CN212636645U - Ecological network processing equipment for land resource management - Google Patents

Ecological network processing equipment for land resource management Download PDF

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Publication number
CN212636645U
CN212636645U CN202021010927.0U CN202021010927U CN212636645U CN 212636645 U CN212636645 U CN 212636645U CN 202021010927 U CN202021010927 U CN 202021010927U CN 212636645 U CN212636645 U CN 212636645U
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riveting
plate
feeding
sliding
shaft
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张洋
张俊杰
刘磊
纪银涛
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Abstract

The utility model provides an ecological network processing equipment for land resource management, belongs to ecological remediation net processing technology field to solve current ecological remediation net, adopt manual riveting or the mode welding of hot melt more, there are welding or riveting insecure, problem that production efficiency is low. The utility model comprises a punching mechanism, a longitudinal feeding mechanism, a vertical feeding mechanism, a base, a transverse driving mechanism, a riveting mechanism, two groups of supporting plates and two groups of supporting plate driving mechanisms; the punching mechanism, the vertical feeding mechanism and the riveting mechanism are respectively fixed on the transverse driving mechanism and can move transversely, the transverse driving mechanism, the longitudinal feeding mechanism and the supporting plate driving mechanism are respectively fixed on the base, each group of supporting plates is connected with each group of supporting plate driving mechanism, each group of supporting plates is provided with one set of longitudinal feeding mechanism, and the two groups of supporting plates are arranged below the riveting mechanism side by side. The utility model discloses a rivet riveting, with current manual riveting or hot melt, the riveting is more firm, and efficiency is higher.

Description

Ecological network processing equipment for land resource management
Technical Field
The utility model relates to an ecological network processing equipment, concretely relates to ecological network processing equipment is used in land resource management belongs to land resource management or land engineering field.
Background
The existing ecological restoration net generally refers to a geocell or a honeycomb cell, manual riveting or welding by using laser hot melting equipment is mostly adopted, and the production efficiency is low by adopting the manual riveting. The welding by the laser hot melting equipment is not firm, so that the overall strength of the ecological restoration net product is not high, and the requirement on the material of the sheet is limited when the welding is carried out by the laser hot melting equipment, and the sheet can be made of polyethylene, polypropylene or other materials. The overall strength and the application range of the ecological restoration net product are limited due to the limitation of the material.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a solve above-mentioned problem, and provide an ecological network processing equipment for land resource management.
The utility model discloses a solve the technical scheme that above-mentioned technical problem took and be:
an ecological net processing device for land resource management comprises a punching mechanism, a longitudinal feeding mechanism, a vertical feeding mechanism, a base, a transverse driving mechanism, a riveting mechanism, two groups of supporting plates and two groups of supporting plate driving mechanisms;
the punching mechanism, the vertical feeding mechanism and the riveting mechanism are respectively fixed on the transverse driving mechanism and can move transversely, the transverse driving mechanism, the longitudinal feeding mechanism and the supporting plate driving mechanism are respectively fixed on the base, each group of supporting plates is connected with each group of supporting plate driving mechanism, each group of supporting plates is provided with one set of longitudinal feeding mechanism, and the two groups of supporting plates are arranged below the riveting mechanism side by side.
Further, the transverse driving mechanism comprises an optical axis, a lead screw, a transverse driving motor and two supports;
the optical axis is fixed on two supports, and the lead screw rotates and sets up on two supports, and optical axis and lead screw parallel arrangement, horizontal driving motor pass through shaft coupling and screw connection, are equipped with a plurality of nuts on the lead screw, and mechanism, vertical feeding mechanism and the riveting mechanism of punching a hole respectively with every nut fixed connection, and the mechanism, vertical feeding mechanism and the riveting mechanism of punching a hole slide respectively and set up on the optical axis.
Further, the riveting mechanism comprises an actuating mechanism, a riveting rod, a rivet claw and a connecting plate;
the actuating mechanism is fixed on the connecting plate, the riveting rod is vertically arranged on the connecting plate in a sliding mode, the actuating mechanism is fixedly connected with the riveting rod, the rivet claws are hinged on the connecting plate in pairs, a fourth compression spring is arranged between each rivet claw and the connecting plate to enable the rivet claws to be buckled together, rivet notches are formed in the rivet claws, the riveting rod corresponds to the rivet claws and can stretch out of the bottoms of the rivet claws through the actuating mechanism, the connecting plate is arranged on an optical axis in a sliding mode, and the connecting plate is fixedly connected with a nut on the screw rod.
Further, the vertical feeding mechanism comprises a grooved pulley, a hopper, a feeding motor and a shell;
the grooved pulley is rotationally arranged in the shell, driven by the feeding motor and arranged in a clearance with the shell, a hopper is arranged above the shell, a discharge hole is arranged below the shell, the shape of a wheel groove on the grooved pulley is rectangular, the size of the wheel groove on the grooved pulley is consistent with that of the discharge hole of the hopper, a feeding connecting plate is fixed on the shell, the feeding connecting plate is arranged on the optical axis in a sliding mode, and the feeding connecting plate is fixedly connected with a nut on the lead screw.
Furthermore, the punching mechanism comprises a punch, an air cylinder, a first compression spring, a first connecting seat, an air cylinder fixing plate, a punching connecting plate and two guide rods;
the punching head and the two guide rods are fixed on the first connecting seat, the two guide rods are arranged in parallel, the two guide rods are arranged on the air cylinder fixing plate in a sliding mode, a first compression spring is arranged between each guide rod and the air cylinder fixing plate to enable the punching head to move upwards and reset, the air cylinder is fixed on the air cylinder fixing plate, the air cylinder execution end is fixedly connected with the first connecting seat, a punching connecting plate is fixed on the air cylinder fixing plate, the punching connecting plate is connected with the optical axis in a sliding mode, and the punching connecting plate is fixedly connected with a screw nut on the lead.
Furthermore, each set of supporting plate driving mechanism comprises a connecting frame, a telescopic swing rod, two driving motors and two second connecting seats;
be equipped with the pendulum shaft of two parallels on the link, processing has two square grooves that parallel on every second connecting seat, two pendulum shaft 811's both ends are equipped with the gyro wheel, the gyro wheel at a pendulum shaft both ends sets up a square inslot on every second connecting seat, the gyro wheel at another pendulum shaft both ends sets up another square inslot on every second connecting seat, the both sides of every pendulum shaft are rotated respectively and are provided with a flexible pendulum rod, every flexible pendulum rod and a driving motor's axle fixed connection, every driving motor fixes on every second connecting seat, every second connecting seat is fixed on the base.
Further, be connected through slip canceling release mechanical system between every layer board in link and every group layer board, slip canceling release mechanical system includes mounting panel, third compression spring and two sliding shafts, and the fixed sliding shaft that is provided with two parallels on every layer board, the sliding shaft slides and sets up on the mounting panel, and processing has the external screw thread on every sliding shaft, is equipped with the nut on the external screw thread of every sliding shaft, and it is fixed through the nut between every sliding shaft and the mounting panel, is equipped with third compression spring on every sliding shaft, and third compression spring is located between mounting panel and the layer board.
Further, the bottom of each layer board in each group of layer boards is installed with the gyro wheel.
Furthermore, each telescopic swing rod is composed of a telescopic shaft and a telescopic sleeve, the telescopic sleeve is sleeved on the telescopic shaft, a second compression spring is arranged between the telescopic shaft and the telescopic sleeve, each telescopic shaft is rotatably arranged on the swing shaft, and each telescopic sleeve is fixed on the shaft of each driving motor.
Furthermore, each set of longitudinal feeding mechanism comprises a feeding cylinder, a feeding hopper and a push plate;
and a feeding cylinder and a feeding hopper are fixed on each supporting plate, the feeding hopper is arranged in a gap with the supporting plate, a push plate is arranged between the feeding hopper and the supporting plate, and the push plate is fixedly connected with an execution end of the feeding cylinder.
Compared with the prior art, the utility model following beneficial effect has:
the utility model is provided with two groups of supporting plates, a gasket is arranged on a longitudinal feeding mechanism of each group of supporting plates, the gasket is sent to the upper part of the supporting plate through the longitudinal feeding mechanism, a plastic plate on an ecological restoration net is laid manually to enable one group of supporting plates to be positioned below the plastic plate, at the moment, the other group of supporting plates are positioned above the plastic plate, the gasket is pressed on the first plastic plate through the driving of a supporting plate driving mechanism, then a plastic plate is laid, a vertical feeding mechanism is moved to the position opposite to the first group of supporting plates through a transverse driving mechanism, the gasket is sent on the second plastic plate, a punching mechanism is moved to the position of the first group of supporting plates through the driving of the transverse driving mechanism to punch holes, finally, the riveting mechanism is moved to the position of the first group of supporting plates through the transverse driving mechanism to rivet and press the first group of supporting plates through the transverse driving mechanism, after riveting, a group of plastic, the first group of supporting plates are pressed above the third plastic plate, and the ecological restoration net is finally processed through repeated circulation. The utility model discloses with current manual riveting or hot melt, the riveting is more firm, and efficiency is higher. The utility model discloses the ecological remediation net of processing is used for protecting the soil resource.
Drawings
Fig. 1 is an isometric view of the present invention;
FIG. 2 is a schematic view of the positional relationship between the longitudinal feeding mechanism and the riveting mechanism;
FIG. 3 is a schematic view of a vertical feed mechanism;
FIG. 4 is a schematic view of a punching mechanism;
FIG. 5 is an enlarged view of a portion of FIG. 1 at I;
FIG. 6 is an enlarged view of a portion of FIG. 1 at II;
figure 7 is an isometric view of a push plate.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings: this embodiment is implemented on the premise of the technical solution of the present invention, and a detailed implementation is given, but the scope of the present invention is not limited to the following embodiments.
Example 1: as shown in fig. 1, the processing equipment for an ecological network for land resource management in this embodiment includes a punching mechanism 1, a longitudinal feeding mechanism 2, a vertical feeding mechanism 3, a base 4, a transverse driving mechanism 5, a riveting mechanism 6, two groups of supporting plates 7, and two groups of supporting plate driving mechanisms 8;
the punching mechanism 1, the vertical feeding mechanism 3 and the riveting mechanism 6 are respectively fixed on the transverse driving mechanism 5 and can move transversely, the transverse driving mechanism 5, the longitudinal feeding mechanism 2 and the supporting plate driving mechanism 8 are respectively fixed on the base 4, each group of supporting plates 7 is connected with each group of supporting plate driving mechanism 8, each group of supporting plates 7 is provided with one group of longitudinal feeding mechanism 2, and the two groups of supporting plates 7 are arranged below the riveting mechanism 6 side by side.
Specifically, the transverse driving mechanism 5 comprises an optical axis 5-1, a screw 5-2, a transverse driving motor 5-3 and two supports 5-4;
an optical axis 5-1 is fixed on two supports 5-4, a screw 5-2 is rotatably arranged on the two supports 5-4, the optical axis 5-1 is arranged in parallel with the screw 5-2, a transverse driving motor 5-3 is connected with the screw 5-2 through a coupler, a plurality of nuts 5-5 are arranged on the screw 5-2, a punching mechanism 1, a vertical feeding mechanism 3 and a riveting mechanism 6 are respectively and fixedly connected with each nut 5-5, the punching mechanism 1, the vertical feeding mechanism 3 and the riveting mechanism 6 are respectively arranged on the optical axis 5-1 in a sliding manner, the punching mechanism 1, the vertical feeding mechanism 3 and the riveting mechanism 6 realize actions at different stations through the transverse driving mechanism 5, the transverse driving motor 5-3 is preferably a servo motor to meet the punching, feeding and riveting processes.
As shown in fig. 2, the riveting mechanism 6 comprises an actuating mechanism 6-1, a riveting rod 6-2, a riveting claw 6-3 and a connecting plate 6-4;
the actuating mechanism 6-1 is fixed on the connecting plate 6-4, the riveting rod 6-2 is vertically arranged on the connecting plate 6-4 in a sliding manner, the actuating mechanism 6-1 is fixedly connected with the riveting rod 6-2, the rivet claws 6-3 are hinged on the connecting plate 6-4 in pairs, a fourth compression spring 6-5 is arranged between each rivet claw 6-3 and the connecting plate 6-4 to enable the pair of rivet claws 6-3 to be buckled together, a rivet notch 6-6 is arranged on each rivet claw 6-3, the riveting rod 6-2 corresponds to the pair of rivet claws 6-3 and can extend out from the bottom of the rivet claw 6-3 through the actuating mechanism 6-1, the connecting plate 6-4 is arranged on the optical axis 5-1 in a sliding manner, and the connecting plate 6-4 is fixedly connected with a nut 5-5 on the screw rod 5-2, the rivet claw 6-3 is fed through an external vibrating disk, the vibrating disk belongs to the prior art, when the actuating mechanism 6-1 drives the riveting rod to move downwards, the rivet in the rivet claw 6-3 moves downwards, the end part of the rivet is extruded with the supporting plate to be riveted, and preferably, the actuating mechanism 6-1 is an air cylinder.
As shown in fig. 3, the vertical feeding mechanism 3 comprises a grooved pulley 3-1, a hopper 3-2, a feeding motor 3-3 and a housing 3-4;
the grooved pulley 3-1 is rotationally arranged in the shell 3-4 and driven by the feeding motor 3-3, and is arranged with a gap with the shell 3-4, a hopper 3-2 is arranged above the shell 3-4, a discharge hole is arranged below the shell 3-4, the shape of a wheel groove on the grooved pulley 3-1 is rectangular, the size of the wheel groove on the grooved pulley 3-1 is consistent with that of the discharge hole of the hopper 3-2, a feeding connecting plate 3-5 is fixed on the shell 3-4, the feeding connecting plate 3-5 is arranged on the optical axis 5-1 in a sliding way, the feeding connecting plate 3-5 is fixedly connected with a screw 5-5 on the screw 5-2, the wheel groove on the grooved pulley 3-1 is rectangular and is consistent with the size of a riveted gasket, and the wheel grooves are distributed equally on the circumference of the grooved pulley 3-1, the periphery of the grooved wheel 3-1 is coated by a shell 3-4, the number of the grooved wheels 3-1 in the embodiment is four, when a feeding click 3-3 rotates 90 degrees, automatic feeding can be achieved, and the feeding motor 3-3 is preferably a servo motor.
As shown in fig. 4 and 5, the punching mechanism 1 comprises a punch 1-1, a cylinder 1-2, a first compression spring 1-3, a first connecting seat 1-4, a cylinder fixing plate 1-5, a punching connecting plate 1-6 and two guide rods 1-7;
a punch 1-1 and two guide rods 1-7 are fixed on a first connecting seat 1-4, the two guide rods 1-7 are arranged in parallel, the two guide rods 1-7 are arranged on an air cylinder fixing plate 1-5 in a sliding mode, a first compression spring 1-3 is arranged between each guide rod 1-7 and the air cylinder fixing plate 1-5 to enable the punch 1-1 to move upwards and reset, an air cylinder 1-2 is fixed on the air cylinder fixing plate 1-5, the execution end of the air cylinder 1-2 is fixedly connected with the first connecting seat 1-4, a punching connecting plate 1-6 is fixed on the air cylinder fixing plate 1-5, the punching connecting plate 1-6 is connected with an optical axis 5-1 in a sliding mode, and the punching connecting plate 1-6 is fixedly connected with a screw 5-5 on a screw rod 5-2.
The punch 1-1 is provided with a hollow cavity and is connected with an external pump through a hose so as to suck and remove scraps generated in punching.
As shown in FIG. 6, each set of supporting plate driving mechanism 8 comprises a connecting frame 8-1, a telescopic swing rod 8-2, two driving motors 8-3 and two second connecting seats 8-4;
two parallel swing shafts 811 are arranged on the connecting frame 8-1, two parallel square grooves 841 are processed on each second connecting seat 8-4, rollers are arranged at two ends of the two swing shafts 811, the rollers at two ends of one swing shaft 811 are arranged in one square groove 841 on each second connecting seat 8-4, the rollers at two ends of the other swing shaft 811 are arranged in the other square groove 841 on each second connecting seat 8-4, two sides of each swing shaft 811 are respectively and rotatably provided with a telescopic swing rod 8-2, each telescopic swing rod 8-2 is fixedly connected with the shaft of a driving motor 8-3, each driving motor 8-3 is fixed on each second connecting seat 8-4, and each second connecting seat 8-4 is fixed on the base 4. Two swing shafts 811 on the connecting frame 8-1 realize the processes of backward movement, ascending, forward movement and material pressing through a square groove 841 so as to realize that two groups of supporting plates are distributed and pressed on the plastic plates at the lower layer and the upper layer and finally realize the alternate riveting of the plastic plates.
As shown in FIG. 2, the connecting frame 8-1 is connected with each supporting plate 7 in each group of supporting plates 7 through a sliding reset mechanism 9, the sliding reset mechanism 9 comprises a mounting plate 9-1, a third compression spring 9-2 and two sliding shafts 9-3, two parallel sliding shafts 9-3 are fixedly arranged on each supporting plate 7, the sliding shafts 9-3 are slidably arranged on the mounting plate 9-1, external threads are processed on each sliding shaft 9-3, nuts are arranged on the external threads of each sliding shaft 9-3, each sliding shaft 9-3 is fixed with the mounting plate 9-1 through the nuts, the third compression spring 9-2 is arranged on each sliding shaft 9-3, and the third compression spring 9-2 is positioned between the mounting plate 9-1 and the supporting plate 7. When the thickness of the plastic plate is increased, when the driving motor 8-3 on the supporting plate driving mechanism 8 rotates, the roller on the swing shaft 811 can smoothly pass through the square groove 841.
And the bottom of each supporting plate 7 in each group of supporting plates 7 is provided with a roller 7-1, and after riveting is finished, the friction resistance is reduced when the supporting plates 7 are withdrawn from the plastic plate.
Each telescopic swing rod 8-2 is composed of a telescopic shaft 821 and a telescopic sleeve 822, the telescopic sleeve 822 is sleeved on the telescopic shaft 821, a second compression spring is arranged between the telescopic shaft 821 and the telescopic sleeve 822, each telescopic shaft 821 is rotatably arranged on the swing shaft 811, and each telescopic sleeve 822 is fixed on the shaft of each driving motor 8-3. So set up, satisfy pendulum shaft 811 and move in square groove 841.
As shown in fig. 2 and 7, each set of longitudinal feeding mechanism 2 comprises a feeding cylinder 2-1, a feeding hopper 2-2 and a push plate 2-3;
each supporting plate 7 is fixedly provided with a feeding cylinder 2-1 and a feeding hopper 2-2, the feeding hopper 2-2 is arranged in a gap with the supporting plate 7, the push plate 2-3 is arranged between the feeding hopper 2-2 and the supporting plate 7, and the push plate 2-3 is fixedly connected with an execution end of the feeding cylinder 2-1. The push plate 2-3 is provided with a rectangular notch 231, and the width of the rectangular notch 231 is consistent with that of the gasket so as to play a role in guiding and positioning.
The working process is as follows:
one group of supporting plates 7 are lifted to be positioned above a station to be riveted, the other group of supporting plates 7 are positioned below the station to be riveted, the two groups of supporting plates 7 are arranged in a staggered mode, a plastic plate is laid on the other group of supporting plates 7 by people, then the vertical feeding mechanism 3 is positioned right above the station of the other group of supporting plates 7 to perform blanking through the driving of the transverse driving mechanism 5, after blanking, the transverse driving motor 5-3 drives the screw 5-2 to move the punching mechanism 1 to the station of the other group of supporting plates 7 to perform punching, after punching, the transverse driving motor 5-3 drives the screw 5-2 to move the riveting mechanism 6 to the station of the other group of supporting plates 7 to perform riveting, a plastic plate is laid after riveting, one group of supporting plates 7 is pressed on the plastic plate, and the plastic plates on the corresponding station of one group of supporting plates 7 are riveted in the same mode.

Claims (10)

1. The utility model provides an ecological network processing equipment for land resource management which characterized in that: the riveting machine comprises a punching mechanism (1), a longitudinal feeding mechanism (2), a vertical feeding mechanism (3), a base (4), a transverse driving mechanism (5), a riveting mechanism (6), two groups of supporting plates (7) and two groups of supporting plate driving mechanisms (8);
the punching mechanism (1), the vertical feeding mechanism (3) and the riveting mechanism (6) are respectively fixed on the transverse driving mechanism (5) and can move transversely, the transverse driving mechanism (5), the longitudinal feeding mechanism (2) and the supporting plate driving mechanism (8) are respectively fixed on the base (4), each group of supporting plates (7) are connected with each set of supporting plate driving mechanism (8), each supporting plate (7) of each group of supporting plates (7) is provided with one set of longitudinal feeding mechanism (2), and the two sets of supporting plates (7) are arranged below the riveting mechanism (6) side by side.
2. The ecological net processing equipment for land resource management according to claim 1, characterized in that: the transverse driving mechanism (5) comprises an optical axis (5-1), a screw rod (5-2), a transverse driving motor (5-3) and two supports (5-4);
the punching mechanism (1), the vertical feeding mechanism (3) and the riveting mechanism (6) are fixedly connected with each nut (5-5) respectively, and the punching mechanism (1), the vertical feeding mechanism (3) and the riveting mechanism (6) are arranged on the optical axis (5-1) in a sliding mode respectively.
3. The ecological net processing equipment for land resource management according to claim 2, characterized in that: the riveting mechanism (6) comprises an actuating mechanism (6-1), a riveting rod (6-2), a riveting claw (6-3) and a connecting plate (6-4);
the actuating mechanism (6-1) is fixed on the connecting plate (6-4), the riveting rods (6-2) are vertically arranged on the connecting plate (6-4) in a sliding manner, the actuating mechanism (6-1) is fixedly connected with the riveting rods (6-2), the rivet claws (6-3) are hinged on the connecting plate (6-4) in pairs, a fourth compression spring (6-5) is arranged between each rivet claw (6-3) and the connecting plate (6-4) to enable the pair of rivet claws (6-3) to be buckled together, the rivet claws (6-3) are provided with rivet notches (6-6), the riveting rods (6-2) correspond to the pair of rivet claws (6-3) and can extend out of the bottoms of the rivet claws (6-3) through the actuating mechanism (6-1), the connecting plate (6-4) is arranged on the optical axis (5-1) in a sliding manner, and the connecting plate (6-4) is fixedly connected with a nut (5-5) on the screw rod (5-2).
4. The ecological net processing equipment for land resource management according to claim 2, characterized in that: the vertical feeding mechanism (3) comprises a grooved pulley (3-1), a hopper (3-2), a feeding motor (3-3) and a shell (3-4);
the grooved pulley (3-1) is rotatably arranged in the shell (3-4) and driven by the feeding motor (3-3), and is arranged in a gap with the shell (3-4), the hopper (3-2) is arranged above the shell (3-4), the discharge hole is arranged below the shell (3-4), the wheel groove on the grooved pulley (3-1) is rectangular, the size of the wheel groove on the grooved pulley (3-1) is consistent with that of the discharge hole of the hopper (3-2), the shell (3-4) is fixedly provided with the feeding connecting plate (3-5), the feeding connecting plate (3-5) is slidably arranged on the optical axis (5-1), and the feeding connecting plate (3-5) is fixedly connected with a screw nut (5-5) on the screw rod (5-2).
5. The ecological net processing equipment for land resource management according to claim 2, characterized in that: the punching mechanism (1) comprises a punch (1-1), a cylinder (1-2), a first compression spring (1-3), a first connecting seat (1-4), a cylinder fixing plate (1-5), a punching connecting plate (1-6) and two guide rods (1-7);
a punch (1-1) and two guide rods (1-7) are fixed on a first connecting seat (1-4), the two guide rods (1-7) are arranged in parallel, the two guide rods (1-7) are arranged on a cylinder fixing plate (1-5) in a sliding manner, a first compression spring (1-3) is arranged between each guide rod (1-7) and the cylinder fixing plate (1-5) to enable the punch (1-1) to move upwards and reset, a cylinder (1-2) is fixed on the cylinder fixing plate (1-5), the execution end of the cylinder (1-2) is fixedly connected with the first connecting seat (1-4), a punching connecting plate (1-6) is fixed on the cylinder fixing plate (1-5), the punching connecting plate (1-6) is connected with an optical axis (5-1) in a sliding manner, and the punching connecting plate (1-6) is connected with a screw nut (5-5) on a screw rod (5-2) ) And (4) fixedly connecting.
6. The ecological net processing equipment for land resource management according to claim 1, characterized in that: each set of supporting plate driving mechanism (8) comprises a connecting frame (8-1), a telescopic swing rod (8-2), two driving motors (8-3) and two second connecting seats (8-4);
two parallel swing shafts (811) are arranged on the connecting frame (8-1), two parallel square grooves (841) are processed on each second connecting seat (8-4), rollers are arranged at two ends of the two swing shafts (811), the rollers at two ends of one swing shaft (811) are arranged in one square groove (841) on each second connecting seat (8-4), the rollers at two ends of the other swing shaft (811) are arranged in the other square groove (841) on each second connecting seat (8-4), two sides of each swing shaft (811) are respectively and rotatably provided with a telescopic swing rod (8-2), each telescopic swing rod (8-2) is fixedly connected with a shaft of a driving motor (8-3), each driving motor (8-3) is fixed on each second connecting seat (8-4), and each second connecting seat (8-4) is fixed on the base (4).
7. The ecological net processing equipment for land resource management according to claim 6, wherein: the connecting frame (8-1) is connected with each supporting plate (7) in each group of supporting plates (7) through a sliding reset mechanism (9), the sliding reset mechanism (9) comprises a mounting plate (9-1), the sliding device comprises a third compression spring (9-2) and two sliding shafts (9-3), wherein two parallel sliding shafts (9-3) are fixedly arranged on each supporting plate (7), the sliding shafts (9-3) are arranged on a mounting plate (9-1) in a sliding mode, external threads are machined on each sliding shaft (9-3), nuts are arranged on the external threads of each sliding shaft (9-3), each sliding shaft (9-3) is fixed with the mounting plate (9-1) through the nuts, the third compression spring (9-2) is arranged on each sliding shaft (9-3), and the third compression spring (9-2) is located between the mounting plate (9-1) and the supporting plate (7).
8. The ecological net processing equipment for land resource management according to claim 7, characterized in that: the bottom of each supporting plate (7) in each group of supporting plates (7) is provided with a roller (7-1).
9. The ecological net processing apparatus for land resource management according to claim 6, 7 or 8, wherein: each telescopic swing rod (8-2) is composed of a telescopic shaft (821) and a telescopic sleeve (822), the telescopic sleeve (822) is sleeved on the telescopic shaft (821), a second compression spring is arranged between the telescopic shaft and the telescopic sleeve, each telescopic shaft (821) is rotatably arranged on the swing shaft (811), and each telescopic sleeve (822) is fixed on the shaft of each driving motor (8-3).
10. The ecological net processing equipment for land resource management according to claim 1, characterized in that: each set of longitudinal feeding mechanism (2) comprises a feeding cylinder (2-1), a feeding hopper (2-2) and a push plate (2-3);
each supporting plate (7) is fixedly provided with a feeding cylinder (2-1) and a feeding hopper (2-2), the feeding hopper (2-2) and the supporting plate (7) are arranged in a clearance mode, a push plate (2-3) is arranged between the feeding hopper (2-2) and the supporting plate (7), and the push plate (2-3) is fixedly connected with an execution end of the feeding cylinder (2-1).
CN202021010927.0U 2020-06-04 2020-06-04 Ecological network processing equipment for land resource management Active CN212636645U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021010927.0U CN212636645U (en) 2020-06-04 2020-06-04 Ecological network processing equipment for land resource management

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021010927.0U CN212636645U (en) 2020-06-04 2020-06-04 Ecological network processing equipment for land resource management

Publications (1)

Publication Number Publication Date
CN212636645U true CN212636645U (en) 2021-03-02

Family

ID=74790886

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021010927.0U Active CN212636645U (en) 2020-06-04 2020-06-04 Ecological network processing equipment for land resource management

Country Status (1)

Country Link
CN (1) CN212636645U (en)

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