ring 20, the stability and uniformity of the pressing process are enhanced, and pressure is uniformly applied through the pressure plate 18.
[0025] When working, the staff pushes the detection table 1 according to the detection requirements and moves the equipment to the construction site using the universal wheels 2. Since the universal wheels 2 are distributed at the bottom corners of the detection table 1, the equipment moves flexibly and can adapt to various complex site environments.
[0026] After arriving at the site, the staff opens the lifting front baffle 12, places the cement sample block on the detection table 1, so that it is located below the pressing mechanism 5. After placement is complete, the lifting front baffle 12 is lowered, the back side extends into the lifting chute 11, and is tightly matched with the protective fence 7 to form a closed protective space to prevent cement from splashing.
[0027] Then start the hydraulic pump 17. The hydraulic pump 17 works to make the hydraulic push rod 16 extend downward in the fixed hole 14. The pressure plate 18 at the lower end of the hydraulic push rod 16 stably applies pressure to the cement sample under the action of the reinforcing ribs 19 and the uniform force pressing ring 20. As the pressure gradually increases, the staff observes the tempered glass plate 15 in the surface observation window 9 of the protective fence 7 to observe the pressure state of the cement sample in real time. When the cement sample is pressed to the limit and breaks and splashes, the protective fence 7 and the lifting front baffle 12 block the cement block from splashing, ensuring the safety of the staff.
[0028] Through the above steps, the cement sample block is placed on the detection table 1 below the pressing mechanism 5, and then the lifting front baffle 12 is lowered to cooperate with the protective fence 7 to prevent the cement sample from splashing around after being pressed to the limit, thereby providing a reliable safety protection barrier for the workers and greatly reducing the safety hazards.
Claims
1. A cement compressive strength testing device, comprising a testing platform (1); characterized in that: It also includes casters (2), fixed columns (3), fixed frames (4), pressure mechanisms (5) and protective barriers (7); a pressure mechanism (5) for applying pressure to cement blocks is provided above the front end of the testing platform (1), a fixed column (3) for supporting the pressure mechanism (5) is provided above the rear end of the surface of the testing platform (1), a fixed frame (4) for fixing the pressure mechanism (5) is provided at the front of the upper end of the fixed column (3), and protective barriers (7) for preventing cement from splashing are provided on both sides of the surface of the testing platform (1). A discharge port (6) is provided between the front ends of the two sets of protective barriers (7), and a lifting front baffle (12) for cooperating with the protective barriers (7) is provided inside the discharge port (6). A caster (2) for easy movement is provided at the lower end of the testing platform (1).
2. The cement compressive strength testing equipment according to claim 1, characterized in that: Lifting grooves (11) are provided on both sides of the discharge port (6), and the rear side of the lifting front baffle (12) extends into the interior of the lifting grooves (11). A handle (13) is provided on the surface of the lifting front baffle (12).
3. The cement compressive strength testing equipment according to claim 2, characterized in that: Two sets of observation windows (9) are provided on the surface of the two sets of protective barriers (7). Glass slots (10) are provided inside the two sets of observation windows (9). Tempered glass plates (15) are fixedly installed inside the observation windows (9). The edge of the tempered glass plates (15) extends into the glass slots (10).
4. The cement compressive strength testing equipment according to claim 1, characterized in that: The pressurizing mechanism (5) includes a hydraulic push rod (16). The center of the fixed frame (4) is provided with a fixing hole (14) to accommodate the hydraulic push rod (16). The hydraulic push rod (16) is located inside the fixing hole (14). The upper end of the hydraulic push rod (16) is provided with a hydraulic pump (17), and the lower end of the hydraulic push rod (16) is provided with a pressure plate (18).
5. The cement compressive strength testing equipment according to claim 4, characterized in that: A connecting seat (21) is provided between the hydraulic push rod (16) and the pressure plate (18). The hydraulic push rod (16) and the pressure plate (18) are fixedly connected by the connecting seat (21). Four sets of reinforcing ribs (19) are arranged around the outer end of the connecting seat (21), and a force equalizing pressure ring (20) is provided between the four sets of reinforcing ribs (19).
6. The cement compressive strength testing equipment according to claim 1, characterized in that: The lower end of the testing station (1) is provided with a pressure-strengthening mechanism (8) corresponding to the pressure-pressurizing component.
7. The cement compressive strength testing equipment according to claim 1, characterized in that: There are four sets of casters (2), and the four sets of casters (2) are evenly distributed at the bottom corner of the testing platform (1).