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CN105506382A - High-resistance electro-thermal alloy wire - Google Patents

High-resistance electro-thermal alloy wire Download PDF

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Publication number
CN105506382A
CN105506382A CN201510959642.9A CN201510959642A CN105506382A CN 105506382 A CN105506382 A CN 105506382A CN 201510959642 A CN201510959642 A CN 201510959642A CN 105506382 A CN105506382 A CN 105506382A
Authority
CN
China
Prior art keywords
alloy
alloy material
melt
temperature
resistance
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
Application number
CN201510959642.9A
Other languages
Chinese (zh)
Inventor
陈俊达
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.)
Changshu Meili Alloy Material Co Ltd
Original Assignee
Changshu Meili Alloy Material Co Ltd
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 Changshu Meili Alloy Material Co Ltd filed Critical Changshu Meili Alloy Material Co Ltd
Priority to CN201510959642.9A priority Critical patent/CN105506382A/en
Publication of CN105506382A publication Critical patent/CN105506382A/en
Pending legal-status Critical Current

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Classifications

    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C19/00Alloys based on nickel or cobalt
    • C22C19/03Alloys based on nickel or cobalt based on nickel
    • C22C19/05Alloys based on nickel or cobalt based on nickel with chromium
    • C22C19/058Alloys based on nickel or cobalt based on nickel with chromium without Mo and W
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C1/00Making non-ferrous alloys
    • C22C1/02Making non-ferrous alloys by melting
    • C22C1/023Alloys based on nickel
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C1/00Making non-ferrous alloys
    • C22C1/02Making non-ferrous alloys by melting
    • C22C1/03Making non-ferrous alloys by melting using master alloys

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Continuous Casting (AREA)

Abstract

The invention discloses a high-resistance electro-thermal alloy wire made from an alloy material, and the alloy material comprises the following ingredients: 1% to 2% of P, 0.9% of N, 1.2% of K, 0.8% of Zn, 0.4% of Rh, 31.5% of Cr and the balance of Ni and inevitable impurities; the alloy material is prepared according to the following steps: (1) melting the Ni, P, Ni-N alloy and Ni-K alloy under a protective atmosphere; (2) regulating the temperature to 935 DEG C; adding Ni-Zn alloy, Ni-Rh alloy and Ni-Cr alloy into the melt; uniformly stirring; maintaining the temperature and standing for 29min; (3) introducing argon; enabling the melt to stand and cooling to the temperature of 635 DEG C; performing pressure casting to obtain the alloy material. The high-resistance electro-thermal alloy wire disclosed by the invention is relatively high in resistance rate, good in surface oxidation resistance, high in temperature level and relatively high in strength at high temperature.

Description

High-resistance electrothermic alloy silk
Technical field
The present invention relates to high-resistance electrothermic alloy silk.
Background technology
The surface oxidation-resistant of existing high-resistance electrothermic alloy silk, temperature rank, intensity, processing characteristics etc. at high temperature all have much room for improvement.
Summary of the invention
The object of the present invention is to provide a kind of high-resistance electrothermic alloy silk, be made up of alloy material, there is higher resistivity, surface oxidation-resistant is good, and temperature rank is high, and at high temperature has higher intensity, there are good processing characteristics and weldability, long service life.
For achieving the above object, technical scheme of the present invention is a kind of high-resistance electrothermic alloy silk of design, and be made up of alloy material, by weight percentage, the composition of this alloy material is:
P:1~2%,
N:0.9%,
K:1.2%,
Zn:0.8%,
Rh:0.4%,
:31.5%,
Surplus is Ni and inevitable impurity;
Described alloy material is prepared as follows:
1) by Ni, P and Ni-N alloy, the melting under protective atmosphere of Ni-K alloy;
2) temperature is adjusted to 935 DEG C, adds Ni-Zn alloy, Ni-Rh alloy and Ni-in melt alloy, stirs, and insulation leaves standstill 29 minutes;
3) pass into argon gas, left standstill by melt and be cooled to 635 DEG C, die casting obtains alloy material.
Preferably, high-resistance electrothermic alloy silk, is made up of alloy material, and by weight percentage, the composition of this alloy material is:
P:1%,
N:0.9%,
K:1.2%,
Zn:0.8%,
Rh:0.4%,
:31.5%,
Surplus is Ni and inevitable impurity;
Described alloy material is prepared as follows:
1) by Ni, P and Ni-N alloy, the melting under protective atmosphere of Ni-K alloy;
2) temperature is adjusted to 935 DEG C, adds Ni-Zn alloy, Ni-Rh alloy and Ni-in melt alloy, stirs, and insulation leaves standstill 29 minutes;
3) pass into argon gas, left standstill by melt and be cooled to 635 DEG C, die casting obtains alloy material.
Preferably, high-resistance electrothermic alloy silk, is made up of alloy material, and by weight percentage, the composition of this alloy material is:
P:2%,
N:0.9%,
K:1.2%,
Zn:0.8%,
Rh:0.4%,
:31.5%,
Surplus is Ni and inevitable impurity;
Described alloy material is prepared as follows:
1) by Ni, P and Ni-N alloy, the melting under protective atmosphere of Ni-K alloy;
2) temperature is adjusted to 935 DEG C, adds Ni-Zn alloy, Ni-Rh alloy and Ni-in melt alloy, stirs, and insulation leaves standstill 29 minutes;
3) pass into argon gas, left standstill by melt and be cooled to 635 DEG C, die casting obtains alloy material.
Advantage of the present invention and beneficial effect are: provide a kind of high-resistance electrothermic alloy silk, be made up of alloy material, have higher resistivity, surface oxidation-resistant is good, and temperature rank is high, and at high temperature has higher intensity, there are good processing characteristics and weldability, long service life.
Embodiment
Below in conjunction with embodiment, the specific embodiment of the present invention is further described.Following examples only for technical scheme of the present invention is clearly described, and can not limit the scope of the invention with this.
The technical scheme that the present invention specifically implements is:
Embodiment 1
A kind of high-resistance electrothermic alloy silk, be made up of alloy material, by weight percentage, the composition of this alloy material is:
P:1~2%,
N:0.9%,
K:1.2%,
Zn:0.8%,
Rh:0.4%,
:31.5%,
Surplus is Ni and inevitable impurity;
Described alloy material is prepared as follows:
1) by Ni, P and Ni-N alloy, the melting under protective atmosphere of Ni-K alloy;
2) temperature is adjusted to 935 DEG C, adds Ni-Zn alloy, Ni-Rh alloy and Ni-in melt alloy, stirs, and insulation leaves standstill 29 minutes;
3) pass into argon gas, left standstill by melt and be cooled to 635 DEG C, die casting obtains alloy material.
Embodiment 2
High-resistance electrothermic alloy silk, is made up of alloy material, and by weight percentage, the composition of this alloy material is:
P:1%,
N:0.9%,
K:1.2%,
Zn:0.8%,
Rh:0.4%,
:31.5%,
Surplus is Ni and inevitable impurity;
Described alloy material is prepared as follows:
1) by Ni, P and Ni-N alloy, the melting under protective atmosphere of Ni-K alloy;
2) temperature is adjusted to 935 DEG C, adds Ni-Zn alloy, Ni-Rh alloy and Ni-in melt alloy, stirs, and insulation leaves standstill 29 minutes;
3) pass into argon gas, left standstill by melt and be cooled to 635 DEG C, die casting obtains alloy material.
Embodiment 3
High-resistance electrothermic alloy silk, is made up of alloy material, and by weight percentage, the composition of this alloy material is:
P:2%,
N:0.9%,
K:1.2%,
Zn:0.8%,
Rh:0.4%,
:31.5%,
Surplus is Ni and inevitable impurity;
Described alloy material is prepared as follows:
1) by Ni, P and Ni-N alloy, the melting under protective atmosphere of Ni-K alloy;
2) temperature is adjusted to 935 DEG C, adds Ni-Zn alloy, Ni-Rh alloy and Ni-in melt alloy, stirs, and insulation leaves standstill 29 minutes;
3) pass into argon gas, left standstill by melt and be cooled to 635 DEG C, die casting obtains alloy material.
The above is only the preferred embodiment of the present invention; it should be pointed out that for those skilled in the art, under the prerequisite not departing from the technology of the present invention principle; can also make some improvements and modifications, these improvements and modifications also should be considered as protection scope of the present invention.

Claims (3)

1. high-resistance electrothermic alloy silk, is characterized in that, is made up of alloy material, and by weight percentage, the composition of this alloy material is:
P:1~2%,
N:0.9%,
K:1.2%,
Zn:0.8%,
Rh:0.4%,
:31.5%,
Surplus is Ni and inevitable impurity;
Described alloy material is prepared as follows:
1) by Ni, P and Ni-N alloy, the melting under protective atmosphere of Ni-K alloy;
2) temperature is adjusted to 935 DEG C, adds Ni-Zn alloy, Ni-Rh alloy and Ni-in melt alloy, stirs, and insulation leaves standstill 29 minutes;
3) pass into argon gas, left standstill by melt and be cooled to 635 DEG C, die casting obtains alloy material.
2. high-resistance electrothermic alloy silk according to claim 1, is characterized in that, be made up of alloy material, and by weight percentage, the composition of this alloy material is:
P:1%,
N:0.9%,
K:1.2%,
Zn:0.8%,
Rh:0.4%,
:31.5%,
Surplus is Ni and inevitable impurity;
Described alloy material is prepared as follows:
1) by Ni, P and Ni-N alloy, the melting under protective atmosphere of Ni-K alloy;
2) temperature is adjusted to 935 DEG C, adds Ni-Zn alloy, Ni-Rh alloy and Ni-in melt alloy, stirs, and insulation leaves standstill 29 minutes;
3) pass into argon gas, left standstill by melt and be cooled to 635 DEG C, die casting obtains alloy material.
3. high-resistance electrothermic alloy silk according to claim 1, is characterized in that, be made up of alloy material, and by weight percentage, the composition of this alloy material is:
P:2%,
N:0.9%,
K:1.2%,
Zn:0.8%,
Rh:0.4%,
:31.5%,
Surplus is Ni and inevitable impurity;
Described alloy material is prepared as follows:
1) by Ni, P and Ni-N alloy, the melting under protective atmosphere of Ni-K alloy;
2) temperature is adjusted to 935 DEG C, adds Ni-Zn alloy, Ni-Rh alloy and Ni-in melt alloy, stirs, and insulation leaves standstill 29 minutes;
3) pass into argon gas, left standstill by melt and be cooled to 635 DEG C, die casting obtains alloy material.
CN201510959642.9A 2015-12-21 2015-12-21 High-resistance electro-thermal alloy wire Pending CN105506382A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510959642.9A CN105506382A (en) 2015-12-21 2015-12-21 High-resistance electro-thermal alloy wire

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510959642.9A CN105506382A (en) 2015-12-21 2015-12-21 High-resistance electro-thermal alloy wire

Publications (1)

Publication Number Publication Date
CN105506382A true CN105506382A (en) 2016-04-20

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510959642.9A Pending CN105506382A (en) 2015-12-21 2015-12-21 High-resistance electro-thermal alloy wire

Country Status (1)

Country Link
CN (1) CN105506382A (en)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1363703A (en) * 2001-12-26 2002-08-14 浙江大学 High-capacity long-service-life hydrogen-bearing rare-earth alloy as electrodes of secondary nickel-metal oxide battery
CN1363704A (en) * 2001-12-26 2002-08-14 浙江大学 Hydrogen-bearing rare-earth alloy as electrode and its quenching process
CN1363705A (en) * 2001-12-26 2002-08-14 浙江大学 New mixed rare earth hydrogen storage electrode alloy for nickel-metal hydride secondary battery
US20050111145A1 (en) * 2003-10-02 2005-05-26 Kabushiki Kaisha Toshiba Magnetoresistive effect element, magnetic head, and magnetic reproducing apparatus
US20070071607A1 (en) * 2003-11-27 2007-03-29 Winfried Esser High-temperature-resistant component
US20070199410A1 (en) * 2003-07-11 2007-08-30 H.C. Starck Gmbh. Method For The Production Of Fine Metal Powder, Alloy Powder And Composite Powder

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1363703A (en) * 2001-12-26 2002-08-14 浙江大学 High-capacity long-service-life hydrogen-bearing rare-earth alloy as electrodes of secondary nickel-metal oxide battery
CN1363704A (en) * 2001-12-26 2002-08-14 浙江大学 Hydrogen-bearing rare-earth alloy as electrode and its quenching process
CN1363705A (en) * 2001-12-26 2002-08-14 浙江大学 New mixed rare earth hydrogen storage electrode alloy for nickel-metal hydride secondary battery
US20070199410A1 (en) * 2003-07-11 2007-08-30 H.C. Starck Gmbh. Method For The Production Of Fine Metal Powder, Alloy Powder And Composite Powder
US20050111145A1 (en) * 2003-10-02 2005-05-26 Kabushiki Kaisha Toshiba Magnetoresistive effect element, magnetic head, and magnetic reproducing apparatus
US20070071607A1 (en) * 2003-11-27 2007-03-29 Winfried Esser High-temperature-resistant component

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
中国机械工程学会铸造专业学会: "《铸造手册 第3卷 铸造非铁合金》", 28 February 1993, 机械工业出版社 *
渡边辙: "《纳米电镀》", 31 January 2007, 化学工业出版社 *
艾瑞克·杨·密特迈: "《材料科学基础--金属作为模型体系探究组织-性能关系》", 28 February 2013, 机械工业出版社 *

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Application publication date: 20160420