CN216646512U - Dust keeper is used in soil sample detection - Google Patents

Dust keeper is used in soil sample detection Download PDF

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Publication number
CN216646512U
CN216646512U CN202220110245.XU CN202220110245U CN216646512U CN 216646512 U CN216646512 U CN 216646512U CN 202220110245 U CN202220110245 U CN 202220110245U CN 216646512 U CN216646512 U CN 216646512U
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dust
dust collection
cover
conveying
detection bin
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CN202220110245.XU
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Chinese (zh)
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王登芝
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Beijing Forestry University
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Beijing Forestry University
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Abstract

The utility model provides a dust-proof device for soil sample detection, which comprises: the device comprises a dust suction mechanism, a residue filtering cover, a detection bin, a dust collection box and a conveying channel; the detection bin is arranged at the left part of the upper end surface of the mounting seat; the filter residue cover is arranged at the upper part in the detection bin and is a detachable structure; the dust collection mechanism is arranged on the upper end surface of the detection bin, an inner dust absorption cover is arranged at the lower part of the dust collection mechanism, a first conveying pipe is connected to the left side of the outer annular surface of the dust collection mechanism, and an outer dust absorption cover is arranged at the lower end of the first conveying pipe; the dust collection box is arranged at the right part of the upper end surface of the mounting seat; the conveying channel is arranged in the middle of the left side of the detection bin; a first turbofan is installed in the upper portion of the dust collection mechanism, and the upper end of the dust collection mechanism is connected with a third conveying pipe. The dust collection device is reasonable in structure arrangement, convenient for dust collection treatment of the soil sample detection bin, capable of preventing dust from entering the surrounding air environment and collecting the dust intensively and quickly, more convenient and environment-friendly, and practical and trouble-saving.

Description

Dust keeper is used in soil sample detection
Technical Field
The utility model relates to the technical field of soil sample detection, in particular to a dustproof device for soil sample detection.
Background
Soil nutrient analysis and soil pollution condition analysis require treatment, rolling, grinding and screening of soil samples to meet the requirement of sample determination; however, dust flies during the process of rolling and screening soil samples, which causes mutual influence of the soil and pollution to indoor air and experimental equipment. However, the soil sample detection equipment in the prior art lacks dustproof structure, leads to the dust can fly to the surrounding environment in, not only pollutes operational environment and equipment, needs the frequent clearance of staff moreover, uses and is not environmental protection convenient.
SUMMERY OF THE UTILITY MODEL
For overcoming the defect that prior art exists, provide a dust keeper for soil sample detects now to solve prior art's soil sample check out test set and lack dustproof construction, lead to the dust can fly upward all ring border, not only pollute operational environment and equipment, need frequent clearance of staff moreover, use and convenient problem of environmental protection.
In order to achieve the above object, there is provided a dust-proof device for soil sample detection, comprising: the device comprises a dust collection mechanism, a residue filtering cover, a detection bin, a dust collection box and a conveying channel;
the detection bin is arranged on the left part of the upper end face of the mounting seat;
the filter residue cover is arranged at the upper part in the detection bin and is of a detachable structure;
the dust collection mechanism is arranged on the upper end surface of the detection bin, an inner dust absorption cover is arranged at the lower part of the dust collection mechanism, a first conveying pipe is connected to the left side of the outer annular surface of the dust collection mechanism, and an outer dust absorption cover is arranged at the lower end of the first conveying pipe;
the dust collection box is arranged at the right part of the upper end surface of the mounting seat;
and the conveying channel is arranged in the middle of the left side of the detection bin.
Furthermore, a first turbofan is installed in the upper portion of the dust collection mechanism, the upper end of the dust collection mechanism is connected with a third conveying pipe, the other end of the third conveying pipe is connected with a fourth conveying pipe, a top cover is arranged at the lower end of the fourth conveying pipe, a second turbofan is installed in the top cover, and the lower end of the top cover is arranged at the left portion of the upper end face of the dust collection box.
Furthermore, the outer annular surface of the inner dust hood is annularly provided with three groups of second conveying pipes, the lower ends of the second conveying pipes are provided with suction nozzles, and the suction nozzles are located at the inner upper part of the filter residue hood.
Further, the upper end that detects the storehouse is provided with the top cap, and has seted up three through-holes of group on the top cap to the lower part of every group second conveyer pipe passes a set of through-hole that corresponds, and the inside wall upper end left and right sides that detects the storehouse simultaneously all is provided with fixed cover, and filter residue cover is put between two sets of fixed covers simultaneously.
Furthermore, a box door is arranged on the front side face of the dust collection box, an exhaust window is arranged on the right side face of the dust collection box, a dustproof and breathable film is installed in the exhaust window, and the fourth conveying pipe is communicated with the dust collection box.
Further, the motor is installed to transfer passage's outer end, and is provided with the pivot on the motor, is provided with the screw in the pivot to transfer passage's upper left portion is provided with the feeder hopper, and the setting of transfer passage high left side low right side slope simultaneously, and is linked together the setting between transfer passage and the detection storehouse.
The utility model has the beneficial effects that:
1. the dust collection mechanism is mainly characterized in that a first turbofan in the dust collection mechanism rotates to drive dust-containing air flow to be conveyed from the inside of the residue filtering cover and the feeding hopper to the inside of the dust collection mechanism, and then the dust-containing air flow is conveyed into the dust collection box through a third conveying pipe and a fourth conveying pipe, so that dust flying by soil samples is prevented from being diffused into peripheral air, the detection environment is prevented from being polluted, and working personnel can work in a healthy environment.
2. According to the utility model, the fixed sleeves are arranged on the inner side wall of the detection bin, so that the filter residue cover is conveniently sleeved between the two groups of fixed sleeves, dust flying from a soil sample in the detection bin can conveniently enter the filter residue cover, large-particle soil particles or impurities are retained in the detection bin, the large-particle soil particles or impurities are prevented from being keyed into a dust collection mechanism, and a conveying pipeline is prevented from being blocked.
3. The dust collection box mainly receives dust in the dust-containing gas, and meanwhile, the dust accumulated in the dust collection box is convenient to clean regularly, so that the dust collection box is convenient and trouble-saving to use.
4. The conveying channel is mainly used for conveniently conveying the soil sample into the detection bin, the rotating shaft is rotated through the motor, the rotating shaft drives the propeller to synchronously move while rotating, the soil sample is conveniently and quickly conveyed into the detection bin, blockage is avoided, the outer dust hood is positioned at the upper right part of the feeding hopper, dust-containing gas near the feeding hopper is conveniently sucked away, and dust prevention is convenient and trouble-saving.
Drawings
FIG. 1 is a schematic front view of an embodiment of the present invention;
FIG. 2 is a schematic top view of an embodiment of the present invention;
FIG. 3 is a schematic cross-sectional view of an embodiment of the present invention;
FIG. 4 is a schematic structural arrangement view of a dust suction mechanism according to an embodiment of the present invention;
fig. 5 is a schematic view of the structural load in the detection bin according to the embodiment of the utility model.
In the figure: 1. a dust suction mechanism; 10. a first turbofan; 11. a first delivery pipe; 12. an outer dust hood; 13. an inner dust absorption cover; 14. a second delivery pipe; 15. a suction nozzle; 16. a third delivery pipe; 17. a fourth delivery pipe; 18. a second turbofan; 19. a top cover; 2. a residue filtering cover; 3. a detection bin; 30. a through hole; 31. a top cover; 32. fixing a sleeve; 4. a mounting seat; 5. a dust collection box; 50. an exhaust window; 51. a dustproof and breathable film; 52. a box door; 6. a delivery channel; 60. a propeller; 61. a rotating shaft; 62. a motor; 63. a feed hopper.
Detailed Description
The embodiments of the present invention are described below with reference to specific embodiments, and other advantages and effects of the present invention will be easily understood by those skilled in the art from the disclosure of the present specification. The utility model is capable of other and different embodiments and of being practiced or of being carried out in various ways, and its several details are capable of modification in various respects, all without departing from the spirit and scope of the present invention.
Fig. 1 is a schematic front view, fig. 2 is a schematic top view, fig. 3 is a schematic cross-sectional view, fig. 4 is a schematic structural arrangement view of a dust suction mechanism, and fig. 5 is a schematic structural load diagram of a detection chamber.
Referring to fig. 1 to 5, the present invention provides a dust-proof device for soil sample detection, including: the device comprises a dust collection mechanism 1, a residue filtering cover 2, a detection bin 3, a dust collection box 5 and a conveying channel 6; the detection bin 3 is arranged at the left part of the upper end face of the mounting seat 4; the filter residue cover 2 is arranged at the upper part in the detection bin 3, and the filter residue cover 2 is of a detachable structure; the dust collection mechanism 1 is arranged on the upper end surface of the detection bin 3, an inner dust absorption cover 13 is arranged at the lower part of the dust collection mechanism 1, a first conveying pipe 11 is connected to the left side of the outer annular surface of the dust collection mechanism 1, and an outer dust absorption cover 12 is arranged at the lower end of the first conveying pipe 11; the dust collection box 5 is arranged at the right part of the upper end surface of the mounting seat 4; the conveying channel 6 is arranged in the middle of the left side of the detection bin 3.
In the embodiment, a first turbofan 10 is installed in the upper part of the dust collection mechanism 1, the upper end of the dust collection mechanism 1 is connected with a third conveying pipe 16, the other end of the third conveying pipe 16 is connected with a fourth conveying pipe 17, the lower end of the fourth conveying pipe 17 is provided with a top cover 19, and a second turbofan 18 is installed in the top cover 19; three groups of second conveying pipes 14 are annularly arranged on the outer annular surface of the inner dust hood 13, a suction nozzle 15 is arranged at the lower end of each second conveying pipe 14, and the suction nozzle 15 is positioned at the inner upper part of the filter residue hood 2.
In a preferred embodiment, the dust suction mechanism 1 of the present invention is mainly configured to rotate by the first turbofan 10 inside the dust suction mechanism to drive the dust-containing air flow to be conveyed from the inside of the residue cover 2 and the feeding hopper 63 to the inside of the dust suction mechanism 1, and then conveyed to the inside of the dust collection box 5 by the third conveying pipe 16 and the fourth conveying pipe 17, so as to prevent the dust flying from the soil sample from diffusing into the surrounding air, thereby preventing the detection environment from being polluted, and ensuring that the worker can work in a healthy environment.
In this embodiment, the upper end of detecting storehouse 3 is provided with top cap 31, and has seted up three groups of through-holes 30 on the top cap 31 to the lower part of every group second conveyer pipe 14 passes a set of through-hole 30 that corresponds, and the inside wall upper end left and right sides that detects storehouse 3 simultaneously all is provided with fixed cover 32, and filter residue cover 2 cover is put between two sets of fixed covers 32 simultaneously.
As a better implementation mode, the fixing sleeves 32 arranged on the inner side wall of the detection bin 3 are convenient for the filter residue cover 2 to be sleeved between the two groups of fixing sleeves 32, so that dust flying up from a soil sample in the detection bin 3 can conveniently enter the filter residue cover 2, large-particle soil particles or impurities are kept in the detection bin 3, the dust is prevented from being input into the dust collection mechanism 1, and a conveying pipeline is prevented from being blocked.
In this embodiment, a door 52 is provided on the front side of the dust box 5, an exhaust window 50 is provided on the right side of the dust box 5, a dust-proof and air-permeable membrane 51 is installed in the exhaust window 50, and the fourth conveying pipe 17 is communicated with the dust box 5.
As a preferred embodiment, the dust collection box 5 of the utility model mainly receives dust in the dust-containing gas, and the dust accumulated in the dust collection box 5 is convenient to clean regularly, so that the use is convenient and trouble-saving.
In this embodiment, the motor 62 is installed at the outer end of the conveying channel 6, the rotating shaft 61 is arranged on the motor 62, the feeding hopper 63 is arranged at the upper left part of the conveying channel 6, meanwhile, the conveying channel 6 is inclined in the left-high and right-low directions, and the conveying channel 6 is communicated with the detection bin 3.
As a preferred embodiment, the conveying channel 6 of the present invention mainly facilitates conveying soil samples into the detection chamber 3, the rotating shaft 61 is rotated by the motor 62, the rotating shaft 61 drives the propeller 60 to move synchronously while rotating, so as to facilitate rapid conveying into the detection chamber 3 and avoid blockage, and the outer dust hood 12 is located at the upper right of the feeding hopper 63, so as to facilitate sucking away dust-containing gas near the feeding hopper 63, thereby facilitating dust prevention and saving trouble.
The utility model can effectively solve the problems that the soil sample detection equipment in the prior art is lack of a dustproof structure, so that dust can fly to the surrounding environment, the working environment and equipment are polluted, workers need to frequently clean the soil sample detection equipment, and the use is not environment-friendly and convenient.

Claims (6)

1. The utility model provides a soil sample detects uses dust keeper which characterized in that includes: the device comprises a dust collection mechanism (1), a residue filtering cover (2), a detection bin (3), a dust collection box (5) and a conveying channel (6);
the detection bin (3) is arranged at the left part of the upper end face of the mounting seat (4);
the filter residue cover (2) is arranged at the upper part in the detection bin (3), and the filter residue cover (2) is of a detachable structure;
the dust collection mechanism (1) is arranged on the upper end face of the detection bin (3), an inner dust collection cover (13) is arranged at the lower part of the dust collection mechanism (1), a first conveying pipe (11) is connected to the left side of the outer ring face of the dust collection mechanism (1), and an outer dust collection cover (12) is arranged at the lower end of the first conveying pipe (11);
a dust collection box (5) arranged at the right part of the upper end surface of the mounting seat (4);
and the conveying channel (6) is arranged in the middle of the left side of the detection bin (3).
2. The dust-proof device for soil sample detection according to claim 1, wherein a first turbine fan (10) is installed in the upper part of the dust suction mechanism (1), a third conveying pipe (16) is connected to the upper end of the dust suction mechanism (1), a fourth conveying pipe (17) is connected to the other end of the third conveying pipe (16), a top cover (19) is arranged at the lower end of the fourth conveying pipe (17), a second turbine fan (18) is installed in the top cover (19), and the lower end of the top cover (19) is arranged at the left part of the upper end face of the dust collection box (5).
3. The dust-proof device for soil sample detection according to claim 1, wherein three sets of second conveying pipes (14) are annularly arranged on the outer annular surface of the inner dust hood (13), the lower ends of the second conveying pipes (14) are provided with suction nozzles (15), and the suction nozzles (15) are positioned at the inner upper part of the filter residue hood (2).
4. The dustproof device for soil sample detection according to claim 1, wherein a top cover (31) is arranged at the upper end of the detection bin (3), three groups of through holes (30) are formed in the top cover (31), the lower portion of each group of second conveying pipes (14) penetrates through the corresponding group of through holes (30), fixing sleeves (32) are arranged on the left side and the right side of the upper end of the inner side wall of the detection bin (3), and the filter residue cover (2) is sleeved between the two groups of fixing sleeves (32).
5. The dust-proof device for soil sample detection according to claim 1, wherein a door (52) is provided on the front side of the dust collection box (5), an air vent (50) is provided on the right side of the dust collection box (5), a dust-proof and air-permeable membrane (51) is installed in the air vent (50), and the fourth conveying pipe (17) is communicated with the dust collection box (5).
6. The dustproof device for soil sample detection according to claim 1, wherein a motor (62) is installed at the outer end of the conveying channel (6), a rotating shaft (61) is arranged on the motor (62), a propeller (60) is arranged on the rotating shaft (61), a feeding hopper (63) is arranged at the upper left part of the conveying channel (6), the conveying channel (6) is inclined in a high-left direction and a low-right direction, and the conveying channel (6) is communicated with the detection bin (3).
CN202220110245.XU 2022-01-17 2022-01-17 Dust keeper is used in soil sample detection Active CN216646512U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220110245.XU CN216646512U (en) 2022-01-17 2022-01-17 Dust keeper is used in soil sample detection

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220110245.XU CN216646512U (en) 2022-01-17 2022-01-17 Dust keeper is used in soil sample detection

Publications (1)

Publication Number Publication Date
CN216646512U true CN216646512U (en) 2022-05-31

Family

ID=81727019

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220110245.XU Active CN216646512U (en) 2022-01-17 2022-01-17 Dust keeper is used in soil sample detection

Country Status (1)

Country Link
CN (1) CN216646512U (en)

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