CN217456881U - Soil detection is with interim sample case of keeping - Google Patents

Soil detection is with interim sample case of keeping Download PDF

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Publication number
CN217456881U
CN217456881U CN202221528101.2U CN202221528101U CN217456881U CN 217456881 U CN217456881 U CN 217456881U CN 202221528101 U CN202221528101 U CN 202221528101U CN 217456881 U CN217456881 U CN 217456881U
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China
Prior art keywords
heat
fixedly connected
cooling
circulating water
box
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CN202221528101.2U
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Chinese (zh)
Inventor
刘昌�
冯云梅
陈庆鸽
刘凯
万正春
王晓雪
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Henan Zhuolao Testing Research Institute Co ltd
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Henan Zhuolao Testing Research Institute Co ltd
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Abstract

The utility model discloses a soil detection is with interim sample case of keeping relates to soil detection technical field. The utility model comprises an insulation can and a cooling structure, wherein the cooling structure is fixedly connected inside the insulation can; the cooling structure comprises a heat conduction row plate, a circulating water-cooling pipe and a cooling fan, wherein the heat conduction row plate is fixedly connected to the upper surface and the lower surface of the circulating water-cooling pipe, and the cooling fan is arranged below the heat conduction row plate. The utility model discloses an insulation can and cooling structure have solved interim sample and have preserved the case and preserve the poor problem with the use convenience is low of effect.

Description

Soil detection is with interim sample case of keeping
Technical Field
The utility model belongs to the technical field of soil detection, especially, relate to a soil detection is with interim sample case of saving.
Background
Soil environment monitoring means that the environment quality (or pollution degree) and the change trend thereof are determined by measuring representative values of factors affecting the soil environment quality. The soil monitoring generally refers to soil environment monitoring, which generally includes technical contents such as stationed sampling, sample preparation, analysis method, result characterization, data statistics, quality evaluation and the like, wherein after soil sampling, in order to guarantee the original state of the interior of a sample to the maximum extent, a temporary sample storage box is generally needed to be used for storing the sample, but the existing temporary sample storage box still has the following disadvantages in actual use:
when the existing temporary sample storage box is used for storing soil samples at low temperature, the temperature of the existing temporary sample storage box needs to be reduced by using an ice bag or refrigeration equipment in an auxiliary mode, if the existing temporary sample storage box is used for storing the soil samples, the existing temporary sample storage box is short in aging, and the existing temporary sample storage box is easy to pollute storage environment after being melted and poor in using effect, and if refrigeration equipment is used, the existing temporary sample storage box is high in energy consumption, needs a high-power supply and is inconvenient to use.
Therefore, the existing temporary sample storage box cannot meet the requirements in practical use, so that an improved technology is urgently needed in the market to solve the problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a soil testing is with interim sample case of preserving, through insulation can and cooling structure, solved current interim sample and preserved the case and preserve the poor problem with the use convenience is low of effect.
In order to solve the technical problem, the utility model discloses a realize through following technical scheme:
the utility model relates to a temporary sample storage box for soil detection, which comprises a heat preservation box and a cooling structure, wherein the cooling structure is fixedly connected inside the heat preservation box;
the cooling structure comprises a heat conduction row plate, a circulating water-cooling pipe and a cooling fan, wherein the heat conduction row plate is fixedly connected to the upper surface and the lower surface of the circulating water-cooling pipe, and the cooling fan is arranged below the heat conduction row plate; the heat conduction is arranged the board and is used for carrying out absorption and conduction to circulating water cooling pipe surface heat to increase heat absorption and radiating contactable area, be more convenient for carry out absorption and dissipation to the heat, the circulating water cooling pipe is used for carrying out the circulation of water, uses water as the carrier, carries out thermal exchange, maintains the inside low temperature environment of box, radiator fan is used for carrying out the exchange to the inside gas of box, promotes the diffusion of heat conduction exhaust plate surface heat to in the gas.
Furthermore, the heat preservation box comprises a heat preservation top cover, a sample preservation box and a support, the rear side edge of the heat preservation top cover is rotatably connected with the sample preservation box through a switching piece, and the support is fixedly connected above the interior of the sample preservation box;
the heat insulation box also comprises a heat insulation plate and a fixed bottom plate, the middle position in the sample protection box is fixedly connected with the heat insulation plate, and the lower part in the sample protection box is fixedly connected with the fixed bottom plate; the heat preservation top cap with protect the appearance case and be used for providing stable and clean environment for the soil sample, the support is used for carrying out the support to the sample bottle, the heat insulating board is used for carrying out the isolation to between the cold and hot circulation water-cooling pipe, PMKD is used for carrying out the back cover to protecting the appearance case and radiator fan's fixed.
Furthermore, the heat insulation plate is arranged between the circulating water cooling pipes, and the heat radiation fan is fixedly connected to the bottom of the fixed bottom plate;
the cooling structure further comprises a pipe frame and a water pump, wherein a circulating water-cooling pipe is fixedly connected between the pipe frame on the upper layer and the pipe frame on the lower layer, the water pump is fixedly connected between the circulating water-cooling pipes on the upper layer and the circulating water-cooling pipes on the lower layer, and the upper surface of the circulating water-cooling pipe on the upper layer and the lower surface of the circulating water-cooling pipe on the lower layer are fixedly connected with heat conduction drain plates;
the pipe frame, the heat conduction row plate and the circulating water cooling pipe are all of a double-layer structure;
the pipe support is used for connecting, supporting and positioning the circulating water cooling pipe, and the water pump is used for driving the traction of the water in the circulating water cooling pipe.
The utility model discloses following beneficial effect has:
1. the utility model discloses a set up the cooling structure, the current problem that the effect is poor is preserved to interim sample storage box has been solved, wherein be provided with heat conduction row board in the cooling structure, circulation water-cooling tube and radiator fan, heat conduction row board is used for carrying out absorption and conduction to circulation water-cooling tube surface heat, and increase endothermic and radiating contactable area, be more convenient for carry out absorption and dissipation to the heat, the circulation water-cooling tube is used for carrying out the circulation of water, use water as the carrier, carry out thermal exchange, maintain the inside low temperature environment of box, radiator fan is used for carrying out the exchange to the box inside gas, promote the diffusion of heat conduction row board surface heat to in the gas, with this cooling to the inside water of hot-water pipe, setting through the cooling structure, sustainable stable maintains the inside low temperature environment of box, the protection effect is good.
2. The utility model discloses a set up the cooling structure, solved the problem that current interim sample storage box used the convenience low, wherein be provided with heat conduction volleyball, circulation water-cooling pipe and radiator fan in the cooling structure, through heat conduction volleyball, circulation water-cooling pipe and radiator fan's setting, only utilize two fans alright keep the inside stable low temperature environment that lasts of box, the energy consumption is low moreover, does not need powerful power to maintain, more practical when interim sample is preserved, it is more convenient to use.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a diagram showing a temporary sample storage container according to the present invention;
FIG. 3 is an exploded view of the present invention;
FIG. 4 is a bottom view of the incubator of the present invention;
FIG. 5 is a sectional view of the incubator of the present invention;
fig. 6 is an exploded view of the cooling structure of the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
1. a heat preservation box; 101. a heat preservation top cover; 102. a sample-keeping box; 103. a support; 104. a heat insulation plate; 105. fixing the bottom plate; 2. a cooling structure; 201. a pipe frame; 202. a heat conducting row plate; 203. a circulating water-cooled tube; 204. a water pump; 205. a heat dissipation fan.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
Referring to fig. 1-6, the utility model relates to a temporary sample storage box for soil detection, which comprises a thermal insulation box 1 and a cooling structure 2, wherein the cooling structure 2 is fixedly connected inside the thermal insulation box 1;
the cooling structure 2 comprises a heat conduction row plate 202, a circulating water cooling pipe 203 and a cooling fan 205, wherein the heat conduction row plate 202 is fixedly connected to the upper surface and the lower surface of the circulating water cooling pipe 203, and the cooling fan 205 is arranged below the heat conduction row plate 202 below;
the heat conduction row plate 202 is attached to the side surface of the circulating water cooling pipe 203, and is respectively fixed at the upper and lower positions of the circulating water cooling pipe 203, and is used for absorbing and conducting the surface heat of the circulating water cooling pipe 203, increasing the contact area of heat absorption and heat dissipation, and facilitating the absorption and dissipation of the heat, the circulating water cooling pipe 203 is divided into an upper layer and a lower layer, the upper layer is a cold water pipe, the lower layer is a hot water pipe, the upper layer and the lower layer are connected through a water pump 204, the circulating water cooling pipe 203 of the upper and lower layers is separately fixed inside the pipe frame 201, is used for circulating water, uses water as a carrier to exchange heat and maintain the low-temperature environment inside the box body, the heat radiation fan 205 is fixed at the round hole at the bottom surface of the fixed bottom plate 105 through bolts, the lower layer heat conduction row plate 202 is arranged above, is used for exchanging the gas inside the box body and promoting the diffusion of the surface heat of the heat conduction row plate 202 into the gas, so as to cool the water inside the hot water pipe, through the setting of heat conduction platoon 202, circulating water-cooling pipe 203 and radiator fan 205, only utilize two fans alright keep the inside stable low temperature environment that lasts of box, the energy consumption is low moreover, does not need powerful power to maintain, and is more practical when interim sample is preserved.
As shown in fig. 1-5, the heat preservation box 1 comprises a heat preservation top cover 101, a sample preservation box 102 and a bracket 103, wherein the rear side edge of the heat preservation top cover 101 is rotatably connected with the sample preservation box 102 through an adapter, and the bracket 103 is fixedly connected above the interior of the sample preservation box 102;
the heat preservation box 1 further comprises a heat insulation plate 104 and a fixed bottom plate 105, the heat insulation plate 104 is fixedly connected to the middle position inside the sample preservation box 102, and the fixed bottom plate 105 is fixedly connected to the lower portion inside the sample preservation box 102;
the heat preservation top cover 101 and the sample preservation box 102 are connected through the adapter piece, the sample preservation box is made of the same heat preservation material, the heat preservation top cover is used for providing a stable and clean environment for soil samples, the samples are prevented from being polluted, the support 103 is a net rack fixed above the inside of the sample preservation box 102 and used for supporting sample bottles, the upper space and the lower space are guaranteed to be communicated with each other, the heat insulation plate 104 is a heat preservation and insulation material and arranged between the circulating water cooling pipes 203 and used for isolating the cold and hot circulating water cooling pipes 203, the cold and hot environment is separated, the fixing bottom plate 105 is a bottom plugging structure of the sample preservation box 102, two through holes are formed in the surface of the fixing bottom cover and the heat dissipation fan 205 of the sample preservation box 102.
As shown in fig. 1, 2, 3 and 6, the heat insulation board 104 is arranged between the circulating water-cooling pipes 203, and the heat radiation fan 205 is fixedly connected to the bottom of the fixed bottom plate 105;
the cooling structure 2 further comprises pipe frames 201 and water pumps 204, wherein circulating water-cooled pipes 203 are fixedly connected between the upper layer pipe frame 201 and the lower layer pipe frame 201, the water pumps 204 are fixedly connected between the upper layer circulating water-cooled pipes 203 and the lower layer circulating water-cooled pipes 203, and heat-conducting discharge plates 202 are fixedly connected to the upper surfaces of the upper layer circulating water-cooled pipes 203 and the lower surfaces of the lower layer circulating water-cooled pipes 203;
the pipe frame 201, the heat conducting row plate 202 and the circulating water cooling pipe 203 are all of a double-layer structure;
the pipe support 201 is a fixing support for the circulating water-cooling pipe 203, is fixed inside the sample holding box 102 through a support plate inside the sample holding box 102, and is used for connecting, supporting and positioning the circulating water-cooling pipe 203, and the water pump 204 is a water circulation mechanism for the circulating water-cooling pipe 203 and is used for carrying out traction driving on moisture inside the circulating water-cooling pipe 203.
One specific application of this embodiment is: when the soil sample is stored, firstly, the bolts on the side plates are disassembled, the heat preservation top cover 101 is rotated to open the heat preservation box 1, then the soil sample bottle is turned into the sample-keeping box 102, then the heat-preservation top cover 101 is closed and fixed, then the heat radiation fan 205 and the water pump 204 are started, the heat conducting exhaust plate 202 on the upper layer absorbs the heat in the space above the sample-keeping box 102, conducts the heat to the circulating water-cooling pipe 203, diffuses into the water, the water inside the circulating water-cooling pipe 203 is driven by the water pump 204 to be transported from the upper layer to the lower layer and simultaneously conducted to the heat conduction exhaust plate 202 of the lower layer, the heat conduction plate 202 at the lower layer diffuses the received heat into the air at the bottom space of the sample-holding box 102, and outputs the heat to the outside of the box body under the action of the heat radiation fan 205, and through the circulation, inside the soil sample holding box 102, a cold space is provided above the heat insulating plate 104, and a hot space is provided below the heat insulating plate, so that the soil sample is held by heat exchange.
The above is only the preferred embodiment of the present invention, and the present invention is not limited thereto, any technical solutions recorded in the foregoing embodiments are modified, and some technical features thereof are replaced with equivalent ones, and any modification, equivalent replacement, and improvement made thereby all belong to the protection scope of the present invention.

Claims (6)

1. The utility model provides a soil detection is with interim sample case of keeping, includes insulation can (1) and cooling structure (2), its characterized in that: a cooling structure (2) is fixedly connected inside the heat preservation box (1);
the cooling structure (2) comprises a heat conduction row plate (202), a circulating water cooling pipe (203) and a cooling fan (205), the heat conduction row plate (202) is fixedly connected to the upper surface and the lower surface of the circulating water cooling pipe (203), and the cooling fan (205) is arranged below the heat conduction row plate (202).
2. The temporary sample storage box for soil detection according to claim 1, wherein: insulation can (1) is including heat preservation top cap (101), guarantor's appearance case (102) and support (103), the back side of heat preservation top cap (101) passes through the adaptor and is connected with guarantor's appearance case (102) rotation, the top fixedly connected with support (103) of guarantor appearance case (102) inside.
3. The temporary sample storage box for soil detection according to claim 2, wherein: the heat preservation box (1) further comprises a heat insulation plate (104) and a fixed bottom plate (105), the heat insulation plate (104) is fixedly connected to the middle position inside the sample preservation box (102), and the fixed bottom plate (105) is fixedly connected to the lower portion inside the sample preservation box (102).
4. The temporary sample storage box for soil detection according to claim 3, wherein: the heat insulation plate (104) is arranged between the circulating water cooling pipes (203), and the cooling fan (205) is fixedly connected to the bottom of the fixed bottom plate (105).
5. The temporary sample storage box for soil detection according to claim 1, characterized in that: cooling structure (2) still include pipe support (201) and water pump (204), upper and lower layer fixedly connected with circulation water-cooled tube (203) between pipe support (201), upper and lower layer fixedly connected with water pump (204) between circulation water-cooled tube (203), upper strata the upper surface of circulation water-cooled tube (203) and lower floor the lower fixed surface of circulation water-cooled tube (203) is connected with heat conduction row's board (202).
6. The temporary sample storage box for soil detection according to claim 5, wherein: the pipe frame (201), the heat conduction row plate (202) and the circulating water cooling pipe (203) are all of a double-layer structure.
CN202221528101.2U 2022-06-19 2022-06-19 Soil detection is with interim sample case of keeping Active CN217456881U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221528101.2U CN217456881U (en) 2022-06-19 2022-06-19 Soil detection is with interim sample case of keeping

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221528101.2U CN217456881U (en) 2022-06-19 2022-06-19 Soil detection is with interim sample case of keeping

Publications (1)

Publication Number Publication Date
CN217456881U true CN217456881U (en) 2022-09-20

Family

ID=83238747

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221528101.2U Active CN217456881U (en) 2022-06-19 2022-06-19 Soil detection is with interim sample case of keeping

Country Status (1)

Country Link
CN (1) CN217456881U (en)

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