CN201297449Y - Structure improvement on the cover plate of cable bridges - Google Patents

Structure improvement on the cover plate of cable bridges Download PDF

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Publication number
CN201297449Y
CN201297449Y CNU2008201604352U CN200820160435U CN201297449Y CN 201297449 Y CN201297449 Y CN 201297449Y CN U2008201604352 U CNU2008201604352 U CN U2008201604352U CN 200820160435 U CN200820160435 U CN 200820160435U CN 201297449 Y CN201297449 Y CN 201297449Y
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China
Prior art keywords
plate
cable testing
testing bridge
cover plate
cross
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Expired - Fee Related
Application number
CNU2008201604352U
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Chinese (zh)
Inventor
殷炳发
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Individual
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Individual
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Priority to CNU2008201604352U priority Critical patent/CN201297449Y/en
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Publication of CN201297449Y publication Critical patent/CN201297449Y/en
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Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a structure improvement on the cover plate of cable bridges. The cover plate comprises a first and a second buckle plates, one side of the first buckle plate forms a convex part, and one side of the second buckle plate is a neck-shaped concave opening; the convex part can be fixedly buckled in the concave opening; the other sides of the first and the second buckle plates form a hook-shaped groove towards the center of the cable bridge; a groove is formed on one side surface of the top part of a side plate in matched connection with the cover plate, and the side surface is away from the center of the cable bridge; the hook-shaped groove is fixedly buckled in the groove; and the cover plate and the side plate are all engineering plastic products. The first and the second buckle plates and a connection plate are all independent molding plastic products, so that the manufacturing difficulties are simplified, the cost is reduced, and the whole weight of the cover plate is light and the volume is small, which is convenient for carrying; the whole width of the cover plate can be adjusted through the mutual buckle structure between the first and the second buckle plates and the connection plate according to requirements, which is convenient for flexible installation and application.

Description

The improved cover board structure of cable testing bridge
Technical field
The utility model relates to the erecting cable field, says it is a kind of improved cover board structure of cable testing bridge definitely.
Background technique
Cable testing bridge on the market generally adopts steel with cover plate one bending and molding at present, high and the carrying inconvenience of this iron crane span structure overall weight, there is the dealer to develop the plastics crane span structure of using the extruding and moulding of engineering plastics one for this reason, though right this crane span structure is in light weight, but complex process, manufacture difficulty is big, cost is high, and because of the big same defective that has transportation inconvenience of volume; The cover plate of cable testing bridge is formed as one again, then can't adjust the integral width of cover plate as required, is not easy to install flexibly use.
Summary of the invention
In order to overcome above-mentioned defective, the utility model provides a kind of improved cover board structure of cable testing bridge, makes the cover plate of cable testing bridge can realize flexible installation.
The utility model for solve that its technical problem adopts technological scheme be:
A kind of improved cover board structure of cable testing bridge, described cover plate comprises first and second fastening plate, wherein first fastening plate, one side is a male portion, second fastening plate, one side is the concave indentation that opening is neck, described male portion just can fixedly be sticked in the described concave indentation, the opposite side of this first and second fastening plate forms a hook groove towards the cable testing bridge central direction, the side plate top that is connected with described cover plate is provided with a groove away from one side, cable testing bridge center, described hook groove fixedly is sticked in the described groove, and described cover plate and side plate are all engineering plastic product.
Described cover plate also comprises at least one connecting plate, this connecting plate one side is and the identical male portion of described first fastening plate, one side, this connecting plate opposite side is the concave indentation of neck for the opening identical with described second fastening plate, one side, described male portion and concave indentation just can fixedly be sticked in respectively in the adjacent concave indentation and male portion, finish the connection of a plurality of connecting plates with this.
Described male portion cross section is the T type, and the described concave indentation cross section that is neck is the T type, and described cross section is axially vertical with cable testing bridge.
Described male portion cross section is droplet-shaped, and the described concave indentation cross section that is neck is droplet-shaped, and described cross section is axially vertical with cable testing bridge.
Described male portion cross section is regular hexagon, and the described concave indentation cross section that is neck is regular hexagon, and described cross section is axially vertical with cable testing bridge.
Be axially arranged with some interval hole (to strengthen side plate intensity) along cable testing bridge in the described cover plate plate.
The beneficial effects of the utility model are: because first and second fastening plate and connecting plate are the plastic article of independent moulding, therefore simplified manufacture difficulty, reduced cost, and overall weight are light, volume is little, be convenient to carrying; By the mutual snap-in structure between first and second fastening plate and connecting plate, adjustable cap slab integral width is convenient to install flexibly use as required again.
Description of drawings
Fig. 1 is the utility model and structural representation after side plate is connected;
Fig. 2 is the first fastening plate schematic representation described in the utility model;
Fig. 3 is the second fastening plate schematic representation described in the utility model;
Fig. 4 is a connecting plate schematic representation described in the utility model;
Fig. 5 is the schematic representation of side plate described in the utility model.
Embodiment
Embodiment: a kind of improved cover board structure of cable testing bridge, described cover plate 1 comprises first, two fastening plates 3,4, wherein first fastening plate, 3 one sides are male portion 6, second fastening plate, 4 one sides are the concave indentation 7 that opening is neck, described male portion 6 just can fixedly be sticked in the described concave indentation 7, this is first years old, two fastening plates 3,4 opposite side forms a hook groove 8 towards the cable testing bridge central direction, side plate 2 tops that are connected with described cover plate 1 are provided with a groove 9 away from one side, cable testing bridge center, described hook groove 8 fixedly is sticked in the described groove 9, and described cover plate 1 and side plate 2 are all engineering plastic product.
Described cover plate also comprises at least one connecting plate 5, these connecting plate 5 one sides are and the identical male portion 6 of described first fastening plate, 3 one sides, these connecting plate 5 opposite sides are the concave indentation 7 of neck for the opening identical with described second fastening plate, 4 one sides, described male portion 6 and concave indentation 7 just can fixedly be sticked in respectively in adjacent concave indentation 7 and the male portion 6, finish the connection of a plurality of connecting plates with this.
Described male portion 6 cross sections are the T type, and described concave indentation 7 cross sections that are neck are the T type, and described cross section is axially vertical with cable testing bridge.
Described male portion 6 cross sections are droplet-shaped, and described concave indentation 7 cross sections that are neck are droplet-shaped, and described cross section is axially vertical with cable testing bridge.
Described male portion 6 cross sections are regular hexagon, and described concave indentation 7 cross sections that are neck are regular hexagon, and described cross section is axially vertical with cable testing bridge.
Be axially arranged with some interval hole 10 (to strengthen side plate intensity) along cable testing bridge in described cover plate 1 plate.
In this example when assembling, determine whether the quantity of needs connecting plate and needs connecting plate according to customer demand, then carries out assembled in situ: as need not connecting plate, and then the male portion 6 with first fastening plate 3 fixedly is sticked in the concave indentation 7 of second fastening plate 4; As the need connecting plate, then the male portion 6 with first fastening plate 3 fixedly is sticked in the concave indentation 7 of adjacent connecting plate 5, male portion 6 adjacent to the connecting plate 5 of second fastening plate 4 fixedly is sticked in the concave indentation 7 of second fastening plate 4, male portion 6 and concave indentation 7 that adjacent connecting plate is 5 are fixed mutually, cover plate 1 has been finished (cover plate also can be carried to the scene by the client after predetermined the assembling in factory) with regard to assembling like this, then cooperates side plate 2 with first of cover plate 1 two ends that assemble, two fastening plates 3,4 hook groove 8 fixedly is sticked in respectively in the groove 9 of corresponding side plate 2.
This example cooperates split type plastic bottom board, side plate to use.
Because first and second fastening plate 3,4 and connecting plate 5 be the plastic article of independent moulding, therefore simplified manufacture difficulty, reduced cost and overall weight is light, can stack during transportation, like this volume little, be convenient to carry; Pass through the mutual snap-in structure of 5 of first and second fastening plate 3,4 and connecting plates again, adjustable cap slab integral width is convenient to install flexibly use as required.
This example described " cable testing bridge is axial " refers to: cable testing bridge set up direction.

Claims (6)

1. the improved cover board structure of a cable testing bridge, it is characterized in that: described cover plate (1) comprises first, two fastening plates (3,4), wherein first fastening plate, one side is male portion (6), second fastening plate, one side is the concave indentation (7) that opening is neck, described male portion just can fixedly be sticked in the described concave indentation, this is first years old, the opposite side of two fastening plates forms a hook groove (8) towards the cable testing bridge central direction, side plate (2) top that is connected with described cover plate is provided with a groove (9) away from one side, cable testing bridge center, described hook groove fixedly is sticked in the described groove, and described cover plate and side plate are all engineering plastic product.
2. the improved cover board structure of cable testing bridge according to claim 1, it is characterized in that: described cover plate also comprises at least one connecting plate (5), this connecting plate one side is and the identical male portion (6) of described first fastening plate, one side, this connecting plate opposite side is the concave indentation (7) that the opening identical with described second fastening plate, one side is neck, and described male portion and concave indentation just can fixedly be sticked in respectively in the adjacent concave indentation and male portion.
3. the improved cover board structure of cable testing bridge according to claim 1 and 2, it is characterized in that: described male portion (6) cross section is the T type, and described concave indentation (7) cross section that is neck is the T type, and described cross section is axially vertical with cable testing bridge.
4. the improved cover board structure of cable testing bridge according to claim 1 and 2, it is characterized in that: described male portion (6) cross section is droplet-shaped, and described concave indentation (7) cross section that is neck is droplet-shaped, and described cross section is axially vertical with cable testing bridge.
5. the improved cover board structure of cable testing bridge according to claim 1 and 2, it is characterized in that: described male portion (6) cross section is regular hexagon, and described concave indentation (7) cross section that is neck is regular hexagon, and described cross section is axially vertical with cable testing bridge.
6. the improved cover board structure of cable testing bridge according to claim 1 is characterized in that: be axially arranged with some interval hole (10) along cable testing bridge in the described cover plate plate.
CNU2008201604352U 2008-09-19 2008-09-19 Structure improvement on the cover plate of cable bridges Expired - Fee Related CN201297449Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2008201604352U CN201297449Y (en) 2008-09-19 2008-09-19 Structure improvement on the cover plate of cable bridges

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2008201604352U CN201297449Y (en) 2008-09-19 2008-09-19 Structure improvement on the cover plate of cable bridges

Publications (1)

Publication Number Publication Date
CN201297449Y true CN201297449Y (en) 2009-08-26

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CNU2008201604352U Expired - Fee Related CN201297449Y (en) 2008-09-19 2008-09-19 Structure improvement on the cover plate of cable bridges

Country Status (1)

Country Link
CN (1) CN201297449Y (en)

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20090826

Termination date: 20110919