CN201751786U - Heater arrangement structure for improving temperature distribution uniformity of melt of isothermal aluminum smelting furnace - Google Patents

Heater arrangement structure for improving temperature distribution uniformity of melt of isothermal aluminum smelting furnace Download PDF

Info

Publication number
CN201751786U
CN201751786U CN 201020236529 CN201020236529U CN201751786U CN 201751786 U CN201751786 U CN 201751786U CN 201020236529 CN201020236529 CN 201020236529 CN 201020236529 U CN201020236529 U CN 201020236529U CN 201751786 U CN201751786 U CN 201751786U
Authority
CN
China
Prior art keywords
heater
melt
isothermal
smelting furnace
aluminium
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
CN 201020236529
Other languages
Chinese (zh)
Inventor
闫辉
马科
王家淳
薛冠霞
谢晓燕
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.)
Suzhou Longray Thermal Technology Co Ltd
Original Assignee
Suzhou Longray Thermal Technology 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 Suzhou Longray Thermal Technology Co Ltd filed Critical Suzhou Longray Thermal Technology Co Ltd
Priority to CN 201020236529 priority Critical patent/CN201751786U/en
Application granted granted Critical
Publication of CN201751786U publication Critical patent/CN201751786U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Vertical, Hearth, Or Arc Furnaces (AREA)

Abstract

The utility model relates to a heater arrangement structure for improving the temperature distribution uniformity of a melt of an isothermal aluminum smelting furnace, wherein a partition wall is arranged in the middle of the hearth of the isothermal smelting furnace; the partition wall divides the hearth into a melting area and a heating area; the heating area is provided with heaters in a non-uniform way; the heaters are arranged in parallel between the partition wall and a furnace wall opposite to the partition wall and increased in quantity row by row; one heater is increased progressively in each row; the space between adjacent heaters in each row is equal; the space between each two rows is equal; and the heaters are arranged in a staggering way. The heater arrangement way can effectively eliminate the phenomenon that the temperature of the aluminum melt in the heating area is non-uniform, increase isothermal smelting effect, reduce the oxidative combustion loss in the aluminum smelting process and improve the quality of the fused mass.

Description

Improve the heater arrangement structure of temperature distribution uniformity of melt of aluminium isothermal smelting furnace
Technical field
The utility model relates to the heater arrangement mode of aluminium isothermal smelting furnace, relates in particular to a kind of heater arrangement structure that improves temperature distribution uniformity of melt of aluminium isothermal smelting furnace, belongs to the metal smelt technical field.
Background technology
The isothermal melting technique is a kind of novel smelting technology of efficient, energy-saving and environmental protection.Compare outstanding advantages such as energy-conservation, low pollutant emission that the isothermal melting technique has, low metal melting loss, high melt quality with the reflective melting technique of traditional flame.The isothermal melting technique carries out melting to furnace charge under steady temperature, the aluminum melt temperature in the isothermal smelting burner hearth changes in very among a small circle, and temperature everywhere is almost consistent, can formation temperature gradient and thermosphere phenomenon, and the melt quality improves greatly.
Isothermal smelting institute's calorific requirement is in process of production provided by the heater that is installed on the thermal treatment zone mainly that (the heating end of heater is immersed in the melt, be called immersion heater, comprise immersed gas heater or electrical immersion heater, below be referred to as immersion heater).Because the limitation of furnace binding and the characteristic of fluid, melt can not flow uniformly in the thermal treatment zone, so heater also just can not carry out sufficient exchange heat with melt, thereby causes the Heating Zone Temperature inequality, reduction isothermal melting effect.Therefore, the arrangement mode of immersion heater plays an important role to the temperature homogeneity of melt in the isothermal smelting.
In aluminium and the aluminum alloy isothermal smelting furnace structure in the stove, the middle part of isothermal smelting burner hearth is provided with partition wall, and partition wall is divided into the fusion zone and the thermal treatment zone with burner hearth; On the furnace roof of the thermal treatment zone immersion heater is installed, immersion heater vertically stretches in the burner hearth of the thermal treatment zone, and the side wall of the thermal treatment zone is provided with head piece.Outside body of heater, be furnished with the aluminium fluid circulation, make aluminium liquid in stove, to flow.
Aluminium in the past and aluminum alloy isothermal smelting furnace, the mode that adopts immersion heater evenly to arrange in stove usually adopting under this arrangement mode, exists temperature distributing disproportionation to spare phenomenon in the thermal treatment zone.Aluminium liquid flow velocity when the fusion zone enters the thermal treatment zone is bigger, most of liquid stream directly is flushed on the furnace wall, opposite, flow through the thermal treatment zone along the furnace wall, this zone aluminium flow quantity is bigger, can not with the effective heat exchange of heater, so temperature is on the low side, and more a spot of melt is by the heater thermal treatment zone of flowing through, flow velocity is slower, and the aluminium liquid measure is few and longer time of contact with heater, and this regional temperature is higher.The position that temperature is the highest concentrates on the thermal treatment zone near near the heater place the partition wall, and this is that partition wall and heater all can hinder melt flows, easily the formation temperature concentration phenomenon because this place is positioned at the inside, the thermal treatment zone.
The utility model content
The purpose of this utility model is to overcome the deficiency that prior art exists, a kind of heater arrangement structure that improves temperature distribution uniformity of melt of aluminium isothermal smelting furnace is provided, be intended to eliminate the Heating Zone Temperature concentration phenomenon, improve the isothermal melting effect of isothermal smelting, reduce the oxidization burning loss of melt, improve the quality of melt.
The purpose of this utility model is achieved through the following technical solutions:
Improve the heater arrangement structure of temperature distribution uniformity of melt of aluminium isothermal smelting furnace, the middle part of isothermal smelting burner hearth is provided with partition wall, described partition wall is divided into the fusion zone and the thermal treatment zone with burner hearth, it is characterized in that: the non-homogeneous heater that is placed with in the described thermal treatment zone, described heater is parallel arrangement between partition wall and furnace wall, opposite, and quantity increases by row, increase progressively 1 respectively, spacing equates between every row's the adjacent heater, and spacing between rows and rows equates that heater forms and is staggered.
Further, the heater arrangement structure of above-mentioned raising temperature distribution uniformity of melt of aluminium isothermal smelting furnace, wherein, described heater is immersed gas heater or electrical immersion heater.
Further, the heater arrangement structure of above-mentioned raising temperature distribution uniformity of melt of aluminium isothermal smelting furnace, wherein, the external aluminium liquid circulating pump that is furnished with of described isothermal smelting furnace, aluminium liquid inlet of circulating pump is communicated with the thermal treatment zone, and aluminium liquid outlet of circulating pump is communicated with the fusion zone.
Again further, the heater arrangement structure of above-mentioned raising temperature distribution uniformity of melt of aluminium isothermal smelting furnace, wherein, described aluminium liquid circulating pump is electromagnetic pump, mechanical pump or permanent magnet pump.
The substantive distinguishing features of technical solutions of the utility model and progressive being mainly reflected in:
1. arrangement mode of the present utility model, can eliminate the Heating Zone Temperature concentration phenomenon, melt temperature of aluminum liquid in the burner hearth is changed in very among a small circle, and temperature everywhere is almost consistent, improved the integrated heat efficiency of stove, improve energy utilization rate, reduced energy resource consumption, reduced pollutant emission;
2. the heater arrangement mode is simple, reliable, makes the melt temperature unanimity, and composition is even, can formation temperature gradient and thermosphere phenomenon, the melt quality improves greatly, and iron loss is little, dissolved gases in the melt, solid inclusions are few, and the slag of formation also obviously reduces, and improves the blank quality.
Description of drawings
Below in conjunction with accompanying drawing technical solutions of the utility model are described further:
Fig. 1: isothermal smelting heater arrangement schematic diagram;
The implication of each Reference numeral sees the following form among the figure:
Reference numeral Implication Reference numeral Implication Reference numeral Implication
1 The fusion zone 2 Partition wall 3 The thermal treatment zone
4 Heater 5 Aluminium liquid circulating pump
The specific embodiment
As shown in Figure 1, improve the heater arrangement structure of temperature distribution uniformity of melt of aluminium isothermal smelting furnace, the middle part of isothermal smelting burner hearth is provided with partition wall 2, partition wall 2 is divided into the fusion zone 1 and the thermal treatment zone 3 with burner hearth, the thermal treatment zone 3 non-homogeneous heaters 4 that are placed with, heater 4 adopts immersed gas heater or electrical immersion heater, heater 4 is parallel arrangement between partition wall 2 and furnace wall, opposite, quantity increases by row, increase progressively 1 respectively, spacing equates between every row's the adjacent heater, and spacing between rows and rows equates that heater forms and is staggered.The external aluminium liquid circulating pump 5 that is furnished with of isothermal smelting furnace, the import of aluminium liquid circulating pump 5 is communicated with the thermal treatment zone 3, and the outlet of aluminium liquid circulating pump 5 is communicated with fusion zone 1; Aluminium liquid circulating pump 5 is electromagnetic pump, mechanical pump or permanent magnet pump, melt under aluminium liquid circulating pump 5 effect from the fusion zone 1 to the thermal treatment zone 3 flow at high speed.
The 3 non-homogeneous heaters 4 of arranging in the thermal treatment zone, the heating load that the several thermic loads according to isothermal smelting of the radical of heater 4 and row are exported the requirement and the thermal treatment zone calculates the back and determines; Arrangement mode is that quantity increases by row at partition wall 2 parallel arrangement between the furnace wall, opposite, increases by 1 respectively, and the adjacent heater spacing equates that adjacent heater row spacing equates that each is arranged heater and is staggered.The spacing size is relevant with isothermal smelting size, chamber structure size, aluminium liquid circulation ability etc.
When melt flows into the thermal treatment zone 3 at a high speed by fusion zone 1, because the characteristic of fluid, most of aluminium liquid can be flushed on the furnace wall, near the more heater owing to the furnace wall, arranged, and melt flows is had certain inhibition, so the furnace wall near zone reduces with respect to former arrangement mode flow, flow velocity diminishes, effective heat exchange between melt and the heater strengthens, thereby this regional temperature raises to some extent.And the close partition wall near zone in the thermal treatment zone is because arranged less heater, and flow increases relatively, therefore this regional temperature decreases with respect to the arrangement mode of the even layout of heater, the temperature Centralized phenomenon disappears, characteristic according to fluid, the utility model evenly equidistantly is interspersed the heater in the thermal treatment zone, therefore the melt heater of flowing through more equably, each heater and melt exchange capability of heat are basic identical, thereby the temperature homogeneity of thermal treatment zone integral body is improved, and the melt quality is improved greatly.
Isothermal smelting under the utility model heater arrangement mode, the uniformity of temperature can reach ± and 5 ℃, the aluminum melt temperature in the burner hearth changes very among a small circle in, and the unanimity almost of temperature everywhere.The heater arrangement mode can be eliminated thermal treatment zone aluminum melt non-uniform temperature phenomenon, improves isothermal melting effect, reduces the oxidization burning loss in the aluminium fusion process, improves the melt quality.
In sum, the utility model heater arrangement mode is simple, and is reliable, can effectively improve the isothermal smelting temperature homogeneity, eliminate the temperature Centralized phenomenon, make the melt temperature unanimity, composition is even, there are not thermograde and thermosphere phenomenon, the melt quality improves greatly, and dissolved gases in the melt, solid inclusions are few, simplify subsequent treatment process, improve the blank quality, reduce cost.
What need understand is: the above only is a preferred implementation of the present utility model; for those skilled in the art; under the prerequisite that does not break away from the utility model principle; can also make some improvements and modifications, these improvements and modifications also should be considered as protection domain of the present utility model.

Claims (4)

1. improve the heater arrangement structure of temperature distribution uniformity of melt of aluminium isothermal smelting furnace, the middle part of isothermal smelting burner hearth is provided with partition wall, described partition wall is divided into the fusion zone and the thermal treatment zone with burner hearth, it is characterized in that: the non-homogeneous heater that is placed with in the described thermal treatment zone, described heater is parallel arrangement between partition wall and furnace wall, opposite, and quantity increases by row, increase progressively 1 respectively, spacing equates between every row's the adjacent heater, and spacing between rows and rows equates that heater forms and is staggered.
2. the heater arrangement structure of raising temperature distribution uniformity of melt of aluminium isothermal smelting furnace according to claim 1 is characterized in that: described heater is immersed gas heater or electrical immersion heater.
3. the heater arrangement structure of raising temperature distribution uniformity of melt of aluminium isothermal smelting furnace according to claim 1, it is characterized in that: the external aluminium liquid circulating pump that is furnished with of described isothermal smelting furnace, aluminium liquid inlet of circulating pump is communicated with the thermal treatment zone, and aluminium liquid outlet of circulating pump is communicated with the fusion zone.
4. the heater arrangement structure of raising temperature distribution uniformity of melt of aluminium isothermal smelting furnace according to claim 3 is characterized in that: described aluminium liquid circulating pump is electromagnetic pump, mechanical pump or permanent magnet pump.
CN 201020236529 2010-06-24 2010-06-24 Heater arrangement structure for improving temperature distribution uniformity of melt of isothermal aluminum smelting furnace Expired - Fee Related CN201751786U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201020236529 CN201751786U (en) 2010-06-24 2010-06-24 Heater arrangement structure for improving temperature distribution uniformity of melt of isothermal aluminum smelting furnace

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201020236529 CN201751786U (en) 2010-06-24 2010-06-24 Heater arrangement structure for improving temperature distribution uniformity of melt of isothermal aluminum smelting furnace

Publications (1)

Publication Number Publication Date
CN201751786U true CN201751786U (en) 2011-02-23

Family

ID=43602195

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201020236529 Expired - Fee Related CN201751786U (en) 2010-06-24 2010-06-24 Heater arrangement structure for improving temperature distribution uniformity of melt of isothermal aluminum smelting furnace

Country Status (1)

Country Link
CN (1) CN201751786U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101865602A (en) * 2010-06-24 2010-10-20 苏州新长光热能科技有限公司 Heater arrangement structure for improving temperature distribution uniformity of melt of aluminium isothermal smelting furnace
CN108036350A (en) * 2017-11-24 2018-05-15 浙江保康轮毂制造有限公司 A kind of recyclable melting boiler

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101865602A (en) * 2010-06-24 2010-10-20 苏州新长光热能科技有限公司 Heater arrangement structure for improving temperature distribution uniformity of melt of aluminium isothermal smelting furnace
CN108036350A (en) * 2017-11-24 2018-05-15 浙江保康轮毂制造有限公司 A kind of recyclable melting boiler

Similar Documents

Publication Publication Date Title
CN101586912A (en) Aluminum and aluminum alloy isothermal smelting furnace
CN202938629U (en) Heat treatment furnace using waste heat for preheating
CN201302364Y (en) Bi-circulating aluminum smelting furnace
CN201751786U (en) Heater arrangement structure for improving temperature distribution uniformity of melt of isothermal aluminum smelting furnace
CN201974033U (en) Novel jetting heating system of continuous soaking furnace
CN101865602B (en) Heater arrangement structure for improving temperature distribution uniformity of melt of aluminium isothermal smelting furnace
CN202885496U (en) Aluminum and aluminum alloy high-efficient isothermal smelting furnace
CN201751784U (en) Hearth structure of isothermal smelting furnace for improving temperature uniformity of aluminum and aluminum alloy melts
CN101852544B (en) Furnace chamber structure of isothermal melting furnace for improving melt temperature uniformity of aluminum and aluminum alloy
CN203976872U (en) A kind of tempering stove
CN201751783U (en) Inner structure of high-efficiency and energy-saving aluminum and aluminum alloy isothermal smelting furnace
CN201935557U (en) Regenerative combustion furnace
CN202648378U (en) Novel rotary converter
CN105174690A (en) Reducing neck of flat glass furnace
CN205580193U (en) Dual compound smelting furnace
CN205991706U (en) A kind of high heat accumulation type kiln top
CN204063896U (en) A kind of isothermal smelting
CN219550821U (en) Improved structure of water heater
CN216482216U (en) Energy-saving crucible kiln
CN203857799U (en) Energy-saving and efficient inclined vanadium-nitrogen alloy kiln
CN202492549U (en) Device for ductile iron pipe annealing furnace
CN209893932U (en) Small-sized high-efficiency gas smelting furnace
CN203572215U (en) Smelting and thermal insulation integrated furnace
CN102586570A (en) Nodular cast iron pipe annealing furnace
CN201417076Y (en) Novel aluminum and aluminum alloy isothermal smelting furnace

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20110223

Termination date: 20120624