Lifting type physical vapor deposition device
Through the design of a lifting physical vapor deposition device, using a conical rotor motor and a push-type switch to control the folding and position switching of the lifting plate, the problem of low output of existing coating machines was solved, and the number of products in a single furnace was doubled and the production capacity was increased.
Patent Information
- Application Number
- CN202422981606.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-12-04
AI Technical Summary
During the coating process, existing coating machines have a limited number of films that can be coated at a time, making it difficult to increase production. In addition, the machine's vacuuming and preparation time during repeated coating processes accounts for a large proportion, affecting production capacity.
A lifting physical vapor deposition device is designed. The cooperation of the first and second lifting components with the lifting plate can achieve double coating of the product. The conical rotor motor and the push-type switch are used to control the folding and position switching of the lifting plate, reducing the exhaust and degassing processes.
The number of products in a single furnace has doubled, which has increased production capacity, saved time and cost, and simplified device control.
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Figure CN223458379U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a coating machine technical field, especially a lifting type physical vapor deposition device. BACKGROUND
[0002] With the development of the film industry, various coating machines and processes are emerging. In today's coating machine system, after the product is put into the coating machine, most of them are taken out after coating, and then the next batch of products is coated. The repeated coating process takes a lot of time for machine pumping and preparation before coating. The number of single coating is limited, and the output is also determined by the number, and the production capacity is difficult to improve. UTILITY MODEL CONTENT
[0003] The utility model discloses a lifting type physical vapor deposition device can place double coating products, improve double single furnace output.
[0004] To achieve the above object, the utility model provides the following technical scheme: a lifting type physical vapor deposition device, including top block, first lifting plate, second lifting plate, first lifting assembly and second lifting assembly, the lower surface annular of top block is fixed with a plurality of bracing boards, the one end away from top block of bracing board is provided with first lifting assembly and second lifting assembly, the total number of first lifting assembly and second lifting assembly is same with the number of bracing board, the one end away from bracing board of first lifting assembly is provided with first lifting plate through first bearing block, the one end away from bracing board of second lifting assembly is provided with second lifting plate through second bearing block, first lifting plate with first bearing block and second lifting plate with second bearing block are all through long pulley swing joint.
[0005] Further, the number of bracing boards is even, the number of first lifting assembly and second lifting assembly is same, and first lifting assembly and second lifting assembly are arranged at intervals in the bracing board.
[0006] Further, the first lifting assembly and the second lifting assembly each include a conical rotor motor, a pulley block, and a traction line. The conical rotor motor is fixed to the upper surface of the bracing board. The output end of the conical rotor motor is fixed with a spool. The two sides of the bracing board are fixed with the pulley block. The lower surface of the bracing board is fixed with a lifting rod. One end of the traction line is fixed to the spool. The other end of the traction line of the first lifting assembly passes through the pulley block and is connected to the first lifting plate. The other end of the traction line of the second lifting assembly passes through the pulley block and is connected to the second lifting plate.
[0007] Further, the pulley block comprises an upper pulley and a lower pulley, the upper pulley is arranged on the two sides of the support plate through the first fixing plates on the two sides, the lower pulley is fixed above the movable end of the lifting rod through the second fixing plates on the two sides, and the traction line is located on the outer side of the upper pulley and the inner side of the lower pulley.
[0008] Further, the first lifting plate and the second lifting plate are both in the shape of a fan.
[0009] Further, the lower surface of the support plate is provided with a first power-off switch assembly, and the upper surfaces of the first bearing block and the second bearing block are fixed with a second power-off switch assembly.
[0010] Further, the first power-off switch assembly and the second power-off switch assembly both comprise a groove body, the bottom of the groove body is fixed with a spring, the other end of the spring is connected with a conductive metal, the other end of the conductive metal is connected with a columnar press switch, and the inner wall of the opening end of the groove body is fixed with a wire.
[0011] The lifting type physical vapor deposition device has the advantages that the first lifting assembly and the second lifting assembly are matched with the first lifting plate and the second lifting plate, the number of single-furnace products can be doubled, the single-furnace production capacity is doubled, the repeated process time of air extraction, air release and product taking and putting of a single machine is saved, and the time cost is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 The utility model discloses a structure schematic diagram;
[0013] Figure 2 It is the plan view of the utility model;
[0014] Figure 3 It is the bottom view of the utility model;
[0015] Figure 4 It is the structure schematic diagram of the first lifting assembly in the upper, and the second lifting assembly is in the lower structure schematic diagram of the utility model;
[0016] Figure 5 It is the schematic diagram of the second lifting assembly rising process of the utility model;
[0017] Figure 6 It is the schematic diagram of the second lifting assembly rising to the top of the utility model;
[0018] Figure 7 It is the schematic diagram of the first lifting assembly descending to the bottom of the utility model;
[0019] Figure 8 is a structural schematic view of the first lifting assembly and the second lifting assembly of the utility model;
[0020] Figure 9 is a partial schematic view of the lifting plate in the utility model;
[0021] Figure 10 is a power-on schematic view of the first power-off switch assembly and the second power-off switch assembly of the utility model.
[0022] Figure 11 is a power-off schematic view of the first power-off switch assembly and the second power-off switch assembly of the utility model. Wherein: 1, top block, 2, first lifting assembly, 3, second lifting assembly, 31, conical rotor motor, 32, pulley set, 321, upper pulley, 322, lower pulley, 323, first fixed plate, 324, second fixed plate, 33, traction line, 34, spool, 35, lifting rod, 4, first lifting plate, 5, second lifting plate, 6, support plate, 7, first bearing block, 8, second bearing block, 9, long pulley, 10, first power-off switch assembly, 101, groove body, 102, spring, 103, conductive metal, 104, press switch, 105, wire, 11, second power-off switch assembly, 12, product, 13, hexagonal screw. DETAILED DESCRIPTION
[0023] The utility model will be further described below in combination with the drawings. In order to better understand, the orientation of the utility model is described according to the orientation shown in the drawings, and it cannot be understood as the limitation of the application; the following terms "first", "second" and the like are only for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0024] Please refer to Figures 1 to 10The utility model provides an embodiment: a lifting type physical vapor deposition device, including top piece 1, first lifting plate 4, second lifting plate 5, first lifting assembly 2 and second lifting assembly 3, the lower surface annular fixed of top piece 1 has a plurality of bracing 6, the bracing 6 is away from the one end of top piece 1 is provided with first lifting assembly 2 and second lifting assembly 3, the total number of first lifting assembly 2 and second lifting assembly 3 is same with the number of bracing 6, first lifting assembly 2 is away from the one end of bracing 6 is provided with first lifting plate 4 through first bearing block 7, second lifting assembly 3 is away from the one end of bracing 6 is provided with second lifting plate 5 through second bearing block 8, first lifting plate 4 with first bearing block 7 and second lifting plate 5 with second bearing block 8 are all through long pulley 9 swing joint.The utility model discloses a lifting type physical vapor deposition device is fixed in the coating cavity through the top piece 1 of top, can be equipped with motor from the coating cavity top and supports rotation, and the coating product 12 is fixed to first lifting plate 4 and second lifting plate 5 by hexagon screw 13, wherein by controlling first lifting assembly 2 control first lifting plate 4 is located in the upper of second lifting plate 5, and control first lifting plate 4 is folded upwards along first bearing block 7, and second lifting plate 5 is in horizontal state, when the product 12 on first lifting plate 4 is coated, first lifting assembly 2 controls first lifting plate 4 to descend, and makes first lifting plate 4 fold downwards to horizontal state, controls second lifting plate 5 to rise and makes second lifting plate 5 fold upwards through second lifting assembly 3, and the product 12 on second lifting plate 5 is coated, can realize that the machine platform doubles the number of coating without re-pumping and deflating.
[0025] Please continue to refer to Figures 1 to 3 As shown in the utility model embodiment, the number of bracing 6 is even, the number of first lifting assembly 2 and second lifting assembly 3 is same, and first lifting assembly 2 and second lifting assembly 3 are arranged at intervals on bracing 6. The number of bracing 6 is even, can be 4, 6, 8 etc., and first lifting assembly 2 and second lifting assembly 3 are arranged at intervals, so that the lifting process does not affect each other.
[0026] Please continue to refer to Figure 8As shown, in an embodiment of the utility model, the first lifting assembly 2 and the second lifting assembly 3 all include conical rotor motor 31, pulley block 32 and traction line 33, conical rotor motor 31 is fixed on the upper surface of the support plate 6, the output end of conical rotor motor 31 is fixed with the bobbin 34, the both sides of the support plate 6 are fixed with the pulley block 32, the lower surface of the support plate 6 is fixed with the lifting rod 35, one end of the traction line 33 is fixed on the bobbin 34, the other end of the traction line 33 of the first lifting assembly 2 passes through the pulley block 32 and is connected with the first lifting plate 4, the other end of the traction line 33 of the second lifting assembly 3 passes through the pulley block 32 and is connected with the second lifting plate 5. Conical rotor motor is fixed on the support plate 6 by four hexagonal screws 13, the lifting rod 35 can be the common telescopic rod, one end of the lifting rod 35 is fixed below the support plate 6, the other end is the movable end, can be provided with the first lifting plate 4 and the second lifting plate 5 through the counterweight and the long pulley 9, the height of the two lifting plates on both sides is the same when ascending and descending, wherein the bobbin 34 is provided with two traction lines 33, the length used by the traction line 33 is consistent, the same side of the bobbin 34 leads two traction lines 33, is used for connecting the lifting plate on both sides respectively, by driving the forward rotation or reverse rotation of conical rotor motor 31, the folding or flattening of the first lifting plate 4 and the second lifting plate 5 is made and the first lifting plate 4 and the second lifting plate 5 are driven to ascend and descend.
[0027] Please continue to refer to Figure 1 、 Figure 8 As shown, in an embodiment of the utility model, the pulley block 32 includes upper pulley 321 and lower pulley 322, the upper pulley 321 is arranged on the both sides of the support plate 6 through the first fixed plate 323 on both sides, the lower pulley 322 is fixed above the movable end of the lifting rod 35 through the second fixed plate 324 on both sides, the traction line 33 is located on the outside of the upper pulley 321 and the inside of the lower pulley 322. The traction line 33 is connected with the lifting plate and conical rotor motor 31, passes through the upper pulley 321 and the lower pulley 322 in the middle, and friction is reduced.
[0028] Please continue to refer to Figure 1 As shown, in an embodiment of the utility model, the shape of the first lifting plate 4 and the second lifting plate 5 is all fan-shaped.
[0029] Please continue to refer to Figure 8 、 Figure 10 、 Figure 11 As shown, in an embodiment of the utility model, the lower surface of the support plate 6 is provided with the first power-off switch assembly 10, and the upper surface of the first bearing block 7 and the second bearing block 8 is fixed with the second power-off switch assembly 11. The first power-off switch assembly 10 and the second power-off switch assembly 11 are used for power-off or power-on of the conical motor.
[0030] Please continue to refer to Figure 10 、 Figure 11 As shown in the figure, in an embodiment of the utility model, the first power-off switch assembly 10 and the second power-off switch assembly 11 both include a groove body 101, the bottom of the groove body 101 is fixed with a spring 102, the other end of the spring 102 is connected with a conductive metal 103, the other end of the conductive metal 103 is connected with a cylindrical press switch 104, and the opening end inner wall of the groove body 101 is fixed with a wire 105. The groove body 101 of the first power-off switch assembly 10 is arranged on the lower surface of the supporting plate 6, and the groove body 101 of the second power-off switch assembly 11 is arranged on the upper surface of the first bearing block 7 and the second bearing block 8. When the lifting plate below needs to be folded and lifted, and the lifting plate above needs to be lowered and placed horizontally, the conical rotor motor 31 of the corresponding lifting assembly below is powered, when the lifting plate is folded to the highest position, the lifting rod 35 starts to shrink, when the lifting rod 35 shrinks to the top, the press switch 104 in the first power-off switch assembly 10 is pressed, the spring 102 starts to compress under stress, and the conductive metal 103 is lowered, the wire 105 originally connected with the conductive metal 103 is disconnected with the conductive metal 103, at this time, the power is automatically disconnected, due to the self-braking ability of the conical rotor motor 31, the lifting plate is fixed and will not be lowered, and the lifting rod 35 will not be lowered due to the connection of the lifting plates on both sides; the conical rotor motor 31 of the corresponding lifting assembly originally above is powered, the lifting plate originally above needs to be lowered, the lifting rod 35 starts to descend to the bottom, the lifting plate starts to turn from the folded state to the horizontal state, when the lifting plate reaches the horizontal state, the press switch 104 in the second power-off switch assembly 11 is contacted, the spring 102 starts to compress under stress, and the conductive metal 103 is lowered, the wire 105 connected with the conductive metal 103 is disconnected with the conductive metal 103, at this time, the power is automatically disconnected, and the lifting plate can be maintained in the horizontal state under the action of the bearing block and the conical rotor motor 31, so that the automatic power-off function of the conical rotor motor 31 is realized.
[0031] The utility model has the following working principle: the utility model discloses through control first lifting assembly control first lifting plate be located in the upper of second lifting plate, and control first lifting plate along with first bearing block upwards and fold, second lifting plate is in the horizontal state, when the product on first lifting plate is coated, first lifting assembly control first lifting plate descends, and make first lifting plate downwards and fold to the horizontal state, through second lifting assembly control second lifting plate rises and make second lifting plate upwards and fold, and the product on second lifting plate is coated, can realize the machine platform under not re -exhaustion and deflation, and the number of coating is doubled.
[0032] The above merely describes preferred embodiments of the present application, and should not be construed as limiting the present application. Any changes and modifications made within the scope of the present application should be included in the scope of the present application.
Claims
1. A lift-off physical vapor deposition apparatus, characterized by: The application relates to a lifting device, which comprises a top block, a first lifting plate, a second lifting plate, a first lifting assembly and a second lifting assembly, a plurality of supporting plates are fixed on the lower surface of the top block in a ring shape, the first lifting assembly and the second lifting assembly are arranged at the end of the supporting plates away from the top block, the total number of the first lifting assembly and the second lifting assembly is the same as that of the supporting plates, the first lifting plate is arranged at the end of the first lifting assembly away from the supporting plates through a first load-bearing block, the second lifting plate is arranged at the end of the second lifting assembly away from the supporting plates through a second load-bearing block, and the first lifting plate and the first load-bearing block and the second lifting plate and the second load-bearing block are all movably connected through long pulleys.
2. The lift-off physical vapor deposition apparatus of claim 1, wherein: The number of the supporting plates is even, the number of the first lifting assembly and the second lifting assembly is the same, and the first lifting assembly and the second lifting assembly are arranged at intervals on the supporting plates.
3. The lift-off physical vapor deposition apparatus of claim 1, wherein: The first lifting assembly and the second lifting assembly both comprise a conical rotor motor, a pulley set and a traction line, the conical rotor motor is fixed on the upper surface of the supporting plate, a wire shaft is fixed on the output end of the conical rotor motor, the pulley set is fixed on the two sides of the supporting plate, a lifting rod is fixed on the lower surface of the supporting plate, one end of the traction line is fixed on the wire shaft, the other end of the traction line of the first lifting assembly passes through the pulley set and is connected with the first lifting plate, and the other end of the traction line of the second lifting assembly passes through the pulley set and is connected with the second lifting plate.
4. A lift-off physical vapor deposition apparatus as defined in claim 3, wherein: The pulley set comprises an upper pulley and a lower pulley, the upper pulley is arranged on the two sides of the supporting plate through first fixing plates on the two sides, the lower pulley is fixed above the movable end of the lifting rod through second fixing plates on the two sides, and the traction line is located outside the upper pulley and inside the lower pulley.
5. The lift-off physical vapor deposition apparatus of claim 1, wherein: The first lifting plate and the second lifting plate are both in the shape of a fan.
6. The lift-off physical vapor deposition apparatus of claim 1, wherein: The lower surface of the supporting plate is provided with a first power-off switch assembly, and the upper surfaces of the first load-bearing block and the second load-bearing block are fixed with a second power-off switch assembly.
7. A lift-off physical vapor deposition apparatus as defined in claim 6, wherein: The first power-off switch assembly and the second power-off switch assembly both comprise a groove, a spring is fixed on the bottom of the groove, the other end of the spring is connected with a conductive metal, the other end of the conductive metal is connected with a cylindrical press switch, and a wire is fixed on the inner wall of the opening end of the groove.