CN208601808U - A kind of silicon materials processing hot material tiling device - Google Patents

A kind of silicon materials processing hot material tiling device Download PDF

Info

Publication number
CN208601808U
CN208601808U CN201821222225.1U CN201821222225U CN208601808U CN 208601808 U CN208601808 U CN 208601808U CN 201821222225 U CN201821222225 U CN 201821222225U CN 208601808 U CN208601808 U CN 208601808U
Authority
CN
China
Prior art keywords
conveyer belt
silicon materials
fixedly installed
calendering cylinder
calendering
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201821222225.1U
Other languages
Chinese (zh)
Inventor
赵东旭
赵生护
赵生保
汪旋
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ANHUI LONGQUAN SILICON MATERIAL Co Ltd
Original Assignee
ANHUI LONGQUAN SILICON MATERIAL Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by ANHUI LONGQUAN SILICON MATERIAL Co Ltd filed Critical ANHUI LONGQUAN SILICON MATERIAL Co Ltd
Priority to CN201821222225.1U priority Critical patent/CN208601808U/en
Application granted granted Critical
Publication of CN208601808U publication Critical patent/CN208601808U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Silicon Compounds (AREA)

Abstract

A kind of silicon materials processing hot material tiling device, including conveyer belt, smelting furnace, pedestal, two transfer rollers, two transfer rollers are fixed on pedestal by column, conveyer belt passes through two transfer rollers and forms a closed circuit, smelting furnace is fixedly installed above conveyer belt, support column is fixedly installed in conveyor belt two sides, connection framework is fixedly installed in upper end of support column, bearing is arranged by Boards wall in the middle part of connection framework, calendering cylinder is fixedly mounted on bearing, the calendering cylinder surface is bonded with the rotation of conveyer belt upper surface, one of transfer roller is connected by power driving motor, driving motor drives transfer roller rotation, to drive conveyer belt to advance, conveyer belt is the iron and steel material quality of more piece combination.The utility model structure is simple, novel in design, and calendering cylinder is arranged by surface on a moving belt, silicon materials tiling is realized to transmission belt surface, the cooling efficiency of silicon materials is accelerated and silicon materials after cooling is thinner, it is easier to is broken, it is effective to improve production efficiency, significant effect.

Description

A kind of silicon materials processing hot material tiling device
Technical field
The utility model relates to silicon materials production equipment fields, and in particular to a kind of silicon materials processing hot material tiling dress It sets.
Background technique
Silicon is important semiconductor material, chemical elemental symbol Si, the silicon used in electronics industry should have high-purity and The excellent performances such as electrical and mechanical, silicon are that yield is maximum, most widely used semiconductor material, its yield and dosage indicates One national electronics industry is horizontal.
Silicon is the most abundant elemental semiconductor on the earth's crust, and property is superior and comparison of technology is mature, has become solid-state electricity The primary raw material of sub- device, for the needs for adapting to super large-scale integration, high integrality high evenness (especially point of oxygen Cloth) silicon single crystal technology of preparing developing, although hypervelocity integrated circuit connection GaAs material show it is huge superior Property, but still can not comprehensively replace silicon status, silicon materials various transistors, especially power device manufacture view still It is most important material, amorphous silicon is likely to become same monocrystalline silicon important silicon materials arranged side by side, amorphous silicon and the polysilicon sun The success of battery sharply increases the consumption of silicon materials.
In process of production, the silicon materials after smelting furnace melts need to transmit, are cooling, broken present silicon materials, tradition Silicon materials melt later directly on a moving belt, conveyer belt makes silicon materials natural cooling during transportation, then into The broken cartonning of row will form one when pouring on conveyer belt and stick together very thick bulk, pass since the silicon materials after melting belong to glue It send the speed of band to need that adjusts just silicon materials can be made to be fully cooled hardening slowly very much, influences production efficiency, and the silicon materials after hardening Since thickness is very thick, it has not been convenient to it is broken, and broken be not thorough is easy to damage crushing plant.
Utility model content
The technical problem to be solved by the utility model is to provide a kind of structure is simple, superior performance can be effectively improved The silicon materials processing hot material tiling device of cooling efficiency.
Technical problem to be solved in the utility model is realized using following technical scheme:
A kind of silicon materials processing hot material tiling device, including conveyer belt, smelting furnace, pedestal, two transfer rollers, feature exist In: two transfer rollers are fixed on pedestal by column, and the conveyer belt passes through two transfer rollers and forms a closure Smelting furnace is fixedly installed in circuit, the conveyer belt top, and support column, the support column is fixedly installed in the conveyor belt two sides Connection framework is fixedly installed in upper end, and the connection framework middle part is arranged bearing by Boards wall, fixes on the bearing Installation calendering cylinder, the calendering cylinder surface are bonded with the rotation of conveyer belt upper surface, and one of transfer roller is connected by power Driving motor, the driving motor drives transfer roller rotation, so that conveyer belt be driven to advance, the conveyer belt is more piece combination Iron and steel material quality.
The calendering cylinder is hollow structure, and described calendering cylinder one end is rotatablely connected water inlet pipe, other end connection water outlet Pipe passes through the calendering cylinder of hollow structure, internal circulation circulating water, after avoiding calendering cylinder while deformation because of high temperature to calendering Silicon materials are tentatively cooled down, and cooling efficiency is improved.
Strut is fixedly installed in the connection framework upper end, is arranged material scraping plate on the strut, under the material scraping plate End is bonded with calendering cylinder surface, by the material scraping plate of setting, can strike off a small amount of silicon materials for rolling cylinder surfaces stick, avoid because The excessive silicon materials of calendering cylinder surfaces stick cause the pressure between conveyer belt to increase and damage conveyer belt.
Shown in supporting plate is set in the middle part of conveyer belt, wheel group is set on the supporting plate, the wheel group is supported on conveyer belt Lower surface, wheel group reduce frictional force when conveyer belt is advanced while supporting conveyer belt, improve transfer efficiency.
Working principle: starting motor, motor drive conveyer belt to advance, and conveyer belt drives the calendering cylinder being bonded with conveyer belt to turn Dynamic, the silicon materials after thawing are poured on the intermediate position of conveyer belt by the smelting furnace above conveyer belt, and conveyer belt drives silicon materials to advance While, calendering cylinder rolls silicon materials, makes silicon materials tiling to transmission belt surface, the hot material to silicon materials can be realized Tiling, makes to increase the contact area with air while silicon materials are thinning, after accelerating the cooling efficiency of silicon materials and cooling down Silicon materials it is thinner, it is easier to it is broken.
The utility model has the following beneficial effects: the utility model structure is simple, and it is novel in design, pass through surface on a moving belt Setting calendering cylinder realizes silicon materials tiling to transmission belt surface, accelerates the cooling efficiency of silicon materials and silicon material after cooling Expect thinner, it is easier to it is broken, effectively improve production efficiency, significant effect.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is enlarged diagram at A in Fig. 1.
Specific embodiment
In order to be easy to understand the technical means, creative features, achievement of purpose, and effectiveness of the utility model, under Face combines and is specifically illustrating, and the utility model is further described.
Embodiment 1
As shown in Figure 1 and Figure 2, a kind of silicon materials processing hot material tiling device, including conveyer belt 1, smelting furnace 2, pedestal 3, two A transfer roller 4, two transfer rollers 4 are fixedly installed on the base 3 by column, and conveyer belt 1 passes through two formation of transfer rollers 4 one and is closed back Smelting furnace 2 is fixedly installed above conveyer belt 1 for road, and support column 5 is fixedly installed in 1 two sides of conveyer belt, and the fixed setting of 5 upper end of support column connects Frame 6 is connect, passes through clamping plate 7 in the middle part of connection framework 6 and bearing 8 is fixedly installed, calendering cylinder 9 is fixedly mounted on bearing 8, rolls 9 table of cylinder Face is bonded with the rotation of 1 upper surface of conveyer belt, and one of transfer roller 4 is connected by power driving motor 10, and driving motor 10 drives transfer roller 4 Rotation, so that conveyer belt 1 be driven to advance, conveyer belt 1 is the iron and steel material quality of more piece combination.
Working principle: starting motor 10, motor 10 drive conveyer belt 1 to advance, and the drive of conveyer belt 1 is bonded with conveyer belt 1 Roll cylinder 9 to rotate, the silicon materials after thawing are poured on the intermediate position of conveyer belt 1,1 band of conveyer belt by the smelting furnace 2 of 1 top of conveyer belt While dynamic silicon materials are advanced, calendering 9 pairs of silicon materials of cylinder roll, and make silicon materials tiling to 1 surface of conveyer belt, can be realized Hot material tiling to silicon materials, makes to increase the contact area with air while silicon materials are thinning, accelerates the cold of silicon materials But efficiency and silicon materials after cooling are thinner, it is easier to broken.
Calendering cylinder 9 is hollow structure, and calendering 9 one end of cylinder is rotatablely connected water inlet pipe 11, and the other end connects outlet pipe, in The calendering cylinder 9 of hollow structure, internal circulation circulating water avoid calendering cylinder 9 while deformation because of high temperature to the silicon materials after calendering Tentatively cooled down, improves cooling efficiency.
Strut 12 is fixedly installed in 6 upper end of connection framework, and material scraping plate 13,13 lower end of material scraping plate and calendering cylinder are arranged on strut 12 The fitting of 9 surfaces can strike off a small amount of silicon materials of calendering 9 surfaces stick of cylinder by the material scraping plate 13 of setting, avoid because rolling cylinder The excessive silicon materials of 9 surfaces sticks cause the pressure between conveyer belt 1 to increase and damage conveyer belt 1.
Embodiment 2
As shown in Figure 1 and Figure 2, a kind of silicon materials processing hot material tiling device, including conveyer belt 1, smelting furnace 2, pedestal 3, two A transfer roller 4, two transfer rollers 4 are fixedly installed on the base 3 by column, and conveyer belt 1 passes through two formation of transfer rollers 4 one and is closed back Smelting furnace 2 is fixedly installed above conveyer belt 1 for road, and support column 5 is fixedly installed in 1 two sides of conveyer belt, and the fixed setting of 5 upper end of support column connects Frame 6 is connect, passes through clamping plate 7 in the middle part of connection framework 6 and bearing 8 is fixedly installed, calendering cylinder 9 is fixedly mounted on bearing 8, rolls 9 table of cylinder Face is bonded with the rotation of 1 upper surface of conveyer belt, and one of transfer roller 4 is connected by power driving motor 10, and driving motor 10 drives transfer roller 4 Rotation, so that conveyer belt 1 be driven to advance, conveyer belt 1 is the iron and steel material quality of more piece combination.
Working principle: starting motor 10, motor 10 drive conveyer belt 1 to advance, and the drive of conveyer belt 1 is bonded with conveyer belt 1 Roll cylinder 9 to rotate, the silicon materials after thawing are poured on the intermediate position of conveyer belt 1,1 band of conveyer belt by the smelting furnace 2 of 1 top of conveyer belt While dynamic silicon materials are advanced, calendering 9 pairs of silicon materials of cylinder roll, and make silicon materials tiling to 1 surface of conveyer belt, can be realized Hot material tiling to silicon materials, makes to increase the contact area with air while silicon materials are thinning, accelerates the cold of silicon materials But efficiency and silicon materials after cooling are thinner, it is easier to broken.
Calendering cylinder 9 is hollow structure, and calendering 9 one end of cylinder is rotatablely connected water inlet pipe 11, and the other end connects outlet pipe, in The calendering cylinder 9 of hollow structure, internal circulation circulating water avoid calendering cylinder 9 while deformation because of high temperature to the silicon materials after calendering Tentatively cooled down, improves cooling efficiency.
Strut 12 is fixedly installed in 6 upper end of connection framework, and material scraping plate 13,13 lower end of material scraping plate and calendering cylinder are arranged on strut 12 The fitting of 9 surfaces can strike off a small amount of silicon materials of calendering 9 surfaces stick of cylinder by the material scraping plate 13 of setting, avoid because rolling cylinder The excessive silicon materials of 9 surfaces sticks cause the pressure between conveyer belt 1 to increase and damage conveyer belt 1.
Supporting plate 14 is set in the middle part of conveyer belt 1, wheel group 15 is set on supporting plate 14, wheel group 15 is supported on 1 lower surface of conveyer belt, takes turns Group 15 reduces frictional force when conveyer belt 1 is advanced while supporting conveyer belt 1, improves transfer efficiency.
The basic principles and main features of the present invention and the advantages of the present invention have been shown and described above.Current row The technical staff of industry is described in above embodiments and description it should be appreciated that the present utility model is not limited to the above embodiments Only illustrate the principles of the present invention, on the premise of not departing from the spirit and scope of the utility model, the utility model is also It will have various changes and improvements, these various changes and improvements fall within the scope of the claimed invention.The utility model Claimed range is defined by the appending claims and its equivalent thereof.

Claims (4)

1. a kind of silicon materials processing hot material tiling device, including conveyer belt, smelting furnace, pedestal, two transfer rollers, it is characterised in that: Two transfer rollers are fixed on pedestal by column, and the conveyer belt passes through two transfer rollers formation one and is closed back Road, is fixedly installed smelting furnace above the conveyer belt, and the conveyor belt two sides are fixedly installed support column, on the support column Bearing, fixed peace on the bearing is arranged by Boards wall in end fixed setting connection framework, the connection framework middle part Dress calendering cylinder, the calendering cylinder surface are bonded with the rotation of conveyer belt upper surface, and one of transfer roller is connected by power drive Dynamic motor, the driving motor drives transfer roller rotation, so that conveyer belt be driven to advance, the conveyer belt is more piece combination Iron and steel material quality.
2. a kind of silicon materials processing hot material tiling device according to claim 1, it is characterised in that: the calendering cylinder For hollow structure, described calendering cylinder one end is rotatablely connected water inlet pipe, and the other end connects outlet pipe.
3. a kind of silicon materials processing hot material tiling device according to claim 1, it is characterised in that: the connection frame Strut is fixedly installed in frame upper end, and material scraping plate is arranged on the strut, and the material scraping plate lower end is bonded with calendering cylinder surface.
4. a kind of silicon materials processing hot material tiling device according to claim 1, it is characterised in that: shown in conveyer belt Supporting plate is arranged in middle part, wheel group is arranged on the supporting plate, the wheel group is supported on conveyer belt lower surface.
CN201821222225.1U 2018-07-31 2018-07-31 A kind of silicon materials processing hot material tiling device Active CN208601808U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821222225.1U CN208601808U (en) 2018-07-31 2018-07-31 A kind of silicon materials processing hot material tiling device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821222225.1U CN208601808U (en) 2018-07-31 2018-07-31 A kind of silicon materials processing hot material tiling device

Publications (1)

Publication Number Publication Date
CN208601808U true CN208601808U (en) 2019-03-15

Family

ID=65671555

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821222225.1U Active CN208601808U (en) 2018-07-31 2018-07-31 A kind of silicon materials processing hot material tiling device

Country Status (1)

Country Link
CN (1) CN208601808U (en)

Similar Documents

Publication Publication Date Title
CN202329094U (en) Roller-way type solar cell silicon wafer sintering furnace
CN207272153U (en) A kind of cast member quickly cooling device
CN102849743B (en) Polysilicon purification method and device by reverse induced solidification
WO2020224186A1 (en) Ingot furnace for directional solidification growth of crystalline silicon and application
CN102393139A (en) Roller way type solar battery silicon wafer sintering furnace
CN204251762U (en) A kind of thermal field structure of single crystal furnace
CN208601808U (en) A kind of silicon materials processing hot material tiling device
CN202323100U (en) Straight-pull eight-inch silicon single crystal thermal field
CN110002732A (en) A method of control glass heating
CN201254620Y (en) Continuous polysilicon purification crystallization furnace
CN208802838U (en) A kind of metallic silicon purification furnace of environment-friendly high-efficiency
CN103743231A (en) Roller-bed-type drying and sintering integrated furnace for solar battery silicon wafers
CN202785671U (en) Device utilizing reverse induction solidification to purify polycrystalline silicon
CN208727619U (en) A kind of silicon materials processing cold burden crushing device
CN106802081A (en) A kind of smelting device
CN212221363U (en) Special high-protection high-efficiency transferring and conveying system for back plate of television display
CN111424314B (en) Gallium-silicon alloy manufacturing furnace for gallium-doped monocrystalline silicon and manufacturing method thereof
CN208173613U (en) A kind of electricity enhancing hydrogen paralysis facility
CN206298659U (en) Polycrystalline furnace thermal field device
CN207948778U (en) A kind of tea withering machine
CN208127312U (en) A kind of chloride plate pressure setting
CN203228339U (en) Membrane-forming system for preparing perfluorinated ionic membrane by adopting tape-casting method
CN217154698U (en) Cooling device of low density aluminium fluoride
CN105571333B (en) Calcium carbide cooling device and its method
CN208811082U (en) A kind of High-efficiency stable steel belt reduction furnace

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant