CN211227336U - Equipment convenient for taking and placing in plate copper deposition process - Google Patents
Equipment convenient for taking and placing in plate copper deposition process Download PDFInfo
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- CN211227336U CN211227336U CN201921889782.3U CN201921889782U CN211227336U CN 211227336 U CN211227336 U CN 211227336U CN 201921889782 U CN201921889782 U CN 201921889782U CN 211227336 U CN211227336 U CN 211227336U
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- frame
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- taking
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Abstract
The utility model discloses a conveniently get equipment of putting in heavy copper technology of plate, it includes the main frame, handle the jar, frame basket and dragon frame, the frame basket is placed in handling the jar, it arranges in the main frame to handle the jar, dragon frame arranges at the main frame upside, dragon frame includes seventh crossbeam and two seventh stands, the both ends of seventh crossbeam are located the top of two seventh stands respectively, the seventh operation roof beam of liftable has been arranged between two seventh stands, two seventh work ends have been arranged to the seventh operation roof beam, seventh work end includes two seventh liftoff portions, two seventh liftoff portions have been arranged at the top of frame basket, seventh liftoff portion includes two seventh bulges, two seventh bulges correspond two seventh liftoff portions respectively, seventh liftoff portion goes up and down in the seventh bulge below that corresponds. When the seventh operating beam rises, the rack basket is lifted through the four seventh lifting parts, so that the rack basket is prevented from shaking. The utility model discloses rational in infrastructure, reduce intensity of labour, but wide application in the manufacturing technical field of circuit board.
Description
Technical Field
The utility model relates to a make technical field of circuit board, in particular to convenient equipment of getting in the heavy copper technology of plate.
Background
The copper deposition is a necessary process for manufacturing the PCB, and a thin layer of chemical copper is deposited on a drilled hole-wall base material which is not conductive by a chemical method and is used as a base for electroplating copper. In the copper deposition process, the plate is vertically inserted into a copper deposition frame, the copper deposition frame is soaked in a treatment cylinder, and the copper deposition frame is taken out after the copper deposition is finished. The mode that is commonly used at present is got and is put by the manual work, and intensity of labour is big, and is efficient.
SUMMERY OF THE UTILITY MODEL
For solving above-mentioned technical problem, replace the manual work, reduce intensity of labour, raise the efficiency, the utility model provides a conveniently get equipment of putting in the heavy copper technology of plate, the technical scheme of adoption as follows:
the utility model provides an equipment that conveniently gets in and put in the heavy copper technology of plate includes the main frame, the processing jar, the rack basket that is used for placing the plate and the dragon frame that is used for getting and putting the rack basket, the rack basket is placed in the processing jar, the processing jar arranges in the main frame, the dragon frame arranges in the main frame upside, the dragon frame includes seventh crossbeam and two relative seventh stands, two seventh stands are arranged upright, the both ends of seventh crossbeam are located the top of two seventh stands respectively, arrange the seventh operating beam of liftable between two seventh stands, the downside of seventh operating beam arranges two seventh work ends that are used for mentioning the rack basket, the seventh work end includes two seventh liftoff parts, the top of rack basket arranges two seventh liftoff parts, two seventh liftoff parts are arranged relatively, two seventh liftoff parts are located the both sides at rack basket top respectively, the seventh liftoff part includes two seventh bulges, the two seventh convex parts correspond to the two seventh supporting parts respectively, and the seventh supporting parts lift below the corresponding seventh convex parts.
Furthermore, a vertical seventh guide groove is formed in the side face of the seventh upright column, and two ends of the seventh operating beam respectively ascend and descend along the seventh guide grooves in the two seventh upright columns.
Furthermore, the seventh upright post is hollow, a seventh driving mechanism is arranged in the seventh upright post, the seventh driving mechanism comprises a seventh driving wheel, a seventh driven wheel and a seventh transmission chain, and the seventh transmission chain drives the seventh operating beam to lift.
Furthermore, the seventh cross beam is hollow, a seventh linkage rod is arranged in the seventh cross beam, the two seventh driving wheels are respectively arranged at two ends of the seventh linkage rod, and a seventh motor is arranged at one end of the seventh linkage rod.
Further, the seventh lifting portion comprises a seventh vertical rod and a seventh cross rod, the middle of the seventh cross rod is arranged at the top of the seventh vertical rod, and the two seventh protrusions are arranged on one side of the seventh cross rod.
Furthermore, an upper stopper and a lower stopper are arranged on the seventh upright post, and the lifting stroke of the seventh operating beam is arranged between the upper stopper and the lower stopper.
Further, when the seventh operating beam triggers the lower stopper, the seventh rising portion is lower than the corresponding seventh protruding portion.
Further, the number of baskets is a plurality of, and the main frame has arranged two eighth guide rails, and the bottom of seventh stand is arranged the eighth gyro wheel that moves along eighth guide rail.
Furthermore, two eighth guide rods are arranged on the upper side of the main frame, an eighth guide seat is arranged on the outer side of the seventh upright post, and the two eighth guide rods respectively penetrate through the two eighth guide seats.
Further, a V-shaped region for holding up the seventh projecting portion is formed on the upper side of the seventh holding portion.
Has the advantages that: the design is longed frame and is got and put a basket, has the seventh action bars of liftable in the longmen, and the seventh action bars is mentioned the basket when ascending, and the both ends of seventh action bars are respectively through two seventh portion liftings mentions a basket, appear rocking when can avoiding mentioning a basket. The utility model discloses rational in infrastructure, it is artifical to replace, reduces intensity of labour, raises the efficiency, but wide application in the manufacturing technology field of circuit board.
Drawings
FIG. 1 is a front view of a basket;
FIG. 2 is a side view of the basket;
FIG. 3 is a top view of the basket;
FIG. 4 is a structural view of a seventh lift-up portion;
FIG. 5 is a front view of the treatment cylinder;
FIG. 6 is a side view of the treatment cylinder;
FIG. 7 is a top view of the main frame;
FIG. 8 is a front view of the main frame;
FIG. 9 is a side view of the main frame;
FIG. 10 is a structural view of the dragon frame;
fig. 11 is a structural view of a seventh working end.
Detailed Description
The present invention will be further described with reference to fig. 1 to 11.
The utility model relates to an equipment of conveniently getting in heavy copper technology of plate, it includes main frame 30, treatment jar 20, is used for placing the frame basket 18 of plate and is used for getting the dragon frame of putting frame basket 18, and frame basket 18 is placed in treatment jar 20, and treatment jar 20 arranges in main frame 30, and dragon frame arranges at main frame 30 upside, and the dragon frame is followed and is carried frame basket 18 in treatment jar 20 after heavy copper finishes. The two opposite outer walls of the processing cylinder 20 are respectively formed with fifth stepped portions 25 for support in the main frame 30.
The dragon frame comprises a seventh cross beam 31 and two opposite seventh upright posts 32, the two seventh upright posts 32 are vertically arranged, two ends of the seventh cross beam 31 are respectively positioned at the tops of the two seventh upright posts 32, a liftable seventh operating beam 33 is arranged between the two seventh upright posts 32, two seventh working ends for lifting the basket 18 are arranged on the lower side of the seventh operating beam 33, and each seventh working end comprises two seventh lifting parts 34. When the seventh operating beam 33 is raised, the seventh raising portion 34 raises the rack basket 18 above the liquid level in the processing cylinder 20. After the seventh manipulation beam 33 is lowered, the seventh rising portion 34 places the basket 18 in the processing cylinder 20.
The baskets 18 are respectively disposed with fourth supporting portions 17 at opposite outer sides thereof, the baskets 18 are placed in the treating cylinder 20, and fifth supporting seats 21 for supporting the fourth supporting portions are respectively disposed at the tops of opposite sidewalls of the treating cylinder 20.
Two seventh lifting portions are arranged at the top of the basket 18, the two seventh lifting portions are arranged oppositely, the two seventh lifting portions are respectively positioned at two sides of the top of the basket 18, and the two seventh lifting portions are positioned between the two seventh upright posts 32.
The seventh lifting portion includes two seventh protruding portions 35, the two seventh protruding portions 35 correspond to the two seventh lifting portions 34, respectively, and the seventh lifting portion 34 is lifted and lowered below the corresponding seventh protruding portion 35. When the seventh manipulation beam 33 is raised, the seventh rising portion 34 lifts the basket 18 by catching the corresponding seventh protrusion portion 35. After the seventh manipulation beam 33 is lowered, the seventh rising portion 34 is separated from the corresponding seventh projection portion 35.
The seventh rising portion 34 is formed at an upper side thereof with a V-shaped region for rising the seventh projecting portion 35, so that the seventh projecting portion 35 is prevented from coming off the corresponding seventh rising portion 34 when the seventh manipulation beam 33 lifts the basket 18.
The seventh lifting part comprises seventh vertical bars 38 and seventh cross bars 39, the middle part of the seventh cross bar 39 is arranged on the top of the seventh vertical bars 38, and the two seventh working ends are lifted between the two seventh vertical bars 38. The two seventh protrusions 35 are disposed on one side of the seventh cross bar 39, and the protruding directions of the seventh protrusions 35 on the two seventh cross bars 39 are opposite, so that the basket 18 is lifted through four fulcrums, and the shaking of the basket 18 can be avoided.
The seventh upright column 32 is provided with an upper stopper and a lower stopper, the upper stopper and the lower stopper are photoelectric sensors, and the lifting stroke of the seventh operating beam 33 is between the upper stopper and the lower stopper.
When the seventh operating beam 33 triggers the lower stopper, the seventh projecting portion 35 is located between the corresponding seventh rising portion 34 and the end of the seventh operating beam 33, and the seventh rising portion 34 is lower than the corresponding seventh projecting portion 35, i.e., the seventh rising portion 34 is separated from the corresponding seventh projecting portion 35.
A vertical seventh guide groove is formed in the side surface of the seventh upright column 32, two ends of the seventh operating beam 33 respectively ascend and descend along the seventh guide grooves of the two seventh upright columns 32, and the end part of the seventh operating beam 33 is located in the corresponding seventh guide groove.
The seventh upright column 32 is hollow, a seventh driving mechanism is arranged in the seventh upright column 32, the seventh driving mechanism comprises a seventh driving wheel 36, a seventh driven wheel and a seventh transmission chain, the seventh driving wheel 36 is positioned at the top of the seventh upright column 32, and the seventh transmission chain drives the seventh operating beam 33 to lift.
The seventh cross beam 31 is hollow, a seventh linkage rod 37 is arranged in the seventh cross beam 31, the two seventh driving wheels 36 are respectively arranged at two ends of the seventh linkage rod 37, a seventh motor is arranged at one end of the seventh linkage rod 37, the seventh motor is installed on the inner wall of the seventh cross beam 31, and the seventh motor drives the two seventh driving wheels 36 through the seventh linkage rod 37, so that the two seventh transmission chains are synchronously transmitted.
In order to improve the efficiency of copper deposition, the number of the baskets 18 may be designed to be plural, the main frame 30 is arranged with two eighth guide rails 40, and the bottom end of the seventh upright 32 is arranged with an eighth roller 41 moving along the eighth guide rails 40. The cradle moves along the eighth rail 40 to sequentially pick and place each cradle 18.
The movement of the gantry along the eighth guide rail 40 may be realized by a chain transmission, a belt transmission, a screw transmission, etc., and a photoelectric sensor is disposed at a position corresponding to each basket 18, thereby ensuring the movement accuracy of the gantry.
Two eighth guide rods 42 are disposed at an upper side of the main frame 30, an eighth guide seat 43 is disposed at an outer side of the seventh upright column 32, an eighth guide hole is formed at the eighth guide seat 43, and the two eighth guide rods 42 respectively pass through the two eighth guide seats 43, thereby ensuring a smooth movement of the gantry.
The embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the knowledge of those skilled in the art.
Claims (10)
1. The equipment of conveniently getting in the heavy copper technology of plate, its characterized in that: comprises a main frame (30), a processing cylinder (20), a frame basket (18) for placing plates and a keel frame for taking and placing the frame basket (18), wherein the frame basket (18) is placed in the processing cylinder (20), the processing cylinder (20) is arranged in the main frame (30), the keel frame is arranged on the upper side of the main frame (30), the keel frame comprises a seventh cross beam (31) and two opposite seventh vertical columns (32), the two seventh vertical columns (32) are vertically arranged, two ends of the seventh cross beam (31) are respectively positioned at the tops of the two seventh vertical columns (32), a liftable seventh operating beam (33) is arranged between the two seventh vertical columns (32), two seventh working ends for lifting the frame basket (18) are arranged on the lower side of the seventh operating beam (33), the seventh working ends comprise two seventh lifting parts (34), two seventh lifting parts are arranged at the top of the frame basket (18), and the two seventh lifting parts are arranged oppositely, the two seventh lifting parts are respectively positioned on two sides of the top of the basket (18), each seventh lifting part comprises two seventh protruding parts (35), the two seventh protruding parts (35) respectively correspond to the two seventh supporting parts (34), and the seventh supporting parts (34) lift below the corresponding seventh protruding parts (35).
2. The device convenient for taking and placing in the plate copper deposition process according to claim 1, wherein: and a vertical seventh guide groove is formed in the side surface of the seventh upright column (32), and two ends of the seventh operating beam (33) respectively ascend and descend along the seventh guide grooves in the two seventh upright columns (32).
3. The device convenient for taking and placing in the plate copper deposition process according to claim 2, wherein: the seventh upright post (32) is hollow, a seventh driving mechanism is arranged in the seventh upright post (32), the seventh driving mechanism comprises a seventh driving wheel (36), a seventh driven wheel and a seventh transmission chain, and the seventh transmission chain drives the seventh operating beam (33) to lift.
4. The device convenient for taking and placing in the plate copper deposition process according to claim 3, wherein: the seventh cross beam (31) is hollow, a seventh linkage rod (37) is arranged in the seventh cross beam (31), the two seventh driving wheels (36) are respectively arranged at two ends of the seventh linkage rod (37), and a seventh motor is arranged at one end of the seventh linkage rod (37).
5. The device convenient for taking and placing in the plate copper deposition process according to claim 1, wherein: the seventh lifting part comprises a seventh vertical rod (38) and a seventh cross rod (39), the middle part of the seventh cross rod (39) is arranged at the top part of the seventh vertical rod (38), and the two seventh convex parts (35) are arranged at one side of the seventh cross rod (39).
6. The device convenient for taking and placing in the plate copper deposition process according to claim 1, wherein: an upper stopper and a lower stopper are arranged on the seventh upright post (32), and a stroke of lifting of the seventh operating beam (33) is arranged between the upper stopper and the lower stopper.
7. The device convenient for taking and placing in the plate copper deposition process according to claim 6, wherein: when the seventh operating beam (33) triggers the lower stopper, the seventh rising part (34) is lower than the corresponding seventh protruding part (35).
8. The device convenient for taking and placing in the plate copper deposition process according to claim 1, wherein: the number of the baskets (18) is multiple, the main frame (30) is provided with two eighth guide rails (40), and the bottom end of the seventh upright post (32) is provided with an eighth roller (41) which moves along the eighth guide rails (40).
9. The device convenient for taking and placing in the plate copper deposition process according to claim 8, wherein: two eighth guide rods (42) are arranged on the upper side of the main frame (30), an eighth guide seat (43) is arranged on the outer side of the seventh upright post (32), and the two eighth guide rods (42) respectively penetrate through the two eighth guide seats (43).
10. The device convenient for taking and placing in the plate copper deposition process according to claim 1, wherein: the upper side of the seventh supporting part (34) is formed with a V-shaped area for supporting the seventh convex part (35).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921889782.3U CN211227336U (en) | 2019-11-04 | 2019-11-04 | Equipment convenient for taking and placing in plate copper deposition process |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921889782.3U CN211227336U (en) | 2019-11-04 | 2019-11-04 | Equipment convenient for taking and placing in plate copper deposition process |
Publications (1)
Publication Number | Publication Date |
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CN211227336U true CN211227336U (en) | 2020-08-11 |
Family
ID=71934696
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201921889782.3U Active CN211227336U (en) | 2019-11-04 | 2019-11-04 | Equipment convenient for taking and placing in plate copper deposition process |
Country Status (1)
Country | Link |
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CN (1) | CN211227336U (en) |
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2019
- 2019-11-04 CN CN201921889782.3U patent/CN211227336U/en active Active
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