Ecological restoration mechanism for highway high slope
By constructing a triangular support structure using support, stabilization, and counterweight devices, the stability problem of the rain gauge under high-slope and windy weather was solved, improving the working efficiency and practicality of the equipment.
Patent Information
- Application Number
- CN202422705481.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-11-06
AI Technical Summary
Existing rain gauges are unstable when used on high slopes in windy weather, resulting in low work efficiency and poor practicality.
A triangular support structure is constructed by combining a support device with a stabilizing device and a counterweight device to improve the stability of the equipment. The counterweight device further enhances the stability of the equipment, while also providing the functions of collecting and measuring rainwater.
This improved the stability and efficiency of the rain gauge in windy weather, enhancing the practicality of the equipment.
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Figure CN223709236U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of slope ecological recovery equipment accessory device, especially to a kind of for highway high slope ecological recovery mechanism. BACKGROUND
[0002] It is known that in the process of daily life, highway is the main traffic facilities connected between cities, with the development of times, highway is more and more popular, based on the safety of highway and environmental protection, etc., on mountainous section, the slope of highway needs to be ecologically recovered, the high slope soil is reinforced by vegetation to avoid mud-rock flow disaster, and the natural environment can also be protected, the most common highway slope protection equipment is rain gauge; rain gauge is a kind of equipment used for monitoring the rainfall of highway slope in the process of daily life, which has been widely used in the field of environmental protection; the existing rain gauge is placed on the highway slope when used, and the rainfall of slope in fixed period is recorded by flowing into the rain gauge, and the vegetation selection and protection of highway slope are considered according to local conditions by recording rainfall; it is found in the use of existing rain gauge that the use of rain gauge is mostly high slope, so that the response to strong wind weather is poor, so that the working efficiency of the equipment is low, so that the practicability is poor. SUMMARY
[0003] To solve the above technical problems, the utility model provides a kind of for highway high slope ecological recovery mechanism, which can be supported by supporting device and stabilized by stabilizing device, in this process, the stability of the equipment body is improved by counterweight device, so as to improve the stability of the equipment in strong wind weather, so as to improve the working efficiency of the equipment, so as to increase the practicability.
[0004] The utility model relates to a kind of for highway high slope ecological recovery mechanism, including box, box door, metering device and pin, installation seat is provided on box, box door is rotatedly connected through installation seat and box, the connecting end of pin and the connecting end of box are rotatedly connected, pin slot is matched and set on box, the output end of pin passes through pin slot and pin movable clamping, metering device is evenly installed on box, metering device further includes supporting device, stabilizing device, collection device and counterweight device, multiple groups of binders are provided on box, the connecting end of supporting device and stabilizing device is respectively rotatedly connected with box through corresponding binder, the connecting end of counterweight device and the bottom end of box are connected, working cavity is provided in box, collection device is evenly installed in working cavity.
[0005] Preferably, the supporting device further comprises supporting rods, connecting rods, adjusting knobs and pads, the connecting ends of the plurality of supporting rods are rotatably connected to the box through corresponding sockets, the connecting ends of the plurality of connecting rods are hingedly connected to the output ends of the corresponding supporting rods, adjusting holes are formed through the plurality of connecting rods and the corresponding supporting rods, the plurality of adjusting knobs are threadedly connected to the corresponding supporting rods and connecting rods through the corresponding adjusting holes, and the connecting ends of the plurality of pads are rotatably connected to the output ends of the corresponding connecting rods.
[0006] Preferably, the stabilizing device further comprises hinge rods, springs and top plates, the connecting ends of the plurality of hinge rods are rotatably connected to the box through corresponding sockets, the plurality of pads are provided with hinge holes, the output ends of the plurality of hinge rods are rotatably connected to the corresponding pads through the corresponding hinge holes, the plurality of hinge rods are provided with connecting holes, the connecting ends of the plurality of top plates are rotatably connected to the corresponding hinge rods through the corresponding connecting holes, and the connecting ends and the output ends of the plurality of springs are connected to the corresponding top plates and pads.
[0007] Preferably, the collecting device further comprises a rain gauge, a baffle, a buckle, a rotating knob, a collecting bottle, a filter element, a connecting shaft, a driving wheel, a driven wheel, a motor and a support, the top end of the working cavity is provided with a water inlet, the connecting end of the rain gauge is connected to the top end of the working cavity, the output end of the rain gauge is communicated with the water inlet, the bottom end of the rain gauge is provided with a water outlet, the connecting end of the connecting shaft is rotatably connected to the top end of the working cavity, the connecting end of the baffle is connected to the output end of the connecting shaft, the output end of the baffle is close to the water outlet, the connecting end of the support is connected to the connecting end of the working cavity, the support is provided with a shaft hole, the connecting shaft is rotatably connected to the support through the shaft hole, the connecting end of the motor is connected to the top end of the working cavity, the connecting end of the driving wheel is connected to the output end of the motor, the connecting end of the driven wheel is fixedly sleeved with the connecting end of the connecting shaft, the output end of the driving wheel is engaged with the output end of the driven wheel, the connecting end of the buckle is rotatably connected to the connecting end of the baffle, the buckle and the baffle are provided with a rotating hole, the rotating knob is threadedly connected to the buckle and the baffle through the rotating hole, the connecting end of the collecting bottle is movably sleeved with the output end of the buckle, and the filter element is uniformly arranged in the collecting bottle.
[0008] Preferably, the counterweight device further comprises an annular seat, wedges, a sliding block, a screw rod, a guide rail, clamping blocks and counterweight blocks, the connecting end of the annular seat is connected to the bottom end of the box, the annular seat is provided with a plurality of penetrating holes, the plurality of wedges are slidably connected to the annular seat through the corresponding penetrating holes, the connecting end of the guide rail is connected to the bottom end of the box, the output end of the sliding block is slidably connected to the connecting end of the guide rail, the sliding block and the annular seat are provided with screw holes, the screw rod is rotatably connected to the sliding block through the screw holes and is threadedly connected to the annular seat, the connecting ends of the plurality of clamping blocks are connected to the connecting end of the annular seat, and the connecting end of the counterweight block is close to the output ends of the plurality of clamping blocks.
[0009] The beneficial effects of the utility model compared with prior art are: in the process of monitoring the rainfall of the side slope, the support device is rotated to support the ground, and is folded when being stored, in the process, the stable device and the support device form a tripod structure to support and stabilize, in the process, different sizes of counterweight devices are filled in the counterweight device to stabilize the equipment, in the process, the rainwater falls through the box, flows into the collecting device through the water inlet to collect and measure the rainwater, so as to improve the stability of the equipment, thus improving the working efficiency of the equipment, thereby increasing the practicability of a high side slope ecological restoration mechanism for highway. BRIEF DESCRIPTION OF DRAWINGS
[0010] Fig. 1 is the structural schematic diagram of the utility model;
[0011] Fig. 2 is the connecting structure schematic diagram of the box and the box door of the utility model;
[0012] Fig. 3 is the local enlarged structure schematic diagram of A of the utility model;
[0013] Fig. 4 is the local enlarged structure schematic diagram of B of the utility model;
[0014] Markings in the drawings: 1, box; 2, box door; 3, pin; 4, mounting seat; 5, pin slot; 601, winding seat; 602, working cavity; 701, support rod; 702, connecting rod; 703, adjusting knob; 704, cushion block; 705, adjusting hole; 801, hinge rod; 802, spring; 803, top plate; 804, hinge hole; 805, connecting hole; 901, rain gauge; 902, baffle; 903, buckle; 904, rotating knob; 905, collecting bottle; 906, filter element; 907, connecting shaft; 908, driving wheel; 909, driven wheel; 910, motor; 911, support; 912, water inlet; 913, water outlet; 914, shaft hole; 915, rotating hole; 1001, annular seat; 1002, wedge; 1003, sliding block; 1004, screw rod; 1005, guide rail; 1006, clamping block; 1007, counterweight block; 1008, through hole; 1009, screw hole. DETAILED DESCRIPTION
[0015] The specific embodiments of the utility model are described in further detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but are not used to limit the scope of the utility model.
[0016] As Figs. 1 to 4As shown in the utility model discloses a kind of ecological restoration mechanism for highway high slope, including box 1, box door 2, measuring device and pin 3, mounting seat 4 is provided on box 1, box door 2 passes through mounting seat 4 and the rotary connection of box 1, the connecting end of pin 3 and the connecting end of box door 2 is rotatably connected, pin slot 5 is provided on box 1 in a matched manner, the output end of pin 3 passes through pin slot 5 and the movable card of pin 3, measuring device is evenly installed on box 1, measuring device further includes supporting device, stabilizing device, collecting device and counterweight device, a plurality of groups of winding seat 601 are provided on box 1, the connecting end of supporting device and stabilizing device is rotatably connected with box 1 by passing through corresponding winding seat 601, the connecting end of counterweight device and the bottom end of box 1 are connected, working cavity 602 is provided in box 1, and collecting device is evenly installed in working cavity 602;In the process of monitoring side slope rainfall, rotating supporting device makes it support ground, folding when storage, in this process, rotating stabilizing device and supporting device form tripod structure to support and stabilize, in this process, different sizes of counterweight device are filled in counterweight device, and the equipment is stabilized, in this process, rainwater falls through box, and rainwater is collected and measured by flowing into collecting device through water inlet, to improve the stability of equipment collection, so as to improve the working efficiency of equipment, thereby increasing practicability.
[0017] As preferred of the above embodiment, the supporting device further includes support rod 701, connecting rod 702, adjusting knob 703 and pad 704, the connecting end of a plurality of groups of support rod 701 is rotatably connected with box 1 by passing through corresponding winding seat 601, the connecting end of a plurality of groups of connecting rod 702 is hingedly connected with the output end of corresponding support rod 701, adjusting hole 705 is provided on a plurality of groups of connecting rod 702 and corresponding support rod 701, a plurality of groups of adjusting knob 703 are threadedly connected with corresponding support rod 701 and connecting rod 702 by passing through corresponding adjusting hole 705, and the connecting end of a plurality of groups of pad 704 is rotatably connected with the output end of corresponding connecting rod 702;In the process of supporting the equipment, rotating support rod makes it rotate on winding seat, rotating connecting rod makes it straighten on support rod, driving pad and ground to support, rotating adjusting knob fixes the position of support rod and connecting rod, to improve the stability of equipment support, so as to improve the working efficiency of equipment, thereby increasing practicability.
[0018] As the preferred of the above embodiment, the stabilizing device further comprises hinge rods 801, springs 802 and top plates 803, the connecting ends of the plurality of groups of hinge rods 801 are respectively connected with the box body 1 through the corresponding jacks 601, the plurality of groups of cushion blocks 704 are respectively provided with hinge holes 804, the output ends of the plurality of groups of hinge rods 801 are respectively connected with the corresponding cushion blocks 704 through the corresponding hinge holes 804, the plurality of groups of hinge rods 801 are respectively provided with connecting holes 805, the connecting ends of the plurality of groups of top plates 803 are respectively connected with the corresponding hinge rods 801 through the corresponding connecting holes 805, and the connecting ends and the output ends of the plurality of groups of springs 802 are respectively connected with the corresponding top plates 803 and the connecting ends of the cushion blocks 704; in the process of stabilizing the cushion block, the hinge rod connected with the cushion block rotates in the process of rotating the connecting rod, and the top plate and the spring are matched to support the cushion block, so as to construct a triangular stabilizing mechanism, improve the stability of the equipment, thus improve the working efficiency of the equipment, and increase the practicability.
[0019] As the preferred of the above embodiment, the collecting device further comprises a rain gauge 901, a baffle 902, a buckle 903, a rotating knob 904, a collecting bottle 905, a filter core 906, a connecting shaft 907, a driving wheel 908, a driven wheel 909, a motor 910 and a support 911, the top end of the working cavity 602 is provided with a water inlet 912, the connecting end of the rain gauge 901 is connected with the top end of the working cavity 602, the output end of the rain gauge 901 is communicated with the water inlet 912, the bottom end of the rain gauge 901 is provided with a water outlet 913, the connecting end of the connecting shaft 907 is rotationally connected with the top end of the working cavity 602, the connecting end of the baffle 902 is connected with the output end of the connecting shaft 907, the output end of the baffle 902 is close to the water outlet 913, the connecting end of the support 911 is connected with the connecting end of the working cavity 602, the support 911 is provided with a shaft hole 914, the connecting shaft 907 is rotationally connected with the support 911 through the shaft hole 914, the connecting end of the motor 910 is connected with the top end of the working cavity 602, the connecting end of the driving wheel 908 is connected with the output end of the motor 910, the connecting end of the driven wheel 909 is fixedly sleeved with the connecting end of the connecting shaft 907, the output end of the driving wheel 908 is engaged with the output end of the driven wheel 909, the connecting end of the buckle 903 is rotationally connected with the connecting end of the baffle 902, the buckle 903 and the baffle 902 are provided with a rotating hole 915, the rotating knob 904 is threadedly connected with the buckle 903 and the baffle 902 through the rotating hole 915, the connecting end of the collecting bottle 905 is movably sleeved with the output end of the buckle 903, the filter core 906 is evenly installed in the collecting bottle 905; in the process of collecting rainwater, the rainwater flows into the rain gauge from the water inlet, leaks into the collecting bottle through the water outlet, and is collected and filtered through the filter core, so as to analyze the rainwater, after collecting a certain amount, the motor is started to drive the driving wheel connected therewith to rotate, the driving wheel drives the driven wheel to rotate, the connecting shaft rotates on the support, and the baffle is displaced, so that the rain gauge is sealed, the rain amount is calculated, the pin and the pin groove are separated in the analysis, the box door and the buckle are opened, and the collecting bottle is taken out for analysis, so as to improve the functionality of the equipment, thus improving the working efficiency of the equipment, thereby increasing the practicability.
[0020] As the preferred of the above embodiment, the counterweight device further comprises an annular seat 1001, a wedge 1002, a sliding block 1003, a screw rod 1004, a guide rail 1005, a clamping block 1006 and a counterweight block 1007, the connecting end of the annular seat 1001 is connected with the bottom end of the box body 1, a plurality of groups of penetrating holes 1008 are arranged on the annular seat 1001, a plurality of groups of wedges 1002 are respectively penetrated through corresponding penetrating holes 1008 and are in sliding connection with the annular seat 1001, the connecting end of the guide rail 1005 is connected with the bottom end of the box body 1, the output end of the sliding block 1003 is in sliding connection with the connecting end of the guide rail 1005, screw holes 1009 are arranged through the sliding block 1003 and the annular seat 1001, the screw rod 1004 is in rotational connection with the sliding block 1003 and is in threaded connection with the annular seat 1001, the connecting end of a plurality of groups of clamping blocks 1006 is connected with the connecting end of the annular seat 1001, and the connecting end of the counterweight block 1007 is close to the output end of the plurality of groups of clamping blocks 1006; in the process of stabilizing the equipment, the counterweight block is placed on the clamping block, the screw rod is rotated to drive the sliding block to slide on the guide rail, the counterweight block is tightened through the sliding block, and the ground is supported through the wedge, so that the stability of the equipment is improved, the working efficiency of the equipment is improved, and the practicability is improved.
[0021] The utility model discloses a mechanism for ecological recovery of highway high slope, its in working principle is, rotates support device makes it and ground support, when receiving, it is folded, in this process, rotate stabilizing device and support device constitute tripod structure and support stability, in this process, fill different size's counterweight device in counterweight device, stabilize the equipment, in this process, rainwater falls through the box, through the water inlet and flow into the collecting device in rainwater and measure, rotate support rod makes it on the winding seat and rotate, rotate connecting rod makes it on the support rod and straighten, drive pad and ground support, rotate the position of adjusting knob and fix support rod and connecting rod, in the process of rotating connecting rod, with pad connection's hinge rod follows and rotates, cooperate with the top board and spring and support pad, rainwater flows into the rain gauge through the water inlet, through the water outlet and leak into the collecting bottle through the filter element and collect and filter, in this way, rainwater is analyzed, after collecting a certain amount, start motor and make it drive wheel connected with rotation, drive wheel drive driven wheel rotation, connecting shaft follows and rotates on the support, shift baffle, thereby seal the rain gauge, carry out the rainfall calculation, in analysis makes the pin and pin groove separate, open the box door and buckle and take out the collecting bottle and analyze, place the counterweight block on the clamping block, rotate the screw rod and drive the sliding block to slide on the guide rail, tighten the counterweight block through the sliding block, cooperate with the wedge and support the ground.
[0022] The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are only for illustrative purposes.
[0023] The "first", "second", "third" in the utility model do not represent the specific quantity and order, and are only used for distinguishing the names.
[0024] The above is only the preferred embodiment of the utility model, and it should be pointed out that, for ordinary skilled persons in the technical field, several improvements and modifications can be made without departing from the technical principles of the utility model, and these improvements and modifications should also be considered as the protection scope of the utility model.
Claims
1. A mechanism for ecological restoration of highway high slope, comprising a box (1), a box door (2), a metering device and a pin (3), the box (1) is provided with a mounting seat (4), the box door (2) is rotatably connected through the mounting seat (4) and the box (1), the connecting end of the pin (3) and the connecting end of the box door (2) are rotatably connected, the box (1) is provided with a pin slot (5) in a matched manner, the output end of the pin (3) is movably clamped through the pin slot (5) and the pin (3), and the metering device is uniformly installed on the box (1); characterized in that, The metering device further comprises a supporting device, a stabilizing device, a collecting device and a counterweight device, a plurality of groups of winding bases (601) are arranged on the box (1), the connecting ends of the supporting device and the stabilizing device are respectively rotatably connected with the box (1) through the corresponding winding bases (601), the connecting end of the counterweight device is connected with the bottom end of the box (1), a working cavity (602) is arranged in the box (1), and the collecting device is uniformly arranged in the working cavity (602).
2. The ecological restoration mechanism for highway high slope according to claim 1, characterized in that, The supporting device further comprises supporting rods (701), connecting rods (702), adjusting knobs (703) and pads (704), the connecting ends of a plurality of groups of the supporting rods (701) are rotatably connected with the box (1) through the corresponding winding bases (601), the connecting ends of a plurality of groups of the connecting rods (702) are hingedly connected with the output ends of the corresponding supporting rods (701), adjusting holes (705) are arranged in the corresponding supporting rods (701) and the corresponding connecting rods (702), a plurality of groups of the adjusting knobs (703) are threadedly connected with the corresponding supporting rods (701) and the corresponding connecting rods (702) through the corresponding adjusting holes (705), and the connecting ends of a plurality of groups of the pads (704) are rotatably connected with the output ends of the corresponding connecting rods (702).
3. The ecological restoration mechanism for highway high slope according to claim 2, characterized in that, The stabilizing device further comprises hinge rods (801), springs (802) and top plates (803), the connecting ends of a plurality of groups of the hinge rods (801) are rotatably connected with the box (1) through the corresponding winding bases (601), the hinge holes (804) are arranged in the corresponding pads (704), the output ends of a plurality of groups of the hinge rods (801) are rotatably connected with the corresponding pads (704) through the corresponding hinge holes (804), the connecting holes (805) are arranged in the corresponding hinge rods (801), the connecting ends of a plurality of groups of the top plates (803) are rotatably connected with the corresponding hinge rods (801) through the corresponding connecting holes (805), and the connecting ends and the output ends of a plurality of groups of the springs (802) are connected with the connecting ends of the corresponding top plates (803) and the corresponding pads (704).
4. The ecological restoration mechanism for highway high slope according to claim 3, characterized in that, The collecting device further comprises a rain gauge (901), a baffle (902), a buckle (903), a rotating knob (904), a collecting bottle (905), a filter core (906), a connecting shaft (907), a driving wheel (908), a driven wheel (909), a motor (910) and a support (911), a water inlet (912) is arranged at the top end of the working cavity (602), the connecting end of the rain gauge (901) is connected with the top end of the working cavity (602), the output end of the rain gauge (901) is communicated with the water inlet (912), a water outlet (913) is arranged at the bottom end of the rain gauge (901), the connecting end of the connecting shaft (907) is rotationally connected with the top end of the working cavity (602), the connecting end of the baffle (902) is connected with the output end of the connecting shaft (907), the output end of the baffle (902) is close to the water outlet (913), the connecting end of the support (911) is connected with the connecting end of the working cavity (602), an axle hole (914) is arranged on the support (911), the connecting shaft (907) is rotationally connected with the support (911) through the axle hole (914), the connecting end of the motor (910) is connected with the top end of the working cavity (602), the connecting end of the driving wheel (908) is connected with the output end of the motor (910), the connecting end of the driven wheel (909) is fixedly sleeved with the connecting end of the connecting shaft (907), the output end of the driving wheel (908) is engaged with the output end of the driven wheel (909), the connecting end of the buckle (903) is rotationally connected with the connecting end of the baffle (902), the buckle (903) and the baffle (902) are penetratingly provided with a rotating hole (915), the rotating knob (904) is threadedly connected with the buckle (903) and the baffle (902) through the rotating hole (915), the connecting end of the collecting bottle (905) is movably sleeved with the output end of the buckle (903), and the filter core (906) is evenly arranged in the collecting bottle (905).
5. The ecological restoration mechanism for highway high slope according to claim 4, characterized in that, The counterweight device further comprises an annular seat (1001), a wedge (1002), a sliding block (1003), a screw rod (1004), a guide rail (1005), a clamping block (1006) and a counterweight block (1007), the connecting end of the annular seat (1001) is connected with the bottom end of the box body (1), a plurality of penetrating holes (1008) are arranged on the annular seat (1001), a plurality of wedges (1002) are slidingly connected with the annular seat (1001) through the corresponding penetrating holes (1008), the connecting end of the guide rail (1005) is connected with the bottom end of the box body (1), the output end of the sliding block (1003) is slidingly connected with the connecting end of the guide rail (1005), screw holes (1009) are penetratingly arranged on the sliding block (1003) and the annular seat (1001), the screw rod (1004) is rotationally connected with the sliding block (1003) and is threadedly connected with the annular seat (1001) through the screw holes (1009), the connecting end of each clamping block (1006) is connected with the connecting end of the annular seat (1001), and the connecting end of the counterweight block (1007) is close to the output end of the plurality of clamping blocks (1006).