CN208821526U - A kind of Grainhouse injurious insect detector detecting variable depth - Google Patents
A kind of Grainhouse injurious insect detector detecting variable depth Download PDFInfo
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- CN208821526U CN208821526U CN201821533359.5U CN201821533359U CN208821526U CN 208821526 U CN208821526 U CN 208821526U CN 201821533359 U CN201821533359 U CN 201821533359U CN 208821526 U CN208821526 U CN 208821526U
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Abstract
The utility model discloses a kind of Grainhouse injurious insect detectors for detecting variable depth, it is related to silo grain information detection device technical field, the utility model includes shell and elevating mechanism, cover top plate inner surface is connected with two pieces of partitions being vertically arranged, two pieces of partitions, which pass through shell, is divided into paper supply chamber, working chamber and collection chamber, divider height is less than body height, partition bottom is equipped with mythimna separata paper, the intracavitary portion of paper supply is equipped with paper-feeding mechanism, the intracavitary portion of collection is equipped with paper collecting mechanism, infrared camera is equipped at the top of working chamber, working chamber one side wall is provided with worm trapping hole, working chamber is provided with grain slag entrance on the bottom plate of worm trapping hole, two pieces of partitions above mythimna separata paper close to grain slag inlet are equipped with photo-electric sensor for countering, housing bottom is connected with grain slag storage room;The injurious insect detector of the utility model can the foodstuff pest situation to different depth be sampled detection and analysis, have sampling simple, pest detection is accurate, representative advantage.
Description
Technical field
The utility model relates to silo grain information detection device technical fields, more particularly to a kind of detection variable depth
Grainhouse injurious insect detector.
Background technique
It during the deposit of grain, needs often to be sampled analysis to the pest situation in silo, so as to using suitable
Work as measure.But food storage storehouse grain storage quantity is more (5000 tons/storehouse), warehouse area is big (1000-1800 square metres/storehouse),
The type and quantity that pest in grain is checked only with manual sampling method, are cumbersome, therefore be will cause to grain storage evil
Worm forecasting inaccuracy is true, leads to mistake estimation desinsection condition and a large amount of grain storage pests is caused to breed, cause unnecessary economic loss.
Also there are the method for proposing intelligent measure pest, including sound detection, near infrared spectroscopy, x-ray method in the prior art
With conductance method etc., these methods are in theory stage mostly, in practice due to various reasons, also and not actually used.
Therefore now detection pest method is main or the detection method of manual sampling combination equipment analysis, but this method
Grain heap surface area can be difficult to detect pest situation inside grain heap, it more cannot be as needed for grain heap inside difference
Depth carries out multidraw detection, so that detection sampling result does not have generality, probably due to local pest assembles and causes
The inaccuracy of testing result.
In conclusion how to carry out multiple spot detection sampling inside grain heap, obtain more sampling sample, improves pest inspection
Accuracy is surveyed, is current those skilled in the art's urgent problem.
Utility model content
The purpose of this utility model is that: it is cumbersome in order to solve existing manual sampling detection, it is unable to inside grain heap
The pest situation of different depth carries out multidraw comprehensive analysis, causes the problem of pest detection inaccuracy, the utility model mentions
For a kind of Grainhouse injurious insect detector for detecting variable depth.
The utility model specifically uses following technical scheme to achieve the goals above:
A kind of Grainhouse injurious insect detector detecting variable depth, including shell, further include for driving shell to go up and down
Elevating mechanism, cover top plate inner surface are connected with two pieces of partitions being vertically arranged in parallel, and two pieces of partitions are by shell from one end to another
One end is divided into paper supply chamber, working chamber and collection chamber, and divider height is less than body height, and partition bottom is equipped with mythimna separata paper, supplies
The intracavitary portion of paper is equipped with the paper-feeding mechanism of mythimna separata paper, and the intracavitary portion of collection is equipped with the paper collecting mechanism of mythimna separata paper, is equipped with and refers at the top of working chamber
To the infrared camera of Housing Base, working chamber one side wall is provided with worm trapping hole, and working chamber is provided with grain on the bottom plate of worm trapping hole
Slag entrance is eaten, two pieces of partitions of close grain slag inlet are equipped with photo-electric sensor for countering, housing bottom above mythimna separata paper
It is connected with grain slag storage room, in use, control elevating mechanism makes shell rest on a designated depth, mythimna separata paper lures pest
Enter enclosure interior from worm trapping hole, when pest passes through photo-electric sensor for countering, be recorded quantity, and then pest is being lured
Under be bonded on mythimna separata paper, complete the depth sampling before, control infrared camera take pest situation, then, again control rise
Descending mechanism makes shell be moved to another depth, at this point, being that working chamber supplies new mythimna separata paper, while collection by paper-feeding mechanism
Mythimna separata paper after mechanism will use is received, and prepares sample detection again, grain slag entrance and grain slag storage room for collect from
The grain slag that worm trapping hole enters avoids grain slag from influencing to count by photo-electric sensor for countering.
Further, the elevating mechanism includes toothed belt, and toothed belt both ends connect with shell upper end and shell lower end respectively
It connects to form one around the closed ring at the top of silo with grain bin bottom, silo top is equipped with the sliding tooth engaged with toothed belt
Wheel, driving gear are driven by external drive motors, drive toothed belt rotation, and then drive shell lifting, so that shell is gone up and down
Facilitate easy to control.
Further, the shell is square casing, and case top is connected with the link block of tetragonous wimble structure, link block
Four inclines are equal, and the grain slag storage room is tetragonous wimble structure, and four inclines of grain slag storage room are equal, rectangular pyramid
Tip is conducive to shell and moves up and down inside grain heap.
Further, the mythimna separata paper is band film mythimna separata paper, and band film mythimna separata paper includes mythimna separata hard copy body and mythimna separata hard copy
The protective film of body surface face covering, mythimna separata paper body surface are coated with food lure, and the paper-feeding mechanism includes being horizontally placed on confession
The both ends of the shaft A and shaft B in the intracavitary portion of paper, shaft A and shaft B are rotatablely connected with paper supply chamber front and rear sides wall respectively, shaft A
On be arranged with gear A, gear B is arranged on shaft B, gear A is engaged with gear B, shaft A for wind band film mythimna separata paper, turn
Axis B is for winding protective film, and mythimna separata hard copy body passes through partition and the gap of housing bottom is connect with paper collecting mechanism, in use, receiving
Mechanism of paper drives shaft A and gear A to rotate when receiving used mythimna separata hard copy body, through mythimna separata hard copy body, while gear A is driven
Turn axis B and gear B, so that tearing protective film automatically with film mythimna separata paper enters working chamber, while protective film can be received by shaft B
Collection.
Further, the paper collecting mechanism includes turn for being used to wind mythimna separata hard copy body for being horizontally placed on the intracavitary portion of collection
Axis C, rotating shaft C one end and collection chamber front side wall are rotatablely connected, and the other end is driven by internal drive motor, and internal drive motor is solid
It is intracavitary set on collection, in use, driving drive shaft C rotation by control internal drive motor, receive mythimna separata hard copy body, in turn
Paper-feeding mechanism paper supply is pulled, it is easy to operate.
Further, the paper supply chamber side wall is equipped with for replacing the A door with film mythimna separata paper and protective film, collection chamber side wall
Equipped with the B door for replacing mythimna separata hard copy body, setting A and B facilitate replacement band film mythimna separata paper, mythimna separata hard copy after the completion of detection
Body and protective film.
Further, partition bottom is equipped with arc transition, and it is viscous that setting arc transition can avoid partition bottom from wiping off as far as possible
The jelly and food lure on worm paper surface.
Further, grain slag storage room lower part is exported equipped with grain slag, since worm trapping hole is arranged, is inevitably had
Grain slag enters detection device from worm trapping hole, and grain slag storage room is used as storage grain slag, after taking out detection device, facilitate from
Take out grain slag in the outlet of grain slag.
The beneficial effects of the utility model are as follows:
1. the Grainhouse injurious insect detector of detection variable depth provided by the utility model, by being set on mythimna separata hard copy body
Food lure is set, pest is attracted to enter shell from worm trapping hole, is counted by the intracorporal photoelectric sensor of shell, and in a depth detection
It is taken pictures sampling before terminating by infrared camera, so that easy to detect, testing result is accurate, passes through external drive motors, sliding tooth
The cooperation of wheel and toothed belt, realizes the lifting of shell, enables shell to carry out detection sampling at an arbitrary position, while passing through confession
The cooperation of mechanism of paper and paper collecting mechanism enables mythimna separata hard copy body to be updated after detection depth changes, avoids influencing
Testing result keeps detection more accurate.
2. the utility model facilitates shell to take out upwards by the link block and grain slag storage room of the tetragonous wimble structure of setting
Be downwardly into inside grain heap.
3. the utility model by setting A and B facilitate detection after the completion of replace with film mythimna separata paper, mythimna separata hard copy body and
Protective film, setting grain slag, which exports to facilitate, takes out grain slag.
4. the jelly that the utility model can avoid partition bottom from wiping mythimna separata paper surface off as far as possible by the way that arc transition is arranged
With food lure.
Detailed description of the invention
Fig. 1 is the utility model structure diagram;
Fig. 2 is schematic diagram of housing structure;
Fig. 3 is cross section A-A structural schematic diagram;
Appended drawing reference: 1- shell, 2- paper supply chamber, 3- working chamber, 4- collection chamber, 5- partition, 6- paper-feeding mechanism, 601- shaft
A, 602- shaft B, 603- gear A, 604- gear B, 605- protective film, 606- mythimna separata hard copy body, 7- paper collecting mechanism, 701- shaft
C, 702- internal drive motor, 8- infrared camera, 9- photo-electric sensor for countering, 10- grain slag storage room, 11- toothed belt,
12- link block, the outlet of 13- grain slag, 14- grain slag entrance.
Specific embodiment
It is practical new below in conjunction with this to keep the objectives, technical solutions, and advantages of the embodiments of the present invention clearer
Attached drawing in type embodiment, the technical scheme in the utility model embodiment is clearly and completely described, it is clear that is retouched
The embodiment stated is the utility model a part of the embodiment, instead of all the embodiments.Usually here in attached drawing description and
The component of the utility model embodiment shown can be arranged and be designed with a variety of different configurations.
Therefore, requirement is not intended to limit to the detailed description of the embodiments of the present invention provided in the accompanying drawings below
The scope of the utility model of protection, but it is merely representative of the selected embodiment of the utility model.Based in the utility model
Embodiment, every other embodiment obtained by those of ordinary skill in the art without making creative efforts, all
Belong to the range of the utility model protection.
It should also be noted that similar label and letter indicate similar terms in following attached drawing, therefore, once a certain Xiang Yi
It is defined in a attached drawing, does not then need that it is further defined and explained in subsequent attached drawing.In addition, term " the
One ", " second " etc. is only used for distinguishing description, is not understood to indicate or imply relative importance.
In the description of the utility model embodiment, it should be noted that the instructions such as term "inner", "outside", "upper"
Orientation or positional relationship is to be based on the orientation or positional relationship shown in the drawings or when utility model product use usually puts
The orientation or positional relationship put, is merely for convenience of describing the present invention and simplifying the description, rather than indication or suggestion is signified
Device or element must have a particular orientation, be constructed and operated in a specific orientation, therefore should not be understood as to this is practical
Novel limitation.
Embodiment 1
As depicted in figs. 1 and 2, the present embodiment provides a kind of Grainhouse injurious insect detectors for detecting variable depth, including shell
Body 1, further includes the elevating mechanism for driving shell 1 to go up and down, and shell 1 top plate inner surface is connected with two pieces and is vertically arranged in parallel
Partition 5, two pieces of partitions 5, which pass through shell 1, is divided into paper supply chamber 2, working chamber 3 and collection chamber 4, and partition 5 is high
Degree is less than 1 height of shell, and 5 bottom of partition is equipped with mythimna separata paper, the paper-feeding mechanism 6 of mythimna separata paper, collection chamber 4 are equipped with inside paper supply chamber 2
Inside is equipped with the paper collecting mechanism 7 of mythimna separata paper, is equipped with the infrared camera 8 for being directed toward 1 bottom plate of shell, working chamber 3 one at the top of working chamber 3
Side wall is provided with worm trapping hole, and working chamber 3 is provided with grain slag entrance 14, close grain slag above mythimna separata paper on the bottom plate of worm trapping hole
Two pieces of partitions 5 at entrance 14 are equipped with photo-electric sensor for countering 9, and 1 bottom of shell is connected with grain slag storage room 10, specifically
Ground, worm trapping hole have 100, and worm trapping hole can determine pest species according to grains-type, so that it is determined that worm trapping hole size, to guarantee to do harm to
Worm is able to enter, and grain not can enter, and for paddy class, choosing worm trapping hole diameter under normal circumstances is 1.2mm.
In use, control elevating mechanism makes shell 1 rest on a designated depth, mythimna separata paper lure pest from worm trapping hole into
Enter inside shell 1, when pest passes through photo-electric sensor for countering 9, be recorded quantity, and then pest is bonded in the case where luring
On mythimna separata paper, before completing depth sampling, control infrared camera 8 takes pest situation, and then, controlling elevating mechanism again makes
Shell 1 is moved to another depth, at this point, being that working chamber 3 supplies new mythimna separata paper, while paper collecting mechanism 7 by paper-feeding mechanism 6
Mythimna separata paper after using is received, prepare again sample detection, grain slag entrance 14 and grain slag storage room 10 for collect from
The grain slag that worm trapping hole enters avoids grain slag from influencing to count by photo-electric sensor for countering 9.
Embodiment 2
As shown in figure 3, the present embodiment advanced optimizes on the basis of embodiment 1, the specially described elevating mechanism includes
Toothed belt 11,11 both ends of toothed belt connect to form one around silo top and silo respectively with 1 upper end of shell and 1 lower end of shell
The closed ring of bottom, silo top are equipped with the driving gear engaged with toothed belt 11, and driving gear passes through external drive motors
Driving, drive toothed belt 11 rotate, and then drive shell 1 go up and down so that shell 1 lifting facilitate it is easy to control.
As a preferred mode, the mythimna separata paper is band film mythimna separata paper, and band film mythimna separata paper includes mythimna separata hard copy body 606
And the protective film 605 of 606 surface of mythimna separata hard copy body covering, 606 surface of mythimna separata hard copy body are coated with food lure, the paper supply
Mechanism 6 includes the both ends point of the shaft A601 and shaft B602 being horizontally placed on inside paper supply chamber 2, shaft A601 and shaft B602
It is not rotatablely connected with 2 front and rear sides wall of paper supply chamber, is arranged with gear A 603 on shaft A601, is arranged with gear on shaft B602
B604, gear A 603 are engaged with gear B 604, and shaft A601 is for winding band film mythimna separata paper, and shaft B602 is for winding protective film
605, mythimna separata hard copy body 606 passes through partition 5 and connect with the gap of 1 bottom of shell with paper collecting mechanism 7, in use, paper collecting mechanism 7 exists
When receiving used mythimna separata hard copy body 606, shaft A601 and gear A 603 is driven to rotate by mythimna separata hard copy body 606, while tooth
A603 drive shaft B602 and gear B 604 are taken turns, so that tearing protective film 605 automatically with film mythimna separata paper enters working chamber 3, simultaneously
Protective film 605 can be collected by shaft B602.
As a preferred mode, the paper collecting mechanism 7 is viscous for winding inside collection chamber 4 including being horizontally placed on
The rotating shaft C 701 of worm hard copy body 606,701 one end of rotating shaft C and 4 front side wall of collection chamber are rotatablely connected, and the other end passes through internal drive
Motor 702 drives, and internal drive motor 702 is fixedly arranged in collection chamber 4, in use, being driven by control internal drive motor 702
Drive shaft C701 rotation receives mythimna separata hard copy body 606, and then pulls 6 paper supply of paper-feeding mechanism, easy to operate.
Specifically, infrared camera 8, photoelectric counter, external drive motors and internal drive motor 702 are and outside silo
Portion controls indoor calculating mechatronics, is completed by computer to infrared camera 8, photo-electric sensor for countering 9, external drive
The control of 702 command switch of motor and internal drive motor, and infrared camera 8 and the collected signal of photoelectric counter are received
Collection processing.
Embodiment 3
As depicted in figs. 1 and 2, the present embodiment advanced optimizes on the basis of embodiment 2, and the specially described shell 1 is
Square casing 1 is connected with the link block 12 of tetragonous wimble structure at the top of shell 1, and four inclines of link block 12 are equal, the grain
Slag storage room 10 is tetragonous wimble structure, and four inclines of grain slag storage room 10 are equal, and the tip of rectangular pyramid is conducive to shell 1 and exists
It is moved up and down inside grain heap.
As a preferred mode, 2 side wall of paper supply chamber is equipped with for replacing with film mythimna separata paper and protective film 605
A, 4 side wall of collection chamber is equipped with the B door for replacing mythimna separata hard copy body 606, and setting A and B facilitate detection to replace after the completion
Band film mythimna separata paper, mythimna separata hard copy body 606 and protective film 605.
As a preferred mode, 5 bottom of partition is equipped with arc transition, and setting arc transition can avoid partition as far as possible
Wipe the jelly and food lure on mythimna separata paper surface off in 5 bottoms.
As a preferred mode, 10 lower part of grain slag storage room is equipped with grain slag outlet 13, since worm trapping hole is arranged,
It inevitably has grain slag and enters detection device from worm trapping hole, grain slag storage room 10 is used as storage grain slag, works as taking-up
It is convenient to take out grain slag from grain slag outlet 13 after detection device.
Claims (8)
1. a kind of Grainhouse injurious insect detector for detecting variable depth, including shell (1), which is characterized in that further include for band
The elevating mechanism of dynamic shell (1) lifting, shell (1) top plate inner surface are connected with two pieces of partitions being vertically arranged in parallel (5), and two pieces
Partition (5), which passes through shell (1), is divided into paper supply chamber (2), working chamber (3) and collection chamber (4), partition (5)
Height is less than shell (1) height, and partition (5) bottom is equipped with mythimna separata paper, the paper-feeding mechanism of mythimna separata paper is equipped with inside paper supply chamber (2)
(6), it is equipped with the paper collecting mechanism (7) of mythimna separata paper inside collection chamber (4), is equipped at the top of working chamber (3) and is directed toward the red of shell (1) bottom plate
Outer camera (8), working chamber (3) one side wall are provided with worm trapping hole, and working chamber (3) is provided with grain slag on the bottom plate of worm trapping hole and enters
Mouth (14), two piece partitions (5) of the mythimna separata paper top at grain slag entrance (14) are equipped with photo-electric sensor for countering (9),
Shell (1) bottom is connected with grain slag storage room (10).
2. the Grainhouse injurious insect detector of detection variable depth according to claim 1, it is characterised in that: the elevator
Structure includes toothed belt (11), and toothed belt (11) both ends are connect with shell (1) upper end and shell (1) lower end respectively to be formed one and bypass
At the top of the silo and closed ring of grain bin bottom, silo top is equipped with the driving gear engaged with toothed belt (11), drives gear
It is driven by external drive motors.
3. the Grainhouse injurious insect detector of detection variable depth according to claim 1, it is characterised in that: the shell
It (1) is square casing (1) that the link block (12) of tetragonous wimble structure, four inclines of link block (12) are connected at the top of shell (1)
Equal, the grain slag storage room (10) is tetragonous wimble structure, and four inclines of grain slag storage room (10) are equal.
4. the Grainhouse injurious insect detector of detection variable depth according to claim 1, it is characterised in that: the mythimna separata paper
It include the protective film of mythimna separata hard copy body (606) and the covering of mythimna separata hard copy body (606) surface with film mythimna separata paper for band film mythimna separata paper
(605), mythimna separata hard copy body (606) surface is coated with food lure, and the paper-feeding mechanism (6) includes being horizontally placed on paper supply chamber
(2) both ends of internal shaft A (601) and shaft B (602), shaft A (601) and shaft B (602) are respectively and before paper supply chamber (2)
Two sidewalls are rotatablely connected afterwards, are arranged with gear A (603) on shaft A (601), gear B (604), tooth are arranged on shaft B (602)
Wheel A (603) is engaged with gear B (604), and shaft A (601) is for winding band film mythimna separata paper, and shaft B (602) is for winding protection
Film (605), mythimna separata hard copy body (606) pass through partition (5) and connect with the gap of shell (1) bottom with paper collecting mechanism (7).
5. the Grainhouse injurious insect detector of detection variable depth according to claim 4, it is characterised in that: the paper collecting machine
Structure (7) includes being horizontally placed on the internal rotating shaft C (701) for being used to wind mythimna separata hard copy body (606) of collection chamber (4), rotating shaft C
(701) one end and collection chamber (4) front side wall are rotatablely connected, and the other end is driven by internal drive motor (702), internal drive electricity
Machine (702) is fixedly arranged in collection chamber (4).
6. the Grainhouse injurious insect detector of detection variable depth according to claim 4, it is characterised in that: the paper supply chamber
(2) side wall is equipped with for replacing the A door with film mythimna separata paper and protective film (605), and collection chamber (4) side wall is equipped with for replacing mythimna separata
The B door of hard copy body (606).
7. the Grainhouse injurious insect detector of detection variable depth according to claim 1, it is characterised in that: partition (5) bottom
Portion is equipped with arc transition.
8. the Grainhouse injurious insect detector of detection variable depth according to claim 1, it is characterised in that: the storage of grain slag
Room (10) lower part is equipped with grain slag outlet (13).
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
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CN112544584A (en) * | 2020-12-16 | 2021-03-26 | 青岛海关技术中心 | Insect measuring device special for grain depot |
CN114208793A (en) * | 2021-11-26 | 2022-03-22 | 安阳沃林生态科技有限公司 | Automatic monitoring and early warning station for field insect pests |
CN115443958A (en) * | 2022-08-02 | 2022-12-09 | 华中农业大学 | Box pest intelligence of board traps and kills monitoring devices |
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2018
- 2018-09-19 CN CN201821533359.5U patent/CN208821526U/en active Active
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112544584A (en) * | 2020-12-16 | 2021-03-26 | 青岛海关技术中心 | Insect measuring device special for grain depot |
CN112544584B (en) * | 2020-12-16 | 2022-08-23 | 青岛海关技术中心 | Insect measuring device special for grain depot |
CN114208793A (en) * | 2021-11-26 | 2022-03-22 | 安阳沃林生态科技有限公司 | Automatic monitoring and early warning station for field insect pests |
CN114208793B (en) * | 2021-11-26 | 2022-11-18 | 安阳沃林生态科技有限公司 | Automatic monitoring and early warning station for field insect pests |
CN115443958A (en) * | 2022-08-02 | 2022-12-09 | 华中农业大学 | Box pest intelligence of board traps and kills monitoring devices |
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