CN201001208Y - High-frequency coil capable of meanwhile producing three silicon cores or other crystal materials - Google Patents

High-frequency coil capable of meanwhile producing three silicon cores or other crystal materials Download PDF

Info

Publication number
CN201001208Y
CN201001208Y CNU2007200892201U CN200720089220U CN201001208Y CN 201001208 Y CN201001208 Y CN 201001208Y CN U2007200892201 U CNU2007200892201 U CN U2007200892201U CN 200720089220 U CN200720089220 U CN 200720089220U CN 201001208 Y CN201001208 Y CN 201001208Y
Authority
CN
China
Prior art keywords
high frequency
frequency coil
endoporus
produce
crystalline material
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.)
Expired - Fee Related
Application number
CNU2007200892201U
Other languages
Chinese (zh)
Inventor
刘朝轩
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.)
Luoyang Jinnuo Mechanical Engineering Co Ltd
Original Assignee
刘朝轩
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 刘朝轩 filed Critical 刘朝轩
Priority to CNU2007200892201U priority Critical patent/CN201001208Y/en
Application granted granted Critical
Publication of CN201001208Y publication Critical patent/CN201001208Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • General Induction Heating (AREA)

Abstract

The utility model discloses a high frequency coil which can produce three silicon cores or other crystal materials for one time, relating to the high frequency coil technology field. A high frequency coil upper surface (9) with a bevel surface is arranged on the upper part of a high frequency coil (3), a trapezoid high frequency coil lower surface (10) is arranged on the lower part thereof, and three inner holes (8) lined up in triangle are arranged in the middle thereof; a cooling water course(4) surrounds the high frequency coil (3), and is fixedly connected with two electric current delivery and cooling water delivery copper pipes (12) respectively on the two sides of the slanting opening (13) position of the high frequency coil (3).

Description

Can produce the high frequency coil of three silicon cores or other crystalline material simultaneously
Technical field:
The utility model relates to the high frequency coil technical field, especially once can produce the high frequency coil of three silicon cores or other crystalline material simultaneously.
Background technology:
At present, in the technical process that the molten mode in silicon core, monocrystalline silicon and other material crystals district is produced, what use mostly is a kind of monocular high frequency coil, its operation principle is as follows: feed high-frequency current to high frequency coil during work, produce the magnetic line of force fuel rod is carried out induction heating, make the fuel rod upper end form the fusion zone, then with the brilliant fusion zone of inserting of son, slowly promote young brilliant, raw material after the fusing will be followed young brilliant the rising, form a new column type crystal, this new column type crystal is the manufactured goods of silicon core or other material crystals.Yet the shortcoming of this high frequency coil is once to draw a silicon core or other material crystals, and efficient is too low, causes a large amount of wastes of the manpower and the energy.Though this high frequency coil also can make it can once draw many silicon cores or other crystal by strengthening endoporus, need several times ground to increase power, can cause bigger waste to the energy, thereby this method is extremely worthless.
Summary of the invention:
The utility model is in order to overcome the above-mentioned deficiency of existing high frequency coil, through I repeatedly test, the purpose of this utility model provides a kind of high frequency coil that can produce three silicon cores or other crystalline material simultaneously.This high frequency coil that can produce three silicon cores or other crystalline material simultaneously not only can be increased work efficiency widely, and has advantages such as homogeneous heating, energy savings, increase output.
For realizing the purpose of foregoing invention, the utility model adopts following technical scheme:
A kind of high frequency coil that can produce three silicon cores or other crystalline material simultaneously, on high frequency coil top is provided with the high frequency coil on band inclined-plane, the bottom is provided with below the trapezoidal high frequency coil, is provided with three endoporus that are triangularly arranged at the middle part of high frequency coil; Its cooling water channel is around high frequency coil, and carries with two electric currents respectively in the both sides at high frequency coil diagonal cut joint place and cooling water carries copper pipe to fixedly connected, and the diagonal cut joint extension of its diagonal cut joint is that of passing in three endoporus extends forward.
This can produce the high frequency coil of three silicon cores or other crystalline material simultaneously, can be made up of a plurality of ladders below the trapezoidal high frequency coil that its high frequency coil bottom is provided with.
This can produce the high frequency coil of three silicon cores or other crystalline material simultaneously, can form a slope from outside to inside above the high frequency coil that its high frequency coil top is provided with.
This can produce the high frequency coil of three silicon cores or other crystalline material simultaneously, and its cooling water channel can directly be slotted on high frequency coil, imbeds copper pipe then and is fixed by solder bonding metal.
This can produce the high frequency coil of three silicon cores or other crystalline material simultaneously, and its cooling water channel can directly be slotted on high frequency coil, utilizes copper sheet to cover then and is fixed by the metal solder slit.
This can produce the high frequency coil of three silicon cores or other crystalline material simultaneously, and its diagonal cut joint directly is used to pass to one of them of three endoporus, and extends straight extension forward by diagonal cut joint.
This can produce the high frequency coil of three silicon cores or other crystalline material simultaneously, and its three endoporus are rounded projections arranged.
This can produce the high frequency coil of three silicon cores or other crystalline material simultaneously, and three endoporus that its high frequency coil middle part is provided with can be designed to circular inner hole, square inner bore, rectangle endoporus, triangle endoporus, polygon endoporus, irregular polygon endoporus, rhombus endoporus, trapezoidal endoporus, Long Circle endoporus and oval endoporus.
This can produce the high frequency coil of three silicon cores or other crystalline material simultaneously, can use the design of band angle when its endoporus shaped design is the band angle.
This can produce the high frequency coil of three silicon cores or other crystalline material simultaneously, and the method for rounding of angle realized in its endoporus can use when being designed to the angle equally.
Because adopt technique scheme, the beneficial effects of the utility model are:
The utility model is owing to adopt the high frequency coil technology of three holes discharging simultaneously, once can draw three silicon cores or other crystalline material simultaneously, use this high frequency coil to enhance productivity greatly, improve capacity usage ratio, reduce production costs, increase output and have advantages such as homogeneous heating, a large amount of energy savings, minimizing equipment investment and artificial comprehensive cost can effectively reduce, be easy in the promotion and implementation of polysilicon industry.
Description of drawings:
Fig. 1 is the planar structure schematic diagram of high frequency coil.
Fig. 2 is the A-A view of Fig. 1.
Fig. 3 is the operation principle schematic diagram of high frequency coil.
Fig. 4 be the electric current of high frequency coil in the workflow of high frequency coil to principle schematic
Fig. 5 is the circular inner hole schematic diagram of high frequency coil.
Fig. 6 is the square inner bore schematic diagram of high frequency coil.
Fig. 7 is the square interior rounding of angle endoporus schematic diagram of high frequency coil.
Fig. 8 is the rectangle endoporus schematic diagram of high frequency coil.
Fig. 9 is the interior rounding of angle endoporus schematic diagram of the rectangle of high frequency coil.
Figure 10 is the triangle endoporus schematic diagram of high frequency coil.
Figure 11 is the interior rounding of angle endoporus schematic diagram of the triangle of high frequency coil.
Figure 12 is the polygon endoporus schematic diagram of high frequency coil.
Figure 13 is the irregular limit shape endoporus schematic diagram of high frequency coil.
Figure 14 is the rhombus endoporus schematic diagram of high frequency coil.
Figure 15 is the interior rounding of angle endoporus schematic diagram of the rhombus of high frequency coil.
Figure 16 is the trapezoidal endoporus schematic diagram of high frequency coil.
Figure 17 is the trapezoidal interior rounding of angle endoporus schematic diagram of high frequency coil.
Figure 18 is the Long Circle endoporus schematic diagram of high frequency coil.
Figure 19 is the oval endoporus schematic diagram of high frequency coil.Diagonal cut joint extends
In the drawings; 1, the raw material silicon rod, 2, the magnetic line of force, 3, high frequency coil, 4, cooling water channel, 5, the silicon core, 6, young brilliant, 7, young brilliant chuck, 8, endoporus, 9, above the high frequency coil, 10, below the high frequency coil, 11, diagonal cut joint extends, and 12, electric current is carried and cooling water is carried copper pipe, 13, diagonal cut joint, 14, circular inner hole, 15, square inner bore, 16, rounding of angle endoporus in square, 17, the rectangle endoporus, 18, rounding of angle endoporus in the rectangle, 19, the triangle endoporus, 20, rounding of angle endoporus in the triangle, 21, the polygon endoporus, 22, irregular limit shape endoporus, 23, the rhombus endoporus, 24, rounding of angle endoporus in the rhombus, 25, trapezoidal endoporus, 26, rounding of angle endoporus in trapezoidal, 27, the Long Circle endoporus, 28, oval endoporus.
Embodiment;
With reference to the following examples, can explain the utility model in more detail; But the utility model is not limited to these embodiment.
In Fig. 1,2, this can produce the high frequency coil of three silicon cores or other crystalline material simultaneously, on high frequency coil (3) top is provided with the high frequency coil of being with the inclined-plane (9), the bottom is provided with (10) below the trapezoidal high frequency coil, is provided with three endoporus that are triangularly arranged (8) at the middle part of high frequency coil (3); Its cooling water channel (4) is around high frequency coil (3), and carry with two electric currents respectively in both sides that high frequency coil (3) diagonal cut joint (13) is located and cooling water carries copper pipe (12) to fixedly connected, the diagonal cut joint of its diagonal cut joint (13) extends (11) part and extends forward for of passing in three endoporus (8), (10) can be made up of a plurality of ladders below the trapezoidal high frequency coil that high frequency coil (3) bottom is provided with, and (9) can form a slope from outside to inside on the high frequency coil that high frequency coil (3) top is provided with; Cooling water channel (4) can directly be gone up fluting at high frequency coil (3), imbedding copper pipe is then fixed by solder bonding metal again, its cooling water channel (4) also can directly be gone up fluting at high frequency coil (3), utilize copper sheet to cover then and fix by solder bonding metal, diagonal cut joint (13) directly is used to pass to one of them of three endoporus (8), and by the straight extension forward of diagonal cut joint extension (11), three endoporus (8) are rounded projections arranged.
In Fig. 3,4, this can produce the high frequency coil of three silicon cores or other crystalline material simultaneously, and its operation principle and using method thereof are; Earlier raw material silicon rod (1) is delivered to high frequency coil (3) bottom, raw material silicon rod (1) is near more good more apart from high frequency coil (3), but must not contact with high frequency coil (3), one of them electric current on high frequency coil (3) is carried and cooling water carries copper pipe (12) energising to send water and another root electric current to carry and cooling water is carried copper pipe (12) energising draining then, impel high frequency coil (3) to produce the powerful magnetic line of force (2), make raw material silicon rod (1) upper end utilize the magnetic line of force (2) to carry out induction heating near the part of coil, the cooling water that flows through in the cooling water channel (4) is given high frequency coil (3) cooling, diagonal cut joint (13) is made angle and is passed in three endoporus (8) one, and by the straight extension forward of diagonal cut joint extension (11), its major function is for high-frequency current is evenly distributed on coil, thereby makes raw material silicon rod (1) thermally equivalent; After melt at the position of (10) below the close high frequency coil in the termination of raw material silicon rod (1), young brilliant chuck (7) is being with young brilliant (6) to descend, the fusion zone that makes young brilliant (6) insert fuel rod (1) by three endoporus (8) back, promote young brilliant (6) then, the melt cognition on fuel rod (1) top is followed young brilliant (6) and is risen, also corresponding the following synchronously of the lower shaft of its fuel rod (1) bottom slowly risen, but its fuel rod (1) must not contact with high frequency coil (3); Because the end of raw material silicon rod (1) may be not too smooth, so, (10) are designed to stepped below the high frequency coil, its role is to make as much as possible the many bottom surfaces (10) of raw material silicon rod (1) near high frequency coil, the slope from outside to inside of its (9) design above high frequency coil, its effect is can reduce high-frequency current too the concentrating of middle part, and it is evenly distributed, with the effect that realizes being heated evenly at high frequency coil (3); The fusion zone on raw material silicon rod (1) top is in the sticking and drive of young brilliant (6) and by behind high frequency coil (3) endoporus (8), because weakening and condensation of the magnetic line of force (2), just form three new column type crystal, its young brilliant chuck (7) is carried young brilliant (6) secretly and is slowly risen, and just can form the finished silicon core (5) of Len req.
In Fig. 5,6,7,8,9,10,11,12,13,14,15,16,17,18,19, this can produce the high frequency coil of three silicon cores or other crystalline material simultaneously, three endoporus (8) that its high frequency coil (3) middle part is provided with can be designed the endoporus (8) of different size, model and moulding, and its scope of design roughly has following kind; Rounding of angle endoporus (18), triangle endoporus (19), the interior rounding of angle endoporus (20) of triangle, polygon endoporus (21), irregular limit shape endoporus (22), rhombus endoporus (23), the interior rounding of angle endoporus (24) of rhombus, trapezoidal endoporus (25), trapezoidal interior rounding of angle endoporus (26), Long Circle endoporus (27) and oval endoporus (28) in circular inner hole (14), square inner bore (15), square interior rounding of angle endoporus (16), rectangle endoporus (17), the rectangle; But it is to be noted that different shape is Protean, so do not enumerate one by one at this.
When its endoporus (8) shaped design is the band angle (as; Triangle or the like) can use the design of being with the wedge angle angle, the method for rounding of angle realized in endoporus (8) can use when being designed to the angle equally, i.e. arc angle.
The embodiment that selects for use in this article for open the purpose of this utility model currently thinks to suit, but will be appreciated that, the utility model is intended to comprise that all belong to all changes and the improvement of the interior embodiment of this design and the utility model scope.

Claims (10)

1, a kind of high frequency coil that can produce three silicon cores or other crystalline material simultaneously, it is characterized in that: on high frequency coil (3) top is provided with the high frequency coil of being with the inclined-plane (9), the bottom is provided with (10) below the trapezoidal high frequency coil, is provided with three endoporus that are triangularly arranged (8) at the middle part of high frequency coil (3); Its cooling water channel (4) is around high frequency coil (3), and carry with two electric currents respectively in both sides that high frequency coil (3) diagonal cut joint (13) is located and cooling water carries copper pipe (12) to fixedly connected, the diagonal cut joint of its diagonal cut joint (13) extends (11) part and extends forward for of passing in three endoporus (8).
2, the high frequency coil that can produce three silicon cores or other crystalline material simultaneously as claimed in claim 1 is characterized in that: (10) can be made up of a plurality of ladders below the trapezoidal high frequency coil that its high frequency coil (3) bottom is provided with.
3, the high frequency coil that can produce three silicon cores or other crystalline material simultaneously as claimed in claim 1 is characterized in that: (10) can form a slope from outside to inside above the high frequency coil that its high frequency coil (3) top is provided with.
4, the high frequency coil that can produce three silicon cores or other crystalline material simultaneously as claimed in claim 1 is characterized in that: its cooling water channel (4) can directly be gone up at high frequency coil (3) and beat groove, imbeds copper pipe then and is fixed by solder bonding metal.
5, the high frequency coil that can produce three silicon cores or other crystalline material simultaneously as claimed in claim 1 is characterized in that: its cooling water channel (4) can be directly gone up at high frequency coil (3) beat groove, utilizes the copper sheet covering then and is fixed by solder bonding metal.
6, the high frequency coil that can produce three silicon cores or other crystalline material simultaneously as claimed in claim 1, it is characterized in that: its diagonal cut joint (13) directly is used to pass to one of them of three endoporus (8), and extends (11) straight extension forward by diagonal cut joint.
7, the high frequency coil that can produce three silicon cores or other crystalline material simultaneously as claimed in claim 1 is characterized in that: its three endoporus (8) are rounded projections arranged.
8, the high frequency coil that can produce three silicon cores or other crystalline material simultaneously as claimed in claim 1 is characterized in that: three endoporus (8) that its high frequency coil (3) middle part is provided with can be designed to circular inner hole (14), square inner bore (15), rectangle endoporus (17), triangle endoporus (19), polygon endoporus (21), irregular limit shape endoporus (22), rhombus endoporus (23), trapezoidal endoporus (25), Long Circle endoporus (27) and oval endoporus (28).
9, the high frequency coil that can produce three silicon cores or other crystalline material simultaneously as claimed in claim 8 is characterized in that: can use the design of band angle when its endoporus (8) shaped design is the band angle.
10, the high frequency coil that can produce three silicon cores or other crystalline material simultaneously as claimed in claim 8, it is characterized in that: its endoporus (8) can use interior rounding of angle equally when being designed to be with the angle.
CNU2007200892201U 2007-01-19 2007-01-19 High-frequency coil capable of meanwhile producing three silicon cores or other crystal materials Expired - Fee Related CN201001208Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2007200892201U CN201001208Y (en) 2007-01-19 2007-01-19 High-frequency coil capable of meanwhile producing three silicon cores or other crystal materials

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2007200892201U CN201001208Y (en) 2007-01-19 2007-01-19 High-frequency coil capable of meanwhile producing three silicon cores or other crystal materials

Publications (1)

Publication Number Publication Date
CN201001208Y true CN201001208Y (en) 2008-01-02

Family

ID=39015608

Family Applications (1)

Application Number Title Priority Date Filing Date
CNU2007200892201U Expired - Fee Related CN201001208Y (en) 2007-01-19 2007-01-19 High-frequency coil capable of meanwhile producing three silicon cores or other crystal materials

Country Status (1)

Country Link
CN (1) CN201001208Y (en)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2010060349A1 (en) * 2008-11-25 2010-06-03 Liu Chaoxuan High-frequency coil pulling holes arrangement for producing multiple silicon cores
CN101570887B (en) * 2009-01-06 2011-04-06 刘朝轩 High-frequency coil structure capable of drawing 19 silicon cores or other crystal materials
CN101487137B (en) * 2008-11-25 2011-06-29 刘朝轩 High-frequency coil structure capable of producing four silicon cores and other crystal material at the same time
CN101570883B (en) * 2009-01-06 2011-06-29 刘朝轩 High-frequency coil structure capable of drawing 19 silicon cores or other crystal materials simultaneously
CN101457395B (en) * 2008-11-25 2011-07-27 刘朝轩 High-frequency coil structure capable of simultaneous producing three silicon cores and other crystal material
RU2459891C2 (en) * 2008-11-25 2012-08-27 Луоянг Джиннуо Мекханикал Инжиниринг Ко., Лтд. High-frequency inductor with draw plates for production of multiple siliceous bars
CN101570886B (en) * 2009-01-06 2012-08-29 洛阳金诺机械工程有限公司 High-frequency coil structure capable of drawing 22 silicon cores or other crystal materials

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2010060349A1 (en) * 2008-11-25 2010-06-03 Liu Chaoxuan High-frequency coil pulling holes arrangement for producing multiple silicon cores
CN101487137B (en) * 2008-11-25 2011-06-29 刘朝轩 High-frequency coil structure capable of producing four silicon cores and other crystal material at the same time
CN101457395B (en) * 2008-11-25 2011-07-27 刘朝轩 High-frequency coil structure capable of simultaneous producing three silicon cores and other crystal material
RU2459891C2 (en) * 2008-11-25 2012-08-27 Луоянг Джиннуо Мекханикал Инжиниринг Ко., Лтд. High-frequency inductor with draw plates for production of multiple siliceous bars
CN101570887B (en) * 2009-01-06 2011-04-06 刘朝轩 High-frequency coil structure capable of drawing 19 silicon cores or other crystal materials
CN101570883B (en) * 2009-01-06 2011-06-29 刘朝轩 High-frequency coil structure capable of drawing 19 silicon cores or other crystal materials simultaneously
CN101570886B (en) * 2009-01-06 2012-08-29 洛阳金诺机械工程有限公司 High-frequency coil structure capable of drawing 22 silicon cores or other crystal materials

Similar Documents

Publication Publication Date Title
CN201001208Y (en) High-frequency coil capable of meanwhile producing three silicon cores or other crystal materials
CN200996059Y (en) High-frequency coil for producing seven silicon core or other crystal materials
CN200996058Y (en) High-frequency coil for producing five silicon core or other crystal materials
CN201001209Y (en) High-frequency coil capable of producing four silicon cores or other crystal materials
CN202226953U (en) High frequency coil for producing water-drop-shaped or bat-shaped combination drawing hole with five or six silicon cores
CN200996057Y (en) High-frequency coil with four internal hole tetragonal arrangement
CN101570886B (en) High-frequency coil structure capable of drawing 22 silicon cores or other crystal materials
CN200999269Y (en) High-frequency coil capable of producing six silicon cores or other crystal material once
CN101487136B (en) High-frequency coil structure capable of producing six silicon cores and other crystal material at the same time
CN201001211Y (en) High-frequency coil capable of meanwhile producing two silicon cores or other crystal materials
CN200999270Y (en) High-frequency coil capable of producing three silicon cores or other crystal material once
CN201024223Y (en) High-frequency coil capable of simultaneously producing two silica core or other crystal material
CN201024229Y (en) High-frequency coil capable of simultaneously producing five silica cores or other crystal material
CN201024228Y (en) High-frequency coil capable of simultaneously producing four silica cores or other crystal material
CN201024226Y (en) High-frequency coil capable of simultaneously producing seven silica cores or other crystal material
CN201024230Y (en) High-frequency coil capable of simultaneously producing multiple silica cores or other crystal material
CN201024224Y (en) High-frequency coil capable of simultaneously producing three silica cores or other crystal material
CN201024227Y (en) High-frequency coil capable of simultaneously producing two silica cores or other crystal material
CN201024225Y (en) High-frequency coil capable of simultaneously producing six silica cores or other crystal material
CN203820920U (en) High frequency coil drawing hole distribution for drawing seven to fourteen silicon cores simultaneously
CN200997698Y (en) High-frequency coil with circular hole opening at one end
CN201001210Y (en) Slotted hole middle open-ended high-frequency coil
CN202226952U (en) High frequency coil for producing water-drop-shaped or bat-shaped combination drawing hole with eight or nine silicon cores
CN101457390B (en) High-frequency coil structure capable of simultaneous producing eight silicon cores and other crystal material
CN101983823A (en) Welding device and welding method of solar component bus bars

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
DD01 Delivery of document by public notice

Addressee: Zhang Li

Document name: Notification to Pay the Fees

DD01 Delivery of document by public notice

Addressee: Zhang Li

Document name: Notification that Application Deemed not to be Proposed

C56 Change in the name or address of the patentee
CP02 Change in the address of a patent holder

Address after: Jin Xin Road, national high tech Development Zone, Luoyang City, Henan province 471009 No. 2 Luoyang Jinnuo Engineering Machinery Co. Ltd.

Patentee after: Liu Chaoxuan

Address before: 471009 Henan province Luoyang Xigong Road No. 1 single building

Patentee before: Liu Chaoxuan

ASS Succession or assignment of patent right

Owner name: LUOYANG JINNUO MACHINERY ENGINEERING CO., LTD.

Free format text: FORMER OWNER: LIU ZHAOXUAN

Effective date: 20111116

C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20111116

Address after: 471009 Jin Xin of Henan Province, Luoyang national hi tech Industrial Development Zone, Road No. 2 Luoyang Jinnuo Machinery Engineering Co Ltd

Patentee after: Luoyang Jinnuo Mechanical Engineering Co., Ltd.

Address before: Jin Xin Road, national high tech Development Zone, Luoyang City, Henan province 471009 No. 2 Luoyang Jinnuo Engineering Machinery Co. Ltd.

Patentee before: Liu Chaoxuan

C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20080102

Termination date: 20140119