CN111085852A - Stay wire assembly equipment - Google Patents

Stay wire assembly equipment Download PDF

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Publication number
CN111085852A
CN111085852A CN201911292522.2A CN201911292522A CN111085852A CN 111085852 A CN111085852 A CN 111085852A CN 201911292522 A CN201911292522 A CN 201911292522A CN 111085852 A CN111085852 A CN 111085852A
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CN
China
Prior art keywords
wire
frame
wheel
positioning
oil
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Pending
Application number
CN201911292522.2A
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Chinese (zh)
Inventor
梁红瑞
苏军柱
王洋
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Shanghai Guiruiheng Auto Parts Co ltd
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Shanghai Guiruiheng Auto Parts Co ltd
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Application filed by Shanghai Guiruiheng Auto Parts Co ltd filed Critical Shanghai Guiruiheng Auto Parts Co ltd
Priority to CN201911292522.2A priority Critical patent/CN111085852A/en
Publication of CN111085852A publication Critical patent/CN111085852A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23PMETAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
    • B23P21/00Machines for assembling a multiplicity of different parts to compose units, with or without preceding or subsequent working of such parts, e.g. with programme control
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23PMETAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
    • B23P2700/00Indexing scheme relating to the articles being treated, e.g. manufactured, repaired, assembled, connected or other operations covered in the subgroups
    • B23P2700/50Other automobile vehicle parts, i.e. manufactured in assembly lines

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Wire Processing (AREA)

Abstract

The invention discloses a stay wire assembly device, which relates to the technical field of automobile stay wires and comprises a rack and a threading mechanism arranged on one side of the rack, wherein an installation mechanism for installing a core wire terminal on a steel wire core wire is arranged on one side of the rack far away from the threading mechanism, a positioning mechanism for positioning a wire pipe and an installation sleeve is arranged between the threading mechanism and the core wire terminal installation mechanism, a positioning plate is arranged on one side of the threading mechanism far away from the core wire terminal installation mechanism, a limiting groove is formed in the positioning plate, and the limiting groove allows the steel wire core wire to pass through and does not allow the core wire terminal to pass through. The invention has the advantages of improving the production efficiency of the wire drawing assembly and reducing the occurrence of the condition of reworking wire drawing due to the separation of the steel wire core wire and the wire tube.

Description

Stay wire assembly equipment
Technical Field
The invention relates to the technical field of automobile stay wires, in particular to stay wire assembly equipment.
Background
The automobile stay wire and cable are linkage parts mainly used for transmission control of automobile skylights, side windows, clutches and the like, and mainly comprise a wire tube 100, installation sleeves 200 at two ends of the wire tube, a steel wire core wire 300 and core wire terminals 400 installed at two ends of the steel wire core wire (see fig. 1). In practical use, the two core wire terminals are respectively connected to the driving device and the driven device, so that the driving device drives the driven device.
The current chinese patent that has a publication number CN207801329U discloses an automobile stay wire threading equipment, including the main part seat, the front end of main part seat be equipped with loudspeaker form position sleeve inner wall complex loudspeaker form connect, main part seat front side is equipped with press from both sides tight seat, press from both sides to be equipped with anchor clamps on the tight seat, lower anchor clamps and drive anchor clamps and lower anchor clamps gliding last actuating mechanism, lower actuating mechanism from top to bottom respectively, the lower surface of going up anchor clamps and the upper surface of lower anchor clamps are equipped with respectively along last logical groove, the lower logical groove that extends of fore-and-aft direction, go up logical groove and lower logical groove cooperation formation and be used for walking the line of walking logical groove of line, walk the logical groove including the line passageway that walks that is located the anterior segment and be located the back end with loudspeaker form position sleeve outer wall complex loudspeaker form fixed. The main body seat is internally provided with an upper row of transmission rollers and a lower row of transmission rollers which are arranged in parallel at intervals from top to bottom, the wire passing channel is formed between the upper row of transmission rollers and the lower row of transmission rollers, and the upper row of transmission rollers and/or the lower row of transmission rollers are connected with a power mechanism for driving the upper row of transmission rollers and/or the lower row of transmission rollers to rotate.
By adopting the scheme, the working personnel can arrange the spool at the rear side of the main body seat, and the upper row transmission roller wheel and the lower row transmission roller wheel of the power mechanism pull the steel wire core wire, and supply the steel wire core wire to the spool, so as to complete the threading operation of the spool.
In the prior art, a worker generally first installs a core terminal to one end of a steel wire core by means of a core terminal installation apparatus; then, a steel wire core wire is threaded into the wire tube from one end of the terminal without the core wire by means of a threading device; then, the worker should take the spool and the steel wire core wire inserted into the spool off the automobile wire pulling and threading device and send the end of the steel wire core wire to the core wire terminal mounting device to mount the core wire terminal. However, this separate production method is inefficient in producing the wire drawing assembly, and the separation of the spool and the steel wire core wire during the conveyance is likely to occur, and there is a need for improvement in the rework and re-threading.
Disclosure of Invention
In view of the above technical problems, an object of the present invention is to provide a wire pulling assembly apparatus, wherein a positioning mechanism is used to position a wire tube and a mounting sleeve, a wire threading mechanism is used to thread a steel wire core wire through the mounting sleeve and the wire tube, and a core wire terminal is fixed at one end of the wire tube through a mounting mechanism, so as to improve the production efficiency of a wire pulling assembly and reduce the occurrence of rework threading caused by the separation of the steel wire core wire from the wire tube.
The technical purpose of the invention is realized by the following technical scheme:
the utility model provides an act as go-between rigging equipment, includes the frame and sets up the threading mechanism of frame one side, the frame is provided with the installation mechanism that is used for installing the heart yearn terminal to the steel wire heart yearn in the one side of keeping away from threading mechanism, be provided with the positioning mechanism who is used for spool and installation sleeve location between threading mechanism and the heart yearn terminal installation mechanism, the frame is provided with the locating plate in one side that deviates from heart yearn terminal installation mechanism at threading mechanism, the spacing groove has been seted up on the locating plate, the spacing groove allows the steel wire heart yearn.
By adopting the technical scheme, in actual application, a worker can position the line pipe and the installation sleeve by the aid of the positioning mechanism, and two ends of the line pipe respectively point to the threading mechanism and the installation mechanism; then, the steel wire core wire passes through the limiting groove, the steel wire core wire is conveyed to the wire tube by the threading mechanism, and the steel wire core wire is threaded into the wire tube; after the steel wire core wire is inserted into the wire tube, the core wire terminal fixed at one end of the steel wire core wire is blocked by the limiting groove; at the moment, the position between the steel wire core wire and the wire tube is relatively correct, and the threading mechanism is stopped at the same time; finally, another core wire terminal is fixedly installed at an end of the steel wire core wire, which is away from the installed core wire terminal, by the installation mechanism, with the position of the steel wire core wire and the spool on the frame unchanged. Through this kind of mode, promote the production efficiency to the assembly of acting as go-between, reduce the condition emergence of doing over again the threading because of steel silk heart yearn breaks away from with the spool.
The invention is further configured to: positioning mechanism includes first locating rack and second locating rack, all offer on first locating rack and the second locating rack and be used for inlaying the constant head tank of establishing the installation sleeve pipe, first locating rack and second locating rack all are located between threading mechanism and the installation mechanism, just first locating rack and second locating rack are located the frame respectively and are close to one side of threading mechanism and the one side that is close to installation mechanism.
Through adopting above-mentioned technical scheme, in the actual work, the staff can correspond two installation sleeve at spool both ends and install in two constant head tanks to the realization is to spool and installation sleeve's location, and can guarantee spool and installation sleeve's stability, and makes things convenient for staff's operation.
The invention is further configured to: the second locating rack is located one side that the frame is close to installation mechanism, just one side that the frame is close to installation mechanism is provided with the slip table, the slip direction of slip table slide is on a parallel with the line between two constant head tanks, just the second locating rack is fixed on the slide of slip table.
Through adopting above-mentioned technical scheme, in the actual work, the staff can be according to the length direction of spool to slide in the frame with the help of slip table drive second locating rack, adjust the distance between first locating rack and the second locating rack, thereby promote the suitability of positioning mechanism to the location of multiple different length spools.
The invention is further configured to: threading mechanism is including rotating first lead wire wheel and the second lead wire wheel of setting between positioning mechanism and locating plate, the spacing groove is located between first lead wire wheel and the second lead wire wheel, just first lead wire wheel and the tight steel wire heart yearn of second lead wire wheel clamp and supply with to installation sleeve and spool, and be provided with in the frame and be used for driving first lead wire wheel and second lead wire wheel and rotate and carry the drive assembly of steel wire heart yearn.
Through adopting above-mentioned technical scheme, among the practical application, the staff can wear through the spacing groove with the steel wire heart yearn and penetrate to between first lead wire wheel and the second lead wire wheel, by the rotation of drive assembly drive first lead wire wheel and second lead wire wheel, at this moment, the steel wire heart yearn will be penetrated to the spool in to the realization is to the threading operation of spool, and makes things convenient for the threading operation of staff to the spool greatly.
The invention is further configured to: the driving assembly comprises a driving motor, a first gear and a second gear, the first gear is coaxially fixed on the first lead wheel, the second gear is coaxially fixed on the second lead wheel, the driving motor is fixed on the rack, and the first gear is meshed with the second gear; the driving motor is in transmission connection with the first lead wheel and drives the first lead wheel to rotate.
Through adopting above-mentioned technical scheme, rotate by driving motor, first gear and the first lead wire wheel of second gear cooperation drive, realize rotating the automation of first lead wire wheel and second lead wire wheel, promote this rigging equipment's that acts as go-between degree of automation, further make things convenient for the threading operation of staff to the spool.
The invention is further configured to: the frame is provided with travel switch in locating plate one side, the locating plate rotates and sets up in the frame, just travel switch's contact wheel and locating plate butt, travel switch and driving motor electric connection and control driving motor shut down.
Through adopting above-mentioned technical scheme, after the steel wire heart yearn is finished by penetrating to the spool, first lead wire wheel and second lead wire wheel continue to rotate and will drive steel wire heart yearn and heart yearn terminal to the pulling locating plate, thereby conflict travel switch, and in time shut down driving motor helps reducing the condition emergence that the steel wire heart yearn was broken, helps guaranteeing to act as go-between equipment normal going on.
The invention is further configured to: spherical ring grooves are formed in the side wall of the first lead wheel and the side wall of the second lead wheel around corresponding axes, and the two spherical ring grooves are aligned; when the aligning pipe is penetrated by the steel wire core wire, the steel wire core wire is held between the two spherical ring grooves.
Through adopting above-mentioned technical scheme, hold the steel wire heart yearn tightly between two spherical annular, help guaranteeing the stability of threading mechanism when carrying the steel wire heart yearn.
The invention is further configured to: the frame is provided with a sliding frame in a sliding mode along the direction of a connecting line between the first lead wheel and the second lead wheel, the second lead wheel is rotatably erected on the sliding frame, and the frame is further provided with a pushing piece used for driving reciprocating sliding.
Through adopting above-mentioned technical scheme, when penetrating and withdraw from the steel wire heart yearn between to first lead wire wheel and the second lead wire wheel, the staff can promote the sliding frame with the help of the impeller and slide to make the second lead wire wheel keep away from first lead wire wheel, thereby make things convenient for the staff to penetrate and withdraw from the steel wire heart yearn between first lead wire wheel and the second lead wire wheel greatly.
The invention is further configured to: oil storage tanks are respectively arranged on the first lead wheel and the second lead wheel, an oil conveying flow passage is communicated between any one of the oil storage tanks and the corresponding spherical ring groove, and a plurality of oil conveying flow passages are respectively arranged on the first lead wheel and the second lead wheel around corresponding axes; and the two oil storage tanks are also connected with an oil supply device.
Through adopting above-mentioned technical scheme, in the actual work, supply with fluid to two oil storage tanks by oil supply unit, fluid will be supplied with to spherical annular through the oil transportation runner in, during the threading operation, will be infected with during fluid spreads into to the spool again on the steel wire core line to the realization is to the fat liquoring operation on the steel wire core line.
The invention is further configured to: the oil supply device comprises a rotary joint, an oil pump and an oil tank, wherein the rotary joint is coaxially and rotatably arranged on a first lead wheel and a second lead wheel, the rotary joint is communicated with the oil storage tank correspondingly, the rotary joint is communicated with an oil outlet of the oil pump through a pipeline, and the oil pump pumps oil in the oil tank through an oil pipe.
Through adopting above-mentioned technical scheme, in the practical application, connect on first lead wheel and second lead wheel with the help of two rotary joint steady rotations to supply with in the oil storage tank by the fluid in the oil pump extraction oil tank, thereby realize the automatic oil feeding operation to the oil storage tank.
Compared with the prior art, the invention has the following beneficial effects:
(1) the spool and the installation sleeve are positioned through the positioning mechanism, the steel wire core wires penetrate through the installation sleeve and the spool through the threading mechanism, and the core wire terminal is fixed at one end penetrating out of the spool through the installation mechanism, so that the production efficiency of the stay wire assembly is improved, and the condition of reworking threading caused by separation of the steel wire core wires from the spool is reduced;
(2) the second positioning frame is driven by the sliding table to move on the rack, the first lead wheel and the second lead wheel are driven by the driving motor, the first gear and the second gear to rotate, the driving motor tank body is controlled by the travel switch to timely supply the tank body, the oil pump extracts oil to supply oil to the oil storage tank, and the automation degree of the stay wire equipment is greatly improved.
Drawings
FIG. 1 is a schematic view of the prior art mainly embodying the overall structure of a stay wire;
FIG. 2 is a schematic view of the structure of the stay wire assembling apparatus according to the present embodiment;
FIG. 3 is an enlarged view of a portion A of FIG. 2, which mainly shows the structure of the second positioning frame and the sliding table;
FIG. 4 is a schematic view of the threading mechanism according to this embodiment;
FIG. 5 is an enlarged view of a portion B of FIG. 4, which mainly shows the structure of the first positioning frame and the threading mechanism;
FIG. 6 is an exploded view of the oil reservoir and the travel switch of the present embodiment;
fig. 7 is an enlarged view of a portion C of fig. 6, which mainly shows the structure of the positioning plate.
Reference numerals: 1. a frame; 11. a first frame body; 111. a receiving slideway; 112. a wire placing slideway; 113. a sliding table; 114. a support bracket; 1141. a wiring duct; 12. a second frame body; 2. a threading mechanism; 21. a first wire guiding wheel; 22. a second wire guiding wheel; 23. a spherical ring groove; 24. an oil storage tank; 241. an oil transportation flow passage; 3. an installation mechanism; 31. a pneumatic press; 4. a positioning mechanism; 41. a first positioning frame; 42. a second positioning frame; 43. positioning a groove; 5. positioning a plate; 51. a limiting groove; 6. a sliding frame; 61. a push cylinder; 7. a drive assembly; 71. a drive motor; 72. a first gear; 73. a second gear; 8. an oil supply device; 81. a rotating joint; 82. an oil pump; 83. an oil tank; 9. a travel switch; 100. a conduit; 200. installing a sleeve; 300. a steel wire core wire; 400. a core wire terminal.
Detailed Description
The present invention will be described in further detail with reference to examples and drawings, but the present invention is not limited to these examples.
Example (b):
referring to fig. 2 and 3, a stay wire assembly device comprises a frame 1 and a threading mechanism 2 arranged on one side of the frame 1, wherein the frame 1 is provided with an installation mechanism 3 used for installing a core wire terminal 400 on a steel wire core wire 300 on one side far away from the threading mechanism 2, a positioning mechanism 4 used for positioning the wire pipe 100 and the installation sleeve 200 is arranged between the threading mechanism 2 and the core wire terminal 400 installation mechanism 3, the frame 1 is provided with a positioning plate 5 (see fig. 7) on one side of the threading mechanism 2 departing from the core wire terminal 400 installation mechanism 3, the positioning plate 5 is provided with a limiting groove 51, and the limiting groove 51 allows the steel wire core wire 300 to pass through and does not allow the core wire terminal 400 to.
In practical application, a worker can position the conduit 100 and the installation sleeve 200 by the positioning mechanism 4, and two ends of the conduit 100 respectively point to the threading mechanism 2 and the installation mechanism 3; then, the steel wire core wire 300 is threaded through the limiting groove 51, the steel wire core wire 300 is conveyed to the conduit 100 by the threading mechanism 2, and the steel wire core wire 300 is threaded into the conduit 100; after the wire core 300 is inserted into the conduit 100, the core terminal 400 fixed to one end of the wire core 300 is blocked by the stopper groove 51; at this time, the position between the steel wire core wire 300 and the conduit 100 is relatively correct, and the threading mechanism 2 is stopped; finally, the other core wire terminal 400 is fixedly attached to the end of the steel wire core 300 away from the attached core wire terminal 400 by the attachment mechanism 3 with the steel wire core 300 and the conduit 100 being positionally fixed on the housing 1.
Referring to fig. 2, the rack 1 includes a first rack body 11 and a second rack body 12, the threading mechanism 2 is disposed on the first rack body 11, the mounting mechanism 3 is disposed on the second rack body 12, and the first rack body 11 and the second rack body 12 are both directly disposed on the ground. The horizontal fixing frame of the first frame body 11, which is positioned between the threading mechanism 2 and the mounting mechanism 3, is provided with a receiving slideway 111, the length direction of the receiving slideway 111 is parallel to the length direction of the spool 100 mounted between the threading mechanism 2 and the mounting mechanism 3, and the receiving slideway 111 supports the middle part of the spool 100. The first frame body 11 is provided with a thread placing slideway 112 at a side fixed frame departing from the receiving slideway 111, one end of the thread placing slideway 112 is close to the threading mechanism 2 and is arranged at an interval with the threading mechanism 2, and one side of the thread placing slideway 112 far away from the threading mechanism 2 is far away from the thread placing slideway 112 and is arranged by bending and extending.
Referring to fig. 3 and 5, the positioning mechanism 4 includes a first positioning frame 41 and a second positioning frame 42, positioning grooves 43 for embedding the installation sleeve 200 are respectively provided on the first positioning frame 41 and the second positioning frame 42 from top to bottom, and the positioning grooves 43 are respectively provided on the first positioning frame 41 and the second positioning frame 42 through the first positioning frame 41 and the second positioning frame 42 along the length direction of the receiving slide 111. The first positioning frame 41 and the second positioning frame 42 are both located between the threading mechanism 2 and the installation mechanism 3, and the first positioning frame 41 and the second positioning frame 42 are respectively located at two sides of the length direction of the receiving slideway 111. The first positioning frame 41 is fixed on the second frame 12 at a side close to the threading mechanism 2, and the second positioning frame 42 is located on the first frame 11 at a side close to the mounting mechanism 3. The first frame 11 is provided with a sliding table 113 fixed on one side of the second positioning frame 42, a sliding direction of the sliding table 113 is parallel to a length direction of the receiving slideway 111, and the second positioning frame 42 is fixed on the sliding table.
In actual work, a worker can move the second frame body 12 according to different stay wire lengths, enable the second frame body 12 to approach or depart from the first frame body 11, and adjust the distance between the wire threading mechanism 2 and the installation mechanism 3; then, according to the length of the conduit 100, the worker can drive the second positioning frame 42 to move on the first frame body 11 by the sliding table 113, and adjust the distance between the first positioning frame 41 and the second positioning frame 42; the worker can then insert the mounting sleeves 200 at the two ends of the conduit 100 into the positioning grooves 43, and the central portion of the conduit 100 is supported by the receiving runners 111. Thereby, help promoting the assembly equipment of acting as go-between to the suitability of the assembly operation of multiple different length acting as go-between.
Specifically, referring to fig. 1, the mounting mechanism 3 may be a punching device, and in the present embodiment, a pneumatic press 31 is preferred, and the pneumatic press 31 is disposed on the second frame body 12. In the practical application, the staff can penetrate the core wire terminal 400 with the one end that the steel wire core wire 300 deviates from the threading mechanism 2 to punch the core wire terminal 400 by the pneumatic press 31, and make the moulding deformation of core wire terminal 400, thereby realize the fixed operation of installation between core wire terminal 400 and the steel wire core wire 300.
Referring to fig. 4 and 5, the threading mechanism 2 includes a first lead wheel 21 and a second lead wheel 22 disposed between the first positioning frame 41 and the positioning plate 5, and a connecting line between the first lead wheel 21 and the second lead wheel 22 is perpendicular to the length direction of the receiving chute 111. The axis of the first lead wheel 21 is vertically arranged, and the first lead wheel 21 is rotatably erected on the first frame body 11 around the axis thereof. The axis of the second lead wheel 22 is vertically arranged, a sliding frame 6 is arranged on the lower side of the second lead wheel 22, the sliding frame 6 is arranged on the first frame body 11 in a sliding mode along the length direction of the horizontal perpendicular bearing slide rail 111, a pushing piece is further arranged on the frame 1 and is a pushing cylinder 61, the pushing cylinder 61 is fixed on the first frame body 11, the axis of the piston rod of the pushing cylinder 61 is parallel to the sliding direction of the sliding frame 6, and the end portion of the piston rod of the pushing cylinder 61 is fixed with the sliding frame 6.
Further, referring to fig. 6 and 7, spherical ring grooves 23 are formed on the side wall of the first lead wheel 21 and the side wall of the second lead wheel 22 around the corresponding axes, and the two spherical ring grooves 23 have the same height on the side wall of the first lead wheel 21 and the side wall of the second lead wheel 22, respectively. The first frame body 11 is further provided with a driving assembly 7, the driving assembly 7 comprises a driving motor 71, a first gear 72 and a second gear 73, the first gear 72 is coaxially fixed on the upper side of the first lead wheel 21, the second gear 73 is coaxially fixed on the upper side of the second lead wheel 22, and the first gear 72 is meshed with the second gear 73; the driving motor 71 is fixed on the lower side of the first frame 11, and the driving motor 71 is connected with the rotating shaft of the first lead wheel 21 through a speed reducer in a transmission manner.
For further making things convenient for the staff to wear to establish steel wire heart yearn 300 between first lead wheel 21 and second lead wheel 22, one side that the position deviates from first locating rack 41 between first lead wheel 21 and the second lead wheel 22 is fixed with support bracket 114, has seted up overhead line groove 1141 from the top down on the support bracket 114, and overhead line groove 1141 link up support bracket 114 along accepting slide 111 length direction, and the overhead line frame is located locating plate 5 and accepts between the slide 111.
In practical application, the worker can drive the sliding frame 6 and the second lead wheel 22 on the sliding frame 6 to be far away from the first lead wheel 21 by means of the pushing cylinder 61; then, one side of the steel wire core wire 300, which is far away from the installed core wire terminal 400, sequentially passes through the limiting groove 51, the stringing groove 1141, the space between the first lead wheel 21 and the second lead wheel 22, and is pre-penetrated into the spool 100; then, the sliding frame 6 and the second lead wheel 22 on the sliding frame 6 are moved by the pushing cylinder 61 to be close to the first lead wheel 21, and the steel wire core wire 300 is tightly held between the two spherical ring grooves 23; finally, the first and second lead wheels 21 and 22 are driven to rotate by the driving motor 71, the first gear 72 and the second gear 73, and the steel wire core wire 300 is threaded into the conduit 100.
Oil storage grooves 24 are formed in the upper sides of the first lead wheel 21 and the second lead wheel 22 from top to bottom, the first gear 72 is locked on the first lead wheel 21 through a bolt and seals the oil storage grooves 24 in the first lead wheel 21, and the second gear 73 is locked on the second lead wheel 22 through a bolt and seals the oil storage grooves 24 in the second lead wheel 22. An oil delivery flow channel 241 is communicated between any oil storage tank 24 and the corresponding spherical ring groove 23, and a plurality of oil storage tanks 24 are arranged on the first lead wheel 21 and the second lead wheel 22 around corresponding axes; the two oil reservoirs 24 are also connected to an oil supply device 8.
The oil supply device 8 comprises a rotary joint 81, an oil pump 82 and an oil tank 83 (see fig. 1), wherein one rotary joint 81 is coaxially and rotatably arranged on the upper side of the first gear 72 and the upper side of the second gear 73, the two rotary joints 81 are correspondingly communicated with the two oil storage grooves 24, the two rotary joints 81 are communicated with an oil outlet of the oil pump 82 through a pipeline, and the oil pump 82 pumps oil in the oil tank 83 through an oil pipe.
In actual operation, the oil in the oil tank 83 is pumped by the oil pump 82 and supplied to the oil storage tank 24; then, the oil is supplied into the spherical ring groove 23 through the oil delivery passage 241; in threading, the contaminated oil is introduced into the conduit 100 from the steel wire core 300, so that the oiling operation on the steel wire core 300 is realized.
In order to reduce the occurrence of the situation that the threading device breaks the steel wire core wire 300, referring to fig. 7, the middle portion of the positioning plate 5 is rotatably mounted on the first frame body 11 around the vertical axis, the limiting groove 51 is located at one side of the positioning plate 5 in the length direction, and the limiting groove 51 is located between the first lead wheel 21 and the second lead wheel 22. The frame 1 is provided with travel switch 9 on the side of locating plate 5 departing from support bracket 114, and the contact wheel of travel switch 9 is in butt joint with the one side of locating plate 5 length direction keeping away from spacing groove 51, and travel switch 9 and driving motor 71 electric connection and control driving motor 71 to shut down. After the wire core 300 is inserted into the conduit 100, the first lead wheel 21 and the second lead wheel 22 rotate continuously to drive the wire core 300 and the core terminal 400, and pull the positioning plate 5 to abut against the travel switch 9 and turn off the driving motor 71 in time.
The present embodiment is further described below with reference to specific actions:
firstly, during the installation operation of the conduit 100, a worker can move the second frame body 12 according to different stay wire lengths, so that the second frame body 12 is close to or far away from the first frame body 11, and the distance between the threading mechanism 2 and the installation mechanism 3 is adjusted; then, according to the length of the conduit 100, the worker can drive the second positioning frame 42 to move on the first frame body 11 by the sliding table 113, and adjust the distance between the first positioning frame 41 and the second positioning frame 42; then, the worker can insert the installation sleeves 200 at the two ends of the conduit 100 into the positioning grooves 43, and the middle part of the conduit 100 is supported by the receiving slide 111, thereby completing the installation operation of the conduit 100.
Secondly, in the threading operation, the worker can drive the sliding frame 6 and the second lead wheel 22 on the sliding frame 6 to be far away from the first lead wheel 21 by the aid of the pushing cylinder 61; then, one side of the steel wire core wire 300, which is far away from the installed core wire terminal 400, sequentially passes through the limiting groove 51, the stringing groove 1141, the space between the first lead wheel 21 and the second lead wheel 22, and is pre-penetrated into the spool 100; then, the sliding frame 6 and the second lead wheel 22 on the sliding frame 6 are moved by the pushing cylinder 61 to be close to the first lead wheel 21, and the steel wire core wire 300 is tightly held between the two spherical ring grooves 23; finally, the first and second lead wheels 21 and 22 are driven to rotate by the driving motor 71, the first gear 72 and the second gear 73, and the steel wire core wire 300 is threaded into the conduit 100.
At the same time, the oil in the oil tank 83 is pumped by the oil pump 82 and supplied to the oil storage tank 24; then, the oil is supplied into the spherical ring groove 23 through the oil delivery passage 241; in threading, the contaminated oil is introduced into the conduit 100 from the steel wire core 300, so that the oiling operation on the steel wire core 300 is realized.
After the steel wire core wire 300 is inserted into the conduit 100, the first lead wheel 21 and the second lead wheel 22 rotate continuously to drive the steel wire core wire 300 and the core wire terminal 400, and pull the positioning plate 5 to abut against the travel switch 9 and turn off the driving motor 71 in time, at this moment, the position between the steel wire core wire 300 and the conduit 100 is relatively correct.
Thirdly, heart yearn terminal 400 installation, the staff can penetrate heart yearn terminal 400 with the one end that steel wire heart yearn 300 deviates from threading mechanism 2 to by pneumatic press 31 punching press heart yearn terminal 400, and make heart yearn terminal 400 plastic deformation, thereby realize the fixed operation of installation between heart yearn terminal 400 and the steel wire heart yearn 300.
The above description is only a preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiments, and all technical solutions belonging to the idea of the present invention belong to the protection scope of the present invention. It should be noted that modifications and embellishments within the scope of the invention may occur to those skilled in the art without departing from the principle of the invention, and are considered to be within the scope of the invention.

Claims (10)

1. The utility model provides an rigging equipment acts as go-between, includes frame (1) and sets up threading mechanism (2) of frame (1) one side, frame (1) is provided with installation mechanism (3) that are used for installing heart yearn terminal (400) to steel wire heart yearn (300) in the one side of keeping away from threading mechanism (2), a serial communication port, be provided with between threading mechanism (2) and heart yearn terminal (400) installation mechanism (3) and be used for positioning mechanism (4) to spool (100) and installation sleeve pipe (200), frame (1) is provided with locating plate (5) in one side that deviates from heart yearn terminal (400) installation mechanism (3) at threading mechanism (2), spacing groove (51) have been seted up on locating plate (5), spacing groove (51) allow steel wire heart yearn (300) to pass through and do not allow heart yearn terminal (.
2. The wire drawing assembling equipment as claimed in claim 1, wherein the positioning mechanism (4) comprises a first positioning frame (41) and a second positioning frame (42), positioning grooves (43) used for embedding the installation sleeve (200) are formed in the first positioning frame (41) and the second positioning frame (42), the first positioning frame (41) and the second positioning frame (42) are located between the wire drawing mechanism (2) and the installation mechanism (3), and the first positioning frame (41) and the second positioning frame (42) are located on one side, close to the wire drawing mechanism (2), of the rack (1) and one side, close to the installation mechanism (3) of the rack (1) respectively.
3. A wire pulling assembly device as defined in claim 2, wherein the second positioning frame (42) is located at one side of the frame (1) close to the mounting mechanism (3), and a sliding table (113) is provided at one side of the frame (1) close to the mounting mechanism (3), the sliding direction of the sliding plate of the sliding table (113) is parallel to the connecting line between the two positioning grooves (43), and the second positioning frame (42) is fixed on the sliding plate of the sliding table (113).
4. A wire drawing assembling apparatus as claimed in claim 1, wherein said wire drawing mechanism (2) comprises a first wire wheel (21) and a second wire wheel (22) rotatably disposed between the positioning mechanism (4) and the positioning plate (5), said limiting groove (51) is disposed between the first wire wheel (21) and the second wire wheel (22), and said first wire wheel (21) and said second wire wheel (22) clamp the wire core (300) and supply it to the mounting sleeve (200) and the spool (100), and said frame (1) is provided with a driving assembly (7) for driving the first wire wheel (21) and the second wire wheel (22) to rotate and convey the wire core (300).
5. A wire pulling assembly device according to claim 4, wherein the driving assembly (7) comprises a driving motor (71), a first gear (72) and a second gear (73), the first gear (72) is coaxially fixed on the first wire leading wheel (21), the second gear (73) is coaxially fixed on the second wire leading wheel (22), the driving motor (71) is fixed on the machine frame (1), and the first gear (72) and the second gear (73) are meshed; the driving motor (71) is in transmission connection with the first lead wire wheel (21), and the driving motor (71) drives the first lead wire wheel (21) to rotate.
6. A wire pulling assembly device as claimed in claim 5, wherein the frame (1) is provided with a travel switch (9) at one side of the positioning plate (5), the positioning plate (5) is rotatably arranged on the frame (1), a contact wheel of the travel switch (9) is abutted against the positioning plate (5), and the travel switch (9) is electrically connected with the driving motor (71) and controls the driving motor (71) to be switched on and off.
7. The wire drawing assembly equipment according to claim 4, wherein spherical ring grooves (23) are formed on the side wall of the first lead wheel (21) and the side wall of the second lead wheel (22) around corresponding axes, and the spherical ring grooves (23) are aligned; when the wire tube (100) is penetrated by the steel wire core wire (300), the steel wire core wire (300) is held between the two spherical ring grooves (23).
8. A stay wire assembling device according to claim 4, wherein the frame (1) is slidably provided with a sliding frame (6) along the direction of a connecting line between the first lead wheel (21) and the second lead wheel (22), the second lead wheel (22) is rotatably erected on the sliding frame (6), and the frame (1) is further provided with a pushing piece for driving reciprocating sliding.
9. A wire drawing assembling device as claimed in claim 7, wherein oil storage grooves (24) are formed in the first wire leading wheel (21) and the second wire leading wheel (22), an oil delivery channel (241) is communicated between any oil storage groove (24) and the corresponding spherical ring groove (23), and a plurality of oil storage grooves (24) are formed in the first wire leading wheel (21) and the second wire leading wheel (22) around the corresponding axes; the two oil storage tanks (24) are also connected with an oil supply device (8).
10. A wire drawing assembling device according to claim 1, wherein said oil supplying means (8) comprises a rotary joint (81), an oil pump (82) and an oil tank (83), said rotary joint (81) is coaxially rotatably provided with one on both the first lead wheel (21) and the second lead wheel (22), and said rotary joint (81) is correspondingly communicated with two said oil storage tanks (24), two said rotary joints (81) are communicated with an oil outlet of the oil pump (82) through a pipeline, and said oil pump (82) pumps oil in the oil tank (83) through an oil pipe.
CN201911292522.2A 2019-12-12 2019-12-12 Stay wire assembly equipment Pending CN111085852A (en)

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Application Number Priority Date Filing Date Title
CN201911292522.2A CN111085852A (en) 2019-12-12 2019-12-12 Stay wire assembly equipment

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