CN207969003U - Overheated steam generating means - Google Patents

Overheated steam generating means Download PDF

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Publication number
CN207969003U
CN207969003U CN201820170914.6U CN201820170914U CN207969003U CN 207969003 U CN207969003 U CN 207969003U CN 201820170914 U CN201820170914 U CN 201820170914U CN 207969003 U CN207969003 U CN 207969003U
Authority
CN
China
Prior art keywords
conductor tube
joint portion
overheated steam
generating means
steam generating
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
CN201820170914.6U
Other languages
Chinese (zh)
Inventor
外村徹
北野孝次
藤本泰広
木村昌义
玉置幸男
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.)
Tokuden Co Ltd Kyoto
Original Assignee
Tokuden Co Ltd Kyoto
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 Tokuden Co Ltd Kyoto filed Critical Tokuden Co Ltd Kyoto
Application granted granted Critical
Publication of CN207969003U publication Critical patent/CN207969003U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B6/00Heating by electric, magnetic or electromagnetic fields
    • H05B6/02Induction heating
    • H05B6/10Induction heating apparatus, other than furnaces, for specific applications
    • H05B6/14Tools, e.g. nozzles, rollers, calenders
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K31/00Processes relevant to this subclass, specially adapted for particular articles or purposes, but not covered by only one of the preceding main groups
    • B23K31/02Processes relevant to this subclass, specially adapted for particular articles or purposes, but not covered by only one of the preceding main groups relating to soldering or welding
    • B23K31/027Making tubes with soldering or welding
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F22STEAM GENERATION
    • F22GSUPERHEATING OF STEAM
    • F22G1/00Steam superheating characterised by heating method
    • F22G1/16Steam superheating characterised by heating method by using a separate heat source independent from heat supply of the steam boiler, e.g. by electricity, by auxiliary combustion of fuel oil
    • F22G1/165Steam superheating characterised by heating method by using a separate heat source independent from heat supply of the steam boiler, e.g. by electricity, by auxiliary combustion of fuel oil by electricity
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F22STEAM GENERATION
    • F22GSUPERHEATING OF STEAM
    • F22G3/00Steam superheaters characterised by constructional features; Details of component parts thereof
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B6/00Heating by electric, magnetic or electromagnetic fields
    • H05B6/02Induction heating
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B6/00Heating by electric, magnetic or electromagnetic fields
    • H05B6/02Induction heating
    • H05B6/36Coil arrangements

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • General Engineering & Computer Science (AREA)
  • General Induction Heating (AREA)
  • Heating, Cooling, Or Curing Plastics Or The Like In General (AREA)

Abstract

The utility model is related to overheated steam generating means, can reduce reactance by constituting short circuit current in conductor tube, and can reduce the damaged possibility of joint portion and conductor tube.The overheated steam generating means are by being arranged the magnetic flux generation mechanism in the inner or outer side of the wound section of conductor tube, sensing heating is carried out to the conductor tube of the circular tube shaped helically wound, the vapor flowed through in heating conductor tube, generate overheated steam, conductor tube wound section it is substantially whole, the face relative to each other of adjacent portions adjacent to each other is engaged by joint portion, and the thickness at joint portion is the thickness of pipe of conductor tube or more.

Description

Overheated steam generating means
Technical field
The utility model is related to flow through described lead by carrying out sensing heating to the conductor tube helically wound to heat Vapor in body pipe and the overheated steam generating means for generating overheated steam.
Background technology
In the past, in this fluid heater, as shown in Patent Document 1, have a kind of in the spiral for forming secondary coil In the conductor tube wound to shape, the conductor tube adjacent to each other of wound section is set to be electrically short-circuited to each other and constitute short circuit current, to drop Low reactance is to improve the fluid heater of the efficiency of heating surface by public domain.
Here, by using welding etc. by circumferential one of the axially extending electrical connecting member and wound section along spiral Part connects, or by the way that by the conductor tube adjacent to each other of wound section, local welding engages each other, thus described in composition Short circuit current.
But as the electrical connecting member or welding portion at joint portion, become high temperature, because of conductor because short circuit current is concentrated Deformation caused by the thermal expansion of the wound section of pipe and generate stress, it is damaged to lead to the problem of joint portion and conductor tube.
Existing technical literature
Patent document 1:Japanese Laid-Open Patent Publication 2010-71624
Utility model content
The utility model is for solving the problems, such as that utility model that is described and making, the main purpose of the utility model be Reactance is reduced by constituting short circuit current in conductor tube, and reduces the damaged possibility of joint portion and conductor tube.
That is, the utility model provides a kind of overheated steam generating means, by the way that the wound section in conductor tube is arranged Inner or outer side magnetic flux generation mechanism, sensing heating is carried out to the conductor tube of circular tube shaped helically wound, by This heats the vapor flowed through in the conductor tube, generates overheated steam, in the wound section of the conductor tube, adjacent to each other The faces relative to each other of adjacent portions engaged by conductive joint portion, the joint portion across circumferential substantially whole Thickness be the conductor tube the thickness of pipe more than.
According to such overheated steam generating means, due to the wound section in conductor tube, adjacent portions adjacent to each other Across circumferential substantially entirety by joint portion engagement (entire engagement), so the thermal expansion in the case of local engagement can be avoided to lead The stress of cause is concentrated to joint portion, can reduce the possibility at joint portion and conductor tube breakage.Further, since conductor tube is in pipe Shape is formed with recess portion between adjacent portions adjacent to each other, so by the way that joint portion is arranged in the recess portion, can increase engagement The contact area of the outside circumference of portion and conductor tube.With this configuration, stress can be reduced to concentrate to joint portion.
Here, if conductor tube is identical at a distance from induction coil of the joint portion away from magnetic flux generation mechanism, it is desirable that The thickness at joint portion and the thickness of pipe of conductor tube are identical values.
But conductor tube it is cylindrical, between adjacent portions adjacent to each other be arranged joint portion structure in, compared to Conductor tube, joint portion is away from induction coil apart from bigger.Since if the distance away from induction coil is big, magnetic coupling weakens, feels Voltage is answered to be lower, so the calorific value of the part reduces.
In this way, if conductor tube generates temperature difference with joint portion, mechanical stress is generated due to thermal stretching difference, is become brokenly It the damaged reason such as splits, therefore realizes that the homogenization of calorific value is important as far as possible.
Thickness by making joint portion is the thickness of pipe of conductor tube or more, the resistance value at joint portion can be reduced, due to electric current Increase, the calorific value at joint portion can be made to increase.As a result, it is possible to realize the homogenization of the calorific value of conductor tube and joint portion.
As the joint portion, can be formed by solder joints.In the case of solder joints, due to being molten metal material Material is easy to fill the structure of the recess portion between adjacent portions adjacent to each other, so the weld job can be made to become easy.
In order to by the adjustment of thickness size be easy that calorific value is made to homogenize, it is preferred that the material at the joint portion The resistivity of resistivity and the material of the conductor tube be substantially the same.
In the case of the operability that consideration entirely engages the wound section of conductor tube, it is preferred that the joint portion Outer surface side in the wound section is set.In addition, in order to keep the magnetic coupling of electromagnetic induction good, it is preferred that the magnetic The inner side and outer side both sides in the wound section of the conductor tube are arranged in logical generation mechanism.
Preferably, the joint portion is contained in the recess portion formed by the adjacent portions adjacent to each other.According to the knot Structure can prevent from configuring the radial of magnetic flux generation mechanism in the outside of the wound section of conductor tube or inside and become large-sized.
In addition, the utility model provides a kind of manufacturing method of conductor tube, the conductor tube is generated for overheated steam Device heats the vapor flowed through in inside by sensing heating, overheated steam is generated, in the pipe helically wound The wound section of the conductor tube of shape it is substantially whole, by the face solder joints relative to each other of adjacent portions adjacent to each other, and It is the thickness of pipe of the conductor tube or more to make filler (meat Sheng) thickness of the solder joints.
The utility model constituted as described above, due to the wound section in conductor tube, adjacent portions adjacent to each other, It is engaged by joint portion across circumferential entirety, so short circuit current can be constituted in conductor tube, so as to reduce reactance, and energy Enough reduce the possibility at joint portion and conductor tube breakage.
Description of the drawings
Fig. 1 is the sectional view of the structure for the overheated steam generating means for schematically showing present embodiment.
Fig. 2 is the enlarged partial sectional view of the wound section for the conductor tube for indicating same embodiment.
Fig. 3 is the schematic diagram of the welding position of the outer surface side for the conductor tube for indicating same embodiment.
Fig. 4 is the schematic diagram of the conductor tube for indicating same embodiment and the position relationship of induction coil.
Reference sign
100 overheated steam generating means
2 conductor tubes
20 adjacent portions
20M recess portions
3 magnetic flux generation mechanisms
4 joint portions
The t thickness of pipe
T depth of packing
Specific implementation mode
Hereinafter, with reference to attached drawing, an embodiment of the overheated steam generating means 100 of the utility model is said It is bright.
As shown in Figure 1, the overheated steam generating means 100, are generated by heating water or vapor more than 100 DEG C The superheated steam of (200 DEG C~2000 DEG C), the overheated steam generating means 100 have the circular tube shaped helically wound Conductor tube 2 and for the conductor tube 2 carry out sensing heating magnetic flux generation mechanism 3.
Conductor tube 2 is formed by a metal pipe, has the wound section 2x helically wound, in conductor tube 2 One end is formed with the introducing port P1 for importing water or vapor, is formed in another end for exporting the mistake generated The export mouth P2 of hot steam.The outside pipe arrangement that water or vapor are supplied for conductor 801 pipe 2 is connect with introducing port P1, is used for The overheated steam of generation is connect to the outside pipe arrangement for using side (such as thermal chamber) to supply with export mouth P2.
Magnetic flux generation mechanism 3 includes iron core 31 and the induction coil 32 along the winding of the iron core 31.Exchange (not shown) Power supply is connect with the induction coil 32, and the electric power controlled is supplied to the induction coil 32.It is supplied electric power by AC power Induction coil 32 become primary coil, by the primary coil power as a result, flow through induced current in conductor tube 2, Conductor tube 2 becomes secondary coil.
The induction coil 32 of present embodiment and the wound section 2x of conductor tube 2 are configured on the same axis, and induction coil 32 has Have:Inside induction coil 32a is configured in the inside of wound section 2x;And outside induction coil 32b, it configures in wound section Outside.Induction coil 32a, 32b are configured in the inside and outside both sides of wound section 2x in this way, electromagnetic induction can be made Magnetic coupling improves, and can make to flow through induced current in conductor tube 2 and becomes easy, so as to improve the efficiency of heating surface of vapor (formation efficiency of overheated steam).
In addition, in the present embodiment, as shown in Figures 2 and 3, in the wound section 2x of conductor tube 2, phase adjacent to each other The face relative to each other in adjacent portion 20 is engaged across the substantially whole of circumferential direction by conductive joint portion 4.That is, across conductor The entire spiral of the wound section 2x of pipe 2 is provided with joint portion 4.
Specifically, joint portion 4 forms (hereinafter also referred to engaging weld part) by solder joints.That is, in conductor tube 2 Wound section 2x, the face relative to each other of adjacent portions 20 adjacent to each other are integrally entirely engaged across spiral (with reference to Fig. 2). In addition, the resistivity of the resistivity and the material of conductor tube 2 of the material at joint portion 4 is made to be substantially the same.Here, it is preferable that connecing The material in conjunction portion 4 is identical as the material of conductor tube 2.Resistivity can not only be made identical as a result, and coefficient of thermal expansion also phase can be made Together, thus enable that the thermal stress generated when temperature rise reduces.Further, since being made with certain feed speed in solder joints Welding torch (torch) keeps centainly being important at a distance from welding position, it is therefore preferred to use automatic welding machine.In addition, Due to initially there is groove between the adjacent portions 20 of conductor tube 2, so without carrying out retaining wall on slope.
In addition, as shown in figure 3, the thickness at joint portion 4 is the thickness of pipe of conductor tube 2 or more.That is, as joint portion 4, welding The thickness for engaging the filler formed is the thickness of pipe of conductor tube 2 or more.Joint portion 4 is contained in be formed by adjacent portions 20 adjacent to each other Recess portion 20M in.More specifically, joint portion 4 from the contact site 20c of adjacent portions 20 adjacent to each other or its nearby with rule Determine thickness to be formed in the range that can be contained in recess portion 20M.That is, at the axial direction (center of wound section 2x perpendicular to spiral On direction axially), the outer end portion of conductor tube 2 is located at the position more more outward than the outer end portion at joint portion 4.
In Fig. 3 etc., inner surface side and outer surface side both sides in the wound section 2x of conductor tube 2 is arranged in joint portion 4, but It is in the case of the operability that consideration entirely engages the wound section 2x of conductor tube 2, it is preferred that joint portion 4 is only Outer surface side in wound section 2x is set.
As shown in figure 4, between the contact site of the adjacent portions 20 of wound section 2x and filler portion (engaging weld part 4), to the greatest extent Pipe can form fraction of gap in operation, but if setting the gap size as Δ, become the journey of 0 < Δ < numbers mm Degree.For example, the conductor tube 2 of the overheated steam for the 240kg for generating 1200 DEG C for 1 hour, a diameter of 48.3mm, the thickness of pipe are 3.7mm.When entirely being welded to the wound section 2x of the conductor tube 2, set depth of packing as 5mm, Δ is about 2.5mm.
If it is as make vapor flow through degree size conductor tube 2, then feelings equal in the thickness of pipe and depth of packing Under condition, the distance of engagement induction coil 32 of 4 one side of weld part away from magnetic flux generation mechanism 3 becomes larger.If setting the wall of conductor tube 2 It is T that thickness, which is t, engages the depth of packing of weld part 4, then by making T > t, the electric current of seam welding socket part 4 can be made to increase, thus Calorific value is set to increase.
When T=t, the induced voltage of conductor tube 2 is labeled as 〇 higher than the case where engagement weld part 4
Mark, and indicate in table below.
[table 1]
Calorific value is not only related with induced voltage, also related with conductor tube 2 and the engagement resistance value of weld part 4.That is, resistance Value is lower, and the electric current flowed through is bigger, and calorific value more increases.
The case where perimeter for the engagement weld part 4 for generating induced voltage is more than the wound section 2x of conductor tube 2 is set as " 〇 ", by the perimeter for the engagement weld part 4 for generating induced voltage be less than conductor tube 2 wound section 2x the case where be set as "×" And concentrate expression in the following table.
[table 2]
When the diameter of conductor tube 2 is set as Φ, the maximum value of the depth of packing T at the position of " 〇 " of table 2 becomes (T + Δ) Φ/2 < range.
<The effect of present embodiment>
The overheated steam generating means 100 constituted as described above because conductor tube 2 wound section 2x each other Adjacent adjacent portions 20, across circumferential substantially entirety by the engagement of joint portion 4 (entire engagement), so part can be avoided to connect Stress caused by thermal expansion in the case of conjunction can reduce the damaged possibility of joint portion and conductor tube to the concentration at joint portion Property.Further, since conductor tube 2 is cylindrical, recess portion 20M is formed between adjacent portions 20 adjacent to each other, so by described Joint portion 4 is arranged in recess portion 20M, can increase the contact area at joint portion 4 and the outside circumference of conductor tube 2.With this configuration, Stress can be reduced to concentrate to joint portion.
Due to the thickness of pipe t or more that the thickness T at joint portion 4 is conductor tube 2, the resistance value at joint portion 4, energy can be reduced It is enough to increase calorific value by increasing electric current.
It is the recess portion between adjacent portions 20 adjacent to each other further, since joint portion 4 is formed by solder joints 20M is easy to pile with the structure of molten metal material, so the weld job can be made to become easy.
<Other variant embodiments>
In addition, the utility model is not limited to each embodiment.
For example, in said embodiment, joint portion 4 is formed by engaging welding, but can also be formed by being brazed. Furthermore, it is possible to which the adjacent portions by the connection component being provided separately with conductor tube along wound section are wound, and utilize welding or pricker Weldering etc. connect the connection component with conductor tube 2, thus uses component as joint portion 4 connection.
In addition, the utility model is not limited to the embodiment, in the range of not departing from the utility model aims certainly It can carry out various modifications.
Technical characteristic recorded in the various embodiments of the utility model (embodiment) is can be combined with each other to be formed newly Technical solution.

Claims (5)

1. a kind of overheated steam generating means, which is characterized in that the overheated steam generating means are by being arranged in conductor The magnetic flux generation mechanism of the inner or outer side of the wound section of pipe carries out the conductor tube of the circular tube shaped helically wound Thus sensing heating heats the vapor flowed through in the conductor tube, generate overheated steam,
In the wound section of the conductor tube, the face relative to each other of adjacent portions adjacent to each other, across circumferential entirety, by having Conductive joint portion engagement,
The thickness at the joint portion is the thickness of pipe of the conductor tube or more.
2. overheated steam generating means according to claim 1, which is characterized in that the joint portion is by connecing Close formation.
3. overheated steam generating means according to claim 1, which is characterized in that the resistance of the material at the joint portion Rate is identical as the resistivity of the material of the conductor tube.
4. overheated steam generating means according to claim 1, which is characterized in that
The inner side and outer side both sides in the wound section of the conductor tube are arranged in the magnetic flux generation mechanism,
The outer surface side in the wound section is arranged in the joint portion.
5. overheated steam generating means according to claim 1, which is characterized in that the joint portion is contained in by described In the recess portion that adjacent portions adjacent to each other are formed.
CN201820170914.6U 2017-02-27 2018-01-31 Overheated steam generating means Expired - Fee Related CN207969003U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2017035507A JP6886685B2 (en) 2017-02-27 2017-02-27 A superheated steam generator and a method for manufacturing a conductor tube used in the device.
JP2017-035507 2017-02-27

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CN207969003U true CN207969003U (en) 2018-10-12

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CN201810094583.7A Active CN108513385B (en) 2017-02-27 2018-01-31 Superheated steam generator and method for manufacturing conductor tube used for the same

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KR (1) KR102492964B1 (en)
CN (2) CN207969003U (en)
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CN108513385B (en) * 2017-02-27 2021-10-26 特电株式会社 Superheated steam generator and method for manufacturing conductor tube used for the same

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Publication number Publication date
CN108513385B (en) 2021-10-26
TWI791488B (en) 2023-02-11
JP6886685B2 (en) 2021-06-16
TW201831827A (en) 2018-09-01
JP2018141582A (en) 2018-09-13
CN108513385A (en) 2018-09-07
KR20180099464A (en) 2018-09-05
KR102492964B1 (en) 2023-01-30

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Granted publication date: 20181012

Termination date: 20220131