CN201942696U - Blast furnace tuyere intermediate sleeve and blast furnace tuyere device - Google Patents

Blast furnace tuyere intermediate sleeve and blast furnace tuyere device Download PDF

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Publication number
CN201942696U
CN201942696U CN2010206608450U CN201020660845U CN201942696U CN 201942696 U CN201942696 U CN 201942696U CN 2010206608450 U CN2010206608450 U CN 2010206608450U CN 201020660845 U CN201020660845 U CN 201020660845U CN 201942696 U CN201942696 U CN 201942696U
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CN
China
Prior art keywords
water
blast
furnace tuyere
flange
guiding device
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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 - Lifetime
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CN2010206608450U
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Chinese (zh)
Inventor
翟忠
陈钢
郑光超
廖秀姻
杨向东
沈锡鹏
李上吉
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SHANTOU HUAXING METALLURGICAL EQUIPMENT CO Ltd
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SHANTOU HUAXING METALLURGICAL EQUIPMENT CO Ltd
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Priority to CN2010206608450U priority Critical patent/CN201942696U/en
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Abstract

The utility model discloses a blast furnace tuyere intermediate sleeve comprising a flange, an inner sleeve, an outer sleeve with a front cavity, a water inlet pipe, a partition plate and a flow guide device, wherein the flange, the inner sleeve and the outer sleeve form an inner hollow cavity communicated with the front cavity, and a water inlet end and a water outlet end are respectively arranged on two ends of the deflector device; the flow guide device is of a circumferentially coiling spring shape and is provided with a through hole, the water inlet pipe is inserted into the through hole, and the water outlet of the water inlet pipe is penetrated out of the water inlet end of the flow guide device; and the partition plate is hermetically connected with the water inlet end of the flow guide device, the front cavity of the outer sleeve is divided into two water chambers by the partition plate, and one of the water chambers are communicated with the water inlet pipe. In the blast furnace tuyere intermediate sleeve, the cooling water cycle channel is of a circumferential cycle type, and when flowing in the cooling water cycle channel, the cooling water has small flow resistance, small energy loss and a good cooling effect, therefore, the blast furnace tuyere intermediate sleeve also has the advantage of saving energy resources. The utility model further discloses a blast furnace tuyere device.

Description

Cover and blast-furnace tuyere device in the blast-furnace tuyere
Technical field
The utility model relates to iron-smelting blast furnace hot-air system equipment, particularly relates to cover and blast-furnace tuyere device in a kind of blast-furnace tuyere.
Background technology
Cover is one of parts of blast-furnace tuyere device in the blast-furnace tuyere, is installed between tuyere big sleeve and the tuyere small sleeve, and the cover front end inserts furnace wall inside in the air port, plays the effect of supporting tuyere small sleeve.Cover generally includes flange, overcoat, interior cover and director composition in the air port of prior art, and is separated into cooling water circulation passage by flange, overcoat, interior cover and director.Because of the cooling water circulation passage of prior art all is the circumferential Zigzag type of hyperchannel, be that cooling water circulation direction in the adjacent cooling channel is opposite, so when water coolant when the cooling-water duct internal recycle flows, when particularly water coolant is turned back the place in the cooling channel, the resistance of current is big, energy waste is big, therefore influences cooling performance.
Summary of the invention
The purpose of this utility model is to avoid weak point of the prior art and provides that a kind of flow resistance during refrigeration cycle passage internal recycle is little, power loss is little, cover and blast-furnace tuyere device thereof in the blast-furnace tuyere of good cooling results when water coolant within it.
The purpose of this utility model realizes by following technical measures:
Overlap in a kind of blast-furnace tuyere, comprise flange, interior cover, have the overcoat of ante-chamber, water inlet pipe, dividing plate and guiding device with water-in and water outlet, described flange, interior cover and overcoat form the internal cavities that is communicated with described ante-chamber, described guiding device is arranged in the described internal cavities, described flange is provided with water-in and water outlet, and described guiding device two ends are respectively feed-water end and water side; Described guiding device be circumferential disc around spring-like, the outer wall of the inwall of described guiding device and described interior cover is tightly connected, the outer wall of described guiding device is connected with the inner wall sealing of described overcoat, described guiding device is separated into cooling water circulation passage with described internal cavities, described guiding device is provided with through hole, described water inlet pipe inserts described through hole, and the water outlet of described water inlet pipe passes from the feed-water end of described guiding device; Described dividing plate and described guiding device feed-water end are tightly connected, and described dividing plate is separated into two hydroeciums with the ante-chamber of described overcoat, and one of them described hydroecium is communicated with described water inlet pipe; The water-in of described water inlet pipe and the water-in of described flange are tightly connected, and the cavity that the water side of described flange and described guiding device forms is the water outlet cavity, and described flange water outlet is communicated with described water outlet cavity.
Preferably, above-mentioned overcoat is the fine copper forging.
Preferably, above-mentioned interior cover is cover in the steel.
Preferably, above-mentioned flange is the steel flange.
Further preferably, above-mentioned steel are the 16MnR steel plate.
Preferably, above-mentioned director is the carbon steel weldment.
Preferably, above-mentioned flange has male cone (strobilus masculinus), and described male cone (strobilus masculinus) built-up welding has copper alloy.
Another preferably, above-mentioned flange has male cone (strobilus masculinus), described male cone (strobilus masculinus) is provided with several dovetail-indents, described male cone (strobilus masculinus) and described dovetail-indent built-up welding have copper alloy.
Further preferably, the thickness of above-mentioned copper alloy is more than or equal to 6mm.
The invention also discloses a kind of blast-furnace tuyere device that overlaps in the aforesaid blast-furnace tuyere that comprises.
The utility model compared with prior art has the following advantages: the water inlet pipe that overlaps in the utility model blast-furnace tuyere passes the through hole of described guiding device, be to have the gap between water inlet pipe and overcoat and/or the interior cover, therefore, the cooling water circulation passage that overlaps in the utility model blast-furnace tuyere is for circumferentially circulating.During use: water coolant enters water inlet pipe by the flange water-in, by water inlet pipe water coolant is delivered to a hydroecium in the overcoat ante-chamber, and water coolant, flows out by the flange water outlet at circumferential circulation passage internal recycle at last along guiding device then.
Therefore cooling water circulation passage in the utility model blast-furnace tuyere in the cover is for circumferentially circulating, and do not need when the cooling-water duct internal recycle is mobile as prior art will turning back in the place's of turning back turning when water coolant.So during refrigeration cycle passage internal recycle in water coolant overlaps in the utility model blast-furnace tuyere, flow resistance is little, power loss is little, good cooling results, thereby cover also has the advantage of save energy in the utility model blast-furnace tuyere.
In like manner, during refrigeration cycle passage internal recycle in water coolant overlaps in the blast-furnace tuyere of the utility model blast-furnace tuyere device, flow resistance is little, power loss is little, good cooling results, thereby the utility model blast-furnace tuyere device also has the advantage of save energy.
Description of drawings
In order to be illustrated more clearly in the utility model embodiment or technical scheme of the prior art, to do to introduce simply to the accompanying drawing of required use in embodiment or the description of the Prior Art below, apparently, accompanying drawing in describing below only is embodiment more of the present utility model, for those of ordinary skills, under the prerequisite of not paying creative work, can also obtain other accompanying drawing according to these accompanying drawings.
Fig. 1 is the structural representation that overlaps in the blast-furnace tuyere of the utility model embodiment;
Fig. 2 is the theory structure synoptic diagram of the cooling water circulation passage that overlaps in the blast-furnace tuyere of the utility model embodiment;
Fig. 3 is the structural representation of the guiding device that overlaps in the blast-furnace tuyere of the utility model embodiment, interior cover, water inlet pipe and dividing plate.
Embodiment
For making the utility model easier to understand, below in conjunction with accompanying drawing the utility model is further elaborated, but the embodiment in the accompanying drawing does not constitute any restriction of the present utility model.
Overlap in a kind of blast-furnace tuyere of the present utility model, as shown in Figure 1 to Figure 3, comprise flange 10, interior cover 20, have the overcoat 30 of ante-chamber 31, water inlet pipe 40, dividing plate 50 and guiding device 60 with water-in 41 and water outlet 42, described flange 10, interior cover 20 and overcoat 30 form the internal cavities 21 that is communicated with described ante-chamber 31, described guiding device 60 is arranged in the described internal cavities 21, described flange 10 is provided with water-in 11 and water outlet 12, and described guiding device 60 two ends are respectively feed-water end 61 and water side 62; Described guiding device 60 be circumferential disc around spring-like, the outer wall of the inwall of described guiding device 60 and described interior cover 20 is tightly connected, the outer wall of described guiding device 60 is connected with the inner wall sealing of described overcoat 30, described guiding device 60 is separated into cooling water circulation passage 70 with described internal cavities 21, described guiding device 60 is provided with through hole 63, described water inlet pipe 40 inserts described through hole 63, water inlet pipe 40 is tightly connected with through hole 63, and the water outlet 42 of described water inlet pipe 40 passes from the feed-water end 61 of described guiding device 60; Described dividing plate 50 is tightly connected with described guiding device 60 feed-water ends 61, and described dividing plate 50 is separated into two hydroeciums with the ante-chamber 31 of described overcoat 30, and one of them described hydroecium is communicated with described water inlet pipe 40; The water-in 41 of described water inlet pipe 40 is tightly connected with the water-in 11 of described flange 10, and the cavity that the water side 62 of described flange 10 and described guiding device 60 forms is a water outlet cavity 64, and described flange 10 water outlets 12 are communicated with described water outlet cavity 64.Wherein, the hydroecium of described overcoat 30 ante-chambers 31 that are communicated with described water inlet pipe 40 is water inlet hydroecium 32.
The water inlet pipe 40 that overlaps in the utility model blast-furnace tuyere passes the through hole 63 of described guiding device 60, be to have the gap between water inlet pipe 40 and overcoat 30 and/or the interior cover 20, therefore, water inlet pipe 40 can not blocked cold water circulating in cooling water circulation passage 70, and the cooling water circulation passage 70 that overlaps in the utility model blast-furnace tuyere is for circumferentially circulating.During use: water coolant enters water inlet pipe 40 by flange 10 water-ins 11, by water inlet pipe 40 water coolant is delivered to water inlet hydroecium 32 in overcoat 30 ante-chambers 31, water coolant, flows out by flange 10 water outlets 12 at circumferential circulation passage internal recycle at last from water inlet hydroecium 32 along guiding device 60 then.
Therefore cooling water circulation passage 70 in the utility model blast-furnace tuyere in the cover is for circumferentially circulating, and do not need when the cooling-water duct internal recycle is mobile as prior art will turning back in the place's of turning back turning when water coolant.So during refrigeration cycle passage internal recycle in water coolant overlaps in the utility model blast-furnace tuyere, flow resistance is little, power loss is little, good cooling results, thereby cover also has the advantage of save energy in the utility model blast-furnace tuyere.
Preferably, overcoat 30 is the fine copper forging, and the fine copper forging is that metallic substance obtains through forging processing.Because the thermal conductivity of copper wants high with respect to the thermal conductivity of other metals and alloy, therefore, adopt pure copper material, can improve the capacity of heat transmission of overcoat 30, thereby guarantee to overlap better radiating effect in the blast-furnace tuyere.Because the intensity and the weight ratio of metal forging have a high ratio, therefore, the metal of identical weight, it is high that the intensity of metal forging is wanted, and therefore can increase the intensity and the wearing quality of overlapping in the blast-furnace tuyere.
Preferably, interior cover 20 is a cover 20 in the steel, and flange 10 is a steel flange 10.Because of cover in the blast-furnace tuyere of prior art adopts the fine copper casting, its poor rigidity and copper consumable quantity are big, and cost is higher.Because steel will be got well with respect to the rigidity of copper material and the price of the copper material of equal volume is more cheap than the price of the steel of equal volume.Therefore, so interior cover 20 and flange 10 adopts steel, can improve rigidity, the loss that reduces copper material of overlapping in the blast-furnace tuyere, reduce cost.Further preferably, it is the 16MnR steel plate that interior cover 20 and flange 10 adopt steel, and 16MnR steel plate compressive resistance performance and welding property are better.
Preferably, director is the carbon steel weldment.Because director is used to carry water coolant, do not need it to transmit heat, therefore, do not need to use as prior art the material of copper material as director.Because carbon steel is than copper material low price, so with the material of carbon steel as director, can save cost.
As a kind of embodiment that overlaps in the blast-furnace tuyere of the present utility model, further, flange 10 has male cone (strobilus masculinus), and described male cone (strobilus masculinus) built-up welding has copper alloy 80.Because the heat-sinking capability of copper alloy 80 is good, at flange 10 male cone (strobilus masculinus) surfacing of Cu alloys 80, can increase the heat-sinking capability of flange 10, and then increase heat-sinking capability on the rigidity intensity based of overlapping in guaranteeing blast-furnace tuyere.
As the another kind of embodiment that overlaps in the blast-furnace tuyere of the present utility model, further, flange 10 has male cone (strobilus masculinus), and described male cone (strobilus masculinus) is provided with several dovetail-indents 90, and described male cone (strobilus masculinus) and 90 built-up welding of described dovetail-indent have copper alloy 80.In like manner, at the male cone (strobilus masculinus) surfacing of Cu alloy 80 of flange 10,, and then increase heat-sinking capability on the rigidity intensity based of in guaranteeing blast-furnace tuyere, overlapping in the heat-sinking capability that can increase flange 10.At male cone (strobilus masculinus) dovetail-indent 90 is set, copper alloy 80 built-up welding can increase the stability of welding in dovetail-indent 90, make copper alloy 80 be not easy to come off.
Further preferably, the thickness of above-mentioned copper alloy 80 can be guaranteed the radiator volume of the copper alloy 80 on the flange 10 more than or equal to 6mm, guarantees the heat-sinking capability of flange 10.
The invention also discloses a kind of blast-furnace tuyere device (not indicating among the figure) that overlaps in the aforesaid blast-furnace tuyere that comprises.In like manner, when water coolant in the blast-furnace tuyere of the utility model blast-furnace tuyere device (among the figure indicate) during the refrigeration cycle passage internal recycle in the cover, flow resistance is little, power loss is little, good cooling results, thereby the utility model blast-furnace tuyere device also has the advantage of save energy.And blast-furnace tuyere device of the present utility model has the advantage of overlapping in the aforesaid blast-furnace tuyere.
The above is a preferred implementation of the present utility model; certainly can not limit the interest field of the utility model with this; should be understood that; for those skilled in the art; under the prerequisite that does not break away from the utility model principle; can also make some improvement and change, these improvement and change also are considered as protection domain of the present utility model.

Claims (10)

1. overlap in a blast-furnace tuyere, it is characterized in that: comprise flange, interior cover, have the overcoat of ante-chamber, water inlet pipe, dividing plate and guiding device with water-in and water outlet, described flange, interior cover and overcoat form the internal cavities that is communicated with described ante-chamber, described guiding device is arranged in the described internal cavities, described flange is provided with water-in and water outlet, and described guiding device two ends are respectively feed-water end and water side;
Described guiding device be circumferential disc around spring-like, the outer wall of the inwall of described guiding device and described interior cover is tightly connected, the outer wall of described guiding device is connected with the inner wall sealing of described overcoat, described guiding device is separated into cooling water circulation passage with described internal cavities, described guiding device is provided with through hole, described water inlet pipe inserts described through hole, and the water outlet of described water inlet pipe passes from the feed-water end of described guiding device;
Described dividing plate and described guiding device feed-water end are tightly connected, and described dividing plate is separated into two hydroeciums with the ante-chamber of described overcoat, and one of them described hydroecium is communicated with described water inlet pipe;
The water-in of described water inlet pipe and the water-in of described flange are tightly connected, and the cavity that the water side of described flange and described guiding device forms is the water outlet cavity, and described flange water outlet is communicated with described water outlet cavity.
2. overlap in the blast-furnace tuyere according to claim 1, it is characterized in that: described overcoat is the fine copper forging.
3. overlap in the blast-furnace tuyere according to claim 1, it is characterized in that: cover is cover in the steel in described.
4. overlap in the blast-furnace tuyere according to claim 1, it is characterized in that: described flange is the steel flange.
5. according to overlapping in claim 3 or the 4 described blast-furnace tuyeres, it is characterized in that: described steel are the 16MnR steel plate.
6. overlap in the blast-furnace tuyere according to claim 1, it is characterized in that: described director is the carbon steel weldment.
7. overlap in the blast-furnace tuyere according to claim 1, it is characterized in that: described flange has male cone (strobilus masculinus), and described male cone (strobilus masculinus) built-up welding has copper alloy.
8. overlap in the blast-furnace tuyere according to claim 1, it is characterized in that: described flange has male cone (strobilus masculinus), and described male cone (strobilus masculinus) is provided with several dovetail-indents, and described male cone (strobilus masculinus) and described dovetail-indent built-up welding have copper alloy.
9. according to overlapping in claim 7 or the 8 described blast-furnace tuyeres, it is characterized in that: the thickness of described copper alloy is more than or equal to 6mm.
10. one kind comprises the blast-furnace tuyere device that overlaps as in the described blast-furnace tuyere of claim 1-9.
CN2010206608450U 2010-12-15 2010-12-15 Blast furnace tuyere intermediate sleeve and blast furnace tuyere device Expired - Lifetime CN201942696U (en)

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CN2010206608450U CN201942696U (en) 2010-12-15 2010-12-15 Blast furnace tuyere intermediate sleeve and blast furnace tuyere device

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Application Number Priority Date Filing Date Title
CN2010206608450U CN201942696U (en) 2010-12-15 2010-12-15 Blast furnace tuyere intermediate sleeve and blast furnace tuyere device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102329906A (en) * 2011-10-17 2012-01-25 烟台鲁宝有色合金有限公司 Blast furnace tuyere medium sleeve

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102329906A (en) * 2011-10-17 2012-01-25 烟台鲁宝有色合金有限公司 Blast furnace tuyere medium sleeve

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Granted publication date: 20110824

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