CN214920939U - Pipe cutting machine conveying mechanism for wire harness production - Google Patents

Pipe cutting machine conveying mechanism for wire harness production Download PDF

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Publication number
CN214920939U
CN214920939U CN202121362136.9U CN202121362136U CN214920939U CN 214920939 U CN214920939 U CN 214920939U CN 202121362136 U CN202121362136 U CN 202121362136U CN 214920939 U CN214920939 U CN 214920939U
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China
Prior art keywords
synchronizing wheel
wheel
push rod
sides
cutting
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CN202121362136.9U
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Chinese (zh)
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张占元
赵森林
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Baoding Yiyuan Automobile Harness Manufacturing Co ltd
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Baoding Yiyuan Automobile Harness Manufacturing Co ltd
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Abstract

The utility model relates to a pipe cutting machine technical field specifically is a pipe cutting machine transport mechanism for pencil production, including mounting panel, conveying mechanism, fixture, power unit and cutting mechanism, conveying mechanism is including first synchronizing wheel, second synchronizing wheel, first synchronous belt, connecting rod, gear and compression roller. The utility model discloses a set up first synchronizing wheel and second synchronizing wheel, it rotates to drive first synchronizing wheel and second synchronizing wheel when third synchronizing wheel and fourth synchronizing wheel rotate, the first synchronizing wheel of both sides and the second synchronizing wheel of both sides are connected through first synchronous belt respectively, the inside bottom of the first synchronizing wheel of both sides and the inside top of both sides second synchronizing wheel all set up gear and compression roller, two first synchronous belts drive gear revolve respectively, thereby the compression roller that drives top and bottom removes the pipeline toward one side, thereby reach the effect of the conveying of being convenient for.

Description

Pipe cutting machine conveying mechanism for wire harness production
Technical Field
The utility model relates to a pipe cutting machine technical field specifically is a pipe cutting machine transport mechanism for pencil production.
Background
The wire harness is required to be cut by the pipeline in the production process of the wire harness to form small sections with required lengths, the pipe cutting machine is required to be used for cutting the wire harness, manual feeding is required when the pipe cutting machine is used, the length of pipe cutting is required to be manually measured, and therefore the cutting standards of the pipeline are not uniform.
In conclusion, a conveying mechanism convenient for loading needs to be designed, so that the cutting length standard can be ensured to be uniform while the loading is facilitated.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a pipe cutting machine transport mechanism for pencil production to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme:
a pipe cutting machine conveying mechanism for harness production comprises a mounting plate, a conveying mechanism, a clamping mechanism, a power mechanism and a cutting mechanism, wherein the conveying mechanism comprises a first synchronizing wheel, a second synchronizing wheel, a first synchronizing belt, a connecting rod, a gear and a pressing roller, and the clamping mechanism comprises a first push rod motor, a connecting plate, a first sliding groove, a sliding block, a base, a second push rod motor and a clamping jaw;
through the scheme, by arranging the conveying mechanism and the clamping mechanism, when in use, one end of the pipeline is placed between the two press rollers, then the pipeline penetrates through the two supporting seats and then penetrates through the position of the material discharging box, at the moment, the second transmission motor operates, the second transmission motor drives the third synchronous wheel to rotate by driving the third synchronous wheel, the third synchronous wheel drives the fourth synchronous wheel to rotate by the second synchronous belt, the third synchronous wheel and the fourth synchronous wheel drive the first synchronous wheel and the second synchronous wheel to rotate when rotating, the first synchronous wheels at two sides and the second synchronous wheels at two sides are respectively connected by the first synchronous belts, gears and press rollers are respectively arranged at the inner bottom end of the first synchronous wheels at two sides and the inner top end of the second synchronous wheels at two sides, the two first synchronous belts drive the gears to rotate respectively, so as to drive the press rollers at the top and the bottom to move the pipeline to one side, and simultaneously the first push rod motor drives the sliding block to move by the connecting plate, then, the second push rod motor is operated to clamp the tube head through the clamping jaws at the top and the bottom, after the cutting wheel is cut, the clamping jaws can clamp one end again to move towards the position of the cutting wheel, and the clamping jaws are used for positioning and clamping, so that the uniformity of each cutting length can be guaranteed.
Preferably, a first synchronizing wheel and a second synchronizing wheel are fixedly installed at two ends of one side of the installation plate, a connecting rod is arranged between the first synchronizing wheel and the second synchronizing wheel at the two ends, a gear and a press roller are fixedly installed at the output end of the connecting rod, and first synchronizing belts are arranged on the first synchronizing wheel and the second synchronizing wheel at the two sides;
through the scheme, the first synchronizing wheel and the second synchronizing wheel are arranged, the third synchronizing wheel and the fourth synchronizing wheel are driven to rotate when rotating, the first synchronizing wheels on two sides and the second synchronizing wheels on two sides are connected through the first synchronizing belts respectively, gears and compression rollers are arranged at the bottom end inside the first synchronizing wheels on two sides and the top end inside the second synchronizing wheels on two sides, the two first synchronizing belts drive the gears to rotate respectively, so that the compression rollers on the top and the bottom are driven to move a pipeline to one side, and the effect of facilitating conveying is achieved;
preferably, a first push rod motor is fixedly installed on one side, away from the compression roller, of the installation plate, first sliding grooves are formed in the two sides of the middle of the installation plate, sliding blocks are movably connected inside the first sliding grooves on the two sides, a connecting plate is arranged between the sliding blocks on the two sides, an output shaft of the first push rod motor is fixedly connected with the connecting plate, one sides, away from the connecting plate, of the sliding blocks on the two sides are fixedly connected with a base, a second push rod motor is fixedly installed on the outer portions of the bases on the two sides, and a clamping jaw is fixedly installed on an output shaft of the second push rod motor on the two sides;
through the scheme, the tube head is clamped by the clamping jaws at the top and the bottom by arranging the second push rod motor and operating the second push rod motor, and after the cutting wheel is cut, one end of the clamping jaw can be clamped again by the clamping jaw to move to the position of the cutting wheel, so that the purpose of facilitating clamping is achieved;
preferably, the power mechanism comprises a support, a second transmission motor, a third synchronizing wheel, a fourth synchronizing wheel and a second synchronizing belt, the third synchronizing wheel and the fourth synchronizing wheel are arranged on one side, away from the first synchronizing wheel and the second synchronizing wheel, of the mounting plate, the first synchronizing wheel and the third synchronizing wheel are fixedly connected, the second synchronizing wheel and the fourth synchronizing wheel are fixedly connected, the support is fixedly mounted on the mounting plate, close to the top of the third synchronizing wheel, of the mounting plate, the second transmission motor is fixedly mounted on the outer portion of the support, and the second synchronizing belt is arranged between the third synchronizing wheel and the fourth synchronizing wheel;
through the scheme, by arranging the power mechanism, when the transmission mechanism is used, the second transmission motor drives the third synchronous wheel to rotate, the third synchronous wheel drives the fourth synchronous wheel to rotate through the second synchronous belt, and the third synchronous wheel and the fourth synchronous wheel drive the first synchronous wheel and the second synchronous wheel to rotate when rotating, so that the transmission purpose is facilitated;
preferably, the cutting mechanism comprises a second chute, a sliding table, a first transmission motor, a second shaft seat, a third push rod motor, a first shaft seat, a cutting wheel and a cutting groove, the second chute is formed in one side, away from the first push rod motor, of the mounting plate, the third push rod motor is fixedly mounted on one side outside the second chute, the first shaft seat is fixedly mounted on one side, away from the third push rod motor, of the second chute, the output shaft end of the third push rod motor is movably connected with the first shaft seat, the output shaft of the third push rod motor is movably connected with the sliding table, the first transmission motor is fixedly mounted on the outside of the sliding table, the output shaft of the first transmission motor is movably connected with the cutting wheel through the second shaft seat, and the cutting groove is formed in one side, located on the cutting wheel, of the mounting plate;
through the scheme, by arranging the third push rod motor, when cutting is needed, the first transmission motor is operated firstly, the first transmission motor drives the cutting wheel to rotate, the second chute is operated at the moment, the second chute drives the first transmission motor arranged outside the sliding table to synchronously move, and the rotating cutting wheel is moved to one side to cut a pipeline, so that the aim of facilitating cutting is fulfilled;
preferably, a material discharging box is fixedly arranged on one side, close to the cutting wheel and the cutting groove, of the mounting plate;
according to the scheme, the material discharging box is arranged outside the cutting wheel, so that the cutting wheel can be covered, and the cutting material is prevented from splashing when the cutting wheel is used;
preferably, the mounting plate is fixedly provided with supporting seats at two sides of the middle part of the first sliding chute;
through the scheme, the supporting seats are arranged at the two ends of the mounting plate, so that the two ends of the pipeline can be supported, and the pipeline is prevented from being bent;
preferably, the supporting seat and the discharging box are positioned on the same horizontal line;
through above-mentioned scheme, through setting up supporting seat and play magazine, with the pipeline of connecting between the supporting seat, input business turn over magazine to reach the purpose of direction.
Compared with the prior art, the beneficial effects of the utility model are that:
1. this a pipe cutting machine transport mechanism for pencil production, through setting up first synchronizing wheel and second synchronizing wheel, it rotates to drive first synchronizing wheel and second synchronizing wheel when third synchronizing wheel and fourth synchronizing wheel rotate, the first synchronizing wheel of both sides and the second synchronizing wheel of both sides are connected through first synchronous area respectively, the inside bottom of the first synchronizing wheel of both sides and the inside top of both sides second synchronizing wheel all set up gear and compression roller, two first synchronous areas drive gear revolve respectively, thereby the compression roller that drives top and bottom removes the pipeline toward one side, thereby reach the effect of the conveying of being convenient for.
2. This a pipe cutting machine transport mechanism for pencil production, through setting up second push rod motor, operation second push rod motor passes through the clamping jaw of top and bottom with the tube head centre gripping, and the cutting wheel cuts the completion back, and the clamping jaw can centre gripping one end once more and move toward the position of cutting wheel to reach the purpose of the centre gripping of being convenient for.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is a schematic view of the first push rod motor mounting structure of the present invention;
FIG. 3 is an enlarged schematic view of the present invention at A in FIG. 1;
FIG. 4 is an enlarged schematic view of the present invention at B of FIG. 1;
fig. 5 is an enlarged schematic view of fig. 2 at C according to the present invention;
fig. 6 is an enlarged schematic view of the present invention at D in fig. 2.
In the figure: 1. mounting a plate; 2. a conveying mechanism; 3. a clamping mechanism; 4. a power mechanism; 5. a cutting mechanism; 6. a first synchronizing wheel; 7. a second synchronizing wheel; 8. a first synchronization belt; 9. a connecting rod; 10. a gear; 11. a compression roller; 12. a first push rod motor; 13. a connecting plate; 14. a first chute; 15. a slider; 16. a base; 17. a second push rod motor; 18. a clamping jaw; 19. a support; 20. a second drive motor; 21. a third synchronizing wheel; 22. a fourth synchronizing wheel; 23. a second synchronous belt; 24. a second chute; 25. a sliding table; 26. a first drive motor; 27. a second shaft base; 28. a third push rod motor; 29. a first shaft seat; 30. a cutting wheel; 31. cutting the groove; 32. discharging the material box; 33. and (4) supporting the base.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the description of the present invention, it is to be understood that the terms "top", "bottom", "inner", "outer", and the like refer to orientations or positional relationships based on those shown in the drawings, and are used only for convenience of description and simplicity of description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus should not be construed as limiting the present invention.
In the description of this patent, it is noted that unless otherwise specifically stated or limited, the terms "mounted," "connected," and "disposed" are to be construed broadly and can include, for example, fixedly connected, disposed, detachably connected, disposed, or integrally connected and disposed. The specific meaning of the above terms in this patent may be understood by those of ordinary skill in the art as appropriate.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless specifically limited otherwise.
Referring to fig. 1-6, the present invention provides a technical solution:
a pipe cutting machine conveying mechanism for harness production comprises a mounting plate 1, a conveying mechanism 2, a clamping mechanism 3, a power mechanism 4 and a cutting mechanism 5, wherein the conveying mechanism 2 comprises a first synchronizing wheel 6, a second synchronizing wheel 7, a first synchronizing belt 8, a connecting rod 9, a gear 10 and a pressing roller 11, and the clamping mechanism 3 comprises a first push rod motor 12, a connecting plate 13, a first sliding groove 14, a sliding block 15, a base 16, a second push rod motor 17 and a clamping jaw 18;
through the scheme, by arranging the conveying mechanism 2 and the clamping mechanism 3, when in use, one end of the pipeline is placed between the two press rollers 11, then the pipeline penetrates through the two supporting seats 33 and then the discharging box 32, at the moment, the second transmission motor 20 is operated, the second transmission motor 20 drives the third synchronizing wheel 21 to rotate by driving the third synchronizing wheel 21, the third synchronizing wheel 21 drives the fourth synchronizing wheel 22 to rotate by the second synchronous belt 23, the third synchronizing wheel 21 and the fourth synchronizing wheel 22 drive the first synchronizing wheel 6 and the second synchronizing wheel 7 to rotate when rotating, the first synchronizing wheels 6 at two sides and the second synchronizing wheels 7 at two sides are respectively connected by the first synchronous belt 8, the gear 10 and the press roller 11 are respectively arranged at the bottom end inside the first synchronizing wheels 6 at two sides and the top end inside the second synchronizing wheels 7 at two sides, the two first synchronous belts 8 respectively drive the gear 10 to rotate, so as to drive the press rollers 11 at the top and the bottom to move towards one side of the pipeline, meanwhile, the first push rod motor 12 drives the sliding block 15 to move through the connecting plate 13, then the second push rod motor 17 is operated to clamp the tube head through the clamping jaws 18 at the top and the bottom, after the cutting wheel 30 is cut, the clamping jaws 18 can clamp one end again to move towards the position of the cutting wheel 30, and the clamping jaws 18 are used for positioning and clamping, so that the uniformity of each cutting length can be guaranteed.
In this embodiment, preferably, both ends of one side of the mounting plate 1 are fixedly provided with a first synchronizing wheel 6 and a second synchronizing wheel 7, a connecting rod 9 is arranged between the first synchronizing wheel 6 and the second synchronizing wheel 7 at both ends, an output end of the connecting rod 9 is fixedly provided with a gear 10 and a press roller 11, and the first synchronizing wheel 6 and the second synchronizing wheel 7 at both sides are provided with a first synchronizing belt 8;
through the scheme, the first synchronizing wheel 6 and the second synchronizing wheel 7 are arranged, the third synchronizing wheel 21 and the fourth synchronizing wheel 22 drive the first synchronizing wheel 6 and the second synchronizing wheel 7 to rotate when rotating, the first synchronizing wheels 6 on two sides and the second synchronizing wheels 7 on two sides are respectively connected through the first synchronous belt 8, the gear 10 and the compression roller 11 are respectively arranged at the bottom end inside the first synchronizing wheels 6 on two sides and the top end inside the second synchronizing wheels 7 on two sides, the two first synchronous belts 8 respectively drive the gear 10 to rotate, so that the compression rollers 11 on the top and the bottom are driven to move a pipeline to one side, and the effect of facilitating conveying is achieved;
in this embodiment, preferably, a first push rod motor 12 is fixedly installed on one side of the mounting plate 1 away from the press roller 11, first sliding grooves 14 are formed in both sides of the middle of the mounting plate 1, sliding blocks 15 are movably connected inside the first sliding grooves 14 on both sides, a connecting plate 13 is arranged between the sliding blocks 15 on both sides, an output shaft of the first push rod motor 12 is fixedly connected with the connecting plate 13, bases 16 are fixedly connected to one sides of the sliding blocks 15 on both sides away from the connecting plate 13, second push rod motors 17 are fixedly installed on the outsides of the bases 16 on both sides, and clamping jaws 18 are fixedly installed on output shafts of the second push rod motors 17 on both sides;
through the scheme, the tube head is clamped by the clamping jaws 18 at the top and the bottom by arranging the second push rod motor 17 and operating the second push rod motor 17, and after the cutting wheel 30 finishes cutting, one end of the clamping jaw 18 can be clamped again to move to the position of the cutting wheel 30, so that the purpose of facilitating clamping is achieved;
in this embodiment, preferably, the power mechanism 4 includes a support 19, a second transmission motor 20, a third synchronizing wheel 21, a fourth synchronizing wheel 22 and a second synchronizing belt 23, the third synchronizing wheel 21 and the fourth synchronizing wheel 22 are disposed on one side of the mounting plate 1 away from the first synchronizing wheel 6 and the second synchronizing wheel 7, the first synchronizing wheel 6 and the third synchronizing wheel 21 are fixedly connected, the second synchronizing wheel 7 and the fourth synchronizing wheel 22 are fixedly connected, the support 19 is fixedly mounted on the top of the mounting plate 1 close to the third synchronizing wheel 21, the second transmission motor 20 is fixedly mounted on the outside of the support 19, and the second synchronizing belt 23 is disposed between the third synchronizing wheel 21 and the fourth synchronizing wheel 22;
through the scheme, by arranging the power mechanism 4, when the transmission mechanism is used, the second transmission motor 20 drives the third synchronous wheel 21 to rotate, the third synchronous wheel 21 drives the fourth synchronous wheel 22 to rotate through the second synchronous belt 23, and the third synchronous wheel 21 and the fourth synchronous wheel 22 drive the first synchronous wheel 6 and the second synchronous wheel 7 to rotate when rotating, so that the transmission is facilitated;
in this embodiment, preferably, the cutting mechanism 5 includes a second chute 24, a sliding table 25, a first transmission motor 26, a second shaft seat 27, a third push rod motor 28, a first shaft seat 29, a cutting wheel 30 and a cutting groove 31, the second chute 24 is formed on one side of the mounting plate 1 away from the first push rod motor 12, the third push rod motor 28 is fixedly mounted on one side of the outside of the second chute 24, the first shaft seat 29 is fixedly mounted on one side of the second chute 24 away from the third push rod motor 28, an output shaft end of the third push rod motor 28 is movably connected to the first shaft seat 29, an output shaft of the third push rod motor 28 is movably connected to the sliding table 25, the first transmission motor 26 is fixedly mounted on the outside of the sliding table 25, an output shaft of the first transmission motor 26 is movably connected to the cutting wheel 30 through the second shaft seat 27, and the cutting groove 31 is formed on one side of the mounting plate 1 located at the cutting wheel 30;
through the scheme, by arranging the third push rod motor 28, when cutting is needed, the first transmission motor 26 is firstly operated, the first transmission motor 26 is used for electrically driving the cutting wheel 30 to rotate, at the moment, the second chute 24 is operated, the second chute 24 drives the first transmission motor 26 arranged outside the sliding table 25 to synchronously move, and the rotating cutting wheel 30 is moved to one side to cut a pipeline, so that the purpose of facilitating cutting is achieved;
in this embodiment, preferably, the material discharging box 32 is fixedly installed on one side of the mounting plate 1 close to the cutting wheel 30 and the cutting groove 31;
by the scheme, the material discharging box 32 is arranged, and the material discharging box 32 is arranged outside the cutting wheel 30, so that the cutting wheel 30 can be covered, and the cutting materials are prevented from splashing when the cutting wheel is used;
in this embodiment, preferably, the support seats 33 are fixedly installed on both sides of the middle portion of the mounting plate 1 located in the first chute 14;
through the scheme, the supporting seats 33 are arranged, and the supporting seats 33 are arranged at the two ends of the mounting plate 1, so that the two ends of the pipeline can be supported, and the pipeline is prevented from being bent;
in this embodiment, preferably, the supporting seat 33 and the discharging box 32 are located on the same horizontal line;
through the scheme, the supporting seat 33 and the material outlet box 32 are arranged, and a pipeline connected between the supporting seat 33 is input into the material outlet box 32, so that the guiding purpose is achieved.
When the pipe cutting machine conveying mechanism for producing the wire harnesses is used, the conveying mechanism 2 and the clamping mechanism 3 are arranged, one end of a pipeline is placed between the two press rollers 11, then the pipeline penetrates through the two supporting seats 33 and then penetrates through the position of the discharging box 32, the second transmission motor 20 is operated, the second transmission motor 20 drives the third synchronous wheel 21 to rotate, the third synchronous wheel 21 drives the fourth synchronous wheel 22 to rotate through the second synchronous belt 23, the third synchronous wheel 21 and the fourth synchronous wheel 22 drive the first synchronous wheel 6 and the second synchronous wheel 7 to rotate when rotating, the first synchronous wheels 6 on two sides and the second synchronous wheels 7 on two sides are respectively connected through the first synchronous belt 8, the gear 10 and the press roller 11 are arranged at the bottom end inside the first synchronous wheels 6 on two sides and the top end inside the second synchronous wheels 7 on two sides, the two first synchronous belts 8 respectively drive the gear 10 to rotate, thereby drive the compression roller 11 of top and bottom and move the pipeline toward one side, first push rod motor 12 drives slider 15 through connecting plate 13 and removes simultaneously, and operation second push rod motor 17 is through the clamping jaw 18 of top and bottom with the tube head centre gripping, and the cutting wheel 30 cutting is accomplished the back, and clamping jaw 18 can be once more the centre gripping one end and move toward the position of cutting wheel 30, through clamping jaw 18 location centre gripping, can guarantee that every cutting length is unified.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It should be understood by those skilled in the art that the present invention is not limited by the above embodiments, and the description in the above embodiments and the description is only preferred examples of the present invention, and is not intended to limit the present invention, and that the present invention can have various changes and modifications without departing from the spirit and scope of the present invention, and these changes and modifications all fall into the scope of the claimed invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (8)

1. The utility model provides a pipe cutting machine transport mechanism for pencil production, includes mounting panel (1), conveying mechanism (2), fixture (3), power unit (4) and cutting mechanism (5), its characterized in that: conveying mechanism (2) is including first synchronizing wheel (6), second synchronizing wheel (7), first synchronous belt (8), connecting rod (9), gear (10) and compression roller (11), fixture (3) are including first push rod motor (12), connecting plate (13), first spout (14), slider (15), base (16), second push rod motor (17) and clamping jaw (18).
2. The pipe cutter transport mechanism for strand production of claim 1, wherein: the automatic roller press is characterized in that a first synchronizing wheel (6) and a second synchronizing wheel (7) are fixedly mounted at two ends of one side of the mounting plate (1), connecting rods (9) are arranged between the first synchronizing wheel (6) and the second synchronizing wheel (7), gears (10) and press rollers (11) are fixedly mounted at the output ends of the connecting rods (9), two sides of the first synchronizing wheel (6) and the second synchronizing wheel (7) are provided with a first synchronous belt (8).
3. The pipe cutter transport mechanism for strand production of claim 1, wherein: the utility model discloses a press roller bearing, including mounting panel (1), the first push rod motor of one side fixed mounting (12) of compression roller (11) are kept away from in mounting panel (1), first spout (14), both sides are all seted up to the middle part both sides of mounting panel (1) the equal swing joint slider (15) in inside of first spout (14), both sides set up connecting plate (13) between slider (15), fixed connection, both sides between the output shaft of first push rod motor (12) and connecting plate (13) the equal fixed connection base (16) in one side of connecting plate (13) are kept away from in slider (15), both sides the equal fixed mounting second push rod motor (17) in outside of base (16), both sides the output shaft fixed mounting clamping jaw (18) of second push rod motor (17).
4. The pipe cutter transport mechanism for strand production of claim 1, wherein: power unit (4) are including support (19), second drive motor (20), third synchronizing wheel (21), fourth synchronizing wheel (22) and second hold-in range (23), one side that first synchronizing wheel (6) and second synchronizing wheel (7) were kept away from in mounting panel (1) sets up third synchronizing wheel (21) and fourth synchronizing wheel (22), fixed connection between first synchronizing wheel (6) and third synchronizing wheel (21), fixed connection between second synchronizing wheel (7) and the fourth synchronizing wheel (22), mounting panel (1) is close to top fixed mounting support (19) of third synchronizing wheel (21), outside fixed mounting second drive motor (20) of support (19), set up second hold-in range (23) between third synchronizing wheel (21) and fourth synchronizing wheel (22).
5. The pipe cutter transport mechanism for strand production of claim 1, wherein: the cutting mechanism (5) comprises a second sliding groove (24), a sliding table (25), a first transmission motor (26), a second shaft seat (27), a third push rod motor (28), a first shaft seat (29), a cutting wheel (30) and a cutting groove (31), the second sliding groove (24) is formed in one side, far away from the first push rod motor (12), of the mounting plate (1), the third push rod motor (28) is fixedly installed on one side of the outer portion of the second sliding groove (24), the first shaft seat (29) is fixedly installed on one side, far away from the third push rod motor (28) through the second sliding groove (24), the output shaft end of the third push rod motor (28) is movably connected with the first shaft seat (29), the output shaft of the third push rod motor (28) is movably connected with the sliding table (25), the first transmission motor (26) is fixedly installed on the outer portion of the sliding table (25), the output shaft of the first transmission motor (26) is movably connected with the cutting wheel (30) through the second shaft seat (27), and a cutting groove (31) is formed in one side, located on the cutting wheel (30), of the mounting plate (1).
6. The pipe cutter transport mechanism for strand production of claim 1, wherein: one side of the mounting plate (1) close to the cutting wheel (30) and the cutting groove (31) is fixedly provided with a discharging box (32).
7. The pipe cutter transport mechanism for strand production of claim 1, wherein: the mounting panel (1) is located equal fixed mounting in middle part both sides of first spout (14) and has supporting seat (33).
8. The pipe cutter transport mechanism for strand production of claim 7, wherein: the supporting seat (33) and the material outlet box (32) are positioned on the same horizontal line.
CN202121362136.9U 2021-06-18 2021-06-18 Pipe cutting machine conveying mechanism for wire harness production Active CN214920939U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121362136.9U CN214920939U (en) 2021-06-18 2021-06-18 Pipe cutting machine conveying mechanism for wire harness production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121362136.9U CN214920939U (en) 2021-06-18 2021-06-18 Pipe cutting machine conveying mechanism for wire harness production

Publications (1)

Publication Number Publication Date
CN214920939U true CN214920939U (en) 2021-11-30

Family

ID=79048567

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121362136.9U Active CN214920939U (en) 2021-06-18 2021-06-18 Pipe cutting machine conveying mechanism for wire harness production

Country Status (1)

Country Link
CN (1) CN214920939U (en)

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: A cutting machine conveyor mechanism for wire harness production

Granted publication date: 20211130

Pledgee: Hebei Xiong'an Branch of China Everbright Bank Co.,Ltd.

Pledgor: Baoding Yiyuan automobile harness manufacturing Co.,Ltd.

Registration number: Y2025980015601