CN203882727U - Cable stranding machine with U-shaped rotating frame - Google Patents
Cable stranding machine with U-shaped rotating frame Download PDFInfo
- Publication number
- CN203882727U CN203882727U CN201420218564.8U CN201420218564U CN203882727U CN 203882727 U CN203882727 U CN 203882727U CN 201420218564 U CN201420218564 U CN 201420218564U CN 203882727 U CN203882727 U CN 203882727U
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- frame
- spindle assemblies
- cable
- drum
- pivot hole
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Abstract
The utility model discloses a cable stranding machine with a U-shaped rotating frame in the field of cable stranding equipment of the wire cable industry. The cable stranding machine is formed by an A spindle assembly, a B spindle assembly, a rotating frame, a cable assembly and an earth axis assembly. The cable assembly is movably installed at the top of the rotating frame. The earth axis assembly is connected with the A spindle assembly and the B spindle assembly through transmission parts and is used for driving the A spindle assembly and the B spindle assembly to make the rotary frame to rotate. The rotary frame is a U-shaped structure with an opening and comprises a left rotary arm, a right rotary arm and a cable frame installed between the left rotary arm and the right rotary arm. The left rotary arm and the right rotary arm are combined to form two U-shaped vertical sides of the U-shaped structure, and the bottom side of the U-shaped structure is formed by the cable frame. The cable assembly is installed on the cable frame and can slide on the cable frame. The rotary with the U-shaped structure is convenient to use, the installation and disassembly processes of wire disc are more convenient, in addition, the contact area with a space can be reduced, the noise is low, the energy consumption is low, and the use of the cable stranding machine is environmentally-friendly and energy-saving.
Description
Technical field
The utility model relates to line cable industry wire twisting equipment field, particularly a kind of cable stranding stranding machine that revolves frame with U-shaped.
Background technology
At copper stranded conductor, aluminium stranded conductor, in steel reinforced aluminium conductor and insulation core wire cable apparatus, what in legacy equipment, adopt revolves frame in practical operation and imperfection, has various defects.It is that four limits form square shape structure that tradition is revolved frame, when coming into operation, in the process of upper drum, owing to revolving the restriction of frame square shape structure, must, by manually adjusting to certain range of tilt angles and drum could be locked revolving frame, cause using very inconvenient.In addition square shape structure revolve frame and air contact area is larger, the rotation noise that gets up is large, energy consumption is high.
Utility model content
The purpose of this utility model is to solve above defect, and a kind of cable stranding stranding machine that revolves frame with U-shaped is provided, and it is easy to use, and noise is low, and energy consumption is low.
The purpose of this utility model is achieved in the following ways:
With U-shaped, revolve a cable stranding stranding machine for frame, its by A spindle assemblies, B spindle assemblies, revolve frame, wire-arranging component and ground axis component and form.Wherein, revolving frame is arranged between A spindle assemblies and B spindle assemblies, and be provided with drum between A spindle assemblies and B spindle assemblies, drum is driven and is rotated by B spindle assemblies, drum is positioned at the inside of revolving frame simultaneously, wire-arranging component is arranged on the top of revolving frame movably, in winding displacement process, can be free to slide.Ground axis component is connected with B spindle assemblies with A spindle assemblies respectively by drive disk assembly, thereby for driving A spindle assemblies and B spindle assemblies to make to revolve frame rotation, completes moulding and the take-up of cable lay length by drum and the interlock of revolving frame.
Different from conventional art is, the described frame that revolves is the U-shaped structure with opening, revolving frame comprises left-handed arm, right swing arm and is arranged on the winding displacement frame between left-handed arm and right swing arm, left-handed arm and right swing arm are combined to form two U-shaped vertical edges of U-shaped structure, winding displacement frame forms the base of U-shaped structure, wire-arranging component is arranged on winding displacement frame, and can be on winding displacement frame left and right reciprocating motion winding displacement.
In above-mentioned explanation, more preferred scheme, the middle-end of described left-handed arm is provided with the A pivot hole that is arranged on A spindle assemblies for penetrating, the middle-end of right swing arm is provided with the B pivot hole that is arranged on B spindle assemblies and matches with A pivot hole for penetrating, the upper end in A pivot hole and B pivot hole is equipped with for the spiral arm end of winding displacement frame is installed, and the lower end in A pivot hole and B pivot hole is all provided with balancing weight.The whole frame that revolves be take A pivot hole and B pivot hole and by the balancing weight in cantilever, is realized the dynamic balancing in rotary course as line of demarcation.
In above-mentioned explanation, more preferred scheme, the front end of described A spindle assemblies is provided with the addendum cone that can independently rotate, the front end of B spindle assemblies is provided with the finger that can independently rotate, the left end of drum is connected with the addendum cone of A spindle assemblies, the right-hand member of drum is connected with the finger of B spindle assemblies, when the finger of B spindle assemblies is rotated, drives drum to rotate.
In above-mentioned explanation, more preferred scheme, between ground axis component and B spindle assemblies, be also provided with for controlling the differential pack assembly of drum rotating speed, this differential pack assembly adopts stepless speed regulation structure, differential pack assembly is synchronizeed and is connected with B spindle assemblies with ground axis component by drive disk assembly simultaneously, for realizing stepless adjustment.
During work, ground axis component drives the finger in B spindle assemblies to rotate by differential pack assembly, thereby drives drum to rotate, and the rotation of the rotation of finger and B spindle assemblies is independently to carry out.
The beneficial effect that the utility model produces is: adopt the frame that revolves of U-shaped structure, easy to use, the installation and removal process of drum is more convenient, and U-shaped structure can reduce in addition and the contact area in space, and noise is few, and energy consumption is low, uses more environmental protection and energy saving.
Accompanying drawing explanation
Fig. 1 is the integral planar schematic diagram of the utility model embodiment;
Fig. 2 is the floor map of the utility model embodiment side angle;
Fig. 3 is the integral planar schematic diagram that the utility model embodiment revolves frame;
Fig. 4 is the integral planar schematic diagram of the left-handed arm of the utility model embodiment;
Fig. 5 is the integral planar schematic diagram of the utility model embodiment right swing arm;
In figure, 1 is A spindle assemblies, and 2 for revolving frame, and 3 is wire-arranging component, and 4 is B spindle assemblies, 5 is ground axis component, and 6 is differential pack assembly, and 7 is left-handed arm, and 8 is winding displacement frame, and 9 is right swing arm, 10 is drum, and 11 is A pivot hole, and 12 is B pivot hole, and 13 is balancing weight, and 14 is finger.
Embodiment
Below in conjunction with accompanying drawing and embodiment, the utility model is described in further detail.
The present embodiment, with reference to Fig. 1~Fig. 5, its specifically implement structure by A spindle assemblies 1, B spindle assemblies 4, revolve frame 2, wire-arranging component 3 and ground axis component 5 and form.Wherein, revolving frame 2 is arranged between A spindle assemblies 1 and B spindle assemblies 4, and be provided with drum 10 between A spindle assemblies 1 and B spindle assemblies 4, drum 10 is driven and is rotated by B spindle assemblies 4, drum 10 is positioned at the inside of revolving frame 2 simultaneously, the front end of described A spindle assemblies 1 is provided with the addendum cone that can independently rotate, the front end of B spindle assemblies 4 is provided with the finger 14 that can independently rotate, the left end of drum 10 is connected with the addendum cone of A spindle assemblies, the right-hand member of drum 10 is connected with the finger 14 of B spindle assemblies, when the finger 14 of B spindle assemblies is rotated, drives drum to rotate.Between ground axis component 5 and B spindle assemblies 4, be also provided with for controlling the differential pack assembly 6 of drum 10 rotating speeds, this differential pack assembly 6 adopts stepless speed regulation structure, and differential pack assembly 6 is synchronizeed and is connected with B spindle assemblies 4 with ground axis component 5 by drive disk assembly simultaneously.
Wire-arranging component 3 is arranged on the top of revolving frame 2 movably, in winding displacement process, can be free to slide.Ground axis component 5 is connected with B spindle assemblies 4 with A spindle assemblies 1 respectively by drive disk assembly, thereby for driving A spindle assemblies 1 and B spindle assemblies 4 to make to revolve frame 2 rotations, completes moulding and the take-up of cable lay length by drum 10 and the interlock of revolving frame 2.
As shown in Figure 3, the frame 2 that revolves of the present embodiment is the U-shaped structure with opening, revolving frame 2 comprises left-handed arm 7, right swing arm 9 and is arranged on the winding displacement frame 8 between left-handed arm 7 and right swing arm 9, left-handed arm 7 and right swing arm 9 are combined to form two U-shaped vertical edges of U-shaped structure, winding displacement frame 8 forms the base of U-shaped structure, wire-arranging component 3 is arranged on winding displacement frame 8, and can on winding displacement frame 8, slide.
In addition, as shown in Figure 4 and Figure 5, the middle-end of left-handed arm 7 is provided with the A pivot hole 11 that is arranged on A spindle assemblies 1 for penetrating, the middle-end of right swing arm 9 is provided with the B pivot hole 12 that is arranged on B spindle assemblies 4 and matches with A pivot hole 11 for penetrating, the upper end in A pivot hole 11 and B pivot hole 12 is equipped with for the spiral arm end of winding displacement frame 8 is installed, and the lower end in A pivot hole 11 and B pivot hole 12 is all provided with balancing weight 13.The whole frame 2 that revolves is realized the dynamic balancing in rotary course with A pivot hole 11 and 12Wei line of demarcation, B pivot hole by the balancing weight 13 in cantilever.
Above content is in conjunction with concrete preferred embodiment further detailed description of the utility model, can not assert that concrete enforcement of the present utility model is confined to these explanations.For the utility model person of an ordinary skill in the technical field, without departing from the concept of the premise utility, can also make some simple deduction or replace, all should be considered as protection range of the present utility model.
Claims (4)
1. a cable stranding stranding machine that revolves frame with U-shaped, it is by A spindle assemblies, B spindle assemblies, revolve frame, wire-arranging component and ground axis component form, wherein, revolving frame is arranged between A spindle assemblies and B spindle assemblies, and be provided with drum between A spindle assemblies and B spindle assemblies, drum is driven and is rotated by B spindle assemblies, drum is positioned at the inside of revolving frame simultaneously, wire-arranging component is arranged on the top of revolving frame movably, ground axis component is connected with B spindle assemblies with A spindle assemblies respectively by drive disk assembly, thereby be used for driving A spindle assemblies and B spindle assemblies to make to revolve frame rotation, it is characterized in that: described in to revolve frame be the U-shaped structure with opening, revolve frame and comprise left-handed arm, right swing arm and be arranged on the winding displacement frame between left-handed arm and right swing arm, left-handed arm and right swing arm are combined to form two U-shaped vertical edges of U-shaped structure, winding displacement frame forms the base of U-shaped structure, wire-arranging component is arranged on winding displacement frame, and can be moving at winding displacement upper slide of frame.
2. a kind of cable stranding stranding machine that revolves frame with U-shaped according to claim 1, it is characterized in that: the middle-end of described left-handed arm is provided with the A pivot hole that is arranged on A spindle assemblies for penetrating, the middle-end of right swing arm is provided with the B pivot hole that is arranged on B spindle assemblies and matches with A pivot hole for penetrating, the upper end in A pivot hole and B pivot hole is equipped with for the spiral arm end of winding displacement frame is installed, and the lower end in A pivot hole and B pivot hole is all provided with balancing weight.
3. a kind of cable stranding stranding machine that revolves frame with U-shaped according to claim 1, it is characterized in that: the front end of described A spindle assemblies is provided with the addendum cone that can independently rotate, the front end of B spindle assemblies is provided with the finger that can independently rotate, the left end of drum is connected with the addendum cone of A spindle assemblies, the right-hand member of drum is connected with the finger of B spindle assemblies, when the finger of B spindle assemblies is rotated, drives drum to rotate.
4. according to a kind of cable stranding stranding machine that revolves frame with U-shaped described in claim 1~3 any one, it is characterized in that: between ground axis component and B spindle assemblies, be also provided with for controlling the differential pack assembly of drum rotating speed, this differential pack assembly adopts stepless speed regulation structure, and differential pack assembly is synchronizeed and is connected with B spindle assemblies with ground axis component by drive disk assembly simultaneously.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420218564.8U CN203882727U (en) | 2014-04-30 | 2014-04-30 | Cable stranding machine with U-shaped rotating frame |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420218564.8U CN203882727U (en) | 2014-04-30 | 2014-04-30 | Cable stranding machine with U-shaped rotating frame |
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CN203882727U true CN203882727U (en) | 2014-10-15 |
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CN201420218564.8U Expired - Fee Related CN203882727U (en) | 2014-04-30 | 2014-04-30 | Cable stranding machine with U-shaped rotating frame |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106571196A (en) * | 2015-10-10 | 2017-04-19 | 合肥神马科技集团有限公司 | Concentric stranding machine and wire coil compound winding device thereof |
-
2014
- 2014-04-30 CN CN201420218564.8U patent/CN203882727U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106571196A (en) * | 2015-10-10 | 2017-04-19 | 合肥神马科技集团有限公司 | Concentric stranding machine and wire coil compound winding device thereof |
CN106571196B (en) * | 2015-10-10 | 2019-01-04 | 合肥神马科技集团有限公司 | A kind of concentric lay conductor machine and its drum rewinder |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20141015 Termination date: 20160430 |