CN205772176U - High heat conduction electrographite film roll-in press production line - Google Patents
High heat conduction electrographite film roll-in press production line Download PDFInfo
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- CN205772176U CN205772176U CN201620280148.XU CN201620280148U CN205772176U CN 205772176 U CN205772176 U CN 205772176U CN 201620280148 U CN201620280148 U CN 201620280148U CN 205772176 U CN205772176 U CN 205772176U
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Abstract
This utility model relates to a kind of calender, a kind of high heat conduction electrographite film roll-in press production line, belongs to calender technical field.It includes unreeling structure, deviation correction mechanism, automatic blanking mechanism, home roll calender system and rolling-up mechanism, unreeling structure, automatic blanking mechanism, home roll calender system, rolling support pass through and set gradually, tension force detection wheel and transition wheel it is provided with between unreeling structure and automatic blanking mechanism, fixing multiple deviation correction mechanism on rolling support, rolling frame upper and bottom are provided with multiple rolling-up mechanism.This utility model simple in construction, compact, reasonable, graphite film seriality rolling can be made to produce, and compacted density is high, and thickness evenness is good, from product quality and production efficiency, improve the economic and practical of electrographite product, make the performance of consumer electronic product to be greatly improved.
Description
Technical field
This utility model relates to a kind of calender, a kind of high heat conduction electrographite film roll-in press production line, belongs to calender technical field.
Background technology
Along with the economic and development of society, consumer electronic product is all in high speed development, artificial graphite film is because of its ultrathin, high thermal conductivity, high thermal diffusion coefficient, the feature of high conductivity, increasingly being subject to people's attention, artificial high conduction graphite film has a extensive future in terms of consumer electronic heat conduction and heat radiation.
Lightening, the demand for development of flexibility for reply modern consumer products electronic product.People propose ultrathin, high density, high thermal conductivity, the performance requirement of high thermal diffusion coefficient to heat conduction and heat radiation material.The electrographite produced in sintering process due to polyimides (PI) film is the graphite crystallization body of swelling state.The conditions such as the electrographite of swelling state to be allowed reaches ultra-thin and consistency of thickness, high density, being necessary for will be by the process of compacting.But the process equipment of existing compacting is to realize compacting by the way of flat board punching press.Successional one-tenth web-like can not be realized produce owing to flat board punching course can only be monolithic or the punching press of few sheet.During continuous punching, because flat board stress deformation, the thickness of the graphite film of institute's punching press can not control in the smaller margin of tolerance all the time, and consistency of thickness is bad.Due to be the pressure suffered by whole plane stress monolithic graphite film and pressure than little, punching press graphite film density out is the highest.
Summary of the invention
The purpose of this utility model is to overcome above-mentioned weak point, thus a kind of high heat conduction electrographite film roll-in press production line is provided, graphite film seriality rolling can be made to produce, compacted density is high, thickness evenness is good, from product quality and production efficiency, improve the economic and practical of electrographite product, make the performance of consumer electronic product to be greatly improved.
The technical scheme provided according to this utility model, high heat conduction electrographite film roll-in press production line includes unreeling structure, deviation correction mechanism, automatic blanking mechanism, home roll calender system and rolling-up mechanism, it is characterized in that: unreeling structure, automatic blanking mechanism, home roll calender system, rolling support pass through and set gradually, tension force detection wheel and transition wheel it is provided with between unreeling structure and automatic blanking mechanism, fixing multiple deviation correction mechanism on rolling support, rolling frame upper and bottom are provided with multiple rolling-up mechanism.
Further, unreeling structure includes blowing motor, magnetic powder cluth, blowing air-expanding shaft, releasing bracket and dispensing shaft bearing block, magnetic powder cluth is fixed on releasing bracket, magnetic powder cluth one end connects blowing motor, fixing dispensing shaft bearing block on releasing bracket, blowing air-expanding shaft one end connects magnetic powder cluth through dispensing shaft bearing block.
Further, automatic blanking mechanism includes discharge support, discharge belt, regulating wheel, servomotor, drive coordination band, refuse rotor, discharge pinch roller support and discharge pinch roller, discharge support front and back end is respectively equipped with regulating wheel and refuse rotor, discharge belt it is set with on regulating wheel and refuse rotor, servomotor is fixed on discharge support, the outfan of servomotor connects refuse rotor by drive coordination band, refuse rotor upper end is provided with discharge pinch roller, discharge pinch roller is rotatably connected on discharge pinch roller support, and discharge pinch roller support is fixed on discharge support.
Further, home roll calender system includes motor rack, upper motor, upper coupling, roller bracket, topping roll, lower motor, lower coupler and bottom roll, fixing upper motor and lower motor on motor rack, upper motor and lower motor setting side by side up and down, the outfan of upper motor connects topping roll by upper coupling, the two ends of topping roll are connected on roller bracket by bearing block, and the outfan of lower motor connects bottom roll by lower coupler, and the two ends of bottom roll are connected on roller bracket by bearing block.
Further, deviation correction mechanism includes rectify a deviation motor, correction execution roller, deviation-rectifying bracket, pinch roller and rectifying cylinder, connect correction by bearing block on deviation-rectifying bracket and perform roller, correction performs roller upper end and is provided with pinch roller, and pinch roller is slidably connected in deviation-rectifying bracket, and rectifying cylinder is fixed in deviation-rectifying bracket upper end, the cylinder rod lower end of rectifying cylinder connects pinch roller, rectifying cylinder can drive pinch roller to move up and down, and correction performs one end of roller and connects correction motor, and correction driven by motor correction performs roller and rotates.
Further, rolling-up mechanism includes winding motor, magnetic powder controller, rolling support and winding inflatable shaft, and rolling support connects winding inflatable shaft by bearing block, and one end of winding inflatable shaft connects winding motor by magnetic powder controller.
Compared with the prior art this utility model has the advantage that
This utility model simple in construction, compact, reasonable, graphite film seriality rolling can be made to produce, and compacted density is high, and thickness evenness is good, from product quality and production efficiency, improve the economic and practical of electrographite product, make the performance of consumer electronic product to be greatly improved.
Accompanying drawing explanation
Fig. 1 is this utility model front view.
Fig. 2 is this utility model top view.
Fig. 3 is unreeling structure front view.
Fig. 4 is automatic blanking mechanism front view.
Fig. 5 is home roll calender system front view.
Fig. 6 is deviation correction mechanism front view.
Fig. 7 is rolling-up mechanism front view.
nullDescription of reference numerals: 1-unreeling structure、1.1-blowing motor、1.2-magnetic powder cluth、1.3-blowing air-expanding shaft、1.4-releasing bracket、1.5-dispensing shaft bearing block、2-deviation correction mechanism、2.1-rectifies a deviation motor、2.2-correction performs roller、2.3-deviation-rectifying bracket、2.4-pinch roller、2.5-rectifying cylinder、3-automatic blanking mechanism、3.1-discharge support、3.2-discharge belt、3.3-regulating wheel、3.4-servomotor、3.5-drive coordination band、3.6-refuse rotor、3.7-discharge pinch roller support、3.8-discharge pinch roller、4-home roll calender system、4.1-motor rack、The upper motor of 4.2-、4.3-upper coupling、4.4-roller bracket、4.5-topping roll、Motor under 4.6-、4.7-lower coupler、4.8-bottom roll、5-rolling-up mechanism、5.1-winding motor、5.2-magnetic powder controller、5.3-rolling support、5.4-winding inflatable shaft、6-tension force detection wheel、7-transition wheel、8-rolling support.
Detailed description of the invention
The embodiment combined in accompanying drawing is further described by this utility model below:
As shown in Figure 1 and 2, this utility model mainly includes unreeling structure 1, deviation correction mechanism 2, automatic blanking mechanism 3, home roll calender system 4 and rolling-up mechanism 5.
Unreeling structure 1, automatic blanking mechanism 3, home roll calender system 4, rolling support 8 pass through and set gradually, tension force detection wheel 6 and transition wheel 7 it is provided with between unreeling structure 1 and automatic blanking mechanism 3, unreeling structure 1 primarily serves the effect of blowing, tension force detection wheel 6 can detect the Tensity size during blowing, and transition wheel 7 plays transitional function.Fixing multiple deviation correction mechanism 2 on rolling support 8, rolling support 8 upper and lower is provided with multiple rolling-up mechanism 5.Deviation correction mechanism 2 can play the effect correcting coiled strip deviation, and the coiled strip after rolling-up mechanism 5 will roll carries out rolling.
As shown in Figure 3, described unreeling structure 1 includes blowing motor 1.1, magnetic powder cluth 1.2, blowing air-expanding shaft 1.3, releasing bracket 1.4 and dispensing shaft bearing block 1.5, fixing magnetic powder cluth 1.2 on releasing bracket 1.4, magnetic powder cluth 1.2 one end connects blowing motor 1.1.Fixing dispensing shaft bearing block 1.5 on releasing bracket 1.4, blowing air-expanding shaft 1.3 one end connects magnetic powder cluth 1.2 through dispensing shaft bearing block 1.5.
As shown in Figure 4, described automatic blanking mechanism 3 includes discharge support 3.1, discharge belt 3.2, regulating wheel 3.3, servomotor 3.4, drive coordination band 3.5, refuse rotor 3.6, discharge pinch roller support 3.7 and discharge pinch roller 3.8, discharge support 3.1 front and back end is respectively equipped with on regulating wheel 3.3 and refuse rotor 3.6, regulating wheel 3.3 and refuse rotor 3.6 suit discharge belt 3.2.Fixing servomotor 3.4 on discharge support 3.1, the outfan of servomotor 3.4 connects refuse rotor 3.6 by drive coordination band 3.5.Refuse rotor 3.6 upper end is provided with discharge pinch roller 3.8, and discharge pinch roller 3.8 is rotatably connected on discharge pinch roller support 3.7, and discharge pinch roller support 3.7 is fixed on discharge support 3.1.
As shown in Figure 5, described home roll calender system 4 includes motor rack 4.1, upper motor 4.2, upper coupling 4.3, roller bracket 4.4, topping roll 4.5, lower motor 4.6, lower coupler 4.7 and bottom roll 4.8, fixing upper motor 4.2 and lower motor 4.6, upper motor 4.2 and lower motor 4.6 setting side by side up and down on motor rack 4.1.The outfan of upper motor 4.2 connects topping roll 4.5 by upper coupling 4.3, and the two ends of topping roll 4.5 are connected on roller bracket 4.4 by bearing block.The outfan of lower motor 4.6 connects bottom roll 4.8 by lower coupler 4.7, and the two ends of bottom roll 4.8 are connected on roller bracket 4.4 by bearing block.
As shown in Figure 6, described deviation correction mechanism 2 includes rectify a deviation motor 2.1, correction execution roller 2.2, deviation-rectifying bracket 2.3, pinch roller 2.4 and rectifying cylinder 2.5, connect correction by bearing block on deviation-rectifying bracket 2.3 and perform roller 2.2, correction performs roller 2.2 upper end and is provided with pinch roller 2.4, and pinch roller 2.4 is slidably connected in deviation-rectifying bracket 2.3.Rectifying cylinder 2.5 is fixed in deviation-rectifying bracket 2.3 upper end, and the cylinder rod lower end of rectifying cylinder 2.5 connects pinch roller 2.4, and rectifying cylinder 2.5 can drive pinch roller 2.4 to move up and down.Correction performs one end of roller 2.2 and connects correction motor 2.1, and correction motor 2.1 drives correction to perform roller 2.2 and rotates.
As shown in Figure 7, described rolling-up mechanism 5 includes winding motor 5.1, magnetic powder controller 5.2, rolling support 5.3 and winding inflatable shaft 5.4, connecting winding inflatable shaft 5.4 by bearing block on rolling support 5.3, one end of winding inflatable shaft 5.4 connects winding motor 5.1 by magnetic powder controller 5.2.
This utility model simple in construction, compact, reasonable, graphite film seriality rolling can be made to produce, and compacted density is high, and thickness evenness is good, from product quality and production efficiency, improve the economic and practical of electrographite product, make the performance of consumer electronic product to be greatly improved.
Claims (6)
1. one kind high heat conduction electrographite film roll-in press production line, including unreeling structure (1), deviation correction mechanism (2), automatic blanking mechanism (3), home roll calender system (4) and rolling-up mechanism (5), it is characterized in that: unreeling structure (1), automatic blanking mechanism (3), home roll calender system (4), rolling support (8) passes through and sets gradually, tension force detection wheel (6) and transition wheel (7) it is provided with between unreeling structure (1) and automatic blanking mechanism (3), the upper fixing multiple deviation correction mechanisms (2) of rolling support (8), rolling support (8) upper and lower is provided with multiple rolling-up mechanism (5).
High heat conduction electrographite film roll-in press production line the most as claimed in claim 1, it is characterized in that: described unreeling structure (1) includes blowing motor (1.1), magnetic powder cluth (1.2), blowing air-expanding shaft (1.3), releasing bracket (1.4) and dispensing shaft bearing block (1.5), the upper fixing magnetic powder cluth (1.2) of releasing bracket (1.4), magnetic powder cluth (1.2) one end connects blowing motor (1.1), the upper fixing dispensing shaft bearing block (1.5) of releasing bracket (1.4), blowing air-expanding shaft (1.3) one end connects magnetic powder cluth (1.2) through dispensing shaft bearing block (1.5).
nullHigh heat conduction electrographite film roll-in press production line the most as claimed in claim 1,It is characterized in that: described automatic blanking mechanism (3) includes discharge support (3.1)、Discharge belt (3.2)、Regulating wheel (3.3)、Servomotor (3.4)、Drive coordination band (3.5)、Refuse rotor (3.6)、Discharge pinch roller support (3.7) and discharge pinch roller (3.8),Discharge support (3.1) front and back end is respectively equipped with regulating wheel (3.3) and refuse rotor (3.6),Regulating wheel (3.3) and refuse rotor (3.6) upper suit discharge belt (3.2),The upper fixing servomotor (3.4) of discharge support (3.1),The outfan of servomotor (3.4) connects refuse rotor (3.6) by drive coordination band (3.5),Refuse rotor (3.6) upper end is provided with discharge pinch roller (3.8),Discharge pinch roller (3.8) is rotatably connected on discharge pinch roller support (3.7),Discharge pinch roller support (3.7) is fixed on discharge support (3.1).
nullHigh heat conduction electrographite film roll-in press production line the most as claimed in claim 1,It is characterized in that: described home roll calender system (4) includes motor rack (4.1)、Upper motor (4.2)、Upper coupling (4.3)、Roller bracket (4.4)、Topping roll (4.5)、Lower motor (4.6)、Lower coupler (4.7) and bottom roll (4.8),The upper fixing upper motor (4.2) of motor rack (4.1) and lower motor (4.6),Upper motor (4.2) and lower motor (4.6) setting side by side up and down,The outfan of upper motor (4.2) connects topping roll (4.5) by upper coupling (4.3),The two ends of topping roll (4.5) are connected on roller bracket (4.4) by bearing block,The outfan of lower motor (4.6) connects bottom roll (4.8) by lower coupler (4.7),The two ends of bottom roll (4.8) are connected on roller bracket (4.4) by bearing block.
nullHigh heat conduction electrographite film roll-in press production line the most as claimed in claim 1,It is characterized in that: described deviation correction mechanism (2) includes motor (2.1) of rectifying a deviation、Correction performs roller (2.2)、Deviation-rectifying bracket (2.3)、Pinch roller (2.4) and rectifying cylinder (2.5),Connect correction by bearing block on deviation-rectifying bracket (2.3) and perform roller (2.2),Correction performs roller (2.2) upper end and is provided with pinch roller (2.4),Pinch roller (2.4) is slidably connected in deviation-rectifying bracket (2.3),Rectifying cylinder (2.5) is fixed in deviation-rectifying bracket (2.3) upper end,The cylinder rod lower end of rectifying cylinder (2.5) connects pinch roller (2.4),Rectifying cylinder (2.5) can drive pinch roller (2.4) to move up and down,Correction performs one end of roller (2.2) and connects correction motor (2.1),Correction motor (2.1) drives correction to perform roller (2.2) and rotates.
High heat conduction electrographite film roll-in press production line the most as claimed in claim 1, it is characterized in that: described rolling-up mechanism (5) includes winding motor (5.1), magnetic powder controller (5.2), rolling support (5.3) and winding inflatable shaft (5.4), connecting winding inflatable shaft (5.4) by bearing block on rolling support (5.3), one end of winding inflatable shaft (5.4) connects winding motor (5.1) by magnetic powder controller (5.2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620280148.XU CN205772176U (en) | 2016-04-05 | 2016-04-05 | High heat conduction electrographite film roll-in press production line |
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CN201620280148.XU CN205772176U (en) | 2016-04-05 | 2016-04-05 | High heat conduction electrographite film roll-in press production line |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105668279A (en) * | 2016-04-05 | 2016-06-15 | 珠海市光环自动化科技有限公司 | Rolling and calendering production line of high-heat-conductivity artificial graphite film |
CN106586636A (en) * | 2016-12-28 | 2017-04-26 | 镇江博昊科技有限公司 | Delivery mechanism for graphite film calender |
-
2016
- 2016-04-05 CN CN201620280148.XU patent/CN205772176U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105668279A (en) * | 2016-04-05 | 2016-06-15 | 珠海市光环自动化科技有限公司 | Rolling and calendering production line of high-heat-conductivity artificial graphite film |
CN106586636A (en) * | 2016-12-28 | 2017-04-26 | 镇江博昊科技有限公司 | Delivery mechanism for graphite film calender |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
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Effective date of registration: 20180913 Granted publication date: 20161207 |
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PD01 | Discharge of preservation of patent | ||
PD01 | Discharge of preservation of patent |
Date of cancellation: 20210913 Granted publication date: 20161207 |
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DD01 | Delivery of document by public notice | ||
DD01 | Delivery of document by public notice |
Addressee: Xian Yerong Document name: Notice of termination of proceedings |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20161207 Termination date: 20200405 |