CN206412148U - A kind of stacked-up type doubling mould - Google Patents
A kind of stacked-up type doubling mould Download PDFInfo
- Publication number
- CN206412148U CN206412148U CN201720039550.3U CN201720039550U CN206412148U CN 206412148 U CN206412148 U CN 206412148U CN 201720039550 U CN201720039550 U CN 201720039550U CN 206412148 U CN206412148 U CN 206412148U
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- China
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- submodule
- basic mode
- doubling
- circumferential outer
- mould
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Abstract
The utility model discloses a kind of stacked-up type doubling mould, including basic mode, the basic mode has the basic mode body of tubular, there is basic mode and line passage in basic mode body, the side of basic mode and line passage has basic mode doubling entrance, opposite side has basic mode doubling outlet, being exported positioned at basic mode doubling has the circumferential outer of basic mode extended perpendicularly out to basic mode outer body on the basic mode body of side, also include submodule, the submodule has the submodule body of tubular, there is submodule and line passage in submodule body, the side of submodule and line passage has submodule doubling entrance, opposite side has submodule doubling outlet, being exported positioned at submodule doubling has the circumferential outer of submodule extended perpendicularly out to submodule outer body on the submodule body of side;When the submodule is placed in the basic mode, the internal diameter of the external diameter and basic mode body of submodule body matches, and submodule circumference outer is located just on the circumferential outer of basic mode, locking mechanism of the basic mode circumference outer provided with the circumferential outer of lockable submodule.The utility model is changed convenient, time saving and energy saving.
Description
Technical field
The utility model is related to doubling mould during stranding in a kind of power cable production process, concretely relates to
A kind of stacked-up type doubling mould.
Background technology
In the prior art, doubling mould used in cable cabling process, is included in the basic mode body of tubular, basic mode body
With basic mode and line passage, the side of basic mode and line passage has basic mode doubling entrance, and opposite side has basic mode doubling outlet, position
Being exported in basic mode doubling has the circumferential outer of basic mode extended perpendicularly out to basic mode outer body on the basic mode body of side.It is above-mentioned simultaneously
Line mould first has to be packed on cabling device when using, doubling mould and the size of line passage will be with outside diameter of cable phase
Match somebody with somebody, if to produce the cable of different model and specification, accordingly to change doubling mould.Because cabling device is frequent
The cable of different size model is produced, causes often to change doubling mould, the problem of existing is:1st, regular replacing and peace
Dress doubling mould is not only wasted time and energy, and have impact on the production efficiency of cable;2nd, in order that doubling mould is easily installed in into
In cable equipment, the outside dimension of its body is relatively-stationary, is only and the size of line passage is different, therefore different size chi
It is required for a body outside dimension identical during very little cable cabling and doubling mould that line passage matches with the outside diameter of cable,
Which adds the manufacturing cost of doubling mould.
Utility model content
The technical problems to be solved in the utility model, which is to provide, a kind of to be changed and installs easily and manufacturing cost is relative
Relatively low stacked-up type doubling mould.
In order to solve the above technical problems, a kind of stacked-up type doubling mould of the utility model, including basic mode, the basic mode has cylinder
With basic mode and line passage in the basic mode body of shape, basic mode body, the side of basic mode and line passage has basic mode doubling entrance, separately
Side has basic mode doubling outlet, exports to have on the basic mode body of side positioned at basic mode doubling and is vertically stretched to basic mode outer body
The circumferential outer of basic mode gone out, in addition to submodule, the submodule has in the submodule body of tubular, submodule body, and there is submodule doubling to lead to
The side of road, submodule and line passage has submodule doubling entrance, and opposite side has submodule doubling outlet, positioned at submodule doubling outlet
There is the circumferential outer of submodule extended perpendicularly out to submodule outer body on the submodule body of side;When the submodule is placed in the base
When in mould, the internal diameter of the external diameter and basic mode body of submodule body matches, and submodule circumference outer is located just at the circumferential outer of basic mode
On, locking mechanism of the basic mode circumference outer provided with the circumferential outer of lockable submodule.
Using the stacked-up type doubling mould of said structure, due to being constituted by basic mode and submodule are stacked, therefore for difference
Only need to change corresponding submodule during the cable cabling of specification, the basic mode on cabling device be packed in without dismounting,
It is convenient and swift, time saving and energy saving to change, further, since be to be fixedly mounted on basic mode on cabling device, the body outer diameter ruler of submodule
It is very little need not with cabling device in the cooperation installed, this can cause the body external diameter of submodule to be substantially reduced, reduce and be manufactured into
This.
Improved as of the present utility model, the locking mechanism is included in the radial direction that the circumferential outer top surface of the basic mode is opened up
Symmetrical two arcuate slots chute sections, the bottom of each slit chute sections has the slider slideway section widened, and each slit is slided
The center of road section is offered enters passage with the sliding block that connects of slider slideway section, correspondingly the circumferential outer of the submodule
Bottom surface is equipped with two slider components of radial symmetric, and each slider component includes the slide bar being connected with submodule circumferential outer bottom surface,
The bottom of slide bar is connected with sliding block, and the lateral dimension of slide bar is engaged with the width of the slit chute sections, the lateral dimension of sliding block
It is engaged with the width of slider slideway section, when submodule is stacked on basic mode, two slider components on the bottom surface of submodule circumference outer
It can accordingly be placed in two arcuate slots chute sections on the circumferential outer top surface of basic mode, and pass through slider component and slit chute sections
Cooperation submodule can make the rotation of certain angle relative to basic mode.
In the utility model between submodule and basic mode locking use above-mentioned locking mechanism, can according to cable during stranding by
The different of force direction are realized locking clockwise or counterclockwise locked.
As further improvement of the utility model, the submodule is formed for integral type, or is split-type structural.It is split type
The submodule of structure can realize online installation and removal during stranding.
Brief description of the drawings
The utility model is described in further detail below in conjunction with the accompanying drawings.
Fig. 1 is a kind of main cross section structure diagram of stacked-up type doubling mould of the utility model.
Fig. 2 is the main cross section structure diagram of basic mode in a kind of stacked-up type doubling mould of the utility model.
Structural representation cuts open in the side view office that Fig. 3 is Fig. 2.
Fig. 4 is a kind of main cross section structure diagram of stacked-up type doubling mould neutron mould of the utility model.
Fig. 5 is the side structure schematic view when submodule shown in Fig. 4 is formed for integral type.
Fig. 6 is side view fractionation structural representation when submodule shown in Fig. 4 is split-type structural.
Embodiment
Referring to Fig. 1-Fig. 6, a kind of stacked-up type doubling mould of the utility model, including basic mode 10, the basic mode 10 is with tubular
Basic mode body 11, there is basic mode and line passage 12, the side of basic mode and line passage 12 has basic mode doubling in basic mode body 11
There is entrance 13, opposite side basic mode doubling to export 14, and being exported positioned at basic mode doubling on the basic mode body 11 of 14 sides has to base
The circumferential outer 15 of basic mode that mould body outside vertical is stretched out, in addition to submodule 20, the submodule 20 have the submodule body 21 of tubular,
With submodule and line passage 22 in submodule body 21, the side of submodule and line passage 22 has submodule doubling entrance 23, opposite side
With submodule doubling outlet 24, exported positioned at submodule doubling on the submodule body 21 of 24 sides with vertical to submodule outer body
The circumferential outer 25 of the submodule of stretching;When the submodule 20 is placed in the basic mode 10, external diameter and the basic mode sheet of submodule body 21
The internal diameter of body 11 matches, and submodule circumference outer 25 is located just on the circumferential outer 15 of basic mode, and basic mode circumference outer 15 is provided with
The locking mechanism of lockable submodule circumference outer 25.The locking mechanism is included in what the circumferential top surface of outer 15 of the basic mode was opened up
Two arcuate slots chute sections 16,17 of radial symmetric, the bottom of each slit chute sections 16 has the slider slideway section widened
18, the center of each slit chute sections 16 offers the sliding block connected with slider slideway section 18 and enters passage 19, accordingly
The bottom surface of the circumferential outer 25 of the ground submodule is equipped with two slider components 26,27 of radial symmetric, and each slider component 26 includes
The slide bar 28 being connected with submodule circumferential outer 25 bottom surface, the bottom of slide bar 28 is connected with sliding block 29, the lateral dimension of slide bar 28 and institute
The width for stating slit chute sections 16 is engaged, the lateral dimension of sliding block 29 is engaged with the width of slider slideway section 18, works as submodule
When on 20 stacked basic modes 10, two slider components 26,27 on the bottom surface of submodule circumference outer 25 can accordingly be placed in basic mode week outwards
Along along two arcuate slots chute sections 16,17 on 15 top surfaces, and pass through slider component and the cooperation submodule 20 of slit chute sections
The rotation of certain angle can be made relative to basic mode 10.
Referring back to Fig. 4-Fig. 6, the submodule 20 in the utility model can be integrally-formed or split type
Structure, when being designed to split-type structural, described two slider components 26,27 are placed on two Split type structures.
Claims (3)
1. a kind of stacked-up type doubling mould, including basic mode(10), the basic mode(10)Basic mode body with tubular(11), basic mode sheet
Body(11)It is interior that there is basic mode and line passage(12), basic mode and line passage(12)Side there is basic mode doubling entrance(13), it is another
Side has basic mode doubling outlet(14), positioned at basic mode doubling outlet(14)The basic mode body of side(11)It is upper to have to basic mode body
The circumferential outer of basic mode that outside vertical is stretched out(15), it is characterised in that:Also include submodule(20), the submodule(20)With tubular
Submodule body(21), submodule body(21)It is interior that there is submodule and line passage(22), submodule and line passage(22)Side have son
Mould doubling entrance(23), opposite side have submodule doubling outlet(24), positioned at submodule doubling outlet(24)The submodule body of side
(21)It is upper that there is the circumferential outer of submodule extended perpendicularly out to submodule outer body(25);When the submodule(20)It is placed in the basic mode
(10)When interior, submodule body(21)External diameter and basic mode body(11)Internal diameter match, submodule circumference outer(25)Just position
In the circumferential outer of basic mode(15)On, basic mode circumference outer(15)Provided with the circumferential outer of lockable submodule(25)Locking mechanism.
2. stacked-up type doubling mould as claimed in claim 1, it is characterised in that:The locking mechanism is included in the basic mode week
To outer(15)Two arcuate slots chute sections of the radial symmetric that top surface is opened up(16、17), each slit chute sections(16)'s
Bottom has the slider slideway section widened(18), each slit chute sections(16)Center offer and slider slideway section
(18)The sliding block connected enters passage(19), the correspondingly circumferential outer of the submodule(25)Bottom surface be equipped with radial symmetric two
Individual slider component(26、27), each slider component(26)Including with the circumferential outer of submodule(25)The connected slide bar in bottom surface(28), it is sliding
Bar(28)Bottom be connected with sliding block(29), slide bar(28)Lateral dimension and the slit chute sections(16)Width be engaged,
Sliding block(29)Lateral dimension and slider slideway section(18)Width be engaged, work as submodule(20)Stacked basic mode(10)When upper, son
Mould circumference outer(25)Two slider components on bottom surface(26、27)The circumferential outer of basic mode can be accordingly placed in(15)Two on top surface
Individual arcuate slots chute sections(16、17)It is interior, and pass through slider component and the cooperation submodule of slit chute sections(20)Can be with respect to basic mode
(10)Make the rotation of certain angle.
3. stacked-up type doubling mould as claimed in claim 1, it is characterised in that:The submodule(20)Formed for integral type, or
For split-type structural.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201720039550.3U CN206412148U (en) | 2017-01-13 | 2017-01-13 | A kind of stacked-up type doubling mould |
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CN201720039550.3U CN206412148U (en) | 2017-01-13 | 2017-01-13 | A kind of stacked-up type doubling mould |
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CN206412148U true CN206412148U (en) | 2017-08-15 |
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CN201720039550.3U Withdrawn - After Issue CN206412148U (en) | 2017-01-13 | 2017-01-13 | A kind of stacked-up type doubling mould |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106782902A (en) * | 2017-01-13 | 2017-05-31 | 辽宁中德电缆有限公司 | A kind of stacked-up type doubling mould |
-
2017
- 2017-01-13 CN CN201720039550.3U patent/CN206412148U/en not_active Withdrawn - After Issue
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106782902A (en) * | 2017-01-13 | 2017-05-31 | 辽宁中德电缆有限公司 | A kind of stacked-up type doubling mould |
CN106782902B (en) * | 2017-01-13 | 2018-05-18 | 辽宁中德电缆有限公司 | A kind of stacked-up type doubling mold |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20170815 Effective date of abandoning: 20180518 |
|
AV01 | Patent right actively abandoned |