CN211591782U - Car sun visor board label thermoprint equipment - Google Patents

Car sun visor board label thermoprint equipment Download PDF

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Publication number
CN211591782U
CN211591782U CN201921645192.6U CN201921645192U CN211591782U CN 211591782 U CN211591782 U CN 211591782U CN 201921645192 U CN201921645192 U CN 201921645192U CN 211591782 U CN211591782 U CN 211591782U
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module
cylinder
guide shaft
unit
feeding
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CN201921645192.6U
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Chinese (zh)
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灏ゅ痉
尤德
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Shanghai Ziyuan Automobile Parts Co ltd
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Shanghai Ziyuan Automobile Parts Co ltd
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Priority to CN201921645192.6U priority Critical patent/CN211591782U/en
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Abstract

The utility model relates to a car sun visor board label thermoprint equipment, including base, material loading module, unloading module, transportation module, the module of punching and thermoprint module, material loading module, the module of punching, thermoprint module and unloading module install on the base in proper order, the transportation module include two crisscross parallel arrangement's of each other biax mobile unit, the material loading module be located a biax mobile unit's one end, the unloading module be located another biax mobile unit's the other end. Compared with the prior art, the utility model realizes the full-automatic operation of the automobile sun visor label and improves the working efficiency; the feeding process and the blanking process of hot stamping can be mutually interfered, and the production beat is accelerated; meanwhile, the structure can save space, so that the equipment has better applicability.

Description

Car sun visor board label thermoprint equipment
Technical Field
The utility model belongs to the technical field of car sun visor board processing equipment technique and specifically relates to a car sun visor board label thermoprint equipment is related to.
Background
The automobile sun visor is a plate which is arranged above a driving seat and a co-driving seat and used for preventing dazzling sunlight, the sun visor can be used for shielding the sunlight by turning over the plate, and the automobile sun visor is made of plastic, EPP (expanded polypropylene), PU (polyurethane) foam, paperboard and the like and can be divided into a front shield, a side shield and a rear shield. Most of the existing hot stamping of automobile sun visor labels still adopt a manual mode for production, and the steps are mainly as follows: the warning label is stuck on the surface of the automobile sun shield through a hot stamping process, the label heat transfer printing mold is fixed, and then the warning label and the surface of the sun shield are manually placed to complete hot stamping.
For example, chinese utility model with publication No. CN209127132U discloses an automobile sun visor labeling device, which improves the precision of label hot stamping but still takes manual work as the main step, and the production efficiency is low.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a car sun visor board label thermoprint equipment in order to overcome the defect that above-mentioned prior art exists.
The purpose of the utility model can be realized through the following technical scheme:
the utility model provides a car sun visor board label thermoprint equipment, includes base, material loading module, unloading module, transportation module, the module and the thermoprint module of punching, material loading module, the module of punching, thermoprint module and unloading module install on the base in proper order, the transportation module include two crisscross parallel arrangement's of each other biaxial mobile unit, the material loading module be located a biaxial mobile unit's one end, the unloading module be located another biaxial mobile unit's the other end.
Further, the feeding module and the blanking module are identical in structure and respectively comprise a feeding cylinder, a feeding rail and a jig, the material part of the automobile sun visor is arranged in the jig, the feeding cylinder and the feeding rail are arranged in parallel, the jig is arranged on the feeding rail and connected with the feeding cylinder, and the jig slides along the feeding rail under the action of the feeding cylinder.
Further, two axle mobile unit include skeleton, X axle cylinder, X axle slider, Z axle cylinder, Z axle connecting piece and profile modeling sucking disc, the skeleton be "door" style of calligraphy support, X axle cylinder parallel establish on the crossbeam of "door" style of calligraphy support, X axle slider install on the track of X axle cylinder, Z axle cylinder connect X axle slider, the profile modeling sucking disc pass through the lower extreme at Z axle cylinder at Z axle connecting piece.
Further, the module of punching including the frock platform of punching, the slide rail that punches, first connecting plate, second connecting plate, first movable cylinder, drift unit and second movable cylinder, slide rail and the first movable cylinder parallel arrangement of punching, the frock platform of punching connect the one end of the slide rail that punches, first connecting plate both ends span and connect two slide rails that punch to connect first movable cylinder, the second movable cylinder install the side top at first connecting plate, the second connecting plate is connected to this second movable cylinder's telescopic link lower extreme, the drift unit set up respectively at the both ends of second connecting plate.
Further, the second movable cylinder is a three-axis cylinder.
Further, each punch unit comprises a punch cylinder and a punching block, the punching block is vertically arranged at the lower end of the punch cylinder, and the punch cylinder is connected with the second connecting plate.
Furthermore, the hot stamping module comprises a hot stamping tooling plate, a feeding unit, a receiving unit, a first guide shaft, a second guide shaft, a third guide shaft, a fourth guide shaft, a fixing plate, a horizontal moving unit and a hot stamping unit, the hot stamping unit is arranged on the base through the horizontal moving unit, the hot stamping tooling plate is positioned below the hot stamping unit, the first guide shaft, the second guide shaft, the third guide shaft and the fourth guide shaft are vertically arranged on the fixing plate in pairs, the feeding unit and the receiving unit are both storage rollers, the feeding unit is installed on one side of the fourth guide shaft, the receiving unit is installed on one side of the first guide shaft, one end of the label tape is connected with the feeding unit, the other end of the label tape sequentially penetrates through the upper end of the fourth guide shaft, the lower end of the third guide shaft, the hot stamping unit and the hot stamping tooling plate, and the lower end of the second guide shaft and the upper end of the first guide shaft are connected with the receiving unit.
Furthermore, the horizontal moving unit comprises a first guide rail cylinder, a first sliding block, a second guide rail cylinder and a second sliding block, the second guide rail cylinder is installed on the base, the second sliding block is connected with the second guide rail cylinder, the first guide rail cylinder is installed on the second sliding block, and the hot stamping unit is connected with the first guide rail cylinder through the first sliding block.
Further, the label tape comprises a fifth guide shaft and a sixth guide shaft, wherein the sixth guide shaft and the fourth guide shaft are arranged on the fixing plate at the same horizontal position, the horizontal position of the fifth guide shaft is lower than that of the fourth guide shaft and that of the sixth guide shaft, the fifth guide shaft and the sixth guide shaft are arranged on the fixing plate, one end of the label tape is connected with the feeding mechanism, and the other end of the label tape sequentially penetrates through the upper end of the sixth guide shaft, the lower end of the fifth guide shaft and the upper end of the fourth guide shaft.
Compared with the prior art, the utility model has the advantages of it is following:
1. the utility model discloses a combination of material loading module, unloading module, transportation module, punching module and thermoprint module has accomplished the full automatization operation of car sun visor board label, has improved work efficiency; the transportation module is provided with two-axis moving units which are arranged in a mutually staggered and parallel manner, and the two-axis moving units are matched with the feeding module and the discharging module, so that the feeding process and the discharging process of the hot stamping can be free of interference, and the production beat is accelerated. Meanwhile, the structure can save space, so that the equipment has better applicability.
2. The utility model discloses a module of punching advances line location to the car sunshading board, and the relative position of label thermoprint all uses the locating hole as the standard, and not traditional with car sunshading board edge fix a position, has greatly increased the precision and the uniformity of label thermoprint, has improved off-the-shelf quality.
3. The utility model discloses a material loading module, unloading module transport car sun visor board to carry out automatic transport to the label through feeding unit and receipts material unit, mutually support and ensure the continuity of production process, reduce the manual work and remove the time, reduce the cost.
4. In the hot stamping module, a fifth guide shaft and a sixth guide shaft are arranged besides the first guide shaft, the second guide shaft, the third guide shaft and the fourth guide shaft, so that the label tape is conveniently tensioned, and the working stability of equipment is ensured.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the feeding module.
Fig. 3 is a schematic structural view of a transport module.
Fig. 4 is a schematic structural diagram of the punching module.
Fig. 5 is a schematic structural diagram of the stamping module.
Fig. 6 is a schematic view of the working principle of the present invention.
Reference numerals: 1. a base, 2, a feeding module, 21, a feeding cylinder, 22, a feeding track, 23, a jig, 3, a blanking module, 4, a transportation module, 41, a two-axis moving unit, 411, a framework, 412, an X-axis cylinder, 413, an X-axis slider, 414, a Z-axis cylinder, 415, a Z-axis connector, 416, a profiling suction cup, 5, a punching module, 51, a punching tool table, 52, a punching slide rail, 53, a first connecting plate, 54, a second connecting plate, 55, a first moving cylinder, 56, a punch unit, 561, a punch cylinder, 562, a punching block, 57, a second moving cylinder, 6, a hot stamping module, 61, a hot stamping tool plate, 62, a feeding unit, 63, a material receiving unit, 641, a first guide shaft, 642, a second guide shaft, 643, a third guide shaft, 644, a fourth guide shaft, 645, a fifth guide shaft, 646, a sixth guide shaft, 65, a fixing plate, 66, a horizontal moving unit, 662. second slider, 664, first slider, 67, thermoprint unit, 7, material, 8, label area.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments. The embodiment is implemented on the premise of the technical solution of the present invention, and a detailed implementation manner and a specific operation process are given, but the scope of the present invention is not limited to the following embodiments.
As shown in fig. 1, the embodiment provides a car sun visor label thermoprinting device, which includes a base 1, a feeding module 2, a blanking module 3, a transportation module 4, a punching module 5 and a thermoprinting module 6. The feeding module 2, the punching module 5, the hot stamping module 6 and the blanking module 3 are sequentially arranged on the base 1. The transport module 4 includes two biaxial moving units 41 arranged in parallel in a staggered manner, the feeding module 2 is located at one end of one biaxial moving unit 41, and the discharging module 3 is located at the other end of the other biaxial moving unit 41.
As shown in fig. 2, the feeding module 2 includes a feeding cylinder 21, a feeding rail 22 and a jig 23, the material 7 of the sun shield is installed in the jig 23, the feeding cylinder 21 and the feeding rails 22 on both sides are arranged in parallel, and the jig 23 is installed on the feeding rail 22 and connected to the feeding cylinder 21. Under the action of the feeding cylinder 21, the jig 23 drives the material 7 to move along the feeding track 22. The structure of the blanking module 3 is the same as that of the loading module 2, and therefore, the description is omitted.
As shown in fig. 3, each two-axis moving unit 41 includes a frame 411, an X-axis cylinder 412, an X-axis slider 413, a Z-axis cylinder 414, a Z-axis connector 415, and a profile suction cup 416. The framework 411 is a bracket shaped like a Chinese character 'men', and the X-axis cylinder 412 is arranged on a cross beam of the bracket shaped like a Chinese character 'men' in parallel. An X-axis sliding block 413 is installed on the track of the X-axis air cylinder 412, a Z-axis air cylinder 414 is connected with the X-axis sliding block 413, and a profiling suction cup 416 is installed at the lower end of the Z-axis air cylinder 414 through a Z-axis connecting piece 415. The contoured suction cup 416 is thus movable along the X-axis cylinder 412 and is also capable of moving up and down along the Z-axis. The shape of the profiling sucking disc 416 is the same as that of the material part 7, the existing mature vacuum electric sucking disc is specifically adopted, and the profiling sucking disc 416 can be replaced by an existing mechanical gripper for taking out the material part 7 from the jig 23 one by one to realize the subsequent steps.
As shown in fig. 4, the punching module 5 includes a punching tool table 51, a punching slide rail 52, a first connecting plate 53, a second connecting plate 54, a first moving cylinder 55, a punch unit 56, and a second moving cylinder 57. The two punching slide rails 52 and the first moving cylinder 55 are arranged in parallel, and the punching tool table 51 is connected with the right end of the punching slide rail 52. The first link plate 53 spans the two punch slide rails 52 at both ends and is connected to the first traveling cylinder 55. Thereby, the first link plate 53 can move left and right along the punch slide rail 52. A second moving cylinder 57 is installed at one side of the upper surface of the first connecting plate 53, the lower end of the telescopic rod of the second moving cylinder 57 is connected to the second connecting plate 54, and the punch units 56 are respectively provided at both ends of the second connecting plate 54. The second moving cylinder 57 is a triaxial cylinder, and ensures stability of the punch unit 56 at the time of punching. Each of the punch units 56 includes a punch cylinder 561 and a punch block 562, the punch block 562 is vertically installed at a lower end of the punch cylinder 561 for penetrating the work piece 7, and the punch cylinder 561 is installed on the second connecting plate 54. The feeding module 2 transports the material part 7 to the punching tool table 51 for punching and positioning.
As shown in fig. 5, the stamping module 6 includes a stamping tooling plate 61, a feeding unit 62, a receiving unit 63, a first guide shaft 641, a second guide shaft 642, a third guide shaft 643, a fourth guide shaft 644, a fixing plate 65, a horizontal moving unit 66, and a stamping unit 67. The stamping unit 67 is mounted on the base 1 by the horizontal moving unit 66. The horizontal moving unit 66 includes a first rail cylinder, a first slider 664, a second rail cylinder, and a second slider 662. The second guide rail cylinder is installed on base 1, and second slider 662 is connected the second guide rail cylinder, and first guide rail cylinder is installed on second slider 662, and thermoprint unit 67 passes through first slider 664 and connects first guide rail cylinder. The installation directions of the first guide rail cylinder and the second guide rail cylinder are perpendicular to each other, and the stamping unit 67 can move on a horizontal plane through the horizontal moving unit 66.
The hot stamping tooling plate 61 is located below the hot stamping unit 67, and the first guide shaft 641, the second guide shaft 642, the third guide shaft 643 and the fourth guide shaft 644 are vertically installed on the fixing plate 65 in pairs. The feeding unit 62 and the receiving unit 63 both receive the roller, the feeding unit 62 is installed at the right side of the fourth guide shaft 644, the receiving unit 63 is installed at the right side of the first guide shaft 641, one end of the label tape 88 is connected with the feeding unit 62, and the other end of the label tape sequentially passes through the upper end of the fourth guide shaft 644, the lower end of the third guide shaft 643, the space between the stamping unit 67 and the stamping tooling plate 61, the lower end of the second guide shaft 642 and the upper end of the first guide shaft 641 to be connected with the receiving unit 63.
In another embodiment, the stamping module 6 further comprises a fifth guide shaft 645 and a sixth guide shaft 646. The sixth guide shaft 646 and the fourth guide shaft 644 are installed on the fixing plate 65 at the same horizontal position, the fifth guide shaft 645 is also installed on the fixing plate 65 at a position lower than the horizontal positions of the fourth guide shaft 644 and the sixth guide shaft 646, one end of the label tape 8 is connected to the feeding unit 62, and the other end passes through the upper end of the sixth guide shaft 646, the lower end of the fifth guide shaft 645 and the upper end of the fourth guide shaft 644 in sequence, so that the label tape 8 is tightened, and the stability of the operation of the apparatus is ensured.
As shown in fig. 6, the working principle of this embodiment is as follows:
the material part 7 of the automobile sun visor is placed into the jig 23 in batches from the feeding module 2 on the upper left side, and the jig 23 of the feeding module is moved to the lower left side.
The copying suction cup 416 of the biaxial movement unit 41 on the upper side of the transportation module 4 sucks up one piece of material 7 from the jig 23 and moves the piece of material to the upper side of the punching module 5, and the piece of material is put into the punching tool table 51 of the punching module 5 to complete punching.
The copying sucker 416 of the biaxial moving unit 41 on the lower side of the transportation module 4 sucks the material 7 from the punching tool table 51 to move, and puts the stamping working plate 61 of the stamping module 6 in, the label tape 8 is conveyed to the position under the stamping unit 67 by the feeding unit 62, and the stamping position is adjusted by the horizontal moving unit 66 to be positioned at the set position opposite to the punching position, so that stamping is completed. At the same time, the upper biaxial movement unit 41 repeatedly sucks a new workpiece 7 from the jig 23 and moves the new workpiece to the upper side of the punching module 5, and the new workpiece is put into the punching tool table 51 of the punching module 5 to complete punching.
The copying suction cups 416 of the biaxial movement unit 41 on the lower side of the transport module 4 suck the stamped workpieces 7 from the stamping work plate 61 and put them into the discharge module.
The discharging module is moved from the lower right side to the upper right side after accumulating a certain number, and finished products are taken out from the jig 23.
The whole device is controlled by a PLC controller, and the positioning and the movement of the device are controlled by the existing control method, so the device is not unfolded in the embodiment.
The foregoing has described in detail preferred embodiments of the present invention. It should be understood that numerous modifications and variations can be devised by those skilled in the art in light of the teachings of the present invention without undue experimentation. Therefore, the technical solutions that can be obtained by a person skilled in the art through logic analysis, reasoning or limited experiments based on the prior art according to the concepts of the present invention should be within the scope of protection defined by the claims.

Claims (9)

1. The utility model provides an automobile sun visor board label thermoprint equipment, its characterized in that includes base (1), material loading module (2), unloading module (3), transportation module (4), punches module (5) and thermoprint module (6), material loading module (2), punch module (5), thermoprint module (6) and unloading module (3) install in proper order on base (1), transportation module (4) including two crisscross parallel arrangement's of each other biaxial mobile unit (41), material loading module (2) be located the one end of a biaxial mobile unit (41), unloading module (3) be located the other end of another biaxial mobile unit (41).
2. The automobile sun visor label hot stamping device according to claim 1, wherein the feeding module (2) and the discharging module (3) are identical in structure and respectively comprise a feeding cylinder (21), a feeding rail (22) and a jig (23), the material (7) of the automobile sun visor is arranged in the jig (23), the feeding cylinder (21) and the feeding rail (22) are arranged in parallel, and the jig (23) is installed on the feeding rail (22) and connected with the feeding cylinder (21) and slides along the feeding rail (22) under the action of the feeding cylinder (21).
3. The automobile sun visor label stamping device as claimed in claim 1, wherein the two-axis moving unit (41) comprises a framework (411), an X-axis cylinder (412), an X-axis slider (413), a Z-axis cylinder (414), a Z-axis connector (415) and a profile modeling suction cup (416), the framework (411) is a bracket shaped like a Chinese character 'men', the X-axis cylinder (412) is parallelly arranged on a cross beam of the bracket shaped like the Chinese character 'men', the X-axis slider (413) is arranged on a track of the X-axis cylinder (412), the Z-axis cylinder (414) is connected with the X-axis slider (413), and the profile modeling suction cup (416) is arranged at the lower end of the Z-axis cylinder (414) through the Z-axis connector (415).
4. The automobile sun visor label stamping device as claimed in claim 1, the punching module (5) comprises a punching tool table (51), a punching slide rail (52), a first connecting plate (53), a second connecting plate (54), a first moving cylinder (55), a punch head unit (56) and a second moving cylinder (57), the punching slide rail (52) and the first movable cylinder (55) are arranged in parallel, the punching tool table (51) is connected with one end of the punching slide rail (52), two ends of the first connecting plate (53) are connected with two perforating slide rails (52) in a crossing way, and connected to a first moving cylinder (55), and a second moving cylinder (57) installed above and on the side of the first connection plate (53), the lower end of the telescopic rod of the second movable cylinder (57) is connected with a second connecting plate (54), the punch units (56) are respectively arranged at two ends of the second connecting plate (54).
5. The stamping apparatus for labels on sun visors of automobiles according to claim 4, wherein said second moving cylinder (57) is a three-axis cylinder.
6. The automobile sun visor label stamping device as claimed in claim 4, wherein each punch unit (56) comprises a punch cylinder (561) and a punch block (562), the punch block (562) is vertically arranged at the lower end of the punch cylinder (561), and the punch cylinder (561) is connected with the second connecting plate (54).
7. The stamping device for labels of car sun visors, according to claim 1, characterized in that the stamping module (6) comprises a stamping tooling plate (61), a feeding unit (62), a receiving unit (63), a first guide shaft (641), a second guide shaft (642), a third guide shaft (643), a fourth guide shaft (644), a fixing plate (65), a horizontal moving unit (66) and a stamping unit (67), the stamping unit (67) is installed on the base (1) through the horizontal moving unit (66), the stamping tooling plate (61) is located below the stamping unit (67), the first guide shaft (641), the second guide shaft (642), the third guide shaft (643) and the fourth guide shaft (644) are vertically installed on the fixing plate (65) in pairs, the feeding unit (62) and the receiving unit (63) are both receiving rollers, the feeding unit (62) is installed on one side of the fourth guide shaft (644), the material receiving unit (63) is installed on one side of the first guide shaft (641), one end of the label tape (8) is connected with the material feeding unit (62), and the other end of the label tape sequentially passes through the upper end of the fourth guide shaft (644), the lower end of the third guide shaft (643), the space between the hot stamping unit (67) and the hot stamping tooling plate (61), the lower end of the second guide shaft (642) and the upper end of the first guide shaft (641) to be connected with the material receiving unit (63).
8. The automobile sun visor label stamping device as claimed in claim 7, wherein the horizontal moving unit (66) comprises a first guide rail cylinder, a first slider (664), a second guide rail cylinder and a second slider (662), the second guide rail cylinder is mounted on the base (1), the second slider (662) is connected with the second guide rail cylinder, the first guide rail cylinder is mounted on the second slider (662), and the stamping unit (67) is connected with the first guide rail cylinder through the first slider (664).
9. The automobile sun visor label stamping device as claimed in claim 7, further comprising a fifth guide shaft (645) and a sixth guide shaft (646), wherein the sixth guide shaft (646) and the fourth guide shaft (644) are arranged on the fixing plate (65) at the same horizontal position, the horizontal position of the fifth guide shaft (645) is lower than that of the fourth guide shaft (644) and the sixth guide shaft (646) arranged on the fixing plate (65), one end of the label tape (8) is connected with the feeding mechanism, the other end of the label tape passes through the upper end of the sixth guide shaft (646), the lower end of the fifth guide shaft (645) and the upper end of the fourth guide shaft (644) in sequence.
CN201921645192.6U 2019-09-29 2019-09-29 Car sun visor board label thermoprint equipment Active CN211591782U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921645192.6U CN211591782U (en) 2019-09-29 2019-09-29 Car sun visor board label thermoprint equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921645192.6U CN211591782U (en) 2019-09-29 2019-09-29 Car sun visor board label thermoprint equipment

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CN211591782U true CN211591782U (en) 2020-09-29

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CN201921645192.6U Active CN211591782U (en) 2019-09-29 2019-09-29 Car sun visor board label thermoprint equipment

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110549729A (en) * 2019-09-29 2019-12-10 上海子元汽车零部件有限公司 Car sun visor board label thermoprint equipment

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110549729A (en) * 2019-09-29 2019-12-10 上海子元汽车零部件有限公司 Car sun visor board label thermoprint equipment

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