CN203166297U - A wire conveying module used for a wire-stripping machine - Google Patents

A wire conveying module used for a wire-stripping machine Download PDF

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Publication number
CN203166297U
CN203166297U CN 201320166043 CN201320166043U CN203166297U CN 203166297 U CN203166297 U CN 203166297U CN 201320166043 CN201320166043 CN 201320166043 CN 201320166043 U CN201320166043 U CN 201320166043U CN 203166297 U CN203166297 U CN 203166297U
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CN
China
Prior art keywords
belt
combination
vertical pivot
pivot bar
sliding seat
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Expired - Fee Related
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CN 201320166043
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Chinese (zh)
Inventor
王建辉
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KUNSHAN WEIRUIGE ELECTRONIC TECHNOLOGY Co Ltd
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KUNSHAN WEIRUIGE ELECTRONIC TECHNOLOGY Co Ltd
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Priority to CN 201320166043 priority Critical patent/CN203166297U/en
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Publication of CN203166297U publication Critical patent/CN203166297U/en
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Abstract

The utility model discloses a wire conveying module used for a wire-stripping machine. The wire conveying module comprises a support, a first belt combination, a second belt combination, a first transmission mechanism, and a second transmission mechanism. The first belt combination and the second belt combination which are arranged in parallel are disposed in the support and are used for clamping a cable. The first transmission mechanism is capable of driving the first belt combination and the second belt combination to be mutually opened and closed. The second belt combination is capable of driving a first belt in the first belt combination and a second belt in the second belt combination to be moved reversely in order to achieve wire conveying. The wire conveying module used for a wire-stripping machine achieves power conveying of the first belt combination and the second belt combination by using a vertical shaft rod and a transmission shaft which are disposed mutually perpendicularly and using thread gear engagement connection. The wire conveying module not only has simple structure, but also has stable mechanical performance. The wire conveying module guarantees asynchronous gaps when the first belt combination and the second belt combination are opened and closed. The two belt combinations maintain synchronization all the time so as to guarantee accurate wire conveying when wires with different thickness and diameters are conveyed and wire skin stripping quality when wire is stripped. In addition, steel gears are not easy to wear and are durable, have a long service life, and do not generate a belt loosening or aging phenomenon.

Description

Wire stripper line sending module
Technical field
The utility model relates to a kind of wire stripper, relates to a kind of wire stripper line sending module specifically.
Background technology
After cable is produced, for cable can be electrically connected with other electronic components, need suppress terminal at two free ends of cable, and compacting need before the terminal to two free ends of cable respectively peeling namely divest external coating and internal coating on cable two free ends, when wire stripper divests coating layer to cable, must use wire agency and cable is transported on the cutting tool cuts.On wire agency, generally be provided with first and second belt combination that to open mutually and to close up, being provided with simultaneously actuating unit in addition drives this first and second belt combination and carries out backward rotation to realize the line sending function, but first and second belt combination of present drive is carried out counter-rotational actuating unit and is generally adopted belt to be connected with gear drive, though also can realize the Synchronous Transmission of first and second belt combination, but because that belt is used of a specified duration to be easy to generate is loosening, can not guarantee the precision of line sending, belt is easily aging simultaneously, thereby influences its useful life.
Summary of the invention
In order to overcome above-mentioned defective, the utility model provides a kind of wire stripper line sending module, and is simple for structure, good mechanical stability, long service life simultaneously.
The utility model for the technical scheme that solves its technical problem and adopt is: a kind of wire stripper line sending module, comprise support, be located at and be used for the combination of first belt and the combination of second belt that two of clamping cable be arranged in parallel in this support, can drive first group of transmission mechanism that this first belt combination and the combination of second belt are opened mutually and closed up, and can drive the first interior belt of the combination of this first belt and the combination of second belt and second belt along the second group transmission mechanism of counter motion with line sending, second power transmission shaft of first power transmission shaft of described first belt combination and the combination of second belt is parallel and be movably installed in first sliding seat and second sliding seat respectively, described first group of transmission mechanism comprises two-way screw mandrel and drives first driving mechanism that this two-way screw mandrel can rotate and reverse, this two-way screw mandrel is set in described first sliding seat and second sliding seat by screw-threaded engagement, and the screw thread of periphery that this two-way screw mandrel is positioned at the part of first sliding seat and second sliding seat oppositely arranges; Described second group of transmission mechanism comprises the vertical pivot bar and drives second driving mechanism that this vertical pivot bar can rotate and reverse, described vertical pivot bar is along vertical described first, two power transmission shaft directions arrange, spacer sleeve is provided with first helical gear and second helical gear that the hand of spiral oppositely arranges on this vertical pivot bar, this is first years old, two helical gears can be respectively move and along the stop of described vertical pivot bar circumferencial direction along the axis direction of described vertical pivot bar, the outer fixed cover of described first power transmission shaft is provided with the 3rd helical gear, the outer fixed cover of described second power transmission shaft is provided with the 4th helical gear, described first helical gear and the 3rd helical gear are connected with a joggle, and described second helical gear and described the 4th helical gear are connected with a joggle.
As further improvement of the utility model, be respectively equipped with the 3rd sliding seat and the 4th sliding seat at described first power transmission shaft and second power transmission shaft outside the end away from described first and second belt combination, be respectively equipped with an open slot in the 3rd sliding seat and the 4th sliding seat, the end of described first power transmission shaft and second power transmission shaft is placed in respectively in this open slot and can rotates and along its radial stop along its circumferencial direction relative to this open slot.
As further improvement of the utility model, described first driving mechanism comprises first servo motor, the 3rd belt, gear wheel and pinion, described pinion axle center is fixed in one end of described two-way screw mandrel, described pinion is connected by the 3rd belt transmission with gear wheel, and described servo motor can drive this gear wheel and rotate and reverse.
As further improvement of the utility model, described second driving mechanism comprises second servo motor and shaft joint, and this second servo motor is in transmission connection by shaft joint and described vertical pivot bar.
As further improvement of the utility model, described first and second belt combination comprises that respectively at least three are the gears that triangle arranges, and described first and second belt drive sleeve respectively is located at these at least three and is outside the gear that triangle arranges.
As further improvement of the utility model, described first and second belt combination comprises that respectively four are the gear that triangle arranges, wherein three gears are the equilateral triangle setting, on the mid point of another gear two gears located therein, and the gear parallel interval of three conllinear of the combination of described first belt and the combination of second belt arranges.
As further improvement of the utility model, described first and second helical gear can be respectively moves and along the structure of described vertical pivot bar circumferencial direction stop is along the axis direction of described vertical pivot bar: be respectively equipped with first and second guide vane end stop that protrudes this vertical pivot bar lateral surface at its axis direction of described vertical pivot bar lateral surface upper edge, on described first and second helical gear respectively correspondence be provided with stopper slot, described first and second guide vane end stop placed respectively in the stopper slot of this first and second helical gear when this first and second helical gear was movably set on the described vertical pivot bar.
The beneficial effects of the utility model are: adopt mutual vertically disposed vertical pivot bar and power transmission shaft and be connected with a joggle to realize that by helical gear the power of first and second belt combination carries, not only simple for structure, and stable mechanical performance, can keep first and second belt combination to open and close up the gap not simultaneously, these two groups of belts remain synchronously, thereby guarantee carrying thickness not guarantee that all line sending is accurate during the wire rod in collinear footpath, decortication quality when guaranteeing wire stripping, in addition, the steel gear is not easy to wear and durable, life-span is long, the loose or aging phenomenon of belt can not occur.
Description of drawings
Fig. 1 is the utility model structural representation;
Fig. 2 is another visual angle structural representation of the utility model;
Fig. 3 removes the first servo motor structural representation for the utility model;
Fig. 4 is another visual angle structural representation of Fig. 3.
By reference to the accompanying drawings, make the following instructions:
The combination of 1---support 2---, first belt
3---second belt combinations 4---, first belt
5---second belts 6---, first power transmission shaft
7---second power transmission shafts 8---, first sliding seat
The two-way screw mandrel of 9---second sliding seat 10---
11---vertical pivot bars 12---, first helical gear
13---second helical gears 14---the 3rd helical gear
15---the 4th helical gears 16---the 3rd sliding seat
17---the 4th sliding seat 18---, first servo motor
19---the 3rd belt 20---gear wheel
21---pinions 22---, second servo motor
23---shaft joints 24---, first guide vane end stop
25---second guide vane end stop
Embodiment
By reference to the accompanying drawings; the utility model is elaborated; but protection range of the present utility model is not limited to following embodiment, and namely the simple equivalent of being done with the utility model claim and description in every case changes and modifies, and all still belongs within the utility model patent covering scope.
As Fig. 1, shown in 2, a kind of wire stripper line sending module, comprise support 1, be located at and be used for first belt combination, 2 and second belt combination 3 that two of clamping cable be arranged in parallel in this support, can drive first group of transmission mechanism that this first belt combination and the combination of second belt are opened mutually and closed up, and can drive the first interior belt 4 of the combination of this first belt and the combination of second belt and second belt 5 along the second group transmission mechanism of counter motion with line sending, second power transmission shaft 7 of first power transmission shaft 6 of described first belt combination and the combination of second belt is parallel and be movably installed in first sliding seat 8 and second sliding seat 9 respectively, described first group of transmission mechanism comprises two-way screw mandrel 10 and drives first driving mechanism that this two-way screw mandrel can rotate and reverse, this two-way screw mandrel is set in described first sliding seat and second sliding seat by screw-threaded engagement, and the screw thread of periphery that this two-way screw mandrel is positioned at the part of first sliding seat and second sliding seat oppositely arranges; Described second group of transmission mechanism comprises vertical pivot bar 11 and drives second driving mechanism that this vertical pivot bar can rotate and reverse, described vertical pivot bar is along vertical described first, two power transmission shaft directions arrange, spacer sleeve is provided with first helical gear 12 and second helical gear 13 that the hand of spiral oppositely arranges on this vertical pivot bar, this is first years old, two helical gears can be respectively move and along the stop of described vertical pivot bar circumferencial direction along the axis direction of described vertical pivot bar, the outer fixed cover of described first power transmission shaft is provided with the 3rd helical gear 14, the outer fixed cover of described second power transmission shaft is provided with the 4th helical gear 15, described first helical gear and the 3rd helical gear are connected with a joggle, and described second helical gear and described the 4th helical gear are connected with a joggle.
During work, first driving mechanism drives two-way screw mandrel and rotates, because two-way screw mandrel is located in first and second sliding seat by thread bush, and the screw thread that two-way screw mandrel is positioned at first and second sliding seat oppositely arranges, like this, rotating and reverse of two-way screw mandrel can realize drawing close mutually and leaving of first sliding seat and second sliding seat, and the power transmission shaft of first and second belt combination is movably set in respectively in first and second sliding seat, therefore the rotation of two-way screw mandrel finally drives first and second belt combination and opens or close up, with the clamping that realizes cable or unclamp.Simultaneously, second driving mechanism is used for driving the vertical pivot bar and rotates, and first and second helical gear on the vertical pivot bar oppositely arranges, and connect third and fourth helical gear by screw-threaded engagement respectively, simultaneously, third and fourth helical gear again respectively fixed cover be located on first and second power transmission shaft, therefore the rotation that drives the vertical pivot bar of second driving mechanism is converted into the rotation of first and second power transmission shaft, thereby realize the rotation of first and second belt, when first and second belt combination clamps cable, to realize the conveying of cable.This structure is transmitted the power conveying that first and second belt makes up owing to adopted helical gear to mesh, stable mechanical performance not only, and can keep the combination of first and second belt to open closing up the gap not simultaneously, these two groups of belts remain synchronously, thereby guarantee carrying thickness not guarantee that all line sending is accurate, decortication quality when guaranteeing wire stripping during the wire rod in collinear footpath, in addition, the steel gear is not easy to wear and durable, and the life-span is long, the loose or aging phenomenon of belt can not occur.
Preferably, be respectively equipped with the 3rd sliding seat 16 and the 4th sliding seat 17 at described first power transmission shaft and second power transmission shaft outside the end away from described first and second belt combination, be respectively equipped with an open slot in the 3rd sliding seat and the 4th sliding seat, the end of described first power transmission shaft and second power transmission shaft is placed in respectively in this open slot and can rotates and along its radial stop along its circumferencial direction relative to this open slot.
Preferably, described first driving mechanism comprises first servo motor 18, the 3rd belt 19, gear wheel 20 and pinion 21, described pinion axle center is fixed in one end of described two-way screw mandrel, described pinion is connected by the 3rd belt transmission with gear wheel, and described servo motor can drive this gear wheel and rotate and reverse.Like this, drive gear wheel by first servo motor and rotate, gear wheel drives pinion rotation by the 3rd belt, and pinion drives two-way screw mandrel again and rotates, and realizes rotating and reverse of two-way screw mandrel.
Preferably, described second driving mechanism comprises second servo motor 22 and shaft joint 23, this second servo motor is in transmission connection by shaft joint and described vertical pivot bar, thereby realize rotating and reverse of vertical pivot bar, first and second power transmission shaft that finally drives first and second belt combination rotates and reverse the conveying that realizes cable.
Preferably, described first and second belt combination comprises that respectively at least three are the gears that triangle arranges, and described first and second belt drive sleeve respectively is located at these at least three and is outside the gear that triangle arranges.
Preferably, described first and second belt combination comprises that respectively four are the gear that triangle arranges, wherein three gears are the equilateral triangle setting, on the mid point of another gear two gears located therein, and the gear parallel interval of three conllinear of the combination of described first belt and the combination of second belt arranges.
Preferably, described first and second helical gear can be respectively moves and along the structure of described vertical pivot bar circumferencial direction stop is along the axis direction of described vertical pivot bar: be respectively equipped with first and second guide vane end stop 24,25 that protrudes this vertical pivot bar lateral surface at its axis direction of described vertical pivot bar lateral surface upper edge, on described first and second helical gear respectively correspondence be provided with stopper slot, described first and second guide vane end stop placed respectively in the stopper slot of this first and second helical gear when this first and second helical gear was movably set on the described vertical pivot bar.

Claims (7)

1. wire stripper line sending module, comprise support (1), be located at and be used for first belt combination (2) and second belt combination (3) that two of clamping cable be arranged in parallel in this support, can drive first group of transmission mechanism that this first belt combination and the combination of second belt are opened mutually and closed up, and can drive interior first belt (4) of the combination of this first belt and the combination of second belt and second belt (5) along the second group transmission mechanism of counter motion with line sending, second power transmission shaft (7) that first power transmission shaft (6) of described first belt combination and second belt make up is parallel and be movably installed in first sliding seat (8) and second sliding seat (9) respectively, it is characterized in that: described first group of transmission mechanism comprises two-way screw mandrel (10) and drives first driving mechanism that this two-way screw mandrel can rotate and reverse, this two-way screw mandrel is set in described first sliding seat and second sliding seat by screw-threaded engagement, and the screw thread of periphery that this two-way screw mandrel is positioned at the part of first sliding seat and second sliding seat oppositely arranges; Described second group of transmission mechanism comprises vertical pivot bar (11) and drives second driving mechanism that this vertical pivot bar can rotate and reverse, described vertical pivot bar is along vertical described first, two power transmission shaft directions arrange, spacer sleeve is provided with first helical gear (12) and second helical gear (13) that the hand of spiral oppositely arranges on this vertical pivot bar, this is first years old, two helical gears can be respectively move and along the stop of described vertical pivot bar circumferencial direction along the axis direction of described vertical pivot bar, the outer fixed cover of described first power transmission shaft is provided with the 3rd helical gear (14), the outer fixed cover of described second power transmission shaft is provided with the 4th helical gear (15), described first helical gear and the 3rd helical gear are connected with a joggle, and described second helical gear and described the 4th helical gear are connected with a joggle.
2. wire stripper according to claim 1 line sending module, it is characterized in that: be respectively equipped with the 3rd sliding seat (16) and the 4th sliding seat (17) at described first power transmission shaft and second power transmission shaft outside the end away from described first and second belt combination, be respectively equipped with an open slot in the 3rd sliding seat and the 4th sliding seat, the end of described first power transmission shaft and second power transmission shaft is placed in respectively in this open slot and can rotates and along its radial stop along its circumferencial direction relative to this open slot.
3. wire stripper according to claim 1 and 2 line sending module, it is characterized in that: described first driving mechanism comprises first servo motor (18), the 3rd belt (19), gear wheel (20) and pinion (21), described pinion axle center is fixed in one end of described two-way screw mandrel, described pinion is connected by the 3rd belt transmission with gear wheel, and described servo motor can drive this gear wheel and rotate and reverse.
4. wire stripper according to claim 1 and 2 line sending module, it is characterized in that: described second driving mechanism comprises second servo motor (22) and shaft joint (23), this second servo motor is in transmission connection by shaft joint and described vertical pivot bar.
5. wire stripper according to claim 1 and 2 line sending module, it is characterized in that: described first and second belt combination comprises that respectively at least three are the gears that triangle arranges, and described first and second belt drive sleeve respectively is located at these at least three and is outside the gear that triangle arranges.
6. wire stripper according to claim 5 line sending module, it is characterized in that: described first and second belt combination comprises that respectively four are the gear that triangle arranges, wherein three gears are the equilateral triangle setting, on the mid point of another gear two gears located therein, and the gear parallel interval of three conllinear of the combination of described first belt and the combination of second belt arranges.
7. wire stripper according to claim 1 line sending module, it is characterized in that: described first, two helical gears can be respectively move and along the structure of described vertical pivot bar circumferencial direction stop are along the axis direction of described vertical pivot bar: be respectively equipped with at its axis direction of described vertical pivot bar lateral surface upper edge and protrude first of this vertical pivot bar lateral surface, two guide vane end stops (24,25), described first, on two helical gears respectively correspondence be provided with stopper slot, this is first years old, when two helical gears are movably set on the described vertical pivot bar described first, two guide vane end stops place respectively this first, in the stopper slot of two helical gears.
CN 201320166043 2013-04-03 2013-04-03 A wire conveying module used for a wire-stripping machine Expired - Fee Related CN203166297U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201320166043 CN203166297U (en) 2013-04-03 2013-04-03 A wire conveying module used for a wire-stripping machine

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Application Number Priority Date Filing Date Title
CN 201320166043 CN203166297U (en) 2013-04-03 2013-04-03 A wire conveying module used for a wire-stripping machine

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CN203166297U true CN203166297U (en) 2013-08-28

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103151678A (en) * 2013-04-03 2013-06-12 昆山市韦锐格电子科技有限公司 Wire feeding module for wire stripping machine
CN112864738A (en) * 2021-01-28 2021-05-28 周岐鸣 Portable multifunctional electric power wiring device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103151678A (en) * 2013-04-03 2013-06-12 昆山市韦锐格电子科技有限公司 Wire feeding module for wire stripping machine
CN103151678B (en) * 2013-04-03 2016-04-27 昆山市韦锐格电子科技有限公司 Wire stripper line sending module
CN112864738A (en) * 2021-01-28 2021-05-28 周岐鸣 Portable multifunctional electric power wiring device

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130828

Termination date: 20160403

CF01 Termination of patent right due to non-payment of annual fee