CN212480681U - Soil and water conservation monitoring devices of multi-angle intelligent regulation monitoring angle - Google Patents

Soil and water conservation monitoring devices of multi-angle intelligent regulation monitoring angle Download PDF

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Publication number
CN212480681U
CN212480681U CN202021094780.8U CN202021094780U CN212480681U CN 212480681 U CN212480681 U CN 212480681U CN 202021094780 U CN202021094780 U CN 202021094780U CN 212480681 U CN212480681 U CN 212480681U
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soil
angle
rod
water conservation
block
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CN202021094780.8U
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严国清
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Shanghai Shancheng Survey And Design Co ltd
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Shanghai Shancheng Survey And Design Co ltd
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Abstract

The utility model provides a soil and water conservation monitoring devices of multi-angle intelligent regulation monitoring angle relates to soil and water conservation monitoring field, including the mounting panel, be equipped with fixed establishment and translation mechanism on the mounting panel, translation mechanism is articulated with the one end of pull rod, and the other end of pull rod is articulated with the monitor, and the monitor bottom is rotated with the stand and is connected, and the stand is established on the mounting panel, translation mechanism includes motor, accommodate the lead screw and slider, the motor is established on the mounting panel, and the output shaft and the accommodate the lead screw of motor are connected, and the accent lead screw is located the mounting panel, and accommodate the lead screw passes through threaded connection with the slider, and the slider is. The fixing mechanism in the device is adopted for fixing, the fixing is firm, and the phenomenon of shaking or inclining can not occur after the fixing. The device can push or pull the monitoring angle that the monitor was adjusted to the pull rod through translation mechanism, thereby realizes the multi-angle monitoring.

Description

Soil and water conservation monitoring devices of multi-angle intelligent regulation monitoring angle
Technical Field
The utility model relates to a soil and water conservation monitoring field especially relates to a soil and water conservation monitoring devices of multi-angle intelligent regulation monitoring angle.
Background
The water and soil conservation monitoring refers to long-term investigation, observation and analysis work on water and soil loss occurrence, development, harm and water and soil conservation benefit. By monitoring soil and water conservation, the soil and water loss type, strength and distribution characteristics, damage and influence thereof, occurrence and development rules and dynamic change trends are discovered, and the method has important significance for comprehensive soil and water loss treatment, ecological environment construction macro decision, and scientific, reasonable and systematic arrangement of various soil and water conservation measures. Present soil and water keeps monitoring devices fixed insecure, takes place to rock or slope easily in the use, and in addition, current monitoring devices also can't the automatic change detection device's monitoring angle, and there is the fixity monitoring range, perhaps needs the monitoring angle of manual regulation monitoring devices, brings very big inconvenience for the monitoring.
SUMMERY OF THE UTILITY MODEL
In order to solve the above problem, the utility model adopts the following technical scheme: the utility model provides a soil and water conservation monitoring devices of multi-angle intelligent regulation monitoring angle, includes the mounting panel, is equipped with fixed establishment and translation mechanism on the mounting panel, and translation mechanism is articulated with the one end of pull rod, and the other end of pull rod is articulated with the monitor, and the monitor bottom is rotated with the stand and is connected, and the stand is established on the mounting panel, translation mechanism includes motor, accommodate the lead screw and slider, the motor is established on the mounting panel, and the output shaft and the accommodate the lead screw of motor are connected, and the dispensing lead screw is located the mounting panel, and accommodate the lead screw passes through threaded connection with the slider, and.
Preferably, the number of the fixing mechanisms is not less than two.
Preferably, the fixing mechanism comprises an inserted link, a rotating block, a movable cavity, a rotating screw rod, a movable block and a push rod A, the movable cavity is located in the axis of the inserted rod, the opening direction of the movable cavity faces upwards, the movable cavity is communicated with the moving hole, the moving block A and the moving block B are arranged in the moving hole, the moving block A and the moving block B are located at two ends of the moving hole respectively, the moving block A is hinged to one end of the pushed rod A, the other end of the pushed rod A is hinged to the movable block, one end of the pushed rod B is hinged to the other end of the pushed rod B, the movable block is located in the movable cavity, the top of the movable block is connected with one end of the adjusting screw rod through a bearing, the other end of the adjusting screw rod extends out of the movable cavity and is connected with the rotating block, the adjusting screw rod is connected with the cover plate through threads, and the cover plate is connected with the top of the inserted rod.
Preferably, one end of the moving block a is located in the moving hole, the other end of the moving block a passes through the moving hole and extends to the outside of the inserted link, one end of the moving block B is located in the moving hole, the other end of the moving block B passes through the moving hole and extends to the outside of the inserted link, and the moving block a and the moving block B are located on the same straight line.
Preferably, the movable block is in contact with the inner wall of the movable cavity.
Preferably, the cover plate is connected with the inserted rod through a bolt.
Preferably, the cover plate is connected with the inserted rod through clamping.
Preferably, the moving hole and the movable cavity are arranged perpendicular to each other.
Preferably, the fixing mechanism comprises a plunger.
Preferably, the outside cover of translation mechanism has the protective housing, is equipped with the slip mouth on the protective housing, and the slider is located the slip mouth.
The utility model has the advantages that: the fixing mechanism in the device is adopted for fixing, the fixing is firm, and the phenomenon of shaking or inclining can not occur after the fixing. In addition, the device can realize the multi-angle monitoring through the monitoring angle that translation mechanism promoted or pulling pull rod regulation monitor, and translation mechanism can the automatically regulated detection angle of monitor, need not the manual regulation, and is efficient, and the cost of labor is low.
Drawings
The figures further illustrate the invention, but the embodiments in the figures do not constitute any limitation of the invention.
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a partially enlarged view of a portion a in fig. 1 according to the present invention.
Detailed Description
The following will combine the drawings of the embodiments of the present invention to further describe the technical solution of the present invention, and the present invention is not limited to the following specific embodiments. It should be noted that, in the present invention, the embodiments and features of the embodiments may be combined with each other without conflict.
Referring to the figures, the soil and water conservation monitoring device capable of intelligently adjusting the monitoring angle at multiple angles comprises a mounting plate 8, the bottom of the mounting plate 8 is in contact with the ground, a fixing mechanism and a translation mechanism are arranged on the mounting plate 8, the fixing mechanism is used for fixing the mounting plate 8 on the ground, for example, a fixing rod can be installed on the mounting plate 8 and inserted into the soil to be fixed, and the fixing mechanism can also adopt other structures in the prior art to firmly fix the mounting plate 8 on the ground. Translation mechanism is articulated with the one end of pull rod 5, and the other end of pull rod 5 is articulated with monitor 6, and monitor 6 adopts the soil and water among the prior art to keep monitoring devices, installs prior art's monitoring devices on stand 7 and makes monitoring devices bottom and stand 7 articulated or rotate through the pivot and be connected, and 6 bottoms of monitor in this application rotate with stand 7 and be connected, and stand 7 is established on mounting panel 8, translation mechanism includes motor 1, accommodate the lead screw 3 and slider 4, motor 1 establishes on mounting panel 8, and motor 1's output shaft is connected with accommodate the lead screw 3, and the accent lead screw is located mounting panel 8, and accommodate the lead screw 3 passes through threaded connection with slider 4, and slider 4 is articulated with pull rod 5. When the monitoring angle of the monitor 6 needs to be adjusted, the motor 1 drives the adjusting screw rod 3 to rotate, the adjusting screw rod 3 drives the sliding block 4 to translate on the adjusting screw rod 3 when rotating, the sliding block 4 pushes or pulls the monitor 6 to swing around the rotating connecting shaft of the monitor and the stand column 7 through the pull rod 5 when translating, and therefore the monitoring angle of the monitor 6 is adjusted, and multi-angle automatic monitoring is achieved. Translation mechanism drives the regulation of monitor 6 automatic swing monitoring angle, and for fixed monitor 6 among the prior art, its monitoring angle is adjustable, need not artifical regulation monitoring angle, and angle modulation precision is high.
The number of the fixing mechanisms is not less than two. The number of the fixing mechanisms can be three, and the three fixing mechanisms can be arranged in a triangular shape; the number of the fixing mechanisms can also be four, and the four fixing mechanisms are arranged in a rectangular shape and are respectively distributed at four corners of the mounting plate 8.
The fixing mechanism comprises an inserting rod 13, a rotating block 19, a movable cavity 17, a rotating lead screw 9, a movable block 10, a push rod A14, a push rod B15, a movable block A12, a movable block B16, a movable hole 11 and a cover plate 18, wherein the inserting rod 13 is provided with the movable cavity 17 and the movable hole 11, the movable cavity 17 is positioned at the axis of the inserting rod 13, the opening direction of the movable cavity 17 faces upwards, the movable cavity 17 is communicated with the movable hole 11 and forms a T-shaped cavity together with the movable cavity 11, the movable cavity 11 is internally provided with the movable block A12 and the movable block B16, the movable block A12 and the movable block B16 are respectively positioned at two ends of the movable hole 11, the movable block A12 is hinged with one end of the push rod A14, the other end of the push rod A14 is hinged with one end of the movable block 10 and the push rod B15, the other end of the push rod B15 is hinged with the movable block B, the other end of the adjusting screw rod 3 extends out of the movable cavity 17 to be connected with the rotating block 19, the adjusting screw rod 3 is connected with the cover plate 18 through threads, and the cover plate 18 is connected with the top of the inserted rod 13 through threads or clamped with the top of the inserted rod. When the fixing mechanism is used, firstly, the inserting rod 13 is inserted into soil on the ground, the rotating block 19 is rotated, the rotating block 19 drives the adjusting screw rod 3 to rotate, the length of the adjusting screw rod 3 which is rotatably inserted into the movable cavity 17 is increased, the adjusting screw rod 3 drives the movable block 10 to slide downwards in the movable cavity 17, the movable block 10 drives the push rod A14 and the push rod B15 to swing when sliding downwards, the included angle between the push rod A and the push rod B15 is gradually increased, the push rod A14 drives the movable block A12 to move in the movable hole 11 and move towards the outside of the movable hole 11 until the movable block A12 is inserted into the soil and the push rod A14 has swung to the maximum movable range due to the blocking of the side wall of the movable cavity 17, meanwhile, the push rod B49368 drives the movable block B16 to move in the movable hole 11 and move towards the outside of the movable hole 11 until the movable block B16 is inserted into the soil and the blocking of the side, at this time, both the moving block a12 and the moving block B16 are inserted into the soil, and the fixing effect of the insert pin 13 is further enhanced, so that the inclination of the insert pin 13 is prevented.
One end of the moving block A12 is located in the moving hole 11, the other end of the moving block A12 penetrates through the moving hole 11 and extends to the outside of the inserted link 13, one end of the moving block B16 is located in the moving hole 11, the other end of the moving block B16 penetrates through the moving hole 11 and extends to the outside of the inserted link 13, and the moving block A12 and the moving block B16 are located on the same straight line.
The movable block 10 is in contact with the inner wall of the movable cavity 17.
The cover plate 18 is connected to the insert rod 13 by means of a screw.
The cover plate 18 is connected with the inserted rod 13 through clamping.
The moving hole 11 and the movable cavity 17 are arranged perpendicular to each other.
The fixing mechanism comprises an insert rod 13.
The outside cover of translation mechanism has the protective housing, is equipped with slip mouth 2 on the protective housing, and slider 4 is located slip mouth 2. Due to the sliding opening 2, the sliding block 4 can be restricted to only translate along the adjusting screw rod 3.
The fixing mechanism in the device is adopted for fixing, the fixing is firm, and the phenomenon of shaking or inclining can not occur after the fixing. In addition, the device can promote or pull the monitoring angle that pull rod 5 adjusted monitor 6 through translation mechanism, realizes the multi-angle monitoring, and translation mechanism can the automatically regulated monitor 6 detect the angle, need not manual regulation, and is efficient, and the cost of labor is low.
As described above, the above embodiments are not limiting embodiments of the present invention, and modifications or equivalent variations made by those skilled in the art based on the substance of the present invention are within the technical scope of the present invention.

Claims (10)

1. The utility model provides a soil and water conservation monitoring devices of multi-angle intelligent regulation monitoring angle, includes the mounting panel, its characterized in that: be equipped with fixed establishment and translation mechanism on the mounting panel, translation mechanism is articulated with the one end of pull rod, and the other end of pull rod is articulated with the monitor, and the monitor bottom is rotated with the stand and is connected, and the stand is established on the mounting panel, translation mechanism includes motor, accommodate the lead screw and slider, the motor is established on the mounting panel, and the output shaft and the accommodate the lead screw of motor are connected, and the dispensing lead screw is located the mounting panel, and accommodate the lead screw passes through threaded connection with the slider, and the slider is articulated with the pull rod.
2. The soil and water conservation monitoring device of multi-angle intelligent regulation monitoring angle of claim 1, characterized in that: the number of the fixing mechanisms is not less than two.
3. The soil and water conservation monitoring device of multi-angle intelligent regulation monitoring angle of claim 1, characterized in that: the fixing mechanism comprises an inserted link, a rotating block, a movable cavity, a rotating screw rod, a movable block and a push rod A, the movable cavity is located in the axis of the inserted rod, the opening direction of the movable cavity faces upwards, the movable cavity is communicated with the moving hole, the moving block A and the moving block B are arranged in the moving hole, the moving block A and the moving block B are located at two ends of the moving hole respectively, the moving block A is hinged to one end of the pushed rod A, the other end of the pushed rod A is hinged to the movable block, one end of the pushed rod B is hinged to the other end of the pushed rod B, the movable block is located in the movable cavity, the top of the movable block is connected with one end of the adjusting screw rod through a bearing, the other end of the adjusting screw rod extends out of the movable cavity and is connected with the rotating block, the adjusting screw rod is connected with the cover plate through threads, and the cover plate is connected with the top of the inserted rod.
4. The soil and water conservation monitoring device of claim 3, which comprises: one end of the moving block A is located in the moving hole, the other end of the moving block A penetrates through the moving hole and extends to the outside of the inserted link, one end of the moving block B is located in the moving hole, the other end of the moving block B penetrates through the moving hole and extends to the outside of the inserted link, and the moving block A and the moving block B are located on the same straight line.
5. The soil and water conservation monitoring device of claim 3, which comprises: the movable block is contacted with the inner wall of the movable cavity.
6. The soil and water conservation monitoring device of claim 3, which comprises: the cover plate is connected with the inserted bar through a bolt.
7. The soil and water conservation monitoring device of claim 3, which comprises: the cover plate is connected with the inserted bar in a clamping manner.
8. The soil and water conservation monitoring device of claim 3, which comprises: the movable hole and the movable cavity are arranged perpendicular to each other.
9. The soil and water conservation monitoring device of multi-angle intelligent regulation monitoring angle of claim 1, characterized in that: the fixing mechanism comprises an insertion rod.
10. The soil and water conservation monitoring device of multi-angle intelligent regulation monitoring angle of claim 1, characterized in that: the outside cover of translation mechanism has the protective housing, is equipped with the slip mouth on the protective housing, and the slider is located the slip mouth.
CN202021094780.8U 2020-06-15 2020-06-15 Soil and water conservation monitoring devices of multi-angle intelligent regulation monitoring angle Active CN212480681U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021094780.8U CN212480681U (en) 2020-06-15 2020-06-15 Soil and water conservation monitoring devices of multi-angle intelligent regulation monitoring angle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021094780.8U CN212480681U (en) 2020-06-15 2020-06-15 Soil and water conservation monitoring devices of multi-angle intelligent regulation monitoring angle

Publications (1)

Publication Number Publication Date
CN212480681U true CN212480681U (en) 2021-02-05

Family

ID=74417514

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021094780.8U Active CN212480681U (en) 2020-06-15 2020-06-15 Soil and water conservation monitoring devices of multi-angle intelligent regulation monitoring angle

Country Status (1)

Country Link
CN (1) CN212480681U (en)

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