CN217791087U - Hanging type multi-layer cultivation platform for silkworm sheds - Google Patents

Hanging type multi-layer cultivation platform for silkworm sheds Download PDF

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Publication number
CN217791087U
CN217791087U CN202221891085.3U CN202221891085U CN217791087U CN 217791087 U CN217791087 U CN 217791087U CN 202221891085 U CN202221891085 U CN 202221891085U CN 217791087 U CN217791087 U CN 217791087U
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layer
frame
silkworm
connecting plate
hanging type
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CN202221891085.3U
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Chinese (zh)
Inventor
杨海
杨俊�
杨大平
何勋贵
杨启慧
周山
杨宏明
朱水芬
王永生
陈云明
陈松
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RESEARCH INSTITUTE OF SILKWORMS MULBERRIES AND BEES YUNNAN ACADEMY OF AGRICULTURAL SCIENCES
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RESEARCH INSTITUTE OF SILKWORMS MULBERRIES AND BEES YUNNAN ACADEMY OF AGRICULTURAL SCIENCES
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Abstract

The utility model provides a silkworm shed suspension type multilayer cultivation platform relates to silkworm cultured equipment field, including four frames that are used for the support, every the frame both sides all are provided with two links, four the frame is arranged side by side layer, the utility model discloses a staff promotes the frame of first layer downwards, the frame relative movement of first layer and fourth layer, promotes the frame of second layer downwards after that, the frame relative movement of second layer and third layer, and the frame relative movement's of second layer and third layer distance is less than the frame relative movement's of first layer and fourth layer distance for the staff only need carry out twice promotion and just can enlarge the distance between per two adjacent frames, and the staff is when removing the first layer frame, and the first layer frame can borrow the power with fourth layer frame each other, when removing the second layer frame, and second layer frame can borrow the power with third layer frame each other, has reduced staff's intensity of labour.

Description

Hanging type multilayer cultivation platform for silkworm sheds
Technical Field
The utility model relates to a silkworm cultured equipment field particularly, relates to a silkworm canopy suspension type multilayer cultivation platform.
Background
The silkworm breeding platform is mainly characterized in that a plurality of layers of frames with base cloth are stacked by a rack to manufacture a multi-layer silkworm breeding platform, and then mulberry leaves and silkworms are placed on the surface of the base cloth to be bred. Each layer of frame in current silkworm multilayer cultivation platform generally hangs independently on the big shed pole in the silkworm canopy, when the staff need give the mulberry or clear up the backer, need remove each layer of frame in proper order to enlarge the distance between the adjacent two-layer frame, and the weight of frame is great, not only can waste a large amount of time when leading to the staff to remove each layer of frame in proper order, can consume very much physical power moreover, increased staff's intensity of labour.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a main aim at provides a silkworm canopy suspension type multilayer cultivation platform can effectively solve the problem in the background art.
In order to achieve the above purpose, the utility model adopts the technical proposal that:
a hanging type multi-layer cultivation table for a silkworm shed comprises four frames for supporting, two connecting frames are arranged on two sides of each frame, and the four frames are arranged in parallel layer by layer;
first ropes are hung on the connecting frames on the first layer, one end of each first rope is hung with the corresponding connecting frame on the fourth layer by bypassing a greenhouse rod, second ropes are hung on the connecting frames on the second layer, and one end of each second rope is hung with the corresponding connecting frame on the third layer by bypassing the greenhouse rod;
and an iron wire net is arranged on the upper surface of each frame.
Preferably, the frame comprises two first connecting plates, each connecting frame is fixedly mounted on one side of the corresponding first connecting plate, two second connecting plates are jointly arranged on the two first connecting plates, and each wire mesh is jointly arranged on the upper surfaces of the two second connecting plates.
Preferably, clamping grooves are formed in two sides of the upper surface of each first connecting plate, and each second connecting plate is arranged in two corresponding clamping grooves.
Preferably, two wedge-shaped blocks are fixedly mounted on the upper surface of the inner wall of each clamping groove, two wedge-shaped grooves are formed in two sides of the lower surface of each second connecting plate, and each wedge-shaped block is in insertion fit with the corresponding wedge-shaped groove respectively.
Preferably, a connecting groove is formed in the middle of the upper surface of each first connecting plate, and a supporting plate is arranged in each two opposite connecting grooves.
Preferably, every two adjacent second connecting plate upper surfaces are provided with the bracing piece jointly, every bracing piece pole body both sides surface has all seted up the slot, every second connecting plate upper surface all fixed mounting has a plurality of inserted blocks, every inserted block and corresponding slot interlude cooperate.
Compared with the prior art, the utility model discloses following beneficial effect has:
(1) When the distance between two adjacent frames needs to be enlarged, a worker pushes the frame of the first layer downwards, the first rope gives a frame pulling force to the fourth layer, the first layer and the frame of the fourth layer move a distance relatively, then the worker pushes the frame of the second layer downwards, the pushing force pushing the frame of the second layer is smaller than the pushing force pushing the frame of the first layer, the second rope gives a frame pulling force to the third layer, the second layer and the frame of the third layer move a distance relatively, and the distance between the frame of the second layer and the frame of the third layer move a distance relatively smaller than the distance between the frame of the first layer and the frame of the fourth layer, so that the worker can enlarge the distance between every two adjacent frames only by pushing twice, a large amount of time is saved for the worker, when the worker moves the first layer frame, the first layer frame and the fourth layer frame can borrow force mutually, when the second layer frame moves, the second layer frame and the third layer frame can mutually borrow force, so that the labor intensity of the worker is greatly reduced.
(2) Through setting up draw-in groove and wedge in addition the wedge, under the mating reaction of wedge and draw-in groove, avoided the second connecting plate to produce the condition of horizontal migration after receiving external force, prevent that the second connecting plate from dropping from first connecting plate, and then the effectual safety of protecting the silkworm.
(3) Can play the supporting role to the wire netting through setting up the backup pad, prevent that the wire netting from taking place in the condition that produces the bending under the long-time pressurized, through setting up the backup pad in the spread groove for difficult removal when the backup pad receives external force, through setting up the bracing piece, strengthen the bearing effect to the wire netting, thereby make the wire netting more difficult bending, through setting up inserted block and slot, make the bracing piece difficult removal when receiving external force.
Drawings
FIG. 1 is a schematic view of the overall structure of a hanging multi-layer cultivation table of a silkworm shed;
FIG. 2 is a right view structure diagram of the hanging multi-layer cultivation table of the silkworm shed;
FIG. 3 isbase:Sub>A schematic sectional view of the hanging multi-layered cultivation table of the silkworm shed at A-A in FIG. 2;
FIG. 4 is a schematic view of a cross-sectional structure at B-B in FIG. 2 of the hanging multi-layered cultivation table of the silkworm shed;
FIG. 5 is an enlarged schematic view of the structure of the place A in FIG. 3 of the hanging multi-layer cultivation table of the silkworm shed;
fig. 6 is an enlarged schematic view of the structure at the position B in fig. 4 of the hanging multi-layer cultivation table of the silkworm shed of the utility model.
In the figure: 1. a frame; 101. a first connecting plate; 1011. a card slot; 102. a second connecting plate; 2. a connecting frame; 201. a first rope; 202. a second rope; 3. a wire mesh; 4. a wedge block; 401. a wedge-shaped groove; 5. a support plate; 6. a support bar; 601. inserting slots; 602. and (5) inserting the blocks.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts all belong to the protection scope of the present invention.
As shown in fig. 1 and 2, a hanging type multi-layer rearing bed of silkworm sheds comprises four frames 1 for supporting, two connecting frames 2 are arranged on two sides of each frame 1, and the four frames 1 are arranged layer by layer in parallel;
all having linked up first rope 201 on the link 2 that is located the first layer, every first rope 201 one end all walks around the big-arch shelter pole and articulates with the corresponding link 2 of fourth layer mutually, all has linked up second rope 202 on the link 2 that is located the second layer, and every second rope 202 one end all walks around the big-arch shelter pole and articulates with the corresponding link 2 of third layer mutually. The greenhouse rod is fixed at the top of the silkworm greenhouse and is convenient for winding the rope.
The upper surface of each frame 1 is provided with a wire mesh 3. When the distance between two adjacent frames 1 needs to be enlarged, a worker pushes the frame 1 of the first layer downwards to make the frame 1 of the first layer stressed and move downwards, so that the first rope 201 gives a tensile force to the frame 1 of the fourth layer, the frame 1 of the fourth layer is stressed and moves upwards, so that the frame 1 of the first layer and the frame 1 of the fourth layer move a distance relatively, then the worker pushes the frame 1 of the second layer downwards, the pushing force for pushing the frame 1 of the second layer is smaller than the pushing force for pushing the frame 1 of the first layer, the frame 1 of the second layer is stressed and moves downwards, so that the second rope 202 gives a tensile force to the frame 1 of the third layer, and the frame 1 of the third layer is stressed and moves upwards, thereby make the second floor and the frame 1 of third floor move a distance relatively, and the distance of the frame 1 relative movement of second floor and third floor is less than the distance of the frame 1 relative movement of first floor and fourth floor, thereby make the distance between every two adjacent frames 1 enlarge, and the staff only need promote twice to frame 1, a large amount of time has saved the staff, and the staff is when removing first floor frame 1, first floor frame 1 can borrow each other power with fourth floor frame 1, when removing second floor frame 1, second floor frame 1 can borrow each other power with third floor frame 1, thereby saved staff's very much physical power, staff's intensity of labour has been reduced.
As shown in fig. 1, 3 and 5, in the present embodiment, the frame 1 includes two first connection plates 101, each connection frame 2 is fixedly installed on one side of the corresponding first connection plate 101, two second connection plates 102 are commonly installed on the two first connection plates 101, and each wire 3 is commonly installed on the upper surfaces of the two second connection plates 102. Clamping grooves 1011 are formed in two sides of the upper surface of each first connecting plate 101, and each second connecting plate 102 is arranged in two corresponding clamping grooves 1011. Two wedge blocks 4 are fixedly mounted on the upper surface of the inner wall of each clamping groove 1011, two wedge grooves 401 are formed in two sides of the lower surface of each second connecting plate 102, and each wedge block 4 is respectively matched with the corresponding wedge groove 401 in an inserting mode. Through setting up draw-in groove 1011 and wedge 4 still have wedge 401, under the mating reaction of wedge 401 and wedge 4 and draw-in groove 1011, avoided second connecting plate 102 to produce the condition of horizontal migration after receiving external force, prevent that second connecting plate 102 from dropping from first connecting plate 101, the effectual safety of protecting the silkworm.
As shown in fig. 3, 4 and 6, it can be understood that in the present application, a connection groove is formed in a middle portion of an upper surface of each first connection plate 101, and a support plate 5 is disposed in each two opposite connection grooves. The upper surfaces of every two adjacent second connecting plates 102 are provided with the supporting rods 6, the two side surfaces of each supporting rod 6 are provided with slots 601, the upper surface of each second connecting plate 102 is fixedly provided with a plurality of inserting blocks 602, and each inserting block 602 is in inserting fit with the corresponding slot 601. Can play the supporting role to wire netting 3 through setting up backup pad 5, prevent that wire netting 3 from taking place the condition of producing the bending under the long-time pressurized, through setting up backup pad 5 in the spread groove, be difficult for moving when making backup pad 5 receive external force, through setting up bracing piece 6, strengthen the supporting effect to wire netting 3, make wire netting 3 be more difficult for bending, through setting up inserted block 602 and slot 601, make bracing piece 6 be difficult for moving when receiving external force.
The working principle of the silkworm shed hanging type multilayer cultivation platform is as follows:
when the snake skin base bag is used, a worker places the snake skin base bag containing silkworm and mulberry leaves on the surface of the wire netting 3, when the distance between two adjacent frames 1 needs to be enlarged, the worker pushes the frame 1 of the first layer downwards to enable the frame 1 of the first layer to be stressed and move downwards, so that the first rope 201 gives the frame 1 of the fourth layer a pulling force, the frame 1 of the fourth layer is stressed and move upwards, the frame 1 of the first layer and the frame 1 of the fourth layer move for a certain distance relatively, then the worker pushes the frame 1 of the second layer downwards, the pushing force for pushing the frame 1 of the second layer is smaller than the pushing force for pushing the frame 1 of the first layer, the frame 1 of the second layer is stressed and moves downwards, so that the second rope 202 gives the frame 1 of the third layer a pulling force, make the frame 1 atress of third layer and rebound to make the frame 1 relative movement of second floor and third layer a section distance, and the distance of the frame 1 relative movement of second floor and third layer is less than the distance of the frame 1 relative movement of first floor and fourth layer, thereby make the distance between every two adjacent frames 1 enlarge, and the staff only need promote twice to frame 1, a large amount of time has saved the staff, and when the staff is moving first layer frame 1, first layer frame 1 can borrow the power with fourth layer frame 1 each other, when moving second layer frame 1, second layer frame 1 can borrow the power with third layer frame 1 each other, thereby save staff's very much physical power, staff's intensity of labour has been reduced.
The above embodiments of the present invention are only examples for clearly illustrating the present invention, and are not intended to limit the embodiments of the present invention, and for those skilled in the art, other variations or changes in different forms can be made on the basis of the above descriptions, and all embodiments cannot be exhausted here, and all the obvious variations or changes are still in the scope of the present invention.

Claims (6)

1. The utility model provides a silkworm coop suspension type multilayer cultivation platform, includes four frame (1) that are used for the support, its characterized in that: two connecting frames (2) are arranged on two sides of each frame (1), and the four frames (1) are arranged layer by layer in parallel;
first ropes (201) are hung on the connecting frames (2) on the first layer, one end of each first rope (201) is hung on the corresponding connecting frame (2) on the fourth layer by bypassing a greenhouse rod, second ropes (202) are hung on the connecting frames (2) on the second layer, and one end of each second rope (202) is hung on the corresponding connecting frame (2) on the third layer by bypassing the greenhouse rod;
and an iron wire net (3) is arranged on the upper surface of each frame (1).
2. The silkworm shed hanging type multi-layer cultivation table as claimed in claim 1, wherein: the frame (1) comprises two first connecting plates (101), each connecting frame (2) is fixedly installed on one side of the corresponding first connecting plate (101) respectively, two second connecting plates (102) are arranged on the first connecting plates (101) jointly, and each wire mesh (3) is arranged on the upper surfaces of the two second connecting plates (102) jointly.
3. The silkworm shed hanging type multi-layer cultivation table as claimed in claim 2, wherein: each first connecting plate (101) upper surface both sides have all been seted up draw-in groove (1011), every second connecting plate (102) all set up in two draw-in grooves (1011) that correspond jointly.
4. The hanging type multi-layer cultivation table of the silkworm shed as claimed in claim 3, wherein: every equal fixed mounting in draw-in groove (1011) inner wall upper surface has two wedge (4), every two wedge grooves (401) have all been seted up to second connecting plate (102) lower surface both sides, every wedge (4) are respectively with wedge groove (401) interlude cooperation that corresponds.
5. The hanging type multi-layer cultivation table of silkworm sheds as claimed in claim 2, wherein: every connecting groove has all been seted up in first connecting plate (101) upper surface middle part, every two is relative all be provided with backup pad (5) jointly in the connecting groove.
6. The hanging type multi-layer cultivation table of silkworm sheds as claimed in claim 2, wherein: every two adjacent second connecting plate (102) upper surface is provided with bracing piece (6) jointly, every slot (601) have all been seted up to bracing piece (6) pole body both sides surface, every equal fixed mounting of second connecting plate (102) upper surface has a plurality of inserted blocks (602), every inserted block (602) with correspond slot (601) and alternate the cooperation.
CN202221891085.3U 2022-07-21 2022-07-21 Hanging type multi-layer cultivation platform for silkworm sheds Active CN217791087U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221891085.3U CN217791087U (en) 2022-07-21 2022-07-21 Hanging type multi-layer cultivation platform for silkworm sheds

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221891085.3U CN217791087U (en) 2022-07-21 2022-07-21 Hanging type multi-layer cultivation platform for silkworm sheds

Publications (1)

Publication Number Publication Date
CN217791087U true CN217791087U (en) 2022-11-15

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ID=83968603

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CN202221891085.3U Active CN217791087U (en) 2022-07-21 2022-07-21 Hanging type multi-layer cultivation platform for silkworm sheds

Country Status (1)

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CN (1) CN217791087U (en)

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