A kind of ink-jet equipment for improving wire code quality
By combining the guiding component and the compaction conveying component, the problems of shaking and loosening during the FFC wire coding process are solved, achieving efficient and accurate coding and stable winding, improving coding quality and reducing scrap rate.
Patent Information
- Application Number
- CN202310185690.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-01
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2043-03-01
AI Technical Summary
Existing inkjet printers for FFC wires lack a clamping device, causing the wires to easily shake and loosen during the inkjet printing process, resulting in misaligned and uneven printing, reduced printing quality, and increased scrap rate.
The system employs a guide assembly, a pressing and conveying assembly, a coding assembly, a pull-out tensioning assembly, and a winding assembly. Through the combination of guide rollers and pressure rollers, it achieves directional guidance, pressing and conveying, and coding of the wire, ensuring the accuracy and uniformity of the coding. Furthermore, the coordination of the pull-out tensioning assembly and the winding assembly ensures the stability of the wire winding after coding.
It improves the quality of FFC wire marking, reduces the scrap rate, and ensures the continuity and integrity of the marking process.
Smart Images

Figure CN117533017B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of wire spraying code, and specifically relates to a spraying code equipment for improving wire spraying code quality. BACKGROUND
[0002] The FFC wire is a soft and flat wire and can be flexibly applied to the fields of notebook computers, flat panel televisions and printers, and the biggest feature of the wire is that the wire can be arbitrarily bent to replace the traditional electronic wire harness. The FFC wire is usually made of two layers of adhesive insulating films and a layer of metal conductor in the middle, and the metal conductor is exposed at both ends of the product through a reinforcing material to facilitate the connection of the wire. After the FFC wire is produced and formed, a specified code is usually sprayed on the outside of the wire to clearly and distinctly distinguish the FFC wire.
[0003] The existing spraying code device for the FFC wire does not usually set a pressing device corresponding to the wire during the spraying code process of the wire, so that the wire is prone to code misplacement and uneven code spraying due to the shaking and loosening of the wire during the spraying code work, thereby reducing the quality of the spraying code and increasing the scrap rate of the wire spraying code. Therefore, the technical personnel in the field provide a spraying code equipment for improving the quality of wire spraying code to solve the problems in the above background. SUMMARY
[0004] The present application aims to provide a spraying code equipment for improving the quality of wire spraying code to solve the problems in the above background.
[0005] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a spraying code equipment for improving the quality of wire spraying code, comprising a support box frame, a guide assembly, a pressing conveying assembly, a spraying code assembly, a pulling and tensioning assembly and a winding assembly.
[0006] The pressing conveying assembly is arranged at the upper middle part of the box body of the support box frame;
[0007] The guide assembly is arranged at the feeding end of the pressing conveying assembly on the upper side of the box body of the support box frame, and the pulling and tensioning assembly is arranged at the discharging end of the pressing conveying assembly on the upper side of the box body of the support box frame;
[0008] The spraying code assembly is arranged along the conveying end of the pressing conveying assembly on the upper side of the box body of the support box frame;
[0009] The winding assembly is arranged at the discharging end of the pulling and tensioning assembly on the upper side of the box body of the support box frame.
[0010] As a further further scheme of the present application: the guide assembly comprises a guide stand, the lower half of the support of the guide stand is rotationally connected with a guide roller, and the upper half of the support of the guide stand is symmetrically provided with a guide sliding groove, the guide stand is guided and clamped with the lifting sliding seat through the guide sliding groove, the support end of the lifting sliding seat is rotationally connected with a flat pressing roller, and one end of the flat pressing roller is provided with a pressing handle which is in pressure with the support of the guide stand.
[0011] As a further further scheme of the present application: the guide assembly comprises a guide stand, the lower half of the support of the guide stand is rotationally connected with a guide roller, and the upper half of the support of the guide stand is symmetrically provided with a guide sliding groove, the guide stand is guided and clamped with the lifting sliding seat through the guide sliding groove, the support end of the lifting sliding seat is rotationally connected with a flat pressing roller, and one end of the flat pressing roller is provided with a pressing handle which is in pressure with the support of the guide stand.
[0012] As a further further scheme of the present application: the guide assembly comprises a guide stand, the lower half of the support of the guide stand is rotationally connected with a guide roller, and the upper half of the support of the guide stand is symmetrically provided with a guide sliding groove, the guide stand is guided and clamped with the lifting sliding seat through the guide sliding groove, the support end of the lifting sliding seat is rotationally connected with a flat pressing roller, and one end of the flat pressing roller is provided with a pressing handle which is in pressure with the support of the guide stand.
[0013] As a further further scheme of the present application: the guide assembly comprises a guide stand, the lower half of the support of the guide stand is rotationally connected with a guide roller, and the upper half of the support of the guide stand is symmetrically provided with a guide sliding groove, the guide stand is guided and clamped with the lifting sliding seat through the guide sliding groove, the support end of the lifting sliding seat is rotationally connected with a flat pressing roller, and one end of the flat pressing roller is provided with a pressing handle which is in pressure with the support of the guide stand.
[0014] As a further further scheme of the present application: the guide assembly comprises a guide stand, the lower half of the support of the guide stand is rotationally connected with a guide roller, and the upper half of the support of the guide stand is symmetrically provided with a guide sliding groove, the guide stand is guided and clamped with the lifting sliding seat through the guide sliding groove, the support end of the lifting sliding seat is rotationally connected with a flat pressing roller, and one end of the flat pressing roller is provided with a pressing handle which is in pressure with the support of the guide stand.
[0015] As a further further scheme of the present application: the guide assembly comprises a guide stand, the lower half of the support of the guide stand is rotationally connected with a guide roller, and the upper half of the support of the guide stand is symmetrically provided with a guide sliding groove, the guide stand is guided and clamped with the lifting sliding seat through the guide sliding groove, the support end of the lifting sliding seat is rotationally connected with a flat pressing roller, and one end of the flat pressing roller is provided with a pressing handle which is in pressure with the support of the guide stand.
[0016] As a further further scheme of the present application: the guide assembly comprises a guide stand, the lower half of the support of the guide stand is rotationally connected with a guide roller, and the upper half of the support of the guide stand is symmetrically provided with a guide sliding groove, the guide stand is guided and clamped with the lifting sliding seat through the guide sliding groove, the support end of the lifting sliding seat is rotationally connected with a flat pressing roller, and one end of the flat pressing roller is provided with a pressing handle which is in pressure with the support of the guide stand.
[0017] As a further further scheme of the present application, the winding assembly comprises an assembling support, a winding motor is installed on one side of the assembling support, and a winding drum is installed on the other side of the assembling support and is engaged with the output end of the winding motor.
[0018] Compared with the prior art, the present application has the following beneficial effects:
[0019] The FFC wire is guided by the guiding assembly, and the code spraying assembly can keep high-efficiency and accurate code spraying state under the positioning of the two sets of pressing structures in the pressing conveying assembly, so that the FFC wire is uniformly and accurately code sprayed, the code spraying quality is improved, and the scrap rate is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a structure diagram of a code spraying equipment for improving the code spraying quality of the FFC wire.
[0021] Figure 2 It is a structure diagram of a guiding assembly in a code spraying equipment for improving the code spraying quality of the FFC wire.
[0022] Figure 3 It is a structure diagram of a pressing conveying assembly in a code spraying equipment for improving the code spraying quality of the FFC wire.
[0023] Figure 4 It is a rear view of a pressing conveying assembly in a code spraying equipment for improving the code spraying quality of the FFC wire.
[0024] Figure 5 It is a structure diagram of a code spraying equipment for improving the code spraying quality of the FFC wire. Figure 3
[0025] Figure 6 It is a structure diagram of a second pressing structure in a code spraying equipment for improving the code spraying quality of the FFC wire. Figure 3
[0026] Figure 7 It is a structure diagram of a code spraying assembly in a code spraying equipment for improving the code spraying quality of the FFC wire.
[0027] Figure 8 It is a structure diagram of a code spraying equipment for improving the code spraying quality of the FFC wire.
[0028] Figure 9 It is a structure diagram of a winding assembly in a code spraying equipment for improving the code spraying quality of the FFC wire.
[0029] In the figure: 1, support box frame; 2, electric control box; 3, guide assembly; 31, guide stand; 32, guide roller; 33, flat pressing roller; 34, guide sliding groove; 35, lifting sliding seat; 36, downward pressing handle; 4, tight pressing conveying assembly; 41, track frame; 42, flat pulling roller; 43, traction roller; 44, first downward pressing structure; 441, first support frame; 442, first conveying roller; 443, first telescopic cylinder; 444, first downward pressing roller; 45, second downward pressing structure; 451, second support frame; 452, second conveying roller; 453, second telescopic cylinder; 454, second downward pressing roller; 46, transmission motor; 47, first belt pulley; 48, transmission belt; 49, second belt pulley; 5, code spraying assembly; 51, transverse track; 52, transverse drive motor; 53, transverse transmission screw; 54, transverse sliding table; 55, longitudinal track; 56, longitudinal drive motor; 57, longitudinal transmission screw; 58, longitudinal sliding table; 59, code spraying head; 6, pulling and tensioning assembly; 61, tensioning support frame; 62, tensioning conveying motor; 63, conveying roller; 64, tensioning cylinder; 65, tensioning roller; 7, winding assembly; 71, assembly support; 72, winding motor; 73, winding drum. DETAILED DESCRIPTION
[0030] Please refer to Figures 1-9 In the embodiment of the present application, a code spraying device for improving the code spraying quality of wire rod comprises a support box frame 1, a guide assembly 3, a tight pressing conveying assembly 4, a code spraying assembly 5, a pulling and tensioning assembly 6, and a winding assembly 7. The guide assembly 3 is arranged above the box body of the support box frame 1 and opposite to the feeding end of the tight pressing conveying assembly 4. The guide assembly 3 comprises a guide stand 31. The lower half of the support frame of the guide stand 31 is rotationally connected with a guide roller 32. The upper half of the support frame of the guide stand 31 is symmetrically provided with guide sliding grooves 34. The guide stand 31 is guided and clamped with the lifting sliding seat 35 through the guide sliding grooves 34. The support end of the lifting sliding seat 35 is rotationally connected with a flat pressing roller 33. One end of the flat pressing roller 33 is provided with a downward pressing handle 36 which is pressed against the support frame of the guide stand 31. When the code spraying mechanism is used to spray codes on the FFC wire rod, the staff can control the code spraying mechanism to run by operating the electric control box 2, so as to spray codes on the wire rod in an online manner. Then, the staff presses the downward pressing handle 36 downward. The guide assembly composed of the lifting sliding seat 35 and the guide sliding grooves 34 drives the flat pressing roller 33 to slightly displace upward, so that the opening of the flat pressing roller 33 and the guide roller 32 is widened. Then, the wire rod is pulled out from between the flat pressing roller 33 and the guide roller 32. After the wire rod is pulled out, the downward pressing handle 36 is released, so that the flat pressing roller 33 is pressed against the guide roller 32, thereby guiding and conveying the wire rod in a directional and stable manner.
[0031] The box body supporting the box frame 1 is provided with a pressing conveying assembly 4 above the middle position, the pressing conveying assembly 4 comprises a track frame 41, one end of the track of the track frame 41 is provided with a first pressing structure 44, the other end of the track of the track frame 41 is provided with a second pressing structure 45, the inner side of the track of the track frame 41 is symmetrically connected with a traction roller 43 at both ends, and the inner side of the track of the track frame 41 is connected with a flat roller 42 at the middle position, the roller output end of the first pressing structure 44 is provided with a first belt pulley 47, the roller output end of the second pressing structure 45 is provided with a second belt pulley 49, and the first belt pulley 47 and the second belt pulley 49 are connected through a transmission belt 48, in the process of using the code spraying mechanism to spray the FFC wire, the wire is pulled out from between the first pressing structure 44 and the second pressing structure 45, the combination of the traction roller 43 and the flat roller 42 is used to pull and convey the wire, the synchronous transmission motor 46 starts to work, drives the second belt pulley 49 to rotate, drives the first belt pulley 47 to rotate through the transfer transmission of the transmission belt 48, and then with the synchronous rotation of the first belt pulley 47 and the second belt pulley 49, the corresponding first conveying roller 442 and the second conveying roller 452 are kept synchronous rotation, the synchronous extension of the extension end of the first telescopic cylinder 443 and the second telescopic cylinder 453, in turn pushes the first pressing roller 444 and the second pressing roller 454 to move downward, and the two ends of the wire in the code spraying area are pressed and fixed on the first conveying roller 442 and the second conveying roller 452 to rotate, and the wire is directionally conveyed.
[0032] The first pressing structure 44 comprises a first support frame 441, the lower half of the support frame of the first support frame 441 is rotationally connected with a first conveying roller 442, and the upper half of the support frame of the first support frame 441 is fixedly connected with a first telescopic cylinder 443, the extension end of the first telescopic cylinder 443 is provided with a first pressing roller 444 above the first conveying roller 442, the second pressing structure 45 comprises a second support frame 451, the lower half of the support frame of the second support frame 451 is rotationally connected with a second conveying roller 452, and the upper half of the support frame of the second support frame 451 is fixedly connected with a second telescopic cylinder 453, the extension end of the second telescopic cylinder 453 is provided with a second pressing roller 454 above the second conveying roller 452, in the process of using the code spraying mechanism to spray the FFC wire, when the code spraying work is needed, the transmission motor 46 is paused, the first conveying roller 442 and the second conveying roller 452 are in a static state, the wire stops conveying, and then the code spraying head 59 sprays the cable.
[0033] A code spraying assembly 5 is arranged above the box body of the support box frame 1 and along the conveying end of the pressing conveying assembly 4, the code spraying assembly 5 comprises a transverse rail 51, a transverse transmission screw rod 53 is rotationally connected to the middle of the guide rail of the transverse rail 51, and the output end of the transverse rail 51 and the transverse transmission screw rod 53 is sleeved with a transverse sliding table 54, the top of the rack of the transverse sliding table 54 is provided with a longitudinal rail 55, the middle of the guide rail of the longitudinal rail 55 is rotationally connected with a longitudinal transmission screw rod 57, and the output end of the longitudinal rail 55 and the longitudinal transmission screw rod 57 is sleeved with a longitudinal sliding table 58, the front side of the rack of the longitudinal sliding table 58 is provided with a code spraying head 59, in the process of spraying the FFC wire with the code spraying mechanism, the matched transverse drive motor 52 works, drives the transverse transmission screw rod 53 to rotate, pushes the transverse sliding table 54 to slide horizontally on the transverse rail 51, makes the code spraying head 59 keep left and right displacement state, the synchronous matched longitudinal drive motor 56 works, drives the longitudinal transmission screw rod 57 to rotate, pushes the longitudinal sliding table 58 to slide forward and backward on the longitudinal rail 55, makes the code spraying head 59 keep forward and backward displacement state, then under the left and right, forward and backward displacement of the code spraying head 59, the fixed wire is sprayed.
[0034] A pulling and tensioning assembly 6 is arranged above the box body of the support box frame 1 and opposite to the discharging end of the pressing conveying assembly 4, the pulling and tensioning assembly 6 comprises a tensioning support frame 61, a conveying roller 63 is rotationally connected to the lower half of the support frame of the tensioning support frame 61, and a tensioning cylinder 64 is fixed to the upper half of the support frame of the tensioning support frame 61, the extension end of the tensioning cylinder 64 is provided with a tensioning roller 65 which is staggered with the conveying roller 63, in the process of spraying the FFC wire with the code spraying mechanism, the wire after being sprayed is pulled out from the tensioning roller 65 and the conveying roller 63, at the same time, the extension end of the tensioning cylinder 64 keeps appropriate extension, pushes the tensioning roller 65 to move downward appropriately, makes the wire in conveying keep appropriate tensioning, so as to ensure the stability of the wire winding.
[0035] A winding assembly 7 is arranged above the box body of the support box frame 1 and opposite to the discharging end of the pulling and tensioning assembly 6, the winding assembly 7 comprises an assembly support frame 71, a winding motor 72 is installed on one side of the support frame of the assembly support frame 71, and a winding drum 73 which is engaged with the output end of the winding motor 72 is installed on the other side of the support frame of the assembly support frame 71, in the process of spraying the FFC wire with the code spraying mechanism, the wire after being sprayed is wound on the winding drum 73, at the same time, the winding motor 72 works, drives the winding drum 73 to rotate, carries out integrated code spraying and winding work on the wire.
[0036] The working principle of the present application is that when the code spraying mechanism is used for code spraying on the FFC wire, the staff can control the code spraying mechanism to run by operating the electric control box 2, and the wire is pulled out from between the flat pressing roller 33 and the guide roller 32 for directional and stable guiding and conveying, and then the wire is pulled out from between the first lower pressing structure 44 and the second lower pressing structure 45, and the wire is pulled and conveyed by the combination of the traction roller 43 and the flat pulling roller 42, and the synchronous transmission motor 46 starts to work to drive the second pulley 49 to rotate, and through the transmission of the transmission belt 48, the first pulley 47 is driven to rotate, and then with the synchronous rotation of the first pulley 47 and the second pulley 49, the corresponding first conveying roller 442 and the second conveying roller 452 are kept synchronous rotation, and the wire is directionally conveyed by the pressing rotation of the first lower pressing roller 444 and the second lower pressing roller 454, and when code spraying is needed, the transmission motor 46 stops working, and the first conveying roller 442 and the second conveying roller 452 stop rotating to make the wire in a stationary state, and then the code spraying head 59 sprays code on the cable, and further in the process of code spraying on the FFC wire by the code spraying mechanism, the matched horizontal drive motor 52 works to drive the horizontal transmission screw 53 to rotate, and pushes the horizontal sliding table 54 to slide horizontally on the horizontal rail 51 to make the code spraying head 59 keep left and right displacement, and the matched longitudinal drive motor 56 works synchronously to drive the longitudinal transmission screw 57 to rotate, and pushes the longitudinal sliding table 58 to slide forward and backward on the longitudinal rail 55 to make the code spraying head 59 keep forward and backward displacement, and then the fixed wire is sprayed by the left and right and forward and backward displacement of the code spraying head 59, and then the sprayed wire is pulled out from between the tensioning roller 65 and the conveying roller 63, and at the same time, the extension end of the tensioning cylinder 64 keeps appropriate extension to push the tensioning roller 65 to move downward appropriately to make the conveying wire keep appropriate tensioning to ensure the stability of the wire winding, and then the sprayed wire is wound on the winding drum 73, and the synchronous winding motor 72 works to drive the winding drum 73 to rotate to integrally spray and wind the wire.
[0037] The above is only a preferred embodiment of the present application, but the protection scope of the present application is not limited thereto, and any skilled person in the art can make equivalent replacement or change according to the technical solution and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A code injection apparatus for improving code injection quality of a wire rod, characterized by, Including support box frame (1), guide assembly (3), tight conveying assembly (4), code spraying assembly (5), pull tensioning assembly (6), winding assembly (7); The upper part of the box body of the support box frame (1) is provided with the tight conveying assembly (4) at the middle position; The upper part of the box body of the support box frame (1) is provided with the guide assembly (3) opposite to the feeding end of the tight conveying assembly (4), and the upper part of the box body of the support box frame (1) is provided with the pull tensioning assembly (6) opposite to the discharging end of the tight conveying assembly (4); The upper part of the box body of the support box frame (1) is provided with the code spraying assembly (5) along the conveying end of the tight conveying assembly (4); The upper part of the box body of the support box frame (1) is provided with the winding assembly (7) opposite to the discharging end of the pull tensioning assembly (6); The tight conveying assembly (4) comprises a track frame (41), one end of the track of the track frame (41) is provided with a first pressing structure (44), the other end of the track of the track frame (41) is provided with a second pressing structure (45), the inner side of the track of the track frame (41) is symmetrically connected with a traction roller (43) at both ends, and the inner side of the track of the track frame (41) is connected with a flat roller (42) at the middle position. The first pressing structure (44) comprises a first support frame (441), the lower half of the support frame of the first support frame (441) is rotatably connected with a first conveying roller (442), and the upper half of the support frame of the first support frame (441) is fixedly connected with a first telescopic cylinder (443), and the telescopic end of the first telescopic cylinder (443) is provided with a first pressing roller (444) opposite to the upper part of the first conveying roller (442). The second pressing structure (45) comprises a second support frame (451), the lower half of the support frame of the second support frame (451) is rotatably connected with a second conveying roller (452), and the upper half of the support frame of the second support frame (451) is fixedly connected with a second telescopic cylinder (453), and the telescopic end of the second telescopic cylinder (453) is provided with a second pressing roller (454) opposite to the upper part of the second conveying roller (452). One end of the first conveying roller (442) is provided with a first belt pulley (47), one end of the second conveying roller (452) is provided with a second belt pulley (49), the first belt pulley (47) and the second belt pulley (49) are drivingly connected, the second belt pulley (49) is connected with a transmission motor (46), and the transmission motor (46) is used to stop working when the code spraying assembly (5) sprays code.
2. The ink-jet printing apparatus according to claim 1, wherein The guide assembly (3) comprises a guide stand (31), the lower half of the support frame of the guide stand (31) is rotatably connected with a guide roller (32), and the upper half of the support frame of the guide stand (31) is symmetrically provided with a guide sliding groove (34), the guide stand (31) is guided and clamped with a lifting sliding seat (35) through the guide sliding groove (34), the support end of the lifting sliding seat (35) is rotatably connected with a flat pressing roller (33), and one end of the flat pressing roller (33) is provided with a pressing handle (36) which is pressed with the support frame of the guide stand (31).
3. The ink-jet printing apparatus of claim 1, wherein the ink-jet printing apparatus further comprises a tensioner for applying tension to the wire rod. The ink-jet printing assembly (5) comprises a transverse track (51), the middle part of the guide rail of the transverse track (51) is rotationally connected with a transverse transmission screw rod (53), and the output end of the transverse track (51) and the transverse transmission screw rod (53) is sleeved with a transverse sliding table (54), the top of the frame of the transverse sliding table (54) is provided with a longitudinal track (55), the middle part of the guide rail of the longitudinal track (55) is rotationally connected with a longitudinal transmission screw rod (57), and the output end of the longitudinal track (55) and the longitudinal transmission screw rod (57) is sleeved with a longitudinal sliding table (58), and the front side of the frame of the longitudinal sliding table (58) is provided with an ink-jet printing head (59).
4. The ink-jet printing apparatus of claim 1, wherein The pulling and tensioning assembly (6) comprises a tensioning support frame (61), the lower half of the support frame of the tensioning support frame (61) is rotationally connected with a conveying roller (63), and the upper half of the support frame of the tensioning support frame (61) is fixedly connected with a tensioning cylinder (64), and the telescopic end of the tensioning cylinder (64) is provided with a tensioning roller (65) which is staggered with the conveying roller (63).
5. The ink-jet printing apparatus of claim 1, wherein the ink-jet printing apparatus further comprises a guide member disposed between the ink-jet head and the guide member, the guide member having a guide surface which is inclined with respect to the longitudinal direction of the guide member. The winding assembly (7) comprises an assembling support frame (71), one side of the support frame of the assembling support frame (71) is provided with a winding motor (72), and the other side of the support frame of the assembling support frame (71) is provided with a winding drum (73) which is engaged with the output end of the winding motor (72).
Citation Information
Patent Citations
Multipurpose printer
CN105922751A
Cable code spraying device
CN208428809U
Code spraying machine for flexible flat cable
CN215360555U