CN201740688U - Special cracking electric furnace for ultraciolet fluorescence sulfur detector - Google Patents
Special cracking electric furnace for ultraciolet fluorescence sulfur detector Download PDFInfo
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- CN201740688U CN201740688U CN2010202422344U CN201020242234U CN201740688U CN 201740688 U CN201740688 U CN 201740688U CN 2010202422344 U CN2010202422344 U CN 2010202422344U CN 201020242234 U CN201020242234 U CN 201020242234U CN 201740688 U CN201740688 U CN 201740688U
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- determination device
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Abstract
The utility model provides a special cracking electric furnace for an ultraciolet fluorescence sulfur detector, comprising a hearth, a thermal insulating layer and a shell from the inside to the outside in sequence, wherein the hearth is provided with an electric furnace wire, and the shell is provided with an electrical connector. The electric furnace wire is connected with the electrical connector, and the hearth is composed of a furnace core and a furnace core jacket. The surface of the furnace core is provided with a spiral groove, and the electric furnace wire is wound in the spiral groove. The shell is an air-cooled wall with an air path ring cavity, and the outer wall of the air-cooled wall is provided with a plurality of notches. The special cracking electric furnace for the ultraciolet fluorescence sulfur detector overcomes the defect that two sections of heating is easily out of control, optimizes the air-cooled scheme, reduces the surface temperature, narrows the volume of the electric furnace, and achieves the purpose of exquisite machine.
Description
Technical field
The utility model relates to a kind of splitting decomposition electric furnace special for ultraluminescence sulphur determination device.
Background technology
In petrochemical complex production and scientific research, to trace element analysis in oil product and the derivant thereof coulometry, chemoluminescence method and atomic fluorescence method commonly used.The common ground of these methods all is that sample is handled through cracking earlier, and then enters sensor under air-flow carries, to obtain electric quantity signal.
Cracking is handled and is normally designed a kind of closed quartz ampoule, and is placed in a kind of special device that is called the cracking electric furnace, and the cracking electric furnace provides high temperature heat source, the radiations heat energy heated quarty tube, thus make the sample that flows in the quartz ampoule reach predetermined temperature.The non-isolated electric furnace of the popular use water-cooled of the eighties in last century two-period form, this electric furnace relies on two sections heating-up temperatures of two cover control circuit control electric furnaces, easily, thermal source causes temperature fluctuation or circuit interference causing electric elements and the body of heater of burning out of control each other because of disturbing, and because a large amount of chilled waters that use, the shave one's head accident of living electrical short of consume water resources and water pipe seepage condensing drip.
Air-cooled pyrolysis furnace is a kind of energy-saving substitute products that grow up on the basis of water-cooled pyrolysis furnace, and its greatest improvement promptly is to have cancelled chilled water, adopts wind path to encircle the mode lowering apparatus environment temperature of body of heater directed flow.Still there is the interference between secondary reformer temperature and the control thereof in air-cooled pyrolysis furnace, out of controlly send a telegraph the accident that stove burns and happen occasionally, furnace body outer wall still has the surface temperature up to 70 ℃ can not eliminate the heat fatigue that appliance component is produced simultaneously, the operator still has the threat of scald, if reduce surface temperature further, will make the bigger of electric furnace volume change, bring adverse effect for production and use.
The utility model content
The utility model provides a kind of splitting decomposition electric furnace special for ultraluminescence sulphur determination device, is intended to solve two sections shortcomings that heating is easily out of control, optimizes air-cooled scheme, reduces surface temperature, optimizes structure, and reaches and dwindles overall volume, makes the purpose of complete machine exquisiteness.
The splitting decomposition electric furnace special for ultraluminescence sulphur determination device that the utility model provides, from inside to outside comprise burner hearth, heat-insulation layer and shell successively, described burner hearth is provided with electric furnace heating wire, described shell is outside equipped with electric connection, and described electric furnace heating wire connects described electric connection, and described burner hearth is made up of combustion chamber and combustion chamber overcoat, described combustion chamber outside surface has helical groove, twine described electric furnace heating wire in the described helical groove, described shell is the air-cooled wall with wind path ring cavity, and the outer wall of this air-cooled wall has a plurality of notches.
Preferably, the smooth interior surfaces of described combustion chamber, the two ends of described combustion chamber have the arc raceway groove of fixing described electric furnace heating wire.
Preferably, a plurality of notches on the outer wall of described air-cooled wall are that multichannel is the notch that all shapes of ring are arranged.
Preferably, have the thermometric jack on the described air-cooled wall, lay the thermopair that obtains temperature signal in this thermometric jack.
Preferably, this splitting decomposition electric furnace special for ultraluminescence sulphur determination device is cylindric, and two ends have capping, and described combustion chamber is the diamond spar matter cylinder of thick 0.7~0.8cm, and the thickness of described wind path ring cavity is 1.5~4cm.Concrete specification for example can for: the external diameter of described combustion chamber is 5.0cm, thick 0.75cm, long 34cm; The long 35.5cm of described air-cooled wall, external diameter is 17cm, the thickness of described wind path ring cavity is 2cm.
This cracking electric furnace is owing to designed air-cooled wall, and cooling effect is significantly improved, and the appearance temperature can drop to and only be higher than 25 ℃ of environment, and the appearance of the existing product of equal volume will be higher than 45 ℃ of environment usually, and cracking electric furnace volume of the present utility model is less, and is easy-to-use.
Description of drawings
Fig. 1 is the longitudinal diagram of a kind of splitting decomposition electric furnace special for ultraluminescence sulphur determination device of the present utility model;
Fig. 2 is the drawing in side sectional elevation of a kind of splitting decomposition electric furnace special for ultraluminescence sulphur determination device of the present utility model;
Fig. 3 is the structural representation of the combustion chamber of a kind of splitting decomposition electric furnace special for ultraluminescence sulphur determination device of the present utility model;
Fig. 4 is the structural representation of the air-cooled wall outside surface of a kind of splitting decomposition electric furnace special for ultraluminescence sulphur determination device of the present utility model;
Among the figure: the air-cooled wall of 1-, 2-heat-insulation layer, 3-combustion chamber overcoat, 4-combustion chamber, 5-electric furnace heating wire, 6-electric connection, 7-thermometric jack, 8-notch, 9-wind path ring cavity.
Embodiment
Below by specific embodiment the utility model is further specified.
As depicted in figs. 1 and 2, this splitting decomposition electric furnace special for ultraluminescence sulphur determination device from inside to outside comprises burner hearth, heat-insulation layer 2 and as the air-cooled wall 1 of shell, described burner hearth is made up of combustion chamber 4 and combustion chamber overcoat 3 successively.As shown in Figure 3, described combustion chamber 3 outside surfaces have helical groove, twine electric furnace heating wire 5 in the described helical groove.As depicted in figs. 1 and 2, air-cooled wall 1 has wind path ring cavity 9, and as shown in Figure 4, the outer wall of this air-cooled wall 1 has 4 the tunnel and is the notch 8 that all shapes of ring are arranged.As shown in Figure 1, air-cooled wall 1 is outside equipped with electric connection 6, and described electric furnace heating wire 5 connects electric connection 6, and electric connection 6 is a porcelain connector.Have thermometric jack 7 on the described air-cooled wall 1, lay the thermopair that obtains temperature signal in this thermometric jack 7.
In conjunction with Fig. 1~4, further specify as follows:
Combustion chamber overcoat 3 is a thick cylinder, and long 340mm opens the notch of a wide 8mm along its length, to make things convenient for combustion chamber 4 to insert and the derivation of electric furnace heating wire 5 two ends.
Air-cooled wall 1 long 35.5cm, overall diameter is 17cm, the thickness of wind path ring cavity 9 is 2.0cm.Air-cooled wall 1 is a sandwich cylinder, and envelope is closed and along long axis direction surface design 4 road notches outside, notch shape strip in two ends.It is the external packing of electric furnace body be again approach, the carrier that the body of heater heat distributes in air, on the basis of air-cooled pyrolysis furnace in the past, innovate and form, because be provided with air-cooled wall 1, cooling draught (air) is not only encircled the body of heater circumferential surface, and, strengthened cooling effect greatly by notch 8 discharge after circumference flows in wind path ring cavity 9.
Middle layer between burner hearth and the air-cooled wall 1 is a heat-insulation layer 2, constitutes with heat-insulating material (asbestos), and no preset shapes, when being assembling, filling forms, and its effect is to stop heat to loose outward.
Following simple declaration is the using method of this splitting decomposition electric furnace special for ultraluminescence sulphur determination device once: this electric furnace is installed in the cabinet of temperature, flow controlling unit of Ultraluminescence constant sulphur appliance, the body of heater axis is vertical with the cabinet left and right side.The cabinet front surface is provided with ventilating opening, and the cabinet rear surface is provided with blower fan, forms the air cooling passage during instrument operation between body of heater side face and air-cooled wall and cabinet.Cold wind is imported by ventilating opening, encircles body of heater and goes forward side by side into air-cooled wall after the blower fan discharge by the temperature in air-cooled reduction cracking electric furnace appearance and the cabinet, guarantees that the temperature in the cabinet is no more than the limit of standing of element, significantly the air-cooled efficient of consumption reduction water saving raising; Easy to use, indoorly need not lay water pipe, thereby also stop the short circuit accident that takes place because of pipe leakage or condensate water, safe and reliable, prolonged serviceable life.
This cracking electric furnace cooling effect is significantly improved, and the appearance temperature only is higher than 25 ℃ of environment, and single-ended temperature control has saved 2/3 circuit overhead, and the like product of electric furnace volume ratio prior art has dwindled half, and this has significant meaning for the volume that reduces whole instrument.
Claims (6)
1. splitting decomposition electric furnace special for ultraluminescence sulphur determination device, from inside to outside comprise burner hearth, heat-insulation layer and shell successively, described burner hearth is provided with electric furnace heating wire, and described shell is outside equipped with electric connection, and described electric furnace heating wire connects described electric connection, it is characterized in that, described burner hearth is made up of combustion chamber and combustion chamber overcoat, and described combustion chamber outside surface has helical groove, twines described electric furnace heating wire in the described helical groove, described shell is the air-cooled wall with wind path ring cavity, and the outer wall of this air-cooled wall has a plurality of notches.
2. splitting decomposition electric furnace special for ultraluminescence sulphur determination device according to claim 1 is characterized in that, the smooth interior surfaces of described combustion chamber, and the two ends of described combustion chamber have the arc raceway groove of fixing described electric furnace heating wire.
3. splitting decomposition electric furnace special for ultraluminescence sulphur determination device according to claim 1 is characterized in that, a plurality of notches on the outer wall of described air-cooled wall are that multichannel is the notch that all shapes of ring are arranged.
4. splitting decomposition electric furnace special for ultraluminescence sulphur determination device according to claim 1 is characterized in that, has the thermometric jack on the described air-cooled wall, lays the thermopair that obtains temperature signal in this thermometric jack.
5. splitting decomposition electric furnace special for ultraluminescence sulphur determination device according to claim 1, it is characterized in that this splitting decomposition electric furnace special for ultraluminescence sulphur determination device is cylindric, two ends have capping, described combustion chamber is the diamond spar matter cylinder of thick 0.7~0.8cm, and the thickness of described wind path ring cavity is 1.5~4cm.
6. splitting decomposition electric furnace special for ultraluminescence sulphur determination device according to claim 5 is characterized in that, the external diameter of described combustion chamber is 5.0cm, thick 0.75cm, long 34cm; The long 35.5cm of described air-cooled wall, external diameter is 17cm, the thickness of described wind path ring cavity is 2cm.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2010202422344U CN201740688U (en) | 2010-06-30 | 2010-06-30 | Special cracking electric furnace for ultraciolet fluorescence sulfur detector |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN2010202422344U CN201740688U (en) | 2010-06-30 | 2010-06-30 | Special cracking electric furnace for ultraciolet fluorescence sulfur detector |
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CN201740688U true CN201740688U (en) | 2011-02-09 |
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CN2010202422344U Expired - Fee Related CN201740688U (en) | 2010-06-30 | 2010-06-30 | Special cracking electric furnace for ultraciolet fluorescence sulfur detector |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101871728A (en) * | 2010-06-30 | 2010-10-27 | 姜堰市科苑电子仪器有限公司 | Splitting decomposition electric furnace special for ultraluminescence sulphur determination device |
CN102641760A (en) * | 2012-04-27 | 2012-08-22 | 邯郸派瑞节能控制技术有限公司 | Ultrahigh-temperature pyrolysis device |
-
2010
- 2010-06-30 CN CN2010202422344U patent/CN201740688U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101871728A (en) * | 2010-06-30 | 2010-10-27 | 姜堰市科苑电子仪器有限公司 | Splitting decomposition electric furnace special for ultraluminescence sulphur determination device |
CN102641760A (en) * | 2012-04-27 | 2012-08-22 | 邯郸派瑞节能控制技术有限公司 | Ultrahigh-temperature pyrolysis device |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20110209 Termination date: 20150630 |
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EXPY | Termination of patent right or utility model |