Patent · US5479437A · A · US
Bridging protection apparatus for an induction furnace
- (11) Publication number
- US5479437A
- (21) Application number
- US-11500493-A
- (22) Filing date
- 1993-09-01
- (30) Priority date
- 1992-09-03
- (43) Publication date
- 1995-12-26
- (45) Date of grant
- 1995-12-26
- (52) CPC
- H05B Electric heating; electric light sources not otherwise provided for; circuit arrangements for electric light sources, in general: 6/28, 6/06
- F27B Furnaces, kilns, ovens or retorts in general; open sintering or like apparatus: 14/061, 14/08
- F27D Details or accessories of furnaces, kilns, ovens or retorts, in so far as they are of kinds occurring in more than one kind of furnace: 19/00, 2019/0034, 2021/0057, 21/0014
- (73) Assignee
- FUJI ELECTRIC CO LTD
- (54) Title
- Bridging protection apparatus for an induction furnace
- (57) Abstract
Temperature sensors are embedded in a refractory material that make up the walls of a body of an induction furnace and detect an increase in the temperature of a molten metal in the body of the furnace due to the bridging of a metal material that is to be melted in the furnace body. The temperature sensors are connected to an antenna for detecting runout. Since various electrical data (voltage, current, power, frequency, etc.) that affect an alternating current to be supplied to a coil of the induction furnace change depending on the temperature of the molten metal, bridging of the metal material is detected by determining the rates of temporal change in these electrical data. Furthermore, the changes in the electrical data with respect to the progress of the operation of the induction furnace are previously stored in data storage, and the electrical data stored are compared with electrical data detected in the induction furnace in operation. An alarm is given when the deviation of the detected electrical data from the stored electrical data is kept larger than a predetermined value for a predetermined time period.
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Claims (3)
- A bridging protection apparatus for an induction furnace which includes a furnace body having a peripheral side wall and a bottom wall which are made of a refractory material, and a coil-like conductor disposed around an outer periphery of said furnace body, in which an alternating current flows through said coil-like conductor to effect induction heating of a metal fed into an inner space of said furnace body to a molten metal state, said apparatus comprising: a plurality of temperature sensors embedded in said refractory material; means for comparing the temperatures detected by said temperature sensors with a predetermined value and producing an electrical signal when at least one of said temperature sensors detects a temperature equal to or greater than said predetermined value, said predetermined value being a value of a temperature at which the molten metal erodes the refractory material; and an electrically operated switch for completing an alarm circuit in response to said produced electric signal.
- A bridging protection apparatus as claimed in claim 1, wherein said plurality of temperature sensors are embedded in said refractory material at positions below a predetermined level lower than height of said peripheral side wall of said furnace body.
- A bridging protection apparatus for an induction furnace as claimed in claim 2, wherein said plurality of temperature sensors are embedded in said refractory material at positions below one third of the height of said peripheral side wall of said furnace body.
Citations (11)
- DD240947A1
- DE2450493A1
- DE2824590A1
- DE3432824C2
- DE4024432C2
- DE4136447A1
- DE743906C
- US1922029A
- US2565350A
- US3183294A
- US3715441A
Record as JSON
{
"publication_number": "US5479437A",
"country": "US",
"kind": "A",
"title": "Bridging protection apparatus for an induction furnace",
"abstract": "Temperature sensors are embedded in a refractory material that make up the walls of a body of an induction furnace and detect an increase in the temperature of a molten metal in the body of the furnace due to the bridging of a metal material that is to be melted in the furnace body. The temperature sensors are connected to an antenna for detecting runout. Since various electrical data (voltage, current, power, frequency, etc.) that affect an alternating current to be supplied to a coil of the induction furnace change depending on the temperature of the molten metal, bridging of the metal material is detected by determining the rates of temporal change in these electrical data. Furthermore, the changes in the electrical data with respect to the progress of the operation of the induction furnace are previously stored in data storage, and the electrical data stored are compared with electrical data detected in the induction furnace in operation. An alarm is given when the deviation of the detected electrical data from the stored electrical data is kept larger than a predetermined value for a predetermined time period.",
"claims": [
"1. A bridging protection apparatus for an induction furnace which includes a furnace body having a peripheral side wall and a bottom wall which are made of a refractory material, and a coil-like conductor disposed around an outer periphery of said furnace body, in which an alternating current flows through said coil-like conductor to effect induction heating of a metal fed into an inner space of said furnace body to a molten metal state, said apparatus comprising: a plurality of temperature sensors embedded in said refractory material; means for comparing the temperatures detected by said temperature sensors with a predetermined value and producing an electrical signal when at least one of said temperature sensors detects a temperature equal to or greater than said predetermined value, said predetermined value being a value of a temperature at which the molten metal erodes the refractory material; and an electrically operated switch for completing an alarm circuit in response to said produced electric signal.",
"2. A bridging protection apparatus as claimed in claim 1, wherein said plurality of temperature sensors are embedded in said refractory material at positions below a predetermined level lower than height of said peripheral side wall of said furnace body.",
"3. A bridging protection apparatus for an induction furnace as claimed in claim 2, wherein said plurality of temperature sensors are embedded in said refractory material at positions below one third of the height of said peripheral side wall of said furnace body."
],
"cpc": [
"H05B 6/28",
"F27B 14/061",
"F27B 14/08",
"F27D 19/00",
"F27D 2019/0034",
"F27D 2021/0057",
"F27D 21/0014",
"H05B 6/06"
],
"assignees": [
"FUJI ELECTRIC CO LTD"
],
"filing_date": "1993-09-01",
"publication_date": "1995-12-26",
"grant_date": "1995-12-26",
"priority_date": "1992-09-03",
"application_number": "US-11500493-A",
"family_id": "16979814",
"citations": [
"DD240947A1",
"DE2450493A1",
"DE2824590A1",
"DE3432824C2",
"DE4024432C2",
"DE4136447A1",
"DE743906C",
"US1922029A",
"US2565350A",
"US3183294A",
"US3715441A"
]
}
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