Building material detection sampler

By introducing a dredging component into the building material testing sampler, the combined movement of the slider and the insert plate cuts off the clump of material, solving the problem of clogging of the sampling blade and improving sampling efficiency and the service life of the equipment.

CN224109090UActive Publication Date: 2026-04-10ZHANGJIAKOU HIGH-TECH LIAOHAI CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHANGJIAKOU HIGH-TECH LIAOHAI CONSTRUCTION ENGINEERING CO LTD
Filing Date
2025-04-11
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

During use, the sampling blades of existing building material testing samplers may become clogged due to the accumulation of material clumps, affecting sampling efficiency and work efficiency.

Method used

A building material testing sampler was designed, equipped with a dredging component, including a connecting ring, a sampling cone, a sampling groove, a spring, a slider, a connecting rod, and an insert plate. By pulling the rod, the slider compresses the spring, causing the slider to drive the connecting rod and make the insert plate move back and forth, cutting off the clumps of material and preventing blockage.

Benefits of technology

It effectively prevents clogging during sampling, improves sampling and work efficiency, reduces maintenance frequency, ensures sampling continuity and accuracy, and extends the service life of the equipment.

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Abstract

The utility model relates to the technical field of civil engineering detection, in particular to a building material detection sampler which comprises a grip, the dredging assembly is arranged at the front end of the grip and comprises a connecting ring, a sampling cone, a sampling groove, a connecting frame, a spring, a sliding block, a connecting rod, an insertion plate and a pull rod, the connecting ring is connected to the front end of the grip, the sampling cone is in threaded connection with the front end of the connecting ring, the sampling groove is formed in the top of the sampling cone, and the connecting frame is connected to the top of the grip; a spring is connected to the rear side in the connecting frame; through the arrangement of the dredging assembly, when the sampling cone is inserted into a building material bag, materials in the material bag can fall into the sampling groove for sampling, if the sampling groove is clamped by material caking, the pull rod can be pulled, the pull rod drives the sliding block to extrude the spring, and the spring helps the sliding block to reset, so that the sliding block drives the connecting rod to enable the inserting plate to move back and forth; the caked material is cut off, so that the material moves in the sampling groove, and blockage during sampling is prevented.
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Description

TECHNICAL FIELD

[0001] The utility model relates to civil engineering detection technical field especially relates to a building material detects sampler. BACKGROUND

[0002] A building material detection sampler is a device for accurately extracting samples from building materials, mainly used for quality detection and material performance analysis to ensure that building materials meet industry standards and construction requirements. The sampler can be applied to various materials such as concrete, sand, asphalt, bricks, and waterproof coiled materials, and is widely used in building engineering quality detection institutions, construction sites, and laboratories.

[0003] The existing building material detection sampler may be blocked by material clumps during use, affecting sampling efficiency and reducing work efficiency.

[0004] Therefore, to solve the problem of the existing building material detection sampler that may be blocked by material clumps during use, affecting sampling efficiency and reducing work efficiency, a building material detection sampler can be designed. The improved sampler can increase an automatic cleaning mechanism to ensure smooth sampling channels and reduce the probability of blockage. This not only improves sampling efficiency but also reduces maintenance frequency, ensuring the continuity and accuracy of sampling and improving the service life of the equipment. SUMMARY

[0005] To overcome the problem of the existing building material detection sampler that may be blocked by material clumps during use, affecting sampling efficiency and reducing work efficiency.

[0006] The technical solution of the utility model is: a building material detection sampler, comprising a handle; further comprising a dredging assembly, the front end of the handle is provided with the dredging assembly, the dredging assembly comprises a connecting ring, a sampling cone, a sampling groove, a connecting frame, a spring, a sliding block, a connecting rod, a plug plate, and a pull rod, the front end of the handle is connected with the connecting ring, the front end of the connecting ring is threadedly connected with the sampling cone, the top of the sampling cone is provided with the sampling groove, the top of the handle is connected with the connecting frame, the inside rear side of the connecting frame is connected with the spring, the front end of the spring is connected with the sliding block, the sliding block is slidingly connected with the connecting frame, the sliding block is L-shaped, the lower end front side of the sliding block is connected with the connecting rod, the connecting rod is L-shaped, and the front end of the connecting rod is connected with the plug plate.

[0007] Preferably, by setting the dredging assembly, when the sampling cone is inserted into the building material bag, the material in the material bag falls into the sampling groove for sampling, if the material clumps are stuck in the sampling groove, the pull rod is pulled, the pull rod drives the sliding block to extrude the spring, the spring helps the sliding block to reset, so that the sliding block drives the connecting rod to make the insertion plate reciprocate, thereby cutting the clumped material, making the material move in the sampling groove, preventing blockage during sampling, to solve the problem that the existing building material detection sampler may be blocked due to material clumps during use, affecting sampling efficiency and reducing work efficiency.

[0008] As preferred, the inside of the handle is provided with a hole, and the rear end of the handle is connected with a threaded ring.

[0009] As preferred, the outer end of the threaded ring is connected with an assembly ring in a threaded manner, and the rear end of the assembly ring is connected with a cylinder.

[0010] As preferred, the outer end right side of the cylinder is connected with a rotating block, and the inside of the rotating block is connected with a rotating column in a damping manner.

[0011] As preferred, the front end of the rotating column is connected with a lever, and the rear end of the rotating column is connected with a baffle.

[0012] As preferred, the baffle is movably connected with the cylinder, and the left and right ends of the handle are connected with anti-skid plates.

[0013] As preferred, two anti-skid plates are arranged, the anti-skid plates are made of rubber, and a plurality of gripping grooves are arranged at equal intervals on the side of the anti-skid plates away from the handle.

[0014] The building material detection sampler has the advantages that:

[0015] 1. By setting the dredging assembly, when the sampling cone is inserted into the building material bag, the material in the material bag falls into the sampling groove for sampling, if the material clumps are stuck in the sampling groove, the pull rod is pulled, the pull rod drives the sliding block to extrude the spring, the spring helps the sliding block to reset, so that the sliding block drives the connecting rod to make the insertion plate reciprocate, thereby cutting the clumped material, making the material move in the sampling groove, preventing blockage during sampling, to solve the problem that the existing building material detection sampler may be blocked due to material clumps during use, affecting sampling efficiency and reducing work efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 A building material detection sampler is shown in the three-dimensional structure schematic view of the building material detection sampler;

[0017] Figure 2 A building material detection sampler is shown in the three-dimensional structure schematic view of the building material detection sampler;

[0018] Figure 3The utility model discloses a kind of building material detection sampler three-dimensional side section structure schematic diagram.

[0019] Figure 4 The utility model discloses a kind of building material detection sampler three-dimensional rear view structure schematic diagram.

[0020] Reference signs: 1, handle;21, connecting ring;22, sampling cone;23, sampling groove;24, connecting frame;25, spring;26, sliding block;27, connecting rod;28, plug-in plate;29, pull rod;31, threaded ring;32, assembling ring;33, cylinder;34, rotating block;35, rotating column;36, lever;37, baffle;38, antiskid plate;39, gripping groove. DETAILED DESCRIPTION

[0021] The utility model is further explained below in connection with drawing and embodiment.

[0022] Please refer to Figures 1-4 The utility model provides a kind of building material detection sampler, including handle 1;Still including dredging subassembly, the front end of handle 1 is provided with dredging subassembly, and dredging subassembly includes connecting ring 21, sampling cone 22, sampling groove 23, connecting frame 24, spring 25, sliding block 26, connecting rod 27, plug-in plate 28 and pull rod 29, the front end of handle 1 is connected with connecting ring 21, the front end of connecting ring 21 is threadedly connected with sampling cone 22, the top of sampling cone 22 is equipped with sampling groove 23, the top of handle 1 is connected with connecting frame 24, the inside rear side of connecting frame 24 is connected with spring 25, the front end of spring 25 is connected with sliding block 26, sliding block 26 is slidably connected with connecting frame 24, sliding block 26 is L-shaped, the lower end front side of sliding block 26 is connected with connecting rod 27, connecting rod 27 is L-shaped, the front end of connecting rod 27 is connected with plug-in plate 28, by setting dredging subassembly, when sampling cone 22 is inserted into building material bag, material in material bag can fall into sampling groove 23 and is sampled, if material agglomerate is stuck sampling groove 23, pull rod 29 is pulled, pull rod 29 drives sliding block 26 to extrude spring 25, spring 25 helps sliding block 26 reset, so that sliding block 26 drives connecting rod 27 to make plug-in plate 28 reciprocating motion, and then the material of agglomerate is cut off, make material move in sampling groove 23, prevent jamming when sampling, to solve the problem that the existing building material detection sampler is in the process of use, sampling cutter can be jammed due to material agglomerate accumulation, influence sampling efficiency, reduce work efficiency.

[0023] Please refer to Figures 1-4In the embodiment, the inside of the handle 1 is provided with a hole, the rear end of the handle 1 is connected with a threaded ring 31, the threaded ring 31 is convenient for connecting a container, the outer end of the threaded ring 31 is connected with an assembling ring 32 in a threaded mode, the rear end of the assembling ring 32 is connected with a cylinder 33, the cylinder 33 is convenient for storing materials, the outer end of the right side of the cylinder 33 is connected with a rotating block 34, the inside of the rotating block 34 is connected with a rotating column 35 in a damping mode, the rotating block 34 is used for assisting in plugging the cylinder 33, and the storage of the materials is realized.

[0024] Please refer to Figures 2-4 In the embodiment, the front end of the rotating column 35 is connected with a push rod 36, the rear end of the rotating column 35 is connected with a baffle 37, the baffle 37 is used for blocking the cylinder 33 to avoid the materials flowing out, the baffle 37 is movably connected with the cylinder 33, the left and right ends of the handle 1 are connected with anti-skid plates 38, the anti-skid plates 38 increase the friction, the device is prevented from being dropped, the anti-skid plates 38 are provided in two, the anti-skid plates 38 are made of rubber, and the side, away from the handle 1, of each anti-skid plate 38 is provided with gripping grooves 39 at equal intervals, the gripping grooves 39 are convenient for gripping and improve the hand feeling of the handle 1.

[0025] When working, the handle 1 is gripped, the fingers are gripped in the gripping grooves 39 on the anti-skid plates 38, the sampling cone 22 is inserted into the building material bag, the materials in the material bag fall into the sampling groove 23 for sampling, if the materials are blocked and stuck in the sampling groove 23, the pull rod 29 is pulled, the pull rod 29 drives the sliding block 26 to extrude the spring 25, the spring 25 helps the sliding block 26 to reset, so that the sliding block 26 drives the connecting rod 27 to make the plug plate 28 reciprocate, and then the blocked materials are cut off, the materials move in the sampling groove 23, and the blocking during sampling is prevented, the materials fall into the cylinder 33 through the hole of the handle 1 and are stored, when the materials in the cylinder 33 need to be discharged, the push rod 36 is pushed, the push rod 36 drives the rotating column 35 to rotate on the rotating block 34, and then the baffle 37 is driven to rotate, the materials in the cylinder 33 are poured out, the assembling ring 32 and the threaded ring 31 are disassembled, and then the cylinder 33 is conveniently cleaned.

[0026] Through the above steps, by setting the dredging assembly, when the sampling cone 22 is inserted into the building material bag, the materials in the material bag fall into the sampling groove 23 for sampling, if the materials are blocked and stuck in the sampling groove 23, the pull rod 29 is pulled, the pull rod 29 drives the sliding block 26 to extrude the spring 25, the spring 25 helps the sliding block 26 to reset, so that the sliding block 26 drives the connecting rod 27 to make the plug plate 28 reciprocate, and then the blocked materials are cut off, the materials move in the sampling groove 23, and the blocking during sampling is prevented, so as to solve the problems that the existing building material sampling device may be blocked due to the accumulation of the materials during use, the sampling efficiency is affected, and the work efficiency is reduced.

Claims

1. A building material detection sampler comprising a handle (1); characterised in that: Also include dredging components, the front end of the handle (1) is provided with dredging components, dredging components include connecting ring (21), sampling cone (22), sampling groove (23), connecting frame (24), spring (25), slider (26), connecting rod (27), plugboard (28) and pull rod (29), the front end of the handle (1) is connected with connecting ring (21), the front end of the connecting ring (21) is threadedly connected with the sampling cone (22), the top of the sampling cone (22) is provided with the sampling groove (23), the top of the handle (1) is connected with the connecting frame (24), the inner rear side of the connecting frame (24) is connected with the spring (25), the front end of the spring (25) is connected with the slider (26), the slider (26) is slidably connected with the connecting frame (24), the slider (26) is L-shaped, the lower end of the slider (26) is connected with the connecting rod (27), the connecting rod (27) is L-shaped, the front end of the connecting rod (27) is connected with the plugboard (28).

2. A building material testing sampler according to claim 1, characterised in that: The inside of the handle (1) is provided with a hole, and the rear end of the handle (1) is connected with a threaded ring (31).

3. A building material detection sampler according to claim 1, wherein: The outer end of the threaded ring (31) is threadedly connected with an assembly ring (32), and the rear end of the assembly ring (32) is connected with a cylinder (33).

4. A building material testing sampler according to claim 1, wherein: The outer end of the cylinder (33) is connected with a rotating block (34), and the inside of the rotating block (34) is connected with a rotating column (35).

5. A building material detection sampler according to claim 1, wherein: The front end of the rotating column (35) is connected with a lever (36), and the rear end of the rotating column (35) is connected with a baffle (37).

6. A building material testing sampler according to claim 1, wherein: The baffle (37) is movably connected with the cylinder (33), and the left and right ends of the handle (1) are connected with anti-skid plates (38).

7. A building material testing and sampling device according to claim 1, wherein: The anti-skid plates (38) are provided with two, the anti-skid plates (38) are made of rubber material, and the side away from the handle (1) of the anti-skid plates (38) is provided with gripping grooves (39) at equal intervals.