CN215218823U - Real-time dynamic monitoring device for field water balance elements - Google Patents

Real-time dynamic monitoring device for field water balance elements Download PDF

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Publication number
CN215218823U
CN215218823U CN202121271839.0U CN202121271839U CN215218823U CN 215218823 U CN215218823 U CN 215218823U CN 202121271839 U CN202121271839 U CN 202121271839U CN 215218823 U CN215218823 U CN 215218823U
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CN
China
Prior art keywords
support
real
time dynamic
field water
plate
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Expired - Fee Related
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CN202121271839.0U
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Chinese (zh)
Inventor
李蓝君
宋孝玉
冯丹
赵新凯
孟鹏飞
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Individual
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Individual
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Priority to CN202121271839.0U priority Critical patent/CN215218823U/en
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Publication of CN215218823U publication Critical patent/CN215218823U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a real-time dynamic monitoring devices of field water balance key element relates to soil monitoring facilities technical field, including the support, its characterized in that: the bracket consists of a cross rod and a vertical rod, and a clamping block is arranged in the cross rod on the left side of the bracket through a spring; the utility model discloses an install support and guard plate, can effectually carry out moisture monitoring to the soil of different departments through the interval between the regulation support, can effectually prevent through the setting of guard plate that the detector from touching the stone and leading to the detector phenomenon of damaging to appear.

Description

Real-time dynamic monitoring device for field water balance elements
Technical Field
The utility model relates to a soil monitoring facilities technical field especially relates to a real-time dynamic monitoring devices of field water balance key element.
Background
Soil is composed of various granular mineral substances, organic substances, water, air, microorganisms and the like, and when vegetation is planted on the surface of the soil, a monitoring device is usually used for monitoring the water balance inside the soil in real time so as to ensure that the water inside the soil is sufficient;
through research and analysis, the following results are found: the current application number is: a soil moisture content monitoring device of ZL201820064212.X plays a role in detecting soil moisture at different depths through a first moisture detector, a second moisture detector and a third moisture detector which are different in length;
although the moisture of the soil with different depths can be monitored by three moisture detectors with different lengths, in the actual use process, the moisture in each soil is inconsistent, and the device can only monitor the moisture in one soil, so that the working efficiency is reduced;
simultaneously because the inside of soil contains firm stone, when the cylinder pushed the moisture detector soil inside, soil received the extrusion of stone, and then leads to the moisture detector to appear damaging the phenomenon easily.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the defects existing in the prior art and providing a real-time dynamic monitoring device for field water balance elements.
In order to achieve the above purpose, the utility model adopts the following technical scheme: the support comprises a bracket, the support comprises horizontal pole and montant two parts, there is the fixture block inside the left side horizontal pole of support through spring mounting, install the fly leaf between the support, the guard plate is installed to the below of fly leaf, the connecting plate is installed through electronic flexible in the inside of fly leaf, the lower surface mounting of connecting plate has the detector.
Preferably, the recess that is semicircle form is all seted up to the upper surface of the right side horizontal pole of support, the right side horizontal pole diameter of support is less than the left side horizontal pole diameter, the fixture block is semicircle form setting, two the horizontal pole of support is extending structure.
Preferably, the top left and right sides of fly leaf all is connected with electric telescopic handle, and two electric telescopic handle's top is installed respectively in two horizontal pole bottoms of support.
Preferably, the movable plate is integrally arranged in a concave shape, and the inner side surface of the movable plate is provided with springs arranged at equal intervals.
Preferably, the inside spout that has all been seted up of two montants of support, both ends all imbed the inside of two spouts about the fly leaf.
Preferably, the protection plate comprises a cover plate, the cover plate is connected with the protection plate through hinges, and the upper surface of the protection plate is provided with holes corresponding to the five detectors.
Has the advantages that:
in the utility model, through installing the support and the guard plate, because the inside of the cross rod with large diameter is fixedly provided with the fixture block which is arranged in a semicircular shape, and the upper surface of the cross rod with small diameter is provided with the groove which is in a semicircular shape, when the soil at different positions needs to be monitored, the support is pulled to stretch the two cross rods, and the two cross rods are smoothly clamped into the corresponding grooves through the fixture block, so that the two cross rods are fixed and limited, and the soil at different positions is monitored;
extrude soil earlier with the guard plate through electric telescopic handle, rethread electric telescopic handle stretches into the inside of soil with the detector and monitors, and then can effectually prevent that detector touching stone from leading to damaging.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of a partial structure of a middle protection plate according to the present invention;
fig. 3 is an enlarged schematic view of a portion a in fig. 1 according to the present invention.
In fig. 1 to 3, the correspondence between the part names or lines and the reference numbers is: 1-bracket, 101-fixture block, 2-movable plate, 3-protective plate, 301-cover plate, 4-connecting plate and 5-detector.
Detailed Description
Referring to fig. 1 to 3, the present embodiment provides a real-time dynamic monitoring device for field water balance factors, including a support 1, the support 1 is composed of a cross rod and a vertical rod, a clamping block 101 is installed inside a cross rod on the left side of the support 1 through a spring, a movable plate 2 is installed between the support 1, a protection plate 3 is installed below the movable plate 2, a connection plate 4 is installed inside the movable plate 3 through electric extension, and a detector 5 is installed on the lower surface of the connection plate 4.
Further, the upper surface of the right side horizontal pole of support 1 has all been seted up and has been the recess of semicircle form, and the right side horizontal pole diameter of support 1 is less than the left side horizontal pole diameter, and fixture block 101 is the setting of semicircle form, and the horizontal pole of two supports 1 is extending structure.
Wherein, the cross rod of the bracket 1 with small diameter is inserted into the cross rod of the bracket 1 with large diameter, and the clamping blocks 101 are clamped into the opposite grooves.
Further, the top left and right sides of fly leaf 2 all is connected with electric telescopic handle, and two electric telescopic handle's top is installed respectively in two horizontal pole bottoms of support 1.
Wherein, the movable plate 2 is made of a retractable material.
When soil at different positions needs to be monitored, the two cross rods stretch out and draw back by pulling the bracket 1, and are smoothly clamped into the corresponding grooves through the clamping blocks 101, so that the two cross rods are fixed and limited;
starting the two electric telescopic rods to enable the protection plate 3 to extrude soil first, and preventing the detector 5 from being damaged when touching stones in the soil;
and when the cross rod of the bracket 1 is telescopic, the movable plate 2 is also telescopic along with the cross rod.
In this embodiment, the movable plate 2 is integrally disposed in a shape of a Chinese character 'ao', and springs are arranged on the inner side surface of the movable plate at equal intervals.
Further, the spout has all been seted up to two montants of support 1 inside, and both ends all imbed the inside of two spouts about fly leaf 2.
Wherein, both ends all have the rubber pad through spring coupling about the inside of two spouts.
Wherein, five detectors 5 are arranged, and the lengths thereof are all different.
Further, guard plate 3 includes apron 301, and apron 301 passes through the hinge to be connected with guard plate 3, and the trompil corresponding with five detectors 5 has all been seted up to guard plate 3's upper surface.
When the protection plate 3 extrudes soil, the protection plate 3 can be buffered through the spring to prevent the protection plate from being damaged;
meanwhile, when the movable plate 2 slides in the sliding chute, the movable plate 2 can be protected by a rubber pad in the sliding chute;
the moisture of different depths of soil can be monitored through the detectors 5 with different lengths.
Wherein, the right side of the bracket 1 is fixedly provided with a control panel.
The working principle is as follows:
starting the electric telescopic rod to enable the protection plate 3 to extrude soil first, and preventing the detector 5 from touching stones;
then the detector 5 is used for monitoring the moisture of the soil at different depths by controlling the electric telescopic rod;
when soil monitoring of different places is needed, the two cross rods of the pulling support 1 stretch out and draw back, and the two cross rods are automatically clamped into the corresponding grooves through the clamping blocks 101 to limit the cross rods, so that moisture monitoring is performed on the soil of different places.

Claims (6)

1. The utility model provides a real-time dynamic monitoring devices of field water balance factor, includes support (1), its characterized in that: support (1) comprises horizontal pole and montant two parts, there is fixture block (101) inside through spring mounting of the left side horizontal pole of support (1), install fly leaf (2) between support (1), guard plate (3) are installed to the below of fly leaf (2), connecting plate (4) are installed through electronic flexible in the inside of fly leaf (3), the lower surface mounting of connecting plate (4) has detector (5).
2. The device for monitoring the real-time dynamic field water balance factors according to claim 1, wherein semicircular grooves are formed in the upper surface of each right cross bar of the support (1), the diameter of each right cross bar of the support (1) is smaller than that of each left cross bar, the fixture blocks (101) are arranged in a semicircular manner, and the cross bars of the two supports (1) are of telescopic structures.
3. The device for monitoring the real-time dynamic field water balance factors according to claim 1, wherein electric telescopic rods are connected to the left and right sides of the top of the movable plate (2), and the tops of the two electric telescopic rods are respectively installed at the bottoms of the two cross rods of the support (1).
4. The device for monitoring the real-time dynamic balance elements of the field water according to claim 1, wherein the movable plate (2) is integrally arranged in a concave shape, and springs are arranged on the inner side surface of the movable plate at equal intervals.
5. The device for monitoring the real-time dynamic field water balance factors according to claim 1, wherein sliding grooves are formed in the two vertical rods of the support (1), and the left end and the right end of the movable plate (2) are embedded into the two sliding grooves.
6. The device for monitoring the real-time dynamic state of the field water balance elements according to claim 1, wherein the protection plate (3) comprises a cover plate (301), the cover plate (301) is connected with the protection plate (3) through hinges, and openings corresponding to the five detectors (5) are formed in the upper surface of the protection plate (3).
CN202121271839.0U 2021-06-08 2021-06-08 Real-time dynamic monitoring device for field water balance elements Expired - Fee Related CN215218823U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121271839.0U CN215218823U (en) 2021-06-08 2021-06-08 Real-time dynamic monitoring device for field water balance elements

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121271839.0U CN215218823U (en) 2021-06-08 2021-06-08 Real-time dynamic monitoring device for field water balance elements

Publications (1)

Publication Number Publication Date
CN215218823U true CN215218823U (en) 2021-12-17

Family

ID=79424167

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121271839.0U Expired - Fee Related CN215218823U (en) 2021-06-08 2021-06-08 Real-time dynamic monitoring device for field water balance elements

Country Status (1)

Country Link
CN (1) CN215218823U (en)

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

Granted publication date: 20211217

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