JPH0662499U - High frequency heating coil - Google Patents
High frequency heating coilInfo
- Publication number
- JPH0662499U JPH0662499U JP009348U JP934893U JPH0662499U JP H0662499 U JPH0662499 U JP H0662499U JP 009348 U JP009348 U JP 009348U JP 934893 U JP934893 U JP 934893U JP H0662499 U JPH0662499 U JP H0662499U
- Authority
- JP
- Japan
- Prior art keywords
- heating
- recess
- work
- peripheral surface
- heating coil
- 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.)
- Pending
Links
- 238000010438 heat treatment Methods 0.000 title claims abstract description 76
- 239000004020 conductor Substances 0.000 claims abstract description 46
- 230000002093 peripheral effect Effects 0.000 claims abstract description 36
- 229910000859 α-Fe Inorganic materials 0.000 claims abstract description 15
- 229910000976 Electrical steel Inorganic materials 0.000 claims abstract description 8
- 238000010791 quenching Methods 0.000 abstract description 12
- 230000000171 quenching effect Effects 0.000 abstract description 12
- 230000004907 flux Effects 0.000 description 5
- 239000007788 liquid Substances 0.000 description 5
- 238000007796 conventional method Methods 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 239000011800 void material Substances 0.000 description 2
- 238000001816 cooling Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 238000005507 spraying Methods 0.000 description 1
Classifications
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P10/00—Technologies related to metal processing
- Y02P10/25—Process efficiency
Landscapes
- General Induction Heating (AREA)
Abstract
(57)【要約】
【目的】 円柱状ワーク300 の凹所302 を有する周面30
1 を凹所302 も含んで焼入温度まで加熱できる高周波加
熱コイルを提供する。
【構成】 加熱コイル100 は、円柱状ワーク300 の軸芯
線305 に平行で周面301に接近対向するように配設され
た1対の加熱導体105 、106 と、凹所302 に対向するよ
うに加熱導体105 、106 に装着された珪素鋼板製のコア
119 、120 と、ワーク300 の凹所302 以外の周面301 に
対向するように加熱導体105 、106 に装着されたフェラ
イト製のコア111 〜118 とを備えている。そして、フェ
ライト製のコア111 〜118 は千鳥型に配置されている。
(57) [Summary] [Purpose] Circumferential surface 30 of the cylindrical work 300 with the recess 302.
A high-frequency heating coil capable of heating 1 to the quenching temperature including the recess 302 is provided. [Structure] The heating coil 100 is arranged so as to face a recess 302 and a pair of heating conductors 105 and 106 arranged in parallel with the axis 305 of the cylindrical work 300 so as to closely face and face the peripheral surface 301. Silicon steel core mounted on heating conductors 105 and 106
119 and 120, and ferrite cores 111 to 118 mounted on the heating conductors 105 and 106 so as to face the peripheral surface 301 of the work 300 other than the recess 302. The ferrite cores 111 to 118 are arranged in a zigzag pattern.
Description
【0001】[0001]
本考案は、高周波加熱コイル(以下高周波加熱コイルを単に加熱コイルともい う)に関し、特に円柱状ワークの凹所を有する周面の加熱に適した高周波加熱コ イルに関する。 The present invention relates to a high-frequency heating coil (hereinafter, the high-frequency heating coil is simply referred to as a heating coil), and more particularly to a high-frequency heating coil suitable for heating a peripheral surface of a cylindrical work having a recess.
【0002】[0002]
以下、図面を参照して従来の技術を説明する。図3および図4は従来の技術を 説明するための図面であって、図3(a)および(b)は、それぞれ、周面に凹 所を有する円柱状ワークの側面図および斜視図、図3(c)および(d)は、そ れぞれ、図3(a)のA−A線矢視断面図である。図4(a)は周面に凹所の無 い円柱状ワークの周面を加熱する方法の説明図であり、図4(b)は焼入された ワークの断面図である。 Hereinafter, a conventional technique will be described with reference to the drawings. 3 and 4 are drawings for explaining a conventional technique, and FIGS. 3 (a) and 3 (b) are a side view and a perspective view, respectively, of a cylindrical work having a recess on the peripheral surface. 3 (c) and 3 (d) are cross-sectional views taken along the line AA of FIG. 3 (a), respectively. FIG. 4 (a) is an explanatory view of a method for heating the peripheral surface of a cylindrical work having no recess on the peripheral surface, and FIG. 4 (b) is a sectional view of the quenched work.
【0003】 図4(a)および(b)に示すように、円柱状ワーク400 の周面401 に、均一 な深さの硬化層404 を形成するには、まず、加熱コイルの一種であるラインコイ ル200 を使用してワーク400 の周面401 を加熱する。ラインコイル200 は、1対 の平行に配設されたリード導体201 、202 と、これらリード導体の一端にそれぞ れ一端が接続されたほぼ1/4円弧状の加熱導体203 、204 と、加熱導体203 、 204 の他端にそれぞれ一端が接続された直線状の1対の加熱導体205 、206 と、 加熱導体205 、206 の他端間に接続されたほぼ1/2円弧状の加熱導体207 とを 備えている。As shown in FIGS. 4A and 4B, in order to form a hardened layer 404 having a uniform depth on the peripheral surface 401 of a cylindrical work 400, first, a line coil, which is a kind of heating coil, is formed. The peripheral surface 401 of the workpiece 400 is heated using the tool 200. The line coil 200 includes a pair of parallel-arranged lead conductors 201 and 202, heating conductors 203 and 204 each having one end connected to one end of each of the lead conductors, and heating conductors 203 and 204 having a substantially arc shape. A pair of linear heating conductors 205 and 206, one ends of which are respectively connected to the other ends of the conductors 203 and 204, and an approximately 1/2 arc-shaped heating conductor 207 which is connected between the other ends of the heating conductors 205 and 206. It has and.
【0004】 ワーク400 の両端をワーク400 が回転可能であるように支持してから、軸芯線 205 を中心としてワーク400 を回転させながら、リード導体201 、202 に図示し ない高周波電源から高周波電流を所定時間供給した後、図示しない焼入液噴射用 のジャケットから焼入液をワーク400 の周面401 に噴射して、或いはワーク400 を焼入液中に浸漬させてワーク400 を冷却することによって、ワーク400 の周面 401 に硬化層404 を形成することができる。After supporting both ends of the work 400 so that the work 400 can rotate, while rotating the work 400 around the axis 205, a high-frequency current is supplied from a high-frequency power source (not shown) to the lead conductors 201 and 202. After supplying for a predetermined time, the quenching liquid is sprayed onto the peripheral surface 401 of the work 400 from a quenching liquid spraying jacket (not shown), or the work 400 is immersed in the quenching liquid to cool the work 400. The hardened layer 404 can be formed on the peripheral surface 401 of the work 400.
【0005】[0005]
しかしながら、円柱状ワークの周面に凹所がある場合、即ち、図3(a)およ び(b)に示すように、円柱状ワーク300 の周面301 に、周方向においても、ま た軸芯線305 の方向においても部分的である凹所302 があって、しかも、この凹 所302 の底面303 の全体にわたって図3(d)に示すように硬化層304 を形成す ることが要求されることがある。この場合、前記のラインコイル200 を用いてワ ーク300 の周面301 を、前記のワーク400 の周面401 の加熱と同様に加熱後、冷 却して、凹所302 の底面303 に硬化層304 を形成することを試みたが、図3(c )に凹所302 でのワークの断面を示すように、凹所302 の底面303 には硬化層を 形成することができなかった。 However, when there is a recess on the peripheral surface of the cylindrical work, that is, on the peripheral surface 301 of the cylindrical work 300, as shown in FIGS. There is a recess 302 that is also partial in the direction of the axis 305, and it is required to form a hardened layer 304 as shown in FIG. 3D over the entire bottom surface 303 of this recess 302. Sometimes. In this case, the peripheral surface 301 of the work 300 is heated using the line coil 200 in the same manner as the peripheral surface 401 of the workpiece 400, and then cooled to be hardened to the bottom surface 303 of the recess 302. An attempt was made to form the layer 304, but it was not possible to form a hardened layer on the bottom surface 303 of the recess 302, as shown in the cross section of the work in the recess 302 in FIG.
【0006】 本考案は上記事情に鑑みて創案されたものであって、周面に凹所を有するほぼ 円柱状ワークの周面に凹所も含んで焼入温度まで加熱することができる高周波加 熱コイルを提供することを目的としている。The present invention was devised in view of the above circumstances, and a high-frequency processing capable of heating up to a quenching temperature including a recess on the peripheral surface of a substantially cylindrical work having a recess on the peripheral surface. The purpose is to provide a thermal coil.
【0007】[0007]
上記問題を解決するために本考案の加熱コイルは、ほぼ円柱状ワークの凹所を 有する周面を加熱する高周波加熱コイルであって、円柱状ワークの軸芯線に平行 で周面に接近対向するように配設された1対の直線状の加熱導体と、前記凹所に 対向するように各加熱導体に装着された珪素鋼板製のコアと、ワークの前記凹所 以外の周面に対向するように各加熱導体に装着されたフェライト製のコアとを備 えている。そして、加熱導体に装着されたフェライト製のコアは千鳥型に配置さ れていることが好ましい。 In order to solve the above problems, the heating coil of the present invention is a high-frequency heating coil that heats a peripheral surface of a substantially cylindrical work having a recess, and is parallel to the axis of the cylindrical work and closely faces the peripheral surface. Pair of linear heating conductors arranged in such a manner, a silicon steel core mounted on each heating conductor so as to face the recess, and a peripheral surface of the work other than the recess. It has a ferrite core attached to each heating conductor. The ferrite cores attached to the heating conductor are preferably arranged in a staggered pattern.
【0008】[0008]
以下、図面を参照して本考案の一実施例の加熱コイルを説明する。図1および 図2は本実施例を説明するための図面であって、図1は加熱コイルの平面図とワ ークの縦断面図、図2は加熱コイルの斜視図である。なお、円柱状ワークとして は、従来の技術で説明したのと同じ円柱状ワーク300 を採り上げる。 Hereinafter, a heating coil according to an embodiment of the present invention will be described with reference to the drawings. 1 and 2 are drawings for explaining the present embodiment. FIG. 1 is a plan view of a heating coil and a vertical sectional view of a work, and FIG. 2 is a perspective view of the heating coil. As the cylindrical work, the same cylindrical work 300 as described in the related art is adopted.
【0009】 図1および図2に示すように、本実施例の加熱コイル100 は、前記のラインコ イル200 と同様に、平行に配設された1対のリード導体101 、102 と、これらリ ード導体101 、102 の一端にそれぞれ一端が接続されたほぼ1/4円弧状の1対 の加熱導体103 、104 と、加熱導体103 、104 の他端にそれぞれ一端が接続され た直線状の1対の加熱導体105 、106 と、加熱導体105 、106 の他端間に接続さ れたほぼ1/2円弧状の加熱導体107 とを備えている。リード導体101 、102 の 他端間には高周波電源150 が接続されている。なお、前記導体101 〜107 は、い ずれも良導電金属製の四角筒から構成されている。As shown in FIGS. 1 and 2, the heating coil 100 of the present embodiment is similar to the above-mentioned line coil 200, in that a pair of lead conductors 101 and 102 arranged in parallel with each other are provided. A pair of heating conductors 103 and 104, each of which has one end connected to one end of each of the conductors 101 and 102, and a linear one having one end connected to the other end of each of the heating conductors 103 and 104. It comprises a pair of heating conductors 105, 106 and a heating conductor 107 having a substantially half arc shape connected between the other ends of the heating conductors 105, 106. A high frequency power supply 150 is connected between the other ends of the lead conductors 101, 102. Each of the conductors 101 to 107 is composed of a square tube made of a good conductive metal.
【0010】 加熱コイル100 を用いてワーク300 の周面301 を加熱するときには、加熱導体 105 、106 はワーク300 の周面301 に接近対向し且つワーク300 の軸芯線305 に 平行となるように配設され、また、加熱導体103 、104 および加熱導体107 がそ れぞれ周面301 の周方向で周面301 に接近対向するように配設される。このよう に加熱導体105 、106 が配設されたときに、加熱導体105 、106 の凹所302 に対 向したそれぞれの位置には、加熱導体105 、106 のワーク300 に対向した面を除 いた面を覆うように珪素鋼板製のコア119 および120 が装着されている。これら コア119 および120 の幅M(ワーク300 の軸芯線305 の方向の距離)は、凹所30 2 の幅Lの1/2以下とするのが好ましい。When the peripheral surface 301 of the work 300 is heated by using the heating coil 100, the heating conductors 105 and 106 are arranged so as to closely approach the peripheral surface 301 of the work 300 and to be parallel to the axis 305 of the work 300. The heating conductors 103, 104 and the heating conductor 107 are arranged so as to approach and face the circumferential surface 301 in the circumferential direction of the circumferential surface 301, respectively. When the heating conductors 105 and 106 are thus arranged, the surfaces of the heating conductors 105 and 106 facing the work 300 are excluded at the respective positions facing the recesses 302 of the heating conductors 105 and 106. Cores 119 and 120 made of silicon steel plates are mounted so as to cover the surfaces. The width M of these cores 119 and 120 (distance in the direction of the axis 305 of the work 300) is preferably 1/2 or less of the width L of the recess 30 2.
【0011】 加熱導体105 には、コア19以外に加熱導体105 のワーク300 に対向していない 面を覆うようにフェライト製のコア111 、112 、113 、および114 が装着されて おり、また、、加熱導体106 には、コア120 以外に加熱導体106 のワーク300 に 対向していない面を覆うようにフェライト製のコア115 、116 、117 、および11 8 が装着されている。そして、これらコア111 〜118 は千鳥状に配置されている 。換言すれば、例えばコア115 は、コア111 と112 の間の空所に対応する位置に 取り付けられており、また、例えばコア113 は、コア120 と117 との間の空所に 対応する位置に取り付けられている。In addition to the core 19, ferrite cores 111, 112, 113, and 114 made of ferrite are attached to the heating conductor 105 so as to cover the surface of the heating conductor 105 that does not face the workpiece 300. In addition to the core 120, the heating conductor 106 is provided with ferrite cores 115, 116, 117, and 118 so as to cover the surface of the heating conductor 106 not facing the work 300. The cores 111 to 118 are arranged in a staggered pattern. In other words, for example, the core 115 is mounted in the position corresponding to the void between the cores 111 and 112, and the core 113 is positioned in the position corresponding to the void between the cores 120 and 117, for example. It is installed.
【0012】 次に、この加熱コイル100 によるワーク300 の周面301 の焼入を説明する。ま ず、ワーク300 の両端をワーク300 が軸芯線305 を中心として回転自在であるよ うに図示しないセンタ等で支持する。次いで、加熱導体105 、106 が軸芯線305 に平行且つ周面301 に接近対向するように、また、加熱導体103 、104 、および 107 が周面301 の周方向で周面301 に接近対向するように、加熱コイル100 を配 設する。Next, quenching of the peripheral surface 301 of the work 300 by the heating coil 100 will be described. First, both ends of the work 300 are supported by a center or the like (not shown) so that the work 300 can rotate around the shaft core line 305. Next, the heating conductors 105, 106 are parallel to the axis 305 and closely face the circumferential surface 301, and the heating conductors 103, 104, 107 closely face the circumferential surface 301 in the circumferential direction of the circumferential surface 301. The heating coil 100 is installed in the room.
【0013】 この後、図示しない回転駆動装置によってワーク300 を軸芯線305 を中心とし て回転させながら、高周波電源150 から所定時間加熱コイル100 に高周波電流を 通電してワーク300 の周面301 を凹所302 の底面303 をも含んで加熱する。この 加熱に際しては、フェライト製のコア111 〜118 は前記のように千鳥型に配置し てあるので、コア111 〜118 から発した磁束は、凹所302 が形成されていない周 面301 にほぼ均一に且つ適宜の大きさの密度で交叉する結果、凹所302 以外の周 面301 は焼入温度まで加熱される。After that, while rotating the work 300 about the axis 305 by a rotation driving device (not shown), a high-frequency current is passed from the high-frequency power supply 150 to the heating coil 100 for a predetermined time to make the peripheral surface 301 of the work 300 concave. Heating is performed including the bottom surface 303 of the place 302. During this heating, since the ferrite cores 111 to 118 are arranged in a zigzag manner as described above, the magnetic flux generated from the cores 111 to 118 is almost uniform on the peripheral surface 301 where the recess 302 is not formed. In addition, as a result of crossing with a density of an appropriate size, the peripheral surface 301 other than the recess 302 is heated to the quenching temperature.
【0014】 また、珪素鋼板製のコア119 と120 のそれぞれの磁束集束作用は、フェライト 製のコア111 〜118 のそれぞれの磁束集束作用よりも大きいので、凹所302 の底 面303 にも充分の磁束の交叉が行われる結果、底面303 も所定の焼入温度まで加 熱される。Further, since the magnetic flux focusing action of each of the silicon steel plate cores 119 and 120 is larger than the magnetic flux focusing action of each of the ferrite cores 111 to 118, it is sufficient for the bottom surface 303 of the recess 302. As a result of crossing the magnetic flux, the bottom surface 303 is also heated to a predetermined quenching temperature.
【0015】 加熱コイル100 による周面301 の凹所302 の底面303 を含んだ加熱の後、ワー ク300 の軸芯線305 を中心として回転を続行させたままで、ワーク300 に焼入液 を噴射するか、或いはワーク300 を焼入液中に浸漬して冷却することによって周 面301 に図1に示す硬化層304 を、また、勿論、凹所302 の底面303 にも図3( d)に示すような所定の深さの硬化層304 を形成することができる。After heating by the heating coil 100 including the bottom surface 303 of the recess 302 of the peripheral surface 301, the quenching liquid is sprayed onto the work 300 while continuing to rotate around the shaft core line 305 of the work 300. Alternatively, by immersing the work 300 in a quenching liquid and cooling it, the hardened layer 304 shown in FIG. 1 is shown on the peripheral surface 301, and of course, the bottom surface 303 of the recess 302 is also shown in FIG. The hardened layer 304 having such a predetermined depth can be formed.
【0016】[0016]
【考案の効果】 以上説明したように、本考案の加熱コイルは、ほぼ円柱状ワークの凹所を有す る周面を加熱する加熱コイルであって、円柱状ワークの軸芯線に平行で周面に接 近対向するように配設された1対の加熱導体と、前記凹所に対向するように各加 熱導体に装着された珪素鋼板製のコアと、ワークの前記凹所以外の周面に対向す るように各加熱導体に装着されたフェライト製のコアとを備えている。そして、 加熱導体に装着されたフェライト製のコアは千鳥型に配置することができる。[Effects of the Invention] As described above, the heating coil of the present invention is a heating coil that heats the peripheral surface of a substantially cylindrical work having a recess, and the heating coil is parallel to the axis of the cylindrical work. A pair of heating conductors arranged so as to closely face the surface, a core made of a silicon steel plate attached to each heating conductor so as to face the recess, and a periphery of the work other than the recess. And a ferrite core attached to each heating conductor so as to face the surface. The ferrite cores mounted on the heating conductor can then be arranged in a staggered pattern.
【0017】 従って、本考案の加熱コイルによってほぼ円柱状ワークの凹所を有する周面を 加熱したときには、珪素鋼板の強力な磁束集束作用によって、凹所の底面も充分 に焼入温度まで加熱されると共に、フェライト製のコアによって凹所以外の周面 も焼入温度に加熱されるので、ワークの周面に凹所を含んで所定の深さの硬化層 を形成することができる。Therefore, when the heating coil of the present invention heats the peripheral surface of the substantially cylindrical work having the recess, the bottom surface of the recess is sufficiently heated to the quenching temperature by the strong magnetic flux converging action of the silicon steel plate. In addition, since the peripheral surface other than the recess is heated to the quenching temperature by the ferrite core, it is possible to form a hardened layer having a predetermined depth on the peripheral surface of the work including the recess.
【図1】本考案の一実施例の加熱コイルの平面図とワー
クの縦断面図である。FIG. 1 is a plan view of a heating coil and a vertical sectional view of a work according to an embodiment of the present invention.
【図2】本考案の一実施例の加熱コイルの斜視図であ
る。FIG. 2 is a perspective view of a heating coil according to an embodiment of the present invention.
【図3】図3(a)はワークの側面図、図3(b)はワ
ークの斜視図、図3(c)および(d)は、それぞれ、
図3(a)のA−A線矢視断面図であって、図3(c)
は不満足な硬化層が形成されている場合、図3(d)は
満足な硬化層が形成されている場合を示す。3 (a) is a side view of the work, FIG. 3 (b) is a perspective view of the work, and FIGS. 3 (c) and 3 (d) are respectively,
FIG. 4C is a sectional view taken along the line AA of FIG.
Shows a case where an unsatisfactory hardened layer is formed, and FIG. 3D shows a case where a satisfactory hardened layer is formed.
【図4】図4(a)は周面に凹所の無い円柱状ワークの
周面を加熱する方法の説明図であり、図4(b)は焼入
されたワークの断面図である。FIG. 4 (a) is an explanatory view of a method for heating the peripheral surface of a cylindrical work having no recess on the peripheral surface, and FIG. 4 (b) is a sectional view of the quenched work.
100 加熱コイル 103 〜107 加熱導体 111 〜118 フェライト製のコア 119 、120 珪素鋼板製のコア 300 ワーク 301 周面 302 凹所 303 底面 304 硬化層 305 軸芯線 100 Heating coil 103-107 Heating conductor 111-118 Ferrite core 119, 120 Silicon steel plate core 300 Work piece 301 Circumferential surface 302 Recess 303 Bottom surface 304 Hardened layer 305 Shaft core wire
Claims (2)
加熱する高周波加熱コイルであって、 円柱状ワークの軸芯線に平行で周面に接近対向するよう
に配設された1対の直線状の加熱導体と、 前記凹所に対向するように各加熱導体に装着された珪素
鋼板製のコアと、 ワークの前記凹所以外の周面に対向するように各加熱導
体に装着されたフェライト製のコアと、 を備えたことを特徴とする高周波加熱コイル。1. A high-frequency heating coil for heating a peripheral surface of a substantially cylindrical work having a recess, the pair of pair being arranged parallel to the axis of the cylindrical work so as to approach and face the peripheral surface. A linear heating conductor, a core made of a silicon steel plate attached to each heating conductor so as to face the recess, and a heating conductor attached so as to face the peripheral surface of the workpiece except the recess. A high frequency heating coil comprising a ferrite core.
アは千鳥型に配置されている請求項1記載の高周波加熱
コイル。2. The high frequency heating coil according to claim 1, wherein the ferrite cores attached to the heating conductor are arranged in a staggered pattern.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP009348U JPH0662499U (en) | 1993-02-10 | 1993-02-10 | High frequency heating coil |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP009348U JPH0662499U (en) | 1993-02-10 | 1993-02-10 | High frequency heating coil |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH0662499U true JPH0662499U (en) | 1994-09-02 |
Family
ID=11717973
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP009348U Pending JPH0662499U (en) | 1993-02-10 | 1993-02-10 | High frequency heating coil |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH0662499U (en) |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH0931540A (en) * | 1995-07-14 | 1997-02-04 | High Frequency Heattreat Co Ltd | Producing method of steel bar for prestressed concrete |
JP2002256338A (en) * | 2001-02-27 | 2002-09-11 | Miyaden Co Ltd | Heating coil |
JP2014501851A (en) * | 2010-12-15 | 2014-01-23 | マーレ インターナショナル ゲゼルシャフト ミット ベシュレンクテル ハフツング | Heating device |
JP2014107091A (en) * | 2012-11-27 | 2014-06-09 | Chubu Electric Power Co Inc | Induction heating apparatus |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH04306588A (en) * | 1991-04-03 | 1992-10-29 | Tokuden Co Ltd | Induction heat emitting roller device |
JPH056789B2 (en) * | 1986-03-25 | 1993-01-27 | Nokia Doitsuchurando Gmbh |
-
1993
- 1993-02-10 JP JP009348U patent/JPH0662499U/en active Pending
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH056789B2 (en) * | 1986-03-25 | 1993-01-27 | Nokia Doitsuchurando Gmbh | |
JPH04306588A (en) * | 1991-04-03 | 1992-10-29 | Tokuden Co Ltd | Induction heat emitting roller device |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH0931540A (en) * | 1995-07-14 | 1997-02-04 | High Frequency Heattreat Co Ltd | Producing method of steel bar for prestressed concrete |
JP2002256338A (en) * | 2001-02-27 | 2002-09-11 | Miyaden Co Ltd | Heating coil |
JP2014501851A (en) * | 2010-12-15 | 2014-01-23 | マーレ インターナショナル ゲゼルシャフト ミット ベシュレンクテル ハフツング | Heating device |
JP2014107091A (en) * | 2012-11-27 | 2014-06-09 | Chubu Electric Power Co Inc | Induction heating apparatus |
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