CN213148458U - Concrete sample collection system - Google Patents
Concrete sample collection system Download PDFInfo
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- CN213148458U CN213148458U CN202022228501.9U CN202022228501U CN213148458U CN 213148458 U CN213148458 U CN 213148458U CN 202022228501 U CN202022228501 U CN 202022228501U CN 213148458 U CN213148458 U CN 213148458U
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- temporary storage
- storage bin
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- bearing plate
- electric cabinet
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Abstract
The utility model discloses a concrete sample collecting device, which comprises a device main body, a sampling mechanism, a temporary storage bin and an electric cabinet; the device main body is a trolley comprising a bearing plate; the sampling mechanism and the temporary storage bin are arranged on the bearing plate; the electric cabinet is arranged below the bearing plate; the sampling mechanism comprises an electric control telescopic rod, a sampling hose and a cement pump; the electric control telescopic rod is arranged at the front end of the bearing plate and is hinged with the bearing plate; the electric control telescopic rod is controlled by the electric control box; one end of the sampling hose is connected with an inlet of the cement pump, and the other end of the sampling hose is fixed at the telescopic end of the electric control telescopic rod; the cement pump is connected with the electric cabinet through a cable, and the electric cabinet controls the on-off of the cement pump; the outlet of the cement pump is aligned with the upper opening of the temporary storage bin; a heat-conducting ceramic plate is arranged at the position, close to the bottom, of the temporary storage bin, and a spacing layer is formed between the heat-conducting ceramic plate and the bottom of the temporary storage bin; a plurality of electric heating tubes are arranged in the spacing layer. The utility model discloses can realize safe quick muddy earth thick liquids sample collection.
Description
Technical Field
The utility model relates to a concrete detection equipment technical field, in particular to concrete sample collection system.
Background
Concrete has been widely used as a building material in various construction projects. Various capital construction projects have certain requirements on the concrete, so that the output concrete needs to be sampled and detected.
The existing concrete sampling is generally that more materials are discharged on the empty ground when a stirrer discharges materials, and then the discharged materials are manually shoveled to a trolley and transported to an inspection room by the trolley for inspection. In practical application, because the drain hole of mixer is usually to haulage vehicle design, consequently directly throw concrete thick liquids to and very easily lead to environmental pollution on the air ground, because the drain hole is far away from ground, the discharge capacity of concrete thick liquids is bigger again, also has certain potential safety hazard to the staff of waiting to prepare the sample below the drain hole.
The other sampling mode is that after the stirring of the stirrer is completed, the sampling is carried out at a feeding port above the stirrer, but most of concrete slurry is far away from the feeding port, and the sampling amount is usually larger.
Therefore, how to realize safe and rapid concrete slurry sample collection becomes a technical problem which needs to be solved urgently by the technical personnel in the field.
SUMMERY OF THE UTILITY MODEL
In view of the above-mentioned defect of prior art, the utility model provides a concrete sample collection system, the purpose of realization is that safe quick muddy earth thick liquids sample collection is realized.
In order to achieve the above object, the utility model discloses a concrete sample collection system, including device main part, sampling mechanism, temporary storage storehouse and electric cabinet.
Wherein the device body is a cart comprising a carrying plate;
the sampling mechanism and the temporary storage bin are arranged on the bearing plate, the sampling mechanism is close to the front end of the bearing plate, and the temporary storage bin is close to the rear end of the bearing plate;
the electric cabinet is arranged below the bearing plate;
the sampling mechanism comprises an electric control telescopic rod, a sampling hose and a cement pump;
the electric control telescopic rod is arranged at the front end of the bearing plate and is hinged with the bearing plate; the electric control telescopic rod is controlled by the electric cabinet;
one end of the sampling hose is connected with an inlet of the cement pump, and the other end of the sampling hose is fixed at the telescopic end of the electric control telescopic rod;
the cement pump is connected with the electric cabinet through a cable, and the electric cabinet controls the on-off of the cement pump; the outlet of the cement pump is aligned with the upper opening of the temporary storage bin;
the temporary storage bin is of a box-shaped structure with an opening at the upper part; a heat-conducting ceramic plate is arranged at a position, close to the bottom, of the temporary storage bin, and a spacing layer is formed between the heat-conducting ceramic plate and the bottom of the temporary storage bin;
a plurality of electric heating pipes are arranged in the spacing layer;
each electric heating pipe is connected with the electric cabinet through a lead, and the electric cabinet controls the on-off of the electric heating pipes.
Preferably, a handle is arranged on the upper surface of the bearing plate close to the rear end, and a plurality of wheels are arranged below the bearing plate.
More preferably, the wheels include at least 2 unidirectional wheels which are coaxial and close to the rear end of the bearing plate, and at least one universal wheel which is close to the front end of the bearing plate and can rotate around the vertical direction.
More preferably, the handle is provided with a control button connected with the electric cabinet; and an operator sends an instruction to the electric control box through the control button to control the electric control telescopic rod, the cement pump and each electric heating pipe.
Preferably, a detachable bin cover is arranged on the temporary storage bin.
The utility model has the advantages that:
the utility model discloses can realize safe quick muddy earth thick liquids sample collection, the heating system that heat conduction ceramic plate and electric heating pipe formed can evenly generate heat moreover, is difficult to arouse the concrete sample to be heated and bursts, can prevent that concrete sample bottom from sealing the degree of consistency of wetting, improves each part of concrete sample.
The conception, the specific structure and the technical effects of the present invention will be further described with reference to the accompanying drawings, so as to fully understand the objects, the features and the effects of the present invention.
Drawings
Fig. 1 shows a schematic structural diagram of an embodiment of the present invention.
Detailed Description
Examples
As shown in fig. 1, the concrete sample collection device includes a device body 1, a sampling mechanism 2, a temporary storage 3, and an electric cabinet 4.
Wherein the device body 1 is a cart including a carrying plate 11;
the sampling mechanism 2 and the temporary storage bin 3 are arranged on the bearing plate 11, the sampling mechanism 2 is close to the front end of the bearing plate 11, and the temporary storage bin 3 is close to the rear end of the bearing plate 11;
the electric cabinet 4 is arranged below the bearing plate 11;
the sampling mechanism 2 comprises an electric control telescopic rod 21, a sampling hose 22 and a cement pump 23;
the electric control telescopic rod 21 is arranged at the front end of the bearing plate 11 and is hinged with the bearing plate 11; the electric control telescopic rod 21 is controlled by the electric control box 4;
one end of the sampling hose 22 is connected with an inlet of the cement pump 23, and the other end is fixed at the telescopic end of the electric control telescopic rod 21;
the cement pump 23 is connected with the electric cabinet 4 through a cable, and the opening and closing of the electric cabinet 4 are controlled; the outlet of the cement pump 23 is aligned with the upper opening of the temporary storage bin 3;
the temporary storage bin 3 is of a box-shaped structure with an opening at the upper part; a heat-conducting ceramic plate 31 is arranged at the position, close to the bottom, of the temporary storage bin 3, and a spacing layer is formed between the heat-conducting ceramic plate 31 and the bottom of the temporary storage bin 3;
a plurality of electric heating pipes 32 are arranged in the spacing layer;
each electric heating tube 32 is connected with the electric cabinet 4 through a lead, and the opening and closing of the electric cabinet 4 are controlled.
The principle of the utility model is as follows:
the sampling mechanism 2 that forms through automatically controlled telescopic link 21, sample hose 22 and cement pump 23 can realize safe quick muddy earth thick liquids sample collection, and the heating system that heat conduction ceramic plate 31 and a plurality of electric heating pipe 32 formed can evenly generate heat moreover, is difficult to cause the concrete sample to be heated and bursts, can prevent that concrete sample bottom from sealing the excessive humidity, improves the degree of consistency of each part of concrete sample.
In some embodiments, the carrier plate 11 is provided with a handle 12 at a location above and near the rear end and a plurality of wheels 13 below.
In some embodiments, the plurality of wheels 13 includes at least 2 unidirectional wheels that are coaxial and are located near the rear end of the carrier plate 11, and at least one universal wheel that is located near the front end of the carrier plate 11 and is capable of rotating in a vertical direction.
In some embodiments, the handle 12 is provided with a control button connected with the electric cabinet 4; an operator sends an instruction to the electric cabinet through the control button to control the electric control telescopic rod 21, the cement pump 23 and each electric heating pipe 32.
In some embodiments, the temporary storage 3 is provided with a removable cover.
The foregoing has described in detail preferred embodiments of the present invention. It should be understood that numerous modifications and variations can be devised by those skilled in the art in light of the present teachings without departing from the inventive concepts. Therefore, the technical solutions that can be obtained by a person skilled in the art through logic analysis, reasoning or limited experiments based on the prior art according to the concepts of the present invention should be within the scope of protection defined by the claims.
Claims (5)
1. The concrete sample collecting device comprises a device main body (1), a sampling mechanism (2), a temporary storage bin (3) and an electric cabinet (4); characterized in that the device body (1) is a trolley comprising a bearing plate (11);
the sampling mechanism (2) and the temporary storage bin (3) are arranged on the bearing plate (11), the sampling mechanism (2) is close to the front end of the bearing plate (11), and the temporary storage bin (3) is close to the rear end of the bearing plate (11);
the electric cabinet (4) is arranged below the bearing plate (11);
the sampling mechanism (2) comprises an electric control telescopic rod (21), a sampling hose (22) and a cement pump (23);
the electric control telescopic rod (21) is arranged at the front end of the bearing plate (11) and is hinged with the bearing plate (11); the electric control telescopic rod (21) is controlled by the electric control box (4);
one end of the sampling hose (22) is connected with an inlet of the cement pump (23), and the other end of the sampling hose is fixed at the telescopic end of the electric control telescopic rod (21);
the cement pump (23) is connected with the electric cabinet (4) through a cable, and the opening and closing of the electric cabinet (4) are controlled; the outlet of the cement pump (23) is aligned with the upper opening of the temporary storage bin (3);
the temporary storage bin (3) is of a box-shaped structure with an opening at the upper part; a heat-conducting ceramic plate (31) is arranged at the position, close to the bottom, of the temporary storage bin (3), and a spacing layer is formed between the heat-conducting ceramic plate (31) and the bottom of the temporary storage bin (3);
a plurality of electric heating pipes (32) are arranged in the spacing layer;
each electric heating tube (32) is connected with the electric cabinet (4) through a lead, and the opening and closing of the electric heating tubes are controlled by the electric cabinet (4).
2. A concrete sample collection device according to claim 1, wherein the carrier plate (11) is provided with a handle (12) at a position above and near the rear end and a plurality of wheels (13) below.
3. The concrete sample collection device according to claim 2, wherein the plurality of wheels (13) comprises at least 2 unidirectional wheels which are coaxial and are located near the rear end of the carrying plate (11), and at least one universal wheel which is located near the front end of the carrying plate (11) and is rotatable about a vertical direction.
4. The concrete sample collecting device according to claim 2, wherein the handle (12) is provided with a control button connected with the electric cabinet (4); an operator sends an instruction to the electric cabinet through the control button to control the electric control telescopic rod (21), the cement pump (23) and each electric heating pipe (32).
5. The concrete sample collection device according to claim 1, wherein a removable cap is provided on the temporary storage silo (3).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022228501.9U CN213148458U (en) | 2020-10-09 | 2020-10-09 | Concrete sample collection system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022228501.9U CN213148458U (en) | 2020-10-09 | 2020-10-09 | Concrete sample collection system |
Publications (1)
Publication Number | Publication Date |
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CN213148458U true CN213148458U (en) | 2021-05-07 |
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CN202022228501.9U Active CN213148458U (en) | 2020-10-09 | 2020-10-09 | Concrete sample collection system |
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CN (1) | CN213148458U (en) |
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2020
- 2020-10-09 CN CN202022228501.9U patent/CN213148458U/en active Active
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