CN204085095U - Alloy baking case - Google Patents
Alloy baking case Download PDFInfo
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- CN204085095U CN204085095U CN201420537210.XU CN201420537210U CN204085095U CN 204085095 U CN204085095 U CN 204085095U CN 201420537210 U CN201420537210 U CN 201420537210U CN 204085095 U CN204085095 U CN 204085095U
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Abstract
The utility model relates to steel ingot production equipment technical field, relate to alloy baking case particularly, comprise warm sludge case, the open top of warm sludge case, bottom surface and the side of warm sludge case are equipped with heat-insulation layer, heat-insulation layer is made up of heat-preservation cotton and steel wire, one side of warm sludge case to be connected with bottom surface by rotating shaft and to be connected with adjacent side by buckle, two inwalls that warm sludge case is relative are installed with support plate, support plate is provided with alloy tank, the side of alloy tank is provided with heat-insulation layer, two outer walls that alloy tank is relative are installed with suspension ring, the bottom surface of alloy tank is heat transfer plate, heat transfer plate is provided with multiple heat transfer path, the top of alloy tank is provided with alloy case lid, the inside of alloy case lid is provided with heat-insulation layer, alloy case lid is rectangular and four edges of alloy case lid are equipped with hanger, the middle part of alloy case lid is provided with motor, motor is connected with shaft, the other end of shaft is positioned at alloy tank.The utility model have warm sludge heat can be carried out recycling, the advantage of energy-conserving and environment-protective.
Description
Technical field
The utility model relates to steel ingot production equipment technical field, relates to alloy baking case particularly.
Background technology
Can produce warm sludge in steel ingot production process, the temperature of warm sludge, usually at 1000 DEG C, is generally just placed the process of warm sludge and is then naturally cooled.Need when producing alloy steel ingot to use alloy raw material, and before adding alloy raw material, need alloy raw material to heat, mostly existing be arrange separately an alloy baking room, the heat alloy heating utilizing fuel combustion to produce.Both wasted the waste heat of warm sludge in existing steel ingot production process, consume again the heating of fuel alloy, energy resource consumption is large, production cost is high.
Summary of the invention
The purpose of this utility model is to solve the problems of the technologies described above, and provides a kind of and warm sludge heat can be carried out recycling, the alloy baking case of energy-conserving and environment-protective.
The technical solution of the utility model is: a kind of alloy baking case, comprise warm sludge case, the open top of described warm sludge case, bottom surface and the side of warm sludge case are equipped with heat-insulation layer, heat-insulation layer is made up of heat-preservation cotton and steel wire, one side of warm sludge case to be connected with bottom surface by rotating shaft and to be connected with adjacent side by buckle, two inwalls that warm sludge case is relative are installed with support plate, support plate is provided with alloy tank, the open top of alloy tank, the side of alloy tank is provided with heat-insulation layer, two outer walls that alloy tank is relative are installed with suspension ring, the bottom surface of alloy tank is heat transfer plate, heat transfer plate is provided with multiple heat transfer path, the top of alloy tank is provided with alloy case lid, the inside of alloy case lid is provided with heat-insulation layer, alloy case lid is rectangular and four edges of alloy case lid are equipped with hanger, the middle part of alloy case lid is provided with motor, motor is connected with shaft, the other end of shaft is positioned at alloy tank.
Preferably, described heat transfer plate is made up of multiple reinforcing bar in right-angled intersection, and heat transfer path is the square interstice formed between adjacent reinforcing bar.
Preferably, described heat transfer plate is made up of multiple parallel to each other and reinforcing bar that is that equidistantly arrange, and heat transfer path is the space formed between adjacent reinforcing bar.
Preferably, described heat transfer plate is evenly equipped with multiple circular port, circular port is heat transfer path.
Preferably, the size that described warm sludge box top is uncovered is greater than the size of warm sludge case bottom surface and the laterally inclined setting of warm sludge case.
Preferably, described hanger is welded on alloy tank and covers.
The beneficial effects of the utility model are: by alloy tank being placed on above warm sludge case, the alloy in the high-temperature residual heat alloy case of warm sludge is utilized to toast, the heat wasting warm sludge can either be avoided, the energy can be saved again, heat without the need to excessive fuel consumption alloy, energy-conserving and environment-protective.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is the structural representation of the utility model warm sludge case.
Fig. 3 is the structural representation of the utility model alloy tank.
Fig. 4 is the structural representation of the utility model alloy case lid.
Fig. 5 is the structural representation of heat transfer plate in the utility model embodiment two.
Fig. 6 is the structural representation of heat transfer plate in the utility model embodiment three.
In figure, 1, warm sludge case, 2, heat-insulation layer, 3, buckle, 4, rotating shaft, 5, support plate, 6, alloy tank, 7, suspension ring, 8, heat transfer plate, 9, heat transfer path, 11, alloy case lid, 12, hanger, 13, motor, 14, shaft, 15, reinforcing bar.
Detailed description of the invention
Below in conjunction with accompanying drawing, the technical solution of the utility model is described in detail.
As shown in Figures 1 to 4, alloy baking case of the present utility model, comprises warm sludge case 1, is contained with remaining high temperature warm sludge when producing steel ingot, utilizes the high-temperature residual heat alloy of warm sludge to toast in this warm sludge case 1.In order to the thermal loss caused when reducing high temperature warm sludge and surrounding environment heat exchange in warm sludge case 1, be equipped with heat-insulation layer 2 in the bottom surface of warm sludge case 1 and side, particularly, this heat-insulation layer 2 mainly adopts heat-preservation cotton realization to be incubated, and adopts steel wire heat-preservation cotton to be fixed.
In order to meet installation requirement, the top design of warm sludge case 1 being become uncovered, two inwalls that warm sludge case 1 is relative being also installed with support plate 5, during use, alloy tank 6 being placed on support plate 5.Conveniently load and unload warm sludge, a side of warm sludge case 1 is made to be connected with bottom surface by rotating shaft 4 and to be connected by the side that buckle 3 is adjacent, a side by warm sludge case 1 is designed to be flexibly connected, when needs handling warm sludge, only need open buckle rotates this side, and the warm sludge in warm sludge case can facilitate removal.Particularly, warm sludge case 1 is designed to infundibulate, and namely the size of warm sludge case 1 open top is greater than the size of warm sludge case 1 bottom surface and the laterally inclined setting of warm sludge case 1, can increase the capacity of warm sludge case like this, shortens baking time.
Be placed in the alloy tank 6 on support plate 5 and be contained with alloy raw material to be baked, in order to reduce thermal loss when alloy and warm sludge heat exchange, be provided with heat-insulation layer 2 in the side of alloy tank 6, this heat-insulation layer 2 is identical with the heat-insulation layer 2 of warm sludge case 1 to be also made up of heat-preservation cotton and steel wire.Two outer walls that alloy tank 6 is relative are installed with suspension ring 7, transport alloy tank 6 to facilitate lifting.
Alloy in alloy tank 6 is conducted heat with the warm sludge in warm sludge case by bottom surface i.e. heat transfer plate 8, as shown in Figure 3 be the first embodiment of heat transfer plate 8, namely heat transfer plate 8 is made up of multiple reinforcing bar 15 in right-angled intersection, and heat transfer path 9 is the square interstice formed between adjacent reinforcing bar 15.
As shown in Figure 5, in the second embodiment of heat transfer plate 8, heat transfer plate 8 is made up of multiple parallel to each other and reinforcing bar 15 that is that equidistantly arrange, and heat transfer path 9 is the spaces formed between adjacent reinforcing bar 15.
As shown in Figure 6, in the third embodiment of heat transfer plate 8, heat transfer plate 8 is steel plates, and heat transfer plate 8 is evenly equipped with multiple circular port, and circular port is exactly heat transfer path 9, and the heat of warm sludge is passed in alloy tank 6 by circular port.
The top design of alloy tank 6 becomes uncovered, the top of alloy tank 6 is provided with alloy case lid 11, similarly, in order to reduce the heat exhaustion in diabatic process, also be provided with heat-insulation layer 2 in the inside of alloy case lid 11, the structure of heat-insulation layer 2 is identical with the heat-insulation layer 2 of alloy tank 6 with warm sludge case 1.Alloy case lid 11 be designed to rectangular and be equipped with hanger 12 to facilitate lifting at four edges of alloy case lid 11.
In order to overcome owing to being only uneven problem of being heated up and down in the alloy tank 6 brought of alloy tank 6 bottom surface and warm sludge case contact heat-exchanging, at the middle part of alloy case lid 11, motor 13 is installed, this motor 13 is connected with one and stretches into shaft 14 in alloy tank 6, stirred by the alloy in shaft 14 alloy case 6, make the alloy in alloy tank 6 be in diverse location, make heat exchange even.
Although the foregoing describe detailed description of the invention of the present utility model, it will be understood by those of skill in the art that these only illustrate, protection domain of the present utility model is defined by the appended claims.Those skilled in the art, under the prerequisite not deviating from principle of the present utility model and essence, can make various changes or modifications to these embodiments, but these change and amendment all falls into protection domain of the present utility model.
Claims (6)
1. an alloy baking case, it is characterized in that: comprise warm sludge case (1), the open top of described warm sludge case (1), the bottom surface of warm sludge case (1) and side are equipped with heat-insulation layer (2), heat-insulation layer (5) is made up of heat-preservation cotton and steel wire, one side of warm sludge case (1) is connected with bottom surface by rotating shaft (4) and is connected with adjacent side by buckle (3), two inwalls that warm sludge case (1) is relative are installed with support plate (5), support plate (5) is provided with alloy tank (6), the open top of alloy tank (6), the side of alloy tank (6) is provided with heat-insulation layer (2), two outer walls that alloy tank (6) is relative are installed with suspension ring (7), the bottom surface of alloy tank (6) is heat transfer plate (8), heat transfer plate (8) is provided with multiple heat transfer path (9), the top of alloy tank (6) is provided with alloy case lid (11), the inside of alloy case lid (11) is provided with heat-insulation layer (2), alloy case lid (11) is rectangular and four edges of alloy case lid (11) are equipped with hanger (12), the middle part of alloy case lid (11) is provided with motor (13), motor (13) is connected with shaft (14), the other end of shaft (14) is positioned at alloy tank (6).
2. alloy baking case as claimed in claim 1, is characterized in that: described heat transfer plate (8) is made up of multiple reinforcing bar (15) in right-angled intersection, and heat transfer path (9) is the square interstice formed between adjacent reinforcing bar (15).
3. alloy baking case as claimed in claim 1, is characterized in that: described heat transfer plate (8) be made up of multiple parallel to each other and reinforcing bar (15) that is that equidistantly arrange, and heat transfer path (9) is the space of formation between adjacent reinforcing bar (15).
4. alloy baking case as claimed in claim 1, it is characterized in that: (8) are evenly equipped with multiple circular port to described heat transfer plate, circular port is heat transfer path (9).
5. the alloy baking case as described in above-mentioned arbitrary claim, is characterized in that: the size of described warm sludge case (1) open top is greater than the size of warm sludge case (1) bottom surface and the laterally inclined setting of warm sludge case (1).
6. alloy baking case as claimed in claim 5, is characterized in that: described hanger (12) is welded on alloy case lid (11).
Priority Applications (1)
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CN201420537210.XU CN204085095U (en) | 2014-09-18 | 2014-09-18 | Alloy baking case |
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CN201420537210.XU CN204085095U (en) | 2014-09-18 | 2014-09-18 | Alloy baking case |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104596224A (en) * | 2015-01-31 | 2015-05-06 | 江西新金叶实业有限公司 | Burden drying kiln |
CN111288764A (en) * | 2020-04-02 | 2020-06-16 | 江苏百代节能建材有限公司 | Energy-efficient soft stone heating and drying device |
-
2014
- 2014-09-18 CN CN201420537210.XU patent/CN204085095U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104596224A (en) * | 2015-01-31 | 2015-05-06 | 江西新金叶实业有限公司 | Burden drying kiln |
CN111288764A (en) * | 2020-04-02 | 2020-06-16 | 江苏百代节能建材有限公司 | Energy-efficient soft stone heating and drying device |
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