CN113716152A - Prefabricated treatment method of ecological garden slope protection construction material - Google Patents

Prefabricated treatment method of ecological garden slope protection construction material Download PDF

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CN113716152A
CN113716152A CN202110860735.1A CN202110860735A CN113716152A CN 113716152 A CN113716152 A CN 113716152A CN 202110860735 A CN202110860735 A CN 202110860735A CN 113716152 A CN113716152 A CN 113716152A
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plate
electric
sliding
seat
ecological
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CN113716152B (en
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黄志攀
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Guangdong Siji Cultural Tourism Ecological Construction Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B61/00Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages
    • B65B61/24Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages for shaping or reshaping completed packages

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  • Mechanical Engineering (AREA)
  • Soil Working Implements (AREA)

Abstract

The invention relates to the field of ecological gardens, in particular to a prefabrication treatment method of an ecological garden slope protection construction material. The technical problem to be solved by the invention is as follows: provides a prefabricating treatment method of ecological garden slope protection construction materials. The technical implementation scheme of the invention is as follows: a prefabrication processing method of ecological garden slope protection construction materials adopts the following processing equipment, and the processing equipment comprises a working machine bed plate, a first installation vertical plate, a uniform scattering system, a turn-over system, a compaction system, a uniform scattering control system and the like; a first installation vertical plate is installed on the left middle side of the top of the bed plate of the working machine. The invention realizes the effects of pre-forming and forming the ecological bags used for the ecological garden slope protection, automatically dispersing and uniformly treating the ecological bags filled with soil materials to uniformly distribute the soil materials in the ecological bags, and automatically pressing the ecological bags into a cuboid-like smooth surface state in a standard stacking use shape.

Description

Prefabricated treatment method of ecological garden slope protection construction material
Technical Field
The invention relates to the field of ecological gardens, in particular to a prefabrication treatment method of an ecological garden slope protection construction material.
Background
At present, in the prior art, ecological bags are mostly adopted for stacking in the ecological garden slope protection construction process, but after filling of soil materials in the ecological bags is completed, the soil materials in the ecological bags are often unevenly distributed; under this kind of condition, directly pile up the ecological bag, pile up one deck row one layer by one layer, this moment because the inside soil material of ecological bag is inhomogeneous, and then need pile up at the ecological bag and accomplish the back, one deck ecological bag structure in order to guarantee to pile up is more stable, it is compacter, just need the manual work to pile up the compaction flattening operation after this moment, because this moment the ecological bag piles up, can only flatten it directly, can't move about the ecological bag this moment, and then the unable distribution of soil material in the ecological bag is even, cause the ecological bag after flattening, the less position of partial soil material, can form sunkenly, it is sunken to form between the adjacent ecological bag of part, lead to slope protection structure unstable.
Aiming at the problems, a prefabricating treatment method of an ecological garden slope protection construction material is provided.
Disclosure of Invention
In order to overcome the defects that in the prior art, ecological bags are mostly adopted for stacking in the ecological garden slope protection construction process, but after filling of soil materials in the ecological bags is completed, the soil materials in the ecological bags are often distributed unevenly; under this condition, directly pile up the ecological bag, pile up one deck row by one layer, this moment because the inside soil material of ecological bag is inhomogeneous, and then need pile up at the ecological bag and accomplish the back, the one deck ecological bag structure in order to guarantee to pile up is more stable, it is compacter, just need the manual work to carry out the compaction flattening operation after piling up this moment, because the ecological bag has piled up this moment, can only flatten it directly, can't move about the ecological bag this moment, and then the soil material in the ecological bag can't distribute evenly, cause the ecological bag after flattening, partly less position of soil material can form sunkenly, form between the adjacent ecological bag of part and cave in, lead to the unstable shortcoming of bank protection structure, the technical problem that the invention will solve is: provides a prefabricating treatment method of ecological garden slope protection construction materials.
The technical implementation scheme of the invention is as follows: a prefabrication processing method of ecological garden slope protection construction materials adopts the following processing equipment, and the processing equipment comprises a working machine bed plate, a first installation vertical plate, a second installation vertical plate, a first electric slide rail column, a second electric slide rail column, a uniform scattering system, a turn-over system, a compaction system, a uniform scattering control system, a placing bed plate, an electric rotating bearing plate and a supporting foot seat; a first mounting vertical plate is mounted on the left middle side of the top of the bed plate of the working machine; six supporting foot seats are fixedly connected to the bottom of the working machine tool plate; a second mounting vertical plate is mounted on the right side of the top of the working machine tool plate; two first electric slide rail columns are symmetrically arranged between the first installation vertical plate and the second installation vertical plate; two second electric slide rail columns are symmetrically arranged between the first installation vertical plate and the second installation vertical plate; the two first electric slide rail columns are connected with the uniform scattering system in a sliding mode; the two second electric slide rail columns are connected with the turnover system in a sliding mode; a compaction system is arranged on the left side of the top of the working machine tool plate; the front side and the rear side of the top of the bed plate of the working machine are respectively provided with a uniform scattering control system; a placing bedplate is arranged at the top of the working machine tool plate; an electric rotating bearing plate is arranged at the top of the placing bedplate.
As a further preferable scheme, the uniform scattering system comprises a first sliding installation seat, a first elastic telescopic connection seat, an installation strip frame, a second elastic telescopic connection seat, a second sliding installation seat, a first arc-shaped tip ejection block, a second arc-shaped tip ejection block, an upper compression roller column, a first slideway connecting plate, a second slideway connecting plate, an arc-shaped strip plate, a first installation strip column, an electric rotating friction column, a second installation strip column and a direction adjusting component; the two first electric sliding rail columns are respectively connected with a first sliding installation seat and a second sliding installation seat in a sliding mode; the top of the first sliding installation seat is provided with a first elastic telescopic connecting seat; the top of the telescopic end of the first elastic telescopic connecting seat is provided with an installation strip rack; the top of the second sliding installation seat is provided with a second elastic telescopic connecting seat; the top of the second elastic telescopic connecting seat is connected with the mounting strip rack; a first arc-shaped tip ejector block and a second arc-shaped tip ejector block are fixedly connected to two sides of the top of the mounting bar frame respectively; the bottom of the mounting bar frame is rotationally connected with an upper compression roller column; a first slideway connecting plate and a second slideway connecting plate are respectively and rotatably connected to the two sides of the mounting strip frame; two sides of the arc-shaped batten are fixedly connected to the first slideway connecting plate and the second slideway connecting plate respectively; a first mounting bar is fixedly connected to the bottom of the front side of the first slideway connecting plate; a second mounting bar is fixedly connected to the bottom of the front side of the second slideway connecting plate; two sides of the electric rotating friction column are respectively arranged on the first installation strip column and the second installation strip column; two direction adjusting components are arranged on the right side of the mounting strip frame; two are transferred to subassembly and are connected respectively in first slide connecting plate and second slide connecting plate.
As a further preferable scheme, the direction adjusting component comprises a fixed shaft seat, a first bending connecting frame, a first electric push rod, a first sliding control frame and a connecting sliding column; two fixed shaft seats are arranged on the right side of the mounting strip frame; the middle parts of the two fixed shaft seats are respectively and rotatably connected with a first bending connecting frame; the lower parts of the two first bending connecting frames are fixedly inserted with a first electric push rod; the telescopic ends of the two first electric push rods are fixedly connected with a first sliding control frame; the inner sides of the two first sliding control frames are fixedly connected with a connecting sliding column; the outer surfaces of the two connecting sliding columns are respectively connected with the first slideway connecting plate and the second slideway connecting plate in a sliding mode.
As a further preferable scheme, the turnover system comprises a first sliding strip-shaped seat plate, a first electric expansion plate, a third mounting bar, a third electric sliding rail column, a fourth mounting bar, a first electric sliding sleeve seat, a second electric sliding sleeve seat, a turnover auxiliary rod, a second sliding strip-shaped seat plate, a second electric expansion plate, a fifth electric sliding rail column, an electric sliding seat and a bending lifting plate; the two second electric slide rail columns are respectively connected with a first slide bar-shaped seat plate and a second slide bar-shaped seat plate in a sliding manner; the first sliding strip-shaped seat plate is fixedly inserted with a first electric expansion plate; the bottom of the telescopic end of the first electric telescopic plate is connected with a third mounting bar through a bolt; the left side and the right side of the rear end of the third mounting bar are fixedly connected with a third electric slide rail column and a fourth electric slide rail column respectively; a second electric expansion plate is fixedly inserted in the second sliding strip-shaped seat plate; a fourth mounting bar is fixedly connected to the bottom of the telescopic end of the second electric telescopic plate; the left side and the right side of the front end of the fourth mounting bar are fixedly connected to the third electric slide rail column and the fourth electric slide rail column respectively; the outer surface of the third electric slide rail column is connected with a first electric slide sleeve seat in a sliding manner; the outer surface of the fourth electric slide rail column is connected with a second electric slide sleeve seat in a sliding manner; an overturning auxiliary rod is fixedly connected between the first electric sliding sleeve seat and the second electric sliding sleeve seat; a fifth electric slide rail column is fixedly connected between the first slide bar-shaped seat plate and the second slide bar-shaped seat plate; the outer surface of the fifth electric sliding rail column is connected with an electric sliding seat in a sliding manner; the bottom of the electric sliding seat is fixedly connected with a bending lifting plate.
As a further preferable scheme, the compaction system comprises an installation portal frame, a third electric push rod, a first pressing plate, a fourth electric push rod, a second pressing plate, a fifth electric push rod, a third pressing plate and a bottom bearing plate; the left side of the top of the working machine tool plate is connected with a mounting portal frame through a bolt; a third electric push rod is fixedly inserted into the portal frame; the bottom of the telescopic end of the third electric push rod is fixedly connected with a first pressing plate; a fourth electric push rod and a fifth electric push rod are fixedly inserted into the front side and the rear side of the installation portal frame respectively; a second pressing plate is fixedly connected to the front side of the telescopic end of the fourth electric push rod; a third pressing plate is fixedly connected to the rear side of the telescopic end of the fifth electric push rod; the left side of the top of the working machine tool plate is welded with a bottom bearing plate.
As a further preferable scheme, the uniform scattering control system comprises a third mounting vertical plate, a mounting top frame and a wave limiting plate; a third mounting vertical plate is connected to the rear side bolt at the top of the bed plate of the working machine; an installation top frame is welded at the top of the third installation vertical plate; the wave limiting plate is welded at the bottom of the mounting top frame.
As a further preferable scheme, the method for prefabricating and treating the ecological garden slope protection construction material comprises the following steps:
the method comprises the following steps: uniformly dispersing for the first time, and synchronously uniformly dispersing the top and the bottom of the ecological bag by the movement of a uniform dispersing system to uniformly disperse the soil in the ecological bag;
step two: turning over, wherein the turning-over system moves to the position of the ecological bag to turn over the ecological bag;
step three: secondary dispersing, namely controlling a dispersing system to secondarily disperse and homogenize the ecological bag after the ecological bag is turned over;
step four: leveling, and controlling a compaction system to press the ecological bag into the ecological bag with a smooth surface shape.
The invention has the advantages that: firstly, in order to solve the problems that in the prior art, ecological bags are mostly adopted for stacking in the ecological garden slope protection construction process, but after filling of soil materials in the ecological bags is completed, the soil materials in the ecological bags are often unevenly distributed; under this kind of condition, directly pile up the ecological bag, pile up and lay one layer of a row one layer of layers, because the inside soil material of ecological bag is inhomogeneous this moment, and then need pile up at the ecological bag and accomplish the back, in order to guarantee that the ecological bag structure of one deck of piling up is more stable, and is compacter, just needs the manual work to pile up the compaction flattening operation after this moment.
Secondly, because the ecological bags are piled up at the moment and can only be directly flattened, the ecological bags cannot be moved at the moment, and further the soil materials in the ecological bags cannot be uniformly distributed, so that the ecological bags are flattened, depressions can be formed at positions with less soil materials, and depressions are formed between adjacent ecological bags, and the slope protection structure is unstable;
thirdly, designing a uniform scattering system, a turn-over system, a compaction system and a uniform scattering control system, when in use, the two first electric slide rail columns are controlled to drive the uniform scattering system to move close to the ecological bag, the two uniform scattering control systems assist the uniform scattering system to operate and control, further, the top and the bottom of the ecological bag are synchronously operated in the movement process of the uniform dispersing system, so that the soil materials in the ecological bag are uniformly dispersed, then the scattering and uniform system is controlled to leave from the position of the ecological bag, then two second electric slide rail columns are controlled to drive the turn-over system to move to the position of the ecological bag to turn over the ecological bag, then the uniform dispersing system is controlled to carry out secondary uniform dispersion on the ecological bag to ensure that the soil material in the ecological bag is uniformly dispersed, the ecological bag with uniformly dispersed soil material is placed into the compacting system, pressing the ecological bags into ecological bags with smooth surface shapes, and then piling up the revetments;
the invention realizes the effect of standard stacking using shape by performing the prefabrication and forming treatment on the ecological bags used for the ecological garden slope protection, automatically dispersing and uniformly treating the ecological bags filled with soil materials to uniformly distribute the soil materials in the ecological bags, and automatically pressing the ecological bags into a cuboid-like state with a flat surface.
Drawings
FIG. 1 is a first perspective view of the present invention;
FIG. 2 is a first perspective view of the homogenizing system of the present invention;
FIG. 3 is a second perspective view of the homogenizing system of the present invention;
FIG. 4 is a perspective view of the direction-adjusting assembly of the present invention;
FIG. 5 is a schematic view of a first perspective structure of the turn-over system of the present invention;
FIG. 6 is a schematic diagram of a second perspective view of the turn-over system of the present invention;
FIG. 7 is a schematic perspective view of the compaction system of the present disclosure;
fig. 8 is a schematic perspective view of the leveling control system of the present invention.
Wherein: 1-a working machine bed plate, 2-a first mounting riser, 3-a second mounting riser, 4-a first electric slide rail column, 5-a second electric slide rail column, 6-a uniform spreading system, 7-a turn-over system, 8-a compaction system, 9-a uniform spreading control system, 10-a placing platen, 11-an electric rotating bearing plate, 12-a supporting foot seat, 601-a first slide mounting seat, 602-a first elastic telescopic connecting seat, 603-a mounting strip frame, 604-a second elastic telescopic connecting seat, 605-a second slide mounting seat, 606-a first arc tip top block, 607-a second arc tip top block, 608-an upper press roller column, 609-a first slide connecting plate, 6010-a second slide strip plate, a connecting plate 1-an arc strip, 6012-a first mounting strip column, 6013-electric rotating friction column, 6014-second installation bar column, 6015-fixed shaft seat, 6016-first bending connecting frame, 6017-first electric push rod, 6018-first sliding control frame, 6019-connecting sliding column, 701-first sliding bar seat plate, 702-first electric telescopic plate, 703-third installation bar, 704-third electric sliding rail column, 705-fourth electric sliding rail column, 706-fourth installation bar, 707-first electric sliding sleeve seat, 708-second electric sliding sleeve seat, 709-overturning auxiliary rod, 7010-second sliding bar seat plate, 7011-second electric telescopic plate, 7012-fifth electric sliding rail column, 7013-electric sliding sleeve, 7014-bending lifting plate, 801-installation portal frame, 802-third electric push rod, 803-first pressing plate, 804-a fourth electric push rod, 805-a second pressure plate, 806-a fifth electric push rod, 807-a third pressure plate, 808-a bottom bearing plate, 901-a third installation vertical plate, 902-an installation top frame and 903-a wave limiting plate.
Detailed Description
The invention is further illustrated by the following specific examples in which, unless otherwise explicitly stated and limited, terms such as: the arrangement, installation, connection are to be understood broadly, for example, they may be fixed, detachable, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Examples
A prefabrication processing method of ecological garden slope protection construction materials is disclosed, as shown in figure 1, the prefabrication processing method of the ecological garden slope protection construction materials adopts the following processing equipment, and the processing equipment comprises a working machine bed plate 1, a first installation vertical plate 2, a second installation vertical plate 3, a first electric slide rail column 4, a second electric slide rail column 5, a uniform scattering system 6, a turn-over system 7, a compaction system 8, a uniform scattering control system 9, a placing bedplate 10, an electric rotating bearing plate 11 and a supporting foot seat 12; a first mounting vertical plate 2 is arranged at the left middle side of the top of the bed plate 1 of the working machine; six supporting foot seats 12 are fixedly connected to the bottom of the bed plate 1 of the working machine; a second mounting vertical plate 3 is mounted on the right side of the top of the working machine bed plate 1; two first electric slide rail columns 4 are symmetrically arranged between the first installation vertical plate 2 and the second installation vertical plate 3; two second electric slide rail columns 5 are symmetrically arranged between the first installation vertical plate 2 and the second installation vertical plate 3; the two first electric slide rail columns 4 are both connected with the uniform scattering system 6 in a sliding manner; the two second electric slide rail columns 5 are both connected with the turnover system 7 in a sliding manner; a compaction system 8 is arranged on the left side of the top of the bed plate 1 of the working machine; the front side and the rear side of the top of the bed plate 1 of the working machine are respectively provided with a uniform scattering control system 9; a placing bedplate 10 is arranged at the top of the bed plate 1 of the working machine; the top of the placing bedplate 10 is provided with an electric rotating bearing plate 11.
When the equipment of the ecological garden slope protection construction material prefabricating treatment method is used, firstly, an ecological bag is placed on the top of an electric rotating bearing plate 11, the electric rotating bearing plate 11 is controlled to rotate to drive the ecological bag to be positioned in the left-right direction, then two first electric slide rail columns 4 are controlled to drive a dispersing system 6 to move to be close to the ecological bag, two dispersing control systems 9 assist the dispersing system 6 to carry out operation control, further, the top and the bottom of the ecological bag are synchronously operated in the movement process of the dispersing system 6 to ensure that soil materials in the ecological bag are uniformly dispersed, then the dispersing system 6 is controlled to leave from the position of the ecological bag, then two second electric slide rail columns 5 are controlled to drive a turn-over system 7 to move to the position of the ecological bag to turn over the ecological bag, then the dispersing system 6 is controlled to carry out secondary dispersing to the ecological bag to ensure that the soil materials in the ecological bag are uniformly dispersed, during compaction system 8 is placed to the ecological bag with the even soil charge dispersion again, and then presses the ecological bag into the even ecological bag of surface shape, can carry out the bank protection and pile up the use, realized the prefabricated shaping processing to the ecological bag that the ecological garden bank protection was used, carry out the even processing of automatic scattering to the ecological bag that fills with the soil charge, make its inside soil charge evenly distributed to press the ecological bag into the even state in surface of class cuboid automatically, the standard pile up the effect of the shape of use.
As shown in fig. 2-3, the leveling system 6 includes a first sliding mounting seat 601, a first elastic telescopic connecting seat 602, a mounting bar rack 603, a second elastic telescopic connecting seat 604, a second sliding mounting seat 605, a first arc-shaped tip top block 606, a second arc-shaped tip top block 607, an upper pressure roller column 608, a first slideway connecting plate 609, a second slideway connecting plate 6010, an arc-shaped slat 6011, a first mounting bar column 6012, an electric rotating friction column 6013, a second mounting bar column 6014, and a direction adjusting component; the two first electric slide rail columns 4 are respectively connected with a first sliding installation seat 601 and a second sliding installation seat 605 in a sliding manner; a first elastic telescopic connecting seat 602 is mounted at the top of the first sliding mounting seat 601; the top of the telescopic end of the first elastic telescopic connecting seat 602 is provided with an installation strip rack 603; a second elastic telescopic connecting seat 604 is arranged at the top of the second sliding mounting seat 605; the top of the second elastic expansion connecting seat 604 is connected to the mounting strip rack 603; a first arc-shaped pointed tip jacking block 606 and a second arc-shaped pointed tip jacking block 607 are fixedly connected to two sides of the top of the mounting strip frame 603 respectively; the bottom of the mounting rack 603 is rotatably connected with an upper compression roller column 608; a first slide connecting plate 609 and a second slide connecting plate 6010 are respectively rotatably connected to two sides of the mounting bar rack 603; two sides of the arc-shaped ribbon board 6011 are fixedly connected to a first slideway connecting plate 609 and a second slideway connecting plate 6010 respectively; a first mounting bar 6012 is fixedly connected to the bottom of the front side of the first slideway connecting plate 609; a second mounting bar 6014 is fixedly connected to the bottom of the front side of the second slide connecting plate 6010; two sides of the electric rotating friction column 6013 are respectively mounted on a first mounting bar 6012 and a second mounting bar 6014; two direction adjusting components are arranged on the right side of the mounting strip rack 603; the two direction-adjusting components are respectively connected to the first slideway connecting plate 609 and the second slideway connecting plate 6010.
Firstly, two first electric slide rail columns 4 are controlled to respectively drive a first slide mounting seat 601 and a second slide mounting seat 605 to move, the first slide mounting seat 601 and the second slide mounting seat 605 drive a uniform dispersing system 6 to integrally move, at the moment, an arc-shaped strip plate 6011 and an electric rotary friction column 6013 are driven to be positioned at the top of an electric rotary bearing plate 11, and then the arc-shaped strip plate 6011 and the electric rotary friction column 6013 are contacted with the bottom edge of an ecological bag after moving, at the moment, the electric rotary friction column 6013 is controlled to rotate, so that the electric rotary friction column 6013 can move towards the inner side along the bottom edge of the ecological bag, further the arc-shaped strip plate 6011 enters a gap between the bottom of the ecological bag and the top of the electric rotary bearing plate 11 along with the electric rotary friction column 6013, at the same time, an upper press roll column 608 rolls at the top of the ecological bag, and further the upper column press roll 608 uniformly disperses soil at the top of the ecological bag, meanwhile, the arc-shaped battens 6011 and the electric rotating friction columns 6013 move at the bottom of the ecological bag to uniformly disperse soil at the bottom of the ecological bag, and then disperse the soil inside the ecological bag from the upper position and the lower position, so that the soil is uniformly dispersed.
As shown in fig. 4, the direction-adjusting assembly includes a fixed shaft seat 6015, a first bending connection frame 6016, a first electric push rod 6017, a first sliding control frame 6018, and a connection sliding pillar 6019; two fixed shaft seats 6015 are installed on the right side of the installation strip rack 603; the middle parts of the two fixed shaft seats 6015 are rotatably connected with a first bending connecting frame 6016; a first electric push rod 6017 is fixedly inserted at the lower parts of the two first bending connecting frames 6016; a first sliding control frame 6018 is fixedly connected to the telescopic ends of the two first electric push rods 6017; a connecting slide column 6019 is fixedly connected to the inner sides of the two first slide control frames 6018; the outer surfaces of the two connecting slide columns 6019 are slidably connected to the first slide connection plate 609 and the second slide connection plate 6010, respectively.
In the process that the arc-shaped strip plate 6011 and the electric rotary friction column 6013 move at the bottom of the ecological bag to uniformly disperse soil at the bottom of the ecological bag, at this time, the first electric push rod 6017 is controlled to contract, then the first electric push rod 6017 drives the first sliding control frame 6018 and the connecting slide column 6019 to move, then the two connecting slide columns 6019 slide downwards respectively inside the first slide way connecting plate 609 and the second slide way connecting plate 6010, and further the bottoms of the first slide way connecting plate 609 and the second slide way connecting plate 6010 rotate upwards, that is, the first slide way connecting plate 609 and the second slide way connecting plate 6010 drive the arc-shaped strip plate 6011 and the electric rotary friction column 6013 to move upwards, that is, when the arc-shaped strip plate 6011 and the electric rotary friction column 6013 move at the bottom of the ecological bag to uniformly disperse soil at the bottom of the ecological bag, the arc-shaped strip plate 6011 and the electric rotary friction column 6013 are lifted, so that soil at the middle of the ecological bag moves towards both sides, further, the soil is uniformly dispersed.
As shown in fig. 5-6, the turnover system 7 includes a first sliding bar-shaped seat plate 701, a first electric expansion plate 702, a third mounting bar 703, a third electric sliding rail column 704, a fourth electric sliding rail column 705, a fourth mounting bar 706, a first electric sliding sleeve seat 707, a second electric sliding sleeve seat 708, a turnover auxiliary rod 709, a second sliding bar-shaped seat plate 7010, a second electric expansion plate 7011, a fifth electric sliding rail column 7012, an electric sliding seat 7013, and a bending lifting plate 7014; the two second electric slide rail columns 5 are respectively connected with a first slide bar-shaped seat plate 701 and a second slide bar-shaped seat plate 7010 in a sliding manner; a first electric expansion plate 702 is fixedly inserted into the first sliding strip-shaped seat plate 701; the bottom of the telescopic end of the first electric telescopic plate 702 is connected with a third mounting bar 703 through a bolt; a third electric slide rail column 704 and a fourth electric slide rail column 705 are fixedly connected to the left side and the right side of the rear end of the third mounting bar 703 respectively; a second electric expansion plate 7011 is fixedly inserted in the second sliding strip-shaped seat plate 7010; a fourth mounting bar 706 is fixedly connected to the bottom of the telescopic end of the second electric telescopic plate 7011; the left side and the right side of the front end of the fourth mounting bar 706 are fixedly connected to the third electric slide rail column 704 and the fourth electric slide rail column 705 respectively; the outer surface of the third electric slide rail column 704 is connected with a first electric slide sleeve seat 707 in a sliding manner; the outer surface of the fourth electric slide rail column 705 is connected with a second electric slide sleeve seat 708 in a sliding manner; an overturning auxiliary rod 709 is fixedly connected between the first electric sliding sleeve seat 707 and the second electric sliding sleeve seat 708; a fifth electric slide rail column 7012 is fixedly connected between the first slide bar-shaped seat plate 701 and the second slide bar-shaped seat plate 7010; the outer surface of the fifth electric sliding rail column 7012 is slidably connected with an electric sliding seat 7013; the bottom of the electric sliding base 7013 is fixedly connected with a bending lifting plate 7014.
When the uniform scattering system 6 moves, the top and the bottom of the ecological bag are synchronously operated to uniformly scatter soil in the ecological bag, then the uniform scattering system 6 is controlled to leave from the ecological bag, then two second electric slide rail columns 5 are controlled to drive a first slide bar-shaped seat plate 701 and a second slide bar-shaped seat plate 7010 to synchronously move, namely, the whole turn-over system 7 is driven to move to the upper part of the ecological bag through the first slide bar-shaped seat plate 701 and the second slide bar-shaped seat plate 7010, then a fifth electric slide rail column 7012 is controlled to drive an electric slide carriage 7013 to move to the other side, namely, the electric slide carriage 7013 drives a bending lifting plate 7014 to move, further the bending lifting plate 7014 is shoveled in from the bottom of one side of the ecological bag, and the first electric expansion plate 702 and the second electric expansion plate 7011 are controlled to extend downwards, then the first electric expansion plate 702 and the second electric expansion plate 7011 drive a third installation strip 703 and a fourth installation strip 706 to move downwards respectively, namely, the third mounting bar 703 and the fourth mounting bar 706 drive the third electric sliding rail column 704, the fourth electric sliding rail column 705, the first electric sliding sleeve seat 707, the second electric sliding sleeve seat 708 and the turning auxiliary rod 709 to move downwards, and the turning auxiliary rod 709 moves downwards to the bottom of the ecological bag, at this time, the third electric sliding rail column 704 and the fourth electric sliding rail column 705 are controlled to respectively drive the first electric sliding sleeve seat 707 and the second electric sliding sleeve seat 708 to move towards the other side, and the first electric sliding sleeve seat 707 and the second electric sliding sleeve seat 708 drive the turning auxiliary rod 709 to move towards the other side, that is, the turning auxiliary rod 709 pushes the bottom of the ecological bag towards the other side, and the bending lifting plate 7014 is lifted upwards after being shoveled in from the bottom of one side of the ecological bag, that the moving directions of the turning auxiliary rod 709 and the bending lifting plate 7014 are opposite, that the bending lifting plate 7014 pushes the top of the ecological bag towards one side, and the turning auxiliary rod 709 pushes the bottom of the ecological bag towards the other side, and then the ecological bag finishes the turn-over of two faces about accomplishing, and after the turn-over is accomplished, then control even system 6 that looses carries out the secondary and scatters evenly to the ecological bag again, has guaranteed that the coating in the ecological bag can disperse completely.
As shown in fig. 7, the compacting system 8 includes an installation gantry 801, a third electric push rod 802, a first compacting plate 803, a fourth electric push rod 804, a second compacting plate 805, a fifth electric push rod 806, a third compacting plate 807 and a bottom bearing plate 808; the left side of the top of the working machine bedplate 1 is connected with a mounting portal frame 801 through bolts; a third electric push rod 802 is fixedly inserted into the installation portal frame 801; the bottom of the telescopic end of the third electric push rod 802 is fixedly connected with a first pressing plate 803; a fourth electric push rod 804 and a fifth electric push rod 806 are fixedly inserted into the front side and the rear side of the installation portal frame 801 respectively; a second pressing plate 805 is fixedly connected to the front side of the telescopic end of the fourth electric push rod 804; a third pressing plate 807 is fixedly connected to the rear side of the telescopic end of the fifth electric push rod 806; a bottom bearing plate 808 is welded on the left side of the top of the working machine bedplate 1.
After the soil in the ecological bag is dispersed evenly, carry the ecological bag to bottom loading board 808 top this moment, then control third electric putter 802 downwardly extending, third electric putter 802 drives first flattening board 803 downstream and flattens the ecological bag top promptly, then steerable fourth electric putter 804 and fifth electric putter 806 are extended to the middle part in step, and fourth electric putter 804 and fifth electric putter 806 drive second flattening board 805 and third flattening board 807 respectively and move to the centre, and second flattening board 805 and third flattening board 807 flatten the ecological bag both sides, obtain the ecological bag of level surface from this, can carry out follow-up bank protection and use.
As shown in fig. 8, the leveling control system 9 includes a third mounting riser 901, a mounting top frame 902, and a wave limiting plate 903; a third mounting vertical plate 901 is connected to the rear side bolt at the top of the bed plate 1 of the working machine; an installation top frame 902 is welded to the top of the third installation vertical plate 901; wave limiting plates 903 are welded at the bottom of the mounting top frame 902.
Firstly, two first electric slide rail columns 4 are controlled to respectively drive a first slide mounting seat 601 and a second slide mounting seat 605 to move, the first slide mounting seat 601 and the second slide mounting seat 605 drive the uniform scattering system 6 to integrally move, when the movement process is carried out, the top of a second arc-shaped tip top block 607 can touch a wave limiting plate 903, namely the second arc-shaped tip top block 607 can slide at the bottom of the wave limiting plate 903, and then the wave limiting plate 903 can drive the second arc-shaped tip top block 607 to float up and down, similarly, the first arc-shaped tip top block 606 can slide at the bottom of another wave limiting plate 903 in another uniform scattering control system 9 to float up and down, and then under the elastic support of a first elastic telescopic connecting seat 602 and a second elastic telescopic connecting seat 604, the first arc-shaped tip top block 606 and the second arc-shaped tip top block 607 can drive a mounting strip rack 603 to move up and down, the part that installation rack 603 drove its downside to connect promptly carries out whole up-and-down motion, finally realize that installation rack 603 drives compression roller post 608, the up-and-down motion of arc slat 6011 and electronic rotation friction post 6013, the up-and-down vibration to the inside soil material of ecological bag is realized, make the inside soil material of ecological bag more disperse evenly, and then go up compression roller post 608 and carry out the homodisperse with the partial soil material of ecological bag top, arc slat 6011 and electronic rotation friction post 6013 move the homodisperse with the soil material of ecological bag bottom in ecological bag bottom simultaneously, and then disperse from two upper and lower positions to the inside soil material of ecological bag, make the homodisperse of soil material.
A prefabrication treatment method of ecological garden slope protection construction materials comprises the following steps:
the method comprises the following steps: uniformly dispersing for the first time, wherein the uniform dispersing system 6 moves to synchronously uniformly disperse the top and the bottom of the ecological bag, so that the soil in the ecological bag is uniformly dispersed;
step two: turning over, the turning-over system 7 moves to the position of the ecological bag to turn over the ecological bag;
step three: secondary dispersing, namely controlling the dispersing system 6 to secondarily disperse and homogenize the ecological bag after the ecological bag is turned over;
step four: leveling, and controlling the compacting system 8 to press the ecological bag into the ecological bag with a smooth surface shape.
The above examples are merely representative of preferred embodiments of the present invention, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, various changes, modifications and substitutions can be made without departing from the spirit of the present invention, and these are all within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (8)

1. A prefabrication processing method of an ecological garden slope protection construction material adopts the following processing equipment, and the processing equipment comprises a working machine bed plate (1), a first mounting vertical plate (2), a second mounting vertical plate (3), a first electric slide rail column (4) and a second electric slide rail column (5); a first mounting vertical plate (2) is arranged on the left middle side of the top of the working machine bed plate (1); a second mounting vertical plate (3) is mounted on the right side of the top of the working machine bed plate (1); two first electric slide rail columns (4) are symmetrically arranged between the first installation vertical plate (2) and the second installation vertical plate (3); two second electric slide rail columns (5) are symmetrically arranged between the first installation vertical plate (2) and the second installation vertical plate (3); the method is characterized in that: the device also comprises a uniform scattering system (6), a turn-over system (7), a compaction system (8) and a uniform scattering control system (9); the two first electric slide rail columns (4) are both connected with the uniform scattering system (6) in a sliding manner; the two second electric slide rail columns (5) are both connected with the turnover system (7) in a sliding manner; a compaction system (8) is arranged on the left side of the top of the working machine bed plate (1); the front side and the rear side of the top of the working machine bed plate (1) are respectively provided with a uniform scattering control system (9).
2. The prefabrication processing method of the ecological garden slope protection construction material according to claim 1, wherein the uniform dispersing system (6) comprises a first sliding installation seat (601), a first elastic telescopic connection seat (602), an installation strip frame (603), a second elastic telescopic connection seat (604), a second sliding installation seat (605), a first arc-shaped tip top block (606), a second arc-shaped tip top block (607), an upper compression roller column (608), a first slideway connection plate (609), a second slideway connection plate (6010), an arc-shaped strip plate (6011), a first installation strip column (6012), an electric rotating friction column (6013), a second installation strip column (6014) and a direction adjusting component; the two first electric slide rail columns (4) are respectively connected with a first sliding installation seat (601) and a second sliding installation seat (605) in a sliding mode; a first elastic telescopic connecting seat (602) is arranged at the top of the first sliding mounting seat (601); the top of the telescopic end of the first elastic telescopic connecting seat (602) is provided with an installation strip rack (603); a second elastic telescopic connecting seat (604) is arranged at the top of the second sliding mounting seat (605); the top of the second elastic telescopic connecting seat (604) is connected with the mounting strip frame (603); a first arc-shaped pointed head jacking block (606) and a second arc-shaped pointed head jacking block (607) are fixedly connected to two sides of the top of the mounting strip frame (603); the bottom of the mounting strip frame (603) is rotationally connected with an upper compression roller column (608); a first slide connecting plate (609) and a second slide connecting plate (6010) are respectively and rotatably connected to the two sides of the mounting strip frame (603); two sides of the arc-shaped batten (6011) are fixedly connected to a first slideway connecting plate (609) and a second slideway connecting plate (6010) respectively; a first mounting bar (6012) is fixedly connected to the bottom of the front side of the first slide way connecting plate (609); a second mounting bar (6014) is fixedly connected to the bottom of the front side of the second slide way connecting plate (6010); two sides of the electric rotary friction column (6013) are respectively arranged on a first installation bar (6012) and a second installation bar (6014); two direction adjusting components are arranged on the right side of the mounting strip rack (603); the two direction adjusting assemblies are respectively connected to the first slide way connecting plate (609) and the second slide way connecting plate (6010).
3. The prefabrication processing method of ecological garden slope protection construction materials according to claim 2, wherein the direction adjusting assembly comprises a fixed shaft seat (6015), a first bending connecting frame (6016), a first electric push rod (6017), a first sliding control frame (6018) and a connecting sliding column (6019); two fixed shaft seats (6015) are arranged on the right side of the mounting strip frame (603); the middle parts of the two fixed shaft seats (6015) are respectively and rotatably connected with a first bending connecting frame (6016); a first electric push rod (6017) is fixedly inserted at the lower parts of the two first bending connecting frames (6016); the telescopic ends of the two first electric push rods (6017) are fixedly connected with a first sliding control frame (6018); the inner sides of the two first sliding control frames (6018) are fixedly connected with a connecting sliding column (6019); the outer surfaces of the two connecting sliding columns (6019) are respectively connected with the first slide connecting plate (609) and the second slide connecting plate (6010) in a sliding mode.
4. The prefabrication processing method of ecological garden slope protection construction materials according to claim 3, wherein the turnover system (7) comprises a first sliding strip-shaped base plate (701), a first electric expansion plate (702), a third mounting bar (703), a third electric sliding rail column (704), a fourth electric sliding rail column (705), a fourth mounting bar (706), a first electric sliding sleeve seat (707), a second electric sliding sleeve seat (708), a turnover auxiliary rod (709), a second sliding strip-shaped base plate (7010), a second electric expansion plate (7011), a fifth electric sliding rail column (7012), an electric sliding seat (7013) and a bending lifting plate (7014); the two second electric slide rail columns (5) are respectively connected with a first slide bar-shaped seat plate (701) and a second slide bar-shaped seat plate (7010) in a sliding manner; a first electric expansion plate (702) is fixedly inserted in the first sliding strip-shaped seat plate (701); the bottom of the telescopic end of the first electric telescopic plate (702) is connected with a third mounting bar (703) through a bolt; the left side and the right side of the rear end of the third mounting bar (703) are fixedly connected with a third electric slide rail column (704) and a fourth electric slide rail column (705) respectively; a second electric expansion plate (7011) is fixedly inserted in the second sliding strip-shaped seat plate (7010); a fourth mounting bar (706) is fixedly connected to the bottom of the telescopic end of the second electric telescopic plate (7011); the left side and the right side of the front end of the fourth mounting bar (706) are fixedly connected to the third electric sliding rail column (704) and the fourth electric sliding rail column (705) respectively; the outer surface of the third electric slide rail column (704) is connected with a first electric slide sleeve seat (707) in a sliding way; the outer surface of the fourth electric slide rail column (705) is connected with a second electric slide sleeve seat (708) in a sliding way; a turnover auxiliary rod (709) is fixedly connected between the first electric sliding sleeve seat (707) and the second electric sliding sleeve seat (708); a fifth electric slide rail column (7012) is fixedly connected between the first slide bar-shaped seat plate (701) and the second slide bar-shaped seat plate (7010); the outer surface of the fifth electric slide rail column (7012) is connected with an electric slide seat (7013) in a sliding way; the bottom of the electric sliding seat (7013) is fixedly connected with a bending lifting plate (7014).
5. The prefabrication processing method of ecological garden slope protection construction materials according to claim 4, wherein the compaction system (8) comprises an installation portal frame (801), a third electric push rod (802), a first pressing plate (803), a fourth electric push rod (804), a second pressing plate (805), a fifth electric push rod (806), a third pressing plate (807) and a bottom bearing plate (808); the left side of the top of the working machine bedplate (1) is connected with a mounting portal frame (801) through bolts; a third electric push rod (802) is fixedly inserted into the installation portal frame (801); the bottom of the telescopic end of the third electric push rod (802) is fixedly connected with a first pressing plate (803); a fourth electric push rod (804) and a fifth electric push rod (806) are respectively fixedly inserted into the front side and the rear side of the installation portal frame (801); a second pressing plate (805) is fixedly connected to the front side of the telescopic end of the fourth electric push rod (804); a third pressing plate (807) is fixedly connected to the rear side of the telescopic end of the fifth electric push rod (806); a bottom bearing plate (808) is welded on the left side of the top of the working machine bedplate (1).
6. The prefabrication processing method of the ecological garden slope protection construction material according to claim 5, wherein the uniform scattering control system (9) comprises a third installation vertical plate (901), an installation top frame (902) and a wave limiting plate (903); a third mounting vertical plate (901) is connected to the rear side of the top of the working machine bed plate (1) through bolts; an installation top frame (902) is welded at the top of the third installation vertical plate (901); the bottom of the mounting top frame (902) is welded with a wave limiting plate (903).
7. The prefabrication processing method of ecological garden slope protection construction materials according to claim 6, wherein the surface of the electric rotating friction column (6013) is provided with a coating layer with a larger friction force with the surface of the ecological bag.
8. The prefabrication processing method of ecological garden slope protection construction materials according to any one of claims 1 to 7, characterized in that the prefabrication processing method of ecological garden slope protection construction materials comprises the following steps:
the method comprises the following steps: primary uniform dispersion is carried out, and the uniform dispersion system (6) moves to carry out synchronous uniform dispersion operation on the top and the bottom of the ecological bag, so that the soil in the ecological bag is uniformly dispersed;
step two: turning over, wherein the turning-over system (7) moves to the position of the ecological bag to turn over the ecological bag;
step three: secondary dispersing, namely controlling a dispersing system (6) to secondarily disperse and homogenize the ecological bag after the ecological bag is turned over;
step four: leveling, and controlling a compaction system (8) to press the ecological bag into the ecological bag with a smooth surface shape.
CN202110860735.1A 2021-07-29 2021-07-29 Ecological garden slope protection construction material prefabrication treatment method Active CN113716152B (en)

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CN212147663U (en) * 2020-04-22 2020-12-15 苏州英派克自动化设备有限公司 Material packing device
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* Cited by examiner, † Cited by third party
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JPS57125101A (en) * 1981-01-27 1982-08-04 Nitto Chemical Industry Co Ltd Method of packing manure
CN203246644U (en) * 2013-03-25 2013-10-23 湖北三江航天万峰科技发展有限公司 Soft package bag shaping package pressing conveyor
CN204489375U (en) * 2015-02-11 2015-07-22 相鹏 Novel linkage four sides cargo jack
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