CN212585766U - Equipment of monitoring farmland surface runoff - Google Patents

Equipment of monitoring farmland surface runoff Download PDF

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Publication number
CN212585766U
CN212585766U CN202021847983.XU CN202021847983U CN212585766U CN 212585766 U CN212585766 U CN 212585766U CN 202021847983 U CN202021847983 U CN 202021847983U CN 212585766 U CN212585766 U CN 212585766U
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CN
China
Prior art keywords
rod
connecting block
storage container
well core
spring
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN202021847983.XU
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Chinese (zh)
Inventor
张天明
唐锡雷
龙从兵
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Chongqing Creation Vocational College
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Chongqing Creation Vocational College
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Priority to CN202021847983.XU priority Critical patent/CN212585766U/en
Application granted granted Critical
Publication of CN212585766U publication Critical patent/CN212585766U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides an equipment of monitoring farmland surface runoff, include: the collecting pipe, first storage container, the overflow pipe, the second storage container, the connecting block, the support frame, elastic component and stop gear, collecting pipe one end is because the cell-phone runoff, the collecting pipe other end and first storage container intercommunication, first storage container top communicates to second storage container through the overflow pipe, be connected with the connecting block between first storage container and the second storage container, the connecting block is located by the overflow pipe, the support frame passes the connecting block, the collecting pipe, first storage container, the overflow pipe, second storage container and connecting block can move on vertical direction relative to the support frame, be connected with the elastic component between support frame and connecting block. This equipment of monitoring farmland surface runoff solves among the prior art and leads to the inconvenient problem of reading the volume of first storage area and second storage area internal water because of first storage area and second storage area all bury in the soil.

Description

Equipment of monitoring farmland surface runoff
Technical Field
The utility model relates to an equipment is used to the agricultural, concretely relates to equipment of monitoring farmland surface runoff.
Background
Chinese patent discloses a device for monitoring farmland surface runoff with application number CN201621157876.8, the device includes: the device mainly comprises a runoff water collecting region, a first storage region, a metering region and a second storage region. Although the device can realize monitoring, the device still has the following defects:
because first memory area and second memory area are all buried in soil, consequently hardly see the scale on first organic glass pipe and the second organic glass pipe, inconvenient reading first memory area and the volume of the interior water of second memory area.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an equipment of monitoring farmland surface runoff solves among the prior art and all buries in soil the inside and leads to the inconvenient problem of reading the volume of first storage area and second storage area internal water because of first storage area and second storage area.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides an equipment of monitoring farmland surface runoff, include: the collecting pipe, the first storage container, the overflow pipe, the second storage container, the connecting block, the supporting frame, the elastic part and the limiting mechanism, wherein one end of the collecting pipe is in radial flow due to the mobile phone, the other end of the collecting pipe is communicated with the first storage container, the top of the first storage container is communicated with the second storage container through the overflow pipe, the connecting block is connected between the first storage container and the second storage container, the connecting block is positioned beside the overflow pipe, the supporting frame penetrates through the connecting block, and the collecting pipe, the first storage container, the overflow pipe, the second storage container and the connecting block can move in the vertical direction relative to, an elastic piece is connected between the supporting frame and the connecting block and used for ejecting the first storage container and the second storage container from the soil, and a limiting mechanism is arranged at the joint of the connecting block and the supporting frame and is used for keeping the first storage container and the second storage container in the soil.
Preferably, the support frame comprises: supporting seat, urceolus and well core rod, the supporting seat is fixed with the urceolus low side, in the connecting block was stretched into on the urceolus top, the urceolus rotation relatively of connecting block, the urceolus center is provided with well core rod, well core rod is connected to the supporting seat, the elastic component is the spring, spring one end is hugged closely with the connecting block inner wall, the spring other end is hugged closely with the supporting seat, the spring is passed by well core rod, well core rod passes the connecting block.
Preferably, the limiting mechanism comprises: the rotary drum, wind spring and stopper, the rotary drum cover is outside well core rod top, the rotary drum can be rotatory relatively well core rod, it has the wind spring to convolute between rotary drum inner wall and the well core rod, wind spring inner end is connected with well core rod, wind spring outer end and rotary drum inner wall connection, the protrusion of rotary drum outer wall is formed with the stopper, be formed with the perforation that supplies well core rod and rotary drum to pass on the connecting block, the sunken spout that forms of perforation inner wall, the spout supplies the stopper to pass, can keep stopper and spout skew under the wind spring elasticity, the stopper is used for restricting the connecting block and is popped high.
Preferably, the center rod comprises: the first body of rod, the second body of rod and the third body of rod, the first body of rod, the second body of rod and the third body of rod are the cylinder structure, first body of rod one end is fixed with the supporting seat, the first body of rod other end is connected to the third body of rod through the second body of rod, the first body of rod, the central line of the second body of rod and the third body of rod all is on a straight line, first body of rod diameter equals with rotatory section of thick bamboo outer diameter, first body of rod diameter is greater than second body of rod diameter, the second body of rod is used for the rotatory section of thick bamboo of direction, second body of rod diameter is greater than third body of rod diameter, the third body.
Preferably, the coil spring comprises: flexible body, first connecting block and second connecting block are T type structure, first connecting block is fixed with flexible body inner, and flexible body outer end is fixed to the second connecting block, and the sunken formation of third body of rod top surface supplies first connecting block to follow vertical direction male first slot, and the sunken formation of rotatory section of thick bamboo top surface supplies second connecting block male second slot, and rotatory section of thick bamboo top threaded connection has the screw cap.
Preferably, the screw cap can restrict the connection block from being detached from the rotary cylinder.
Compared with the prior art, the utility model discloses following beneficial effect has:
realized at every turn monitoring the back through adjusting stop gear, can pop out at first storage container of elastic component elasticity decline and second storage container, avoided need manually to throw away soil and lead to the troublesome poeration, stop gear still spills after first storage container and second storage container are buried certainly, thereby made things convenient for and read the volume of first storage container and second storage container internal water after detecting at every turn, then press first storage container and second storage container, stop gear has been adjusted, can bury first storage container and second storage container in the soil the inside once more, detect once more. In order to guarantee the stability when popping out, the support frame stretches into the soil, and is firm, and the elastic function that can guarantee the elastic component can stably be realized.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
FIG. 1 is a cross-sectional view of an apparatus for monitoring agricultural surface runoff;
fig. 2 is an enlarged view of a point a in fig. 1.
Reference numerals: the collecting pipe 1, the first storage container 2, the second storage container 3, the connecting block 5, the support frame 6, the support base 61, the outer cylinder 62, the central rod 63, the first rod 631, the second rod 632, the third rod 633, the elastic element 7, the limiting mechanism 8, the rotating cylinder 81, the coil spring 82, the telescopic body 821, the first connecting block 822, the second connecting block 823, the limiting block 83 and the screw cap 84.
Detailed Description
In order to make the utility model realize that technical means, creation characteristics, achievement purpose and effect are clearer and easily understand, it is right to combine below the figure and the detailed implementation mode the utility model discloses do further explanation:
as shown in fig. 1 and fig. 2, the utility model provides a monitoring farmland surface runoff's equipment includes: the collecting pipe 1, the first storage container 2, an overflow pipe (not shown), the second storage container 3, a connecting block 5, a support frame 6, an elastic part 7 and a limiting mechanism 8, wherein one end of the collecting pipe 1 is runoff due to a mobile phone, the other end of the collecting pipe 1 is communicated with the first storage container 2, the top of the first storage container 2 is communicated with the second storage container 3 through the overflow pipe, the connecting block 5 is connected between the first storage container 2 and the second storage container 3, the connecting block 5 is positioned beside the overflow pipe, the support frame 6 penetrates through the connecting block 5, the collecting pipe 1, the first storage container 2, the overflow pipe, the second storage container 3 and the connecting block 5 can move in the vertical direction relative to the support frame 6, the elastic part 7 is connected between the support frame 6 and the connecting block 5, the elastic part 7 is used for ejecting the first storage container 2 and the second storage container 3 from the soil, the limiting mechanism 8 is, the limiting mechanism 8 is used for keeping the first storage container 2 and the second storage container 3 in the soil.
In order to avoid soil and the like from entering the spring and causing the expansion and contraction of the spring to be influenced, the support frame 6 comprises: supporting seat 61, urceolus 62 and well core rod 63, supporting seat 61 is fixed with 62 low ends of urceolus, 62 tops of urceolus stretch into in the connecting block 5, connecting block 5 can not be rotatory to urceolus 62 relatively, 62 centers of urceolus are provided with well core rod 63, well core rod 63 is connected to supporting seat 61, elastic component 7 is the spring, spring one end is hugged closely with 5 inner walls of connecting block, the spring other end is hugged closely with supporting seat 61, the spring is passed by well core rod 63, well core rod 63 passes connecting block 5, well core rod 63 is used. The bottom of the connecting block 5 can never be separated from the outer cylinder 62, and the clearance between the connecting block 5 and the outer cylinder 62 is extremely small, so that no mud enters the spring.
In order to design simple structure's stop gear 8, and realize that rotatory rotary drum 81 can be adjusted, do not need other steps, made things convenient for the operation, improved operating efficiency, stop gear 8 includes: the rotary cylinder 81, the coil spring 82 and the limiting block 83, the rotary cylinder 81 is sleeved outside the top end of the central rod 63, the rotary cylinder 81 can rotate relative to the central rod 63, the coil spring 82 is convoluted between the inner wall of the rotary cylinder 81 and the central rod 63, the inner end of the coil spring 82 is connected with the central rod 63, the outer end of the coil spring 82 is connected with the inner wall of the rotary cylinder 81, the limiting block 83 is formed by protruding the outer wall of the rotary cylinder 81, a through hole for the central rod 63 and the rotary cylinder 81 to penetrate through is formed in the connecting block 5, a sliding groove is formed by sinking the inner wall of the through hole and is used for the limiting block 83 to penetrate through, the limiting block 83 and.
In order to realize that only one through hole with a cylindrical structure can be opened to realize the installation of the central rod 63 and the rotary cylinder 81, and also to facilitate the production of the central rod 63, the central rod 63 comprises: first body of rod 631, second body of rod 632 and third body of rod 633, first body of rod 631, second body of rod 632 and third body of rod 633 are the cylinder structure, first body of rod 631 one end is fixed with supporting seat 61, the first body of rod 631 other end is connected to third body of rod 633 through second body of rod 632, the central line of first body of rod 631, second body of rod 632 and third body of rod 633 all is on a straight line, first body of rod 631 diameter equals with rotatory section of thick bamboo 81 outer diameter, first body of rod 631 diameter is greater than second body of rod 632 diameter, second body of rod 632 is used for the rotatory section of thick bamboo 81 of direction rotation, second body of rod 632 diameter is greater than third body of rod 633 diameter, third body of rod 633 is used for installing wind spring 82.
In order to facilitate the installation of the coil spring 82, the installation of the coil spring 82 may be achieved by rotating the screw cap 84 after the first connection block 8225 is inserted into the first insertion groove and the second connection block 8235 is inserted into the second insertion groove, and the coil spring 82 includes: flexible body 821, first connecting block 8225 and second connecting block 8235 are T type structure, first connecting block 8225 is fixed with flexible body 821 inner, flexible body 821 outer end is fixed to second connecting block 8235, the sunken first slot that supplies first connecting block 8225 to follow vertical direction male that forms of third body of rod 633 top surface, the sunken second slot that supplies second connecting block 8235 male that forms of rotatory section of thick bamboo 81 top surface, rotatory section of thick bamboo 81 top end threaded connection has screw cap 84.
In order to increase the value of the screw cap 84, the screw cap 84 can restrict the connection block 5 from being detached from the rotary cylinder 81. The threaded cap 84 enables both the mounting of the coil spring 82 and the spacing of the connection block 5.
The working principle of the embodiment is as follows:
when detecting, the lower elastic limiting block 83 of the coil spring 82 deviates from the sliding groove, the limiting block 83 clamps the connecting block 5 with the outer cylinder 62, and limits the connecting block 5, the first storage container 2 and the second storage container 3 to a lower position, thereby keeping the first storage container 2 and the second storage container 3 in the soil.
When the volume of water in the first storage container 2 and the second storage container 3 needs to be checked, the rotating cylinder 81 is rotated, so that the coil spring 82 deforms, the limiting block 83 is aligned with the sliding groove, then the first storage container 2 and the second storage container 3 are popped out from soil when the elastic force of the spring descends, and the limiting block 83 slides in the sliding groove, so that the volume of water in the first storage container 2 and the second storage container 3 is conveniently checked.
Finally, although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the present invention can be modified or replaced by other means without departing from the spirit and scope of the present invention, which should be construed as limited only by the appended claims.

Claims (6)

1. An apparatus for monitoring agricultural surface runoff, comprising: the collecting pipe, the first storage container, the overflow pipe, the second storage container, the connecting block, the supporting frame, the elastic part and the limiting mechanism, wherein one end of the collecting pipe is in radial flow due to the mobile phone, the other end of the collecting pipe is communicated with the first storage container, the top of the first storage container is communicated with the second storage container through the overflow pipe, the connecting block is connected between the first storage container and the second storage container, the connecting block is positioned beside the overflow pipe, the supporting frame penetrates through the connecting block, and the collecting pipe, the first storage container, the overflow pipe, the second storage container and the connecting block can move in the vertical direction relative to, an elastic piece is connected between the supporting frame and the connecting block and used for ejecting the first storage container and the second storage container from the soil, and a limiting mechanism is arranged at the joint of the connecting block and the supporting frame and is used for keeping the first storage container and the second storage container in the soil.
2. The apparatus of claim 1, wherein the support frame comprises: supporting seat, urceolus and well core rod, the supporting seat is fixed with the urceolus low side, in the connecting block was stretched into on the urceolus top, the urceolus rotation relatively of connecting block, the urceolus center is provided with well core rod, well core rod is connected to the supporting seat, the elastic component is the spring, spring one end is hugged closely with the connecting block inner wall, the spring other end is hugged closely with the supporting seat, the spring is passed by well core rod, well core rod passes the connecting block.
3. The apparatus of claim 2, wherein the limiting mechanism comprises: the rotary drum, wind spring and stopper, the rotary drum cover is outside well core rod top, the rotary drum can be rotatory relatively well core rod, it has the wind spring to convolute between rotary drum inner wall and the well core rod, wind spring inner end is connected with well core rod, wind spring outer end and rotary drum inner wall connection, the protrusion of rotary drum outer wall is formed with the stopper, be formed with the perforation that supplies well core rod and rotary drum to pass on the connecting block, the sunken spout that forms of perforation inner wall, the spout supplies the stopper to pass, can keep stopper and spout skew under the wind spring elasticity, the stopper is used for restricting the connecting block and is popped high.
4. An apparatus for monitoring agricultural surface runoff as set forth in claim 3 wherein the center pole includes: the first body of rod, the second body of rod and the third body of rod, the first body of rod, the second body of rod and the third body of rod are the cylinder structure, first body of rod one end is fixed with the supporting seat, the first body of rod other end is connected to the third body of rod through the second body of rod, the first body of rod, the central line of the second body of rod and the third body of rod all is on a straight line, first body of rod diameter equals with rotatory section of thick bamboo outer diameter, first body of rod diameter is greater than second body of rod diameter, the second body of rod is used for the rotatory section of thick bamboo of direction, second body of rod diameter is greater than third body of rod diameter, the third body.
5. An apparatus for monitoring agricultural surface runoff as set forth in claim 4 wherein the coil spring includes: flexible body, first connecting block and second connecting block are T type structure, first connecting block is fixed with flexible body inner, and flexible body outer end is fixed to the second connecting block, and the sunken formation of third body of rod top surface supplies first connecting block to follow vertical direction male first slot, and the sunken formation of rotatory section of thick bamboo top surface supplies second connecting block male second slot, and rotatory section of thick bamboo top threaded connection has the screw cap.
6. An apparatus for monitoring agricultural surface runoff as set forth in claim 5 wherein the threaded cap limits disengagement of the connecting block from the rotatable drum.
CN202021847983.XU 2020-08-28 2020-08-28 Equipment of monitoring farmland surface runoff Expired - Fee Related CN212585766U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021847983.XU CN212585766U (en) 2020-08-28 2020-08-28 Equipment of monitoring farmland surface runoff

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021847983.XU CN212585766U (en) 2020-08-28 2020-08-28 Equipment of monitoring farmland surface runoff

Publications (1)

Publication Number Publication Date
CN212585766U true CN212585766U (en) 2021-02-23

Family

ID=74652736

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021847983.XU Expired - Fee Related CN212585766U (en) 2020-08-28 2020-08-28 Equipment of monitoring farmland surface runoff

Country Status (1)

Country Link
CN (1) CN212585766U (en)

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20210223

Termination date: 20210828