CN101236814A - A SmCo1:7 nano crystal permanent magnetic material with TbCu7 structure and its making method - Google Patents

A SmCo1:7 nano crystal permanent magnetic material with TbCu7 structure and its making method Download PDF

Info

Publication number
CN101236814A
CN101236814A CNA2007101797459A CN200710179745A CN101236814A CN 101236814 A CN101236814 A CN 101236814A CN A2007101797459 A CNA2007101797459 A CN A2007101797459A CN 200710179745 A CN200710179745 A CN 200710179745A CN 101236814 A CN101236814 A CN 101236814A
Authority
CN
China
Prior art keywords
magnetic material
smco
permanent magnetic
nano crystal
crystal permanent
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.)
Granted
Application number
CNA2007101797459A
Other languages
Chinese (zh)
Other versions
CN100555481C (en
Inventor
蒋成保
姚赞
张天丽
徐惠彬
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.)
Beihang University
Original Assignee
Beihang University
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 Beihang University filed Critical Beihang University
Priority to CNB2007101797459A priority Critical patent/CN100555481C/en
Publication of CN101236814A publication Critical patent/CN101236814A/en
Application granted granted Critical
Publication of CN100555481C publication Critical patent/CN100555481C/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

The invention discloses a SmCo 1:7 type nanocrystal permanent magnetic material provided with a TbCu7 structure, wherein, the expression of the nanocrystal permanent magnetic material is SmCoXMY; the atom number of X is 5.5 to 8.5; the atom number of Y is 0.1 to 1.5; a third element M is nickel, molybdenum, titanium, carbon, boron, wolfram, tantalum, gallium or platinum. After high-temperature arc or high-frequency induction smelting, coarse crushing, high-energy ball milling and amorphous heat treatment crystallization of the nanocrystal permanent magnetic material, the SmCo 1:7 type nanocrystal permanent magnetic material provided with the TbCu7 structure is prepared. The room temperature intrinsic coercive force of the SmCoXMY nanocrystal permanent magnetic material is 950 to 1900 kiloamperes per meter; the saturation magnetization is 0.58 to 1.0T; the Curie temperature is 780 to 900 DEG C.

Description

A kind of have a TbCu 7The SmCo1:7 type nano crystal permanent magnetic material and the preparation method of structure
Technical field
The present invention relates to a kind of TbCu that has that contains samarium Sm, cobalt Co, element M 7The SmCo1:7 type nano crystal permanent magnetic material of structure.
Background technology
Permanent magnetic material has been widely applied to each key areas such as computer technology, microwave communication technology, auto industry, aircraft industry, automatic technology, instrumental technique as a kind of important functional material.Carbon steel has been experienced in the development of permanent magnetic material, AlNiCo is several developing stage such as alloy, hard ferrite, RE permanent magnetic alloy.Wherein to have experienced first generation SmCo again be that 1:5 type alloy, second generation SmCo are that 2:17 type alloy, third generation NdFeB are alloy in the development of RE permanent magnetic alloy, SmFeN up till now, SmFeC system and biphase permanent-magnet alloy.
Whether have the big magnetization and magnetocrystalline anisotropy and be a kind of alloy cpd of decision can develop into have high-coercive force, the basic condition of high remanent magnetization and big magnetic energy product permanent magnetic material.Produce in a large number at present and the SmCo of use is that 1:5 type and 2:17 type permanent-magnet alloy are respectively to having CaCu 5The SmCo of structure 5Compound and have a Th 2Zn 17The Sm of structure 2Co 17Develop on the research basis of compound.In the SmCo bianry alloy, SmCo 5And Sm 2Co 17Also there is one between the composition and has TbCu 7The SmCo of structure 7Intermetallic compound.
Though TbCu 7The SmCo1:7 type alloy of structure is expected to develop into a kind of novel permanent magnetic material, but the SmCo of binary 7Be a kind of high temperature metastable phase, just be decomposed into SmCo at higher temperature 5And Sm 2Co 17Its TbCu 7The room temperature stability of structure is the matter of utmost importance that this type alloy research must solve.
The SmCo of a kind of particle size less than 20nm disclosed in number of patent application 200710034603.3 7The preparation method of permanent-magnet alloy, this SmCo 7The expression formula of permanent-magnet alloy is RE (Co BalFe XCu YT W) Z, wherein RE is material or its mixture among rare earth element Sm, Gd, Pr, Nd, Dy, Ho, the Er, T is material or its mixture among metallic Z r, Hf, Ti, Mn, the Mo.The atom content of Fe is 0.01~0.35, and the atom content of Cu is 0.01~0.20, and the atom content of metallic element T is 0.005~0.1.
Summary of the invention
The purpose of this invention is to provide a kind of TbCu of having 7The SmCo1:7 type nano crystal permanent magnetic material of structure, the expression formula of this nano crystal permanent magnetic material is SmCo XM Y, wherein M is an element, promptly is used for stablizing TbCu 7The SmCo1:7 phase of structure, element M can be a kind of among Ni, Mo, Ti, Si, C, B, W, Ta, Ga, the Pt.SmCo of the present invention XM YNano crystal permanent magnetic material does not contain Fe, Cu element, only needs a kind of element of interpolation just can obtain stable TbCu 7Structure, and saturation magnetization, room temperature HCJ, Curie temperature also increase.
Of the present invention a kind of that do not contain Fe, Cu element and have a TbCu 7The SmCo1:7 type nano crystal permanent magnetic material of structure, the expression formula of this nano crystal permanent magnetic material is SmCo XM Y, the atom number of X is 5.5~8.5, the atom number of Y is 0.1~1.5; Wherein element M can be a kind of among Ni, Mo, Ti, C, B, W, Ta, Ga, the Pt.
That the present invention preparation does not contain Fe, Cu element and have a TbCu 7The method of the SmCo1:7 type nano crystal permanent magnetic material of structure includes the following step:
The first step: preparation target component foundry alloy
Adopting purity is that rare earth element Sm, purity more than 99.95% is that Co, purity more than 99.9% is the foundry alloy that element M more than 99.9% is mixed with target component;
In the present invention, target component is meant according to chemical formula SmCo XM YThe middle atom number that requires is carried out proportioning and is taken by weighing each element simple substance.
Second step: melting ingot casting
The target component foundry alloy of first step preparation is put in the water jacketed copper crucible of vacuum arc melting furnace, and the vacuum degree of regulating vacuum chamber reaches 2~4 * 10 -3Pa fills high-purity argon gas to 0.1~0.8 * 10 then 5Pa, through electric arc melting 20~90s, treat that alloying element melts fully after, current interruption forms alloy pig; The upset alloy pig, melt back 3~5 times guarantees that the alloy pig internal component is even;
The 3rd step: fragmentation just and high-energy ball milling
Be filled with high-purity argon gas to 0.1 * 10 5In the glove box of Pa, after second step, the alloy spindle that makes was smashed to pieces with iron mortar, sieve, obtain the meal of particle size≤1.0mm, use high energy ball mill ball milling 20~180min under the high-purity argon gas protection then, obtain the non crystalline structure powder;
The weight ratio of ball material is 1: 1~20: 1 in the mechanical milling process, and abrasive body is two kinds of steel balls of diameter 10mm and diameter 5mm;
The 4th step: crystallization and thermal treatment
Go on foot the burner hearth that the non crystalline structure powder that makes is put into vacuum heat treatment furnace, vacuum degree to 2~4 * 10 in the adjusting vacuum heat treatment furnace with the 3rd -3Pa feeds high-purity argon gas to 0.05~0.1 * 10 5Pa at 500~1000 ℃, carries out after 10~300min heat preservation hot handles, and then the cooling rate with 0.1~5 ℃/min slowly is cooled to 200~400 ℃, and gas is quenched and is cooled to room temperature then, makes to have TbCu 7The SmCo1:7 type nano crystal permanent magnetic material of structure.
Description of drawings
Fig. 1 is SmCo of the present invention 6.6Ni 0.4The X-ray diffractogram of material.
Fig. 2 is SmCo XNi YThe room temperature magnetic hysteresis loop of material.
Fig. 3 is SmCo XNi YMaterial is a M-T curve under the 10 ℃/min condition at temperature rate.
Embodiment
The present invention is described in further detail below in conjunction with drawings and Examples.
Of the present invention a kind of that do not contain Fe, Cu element and have a TbCu 7The SmCo1:7 type nano crystal permanent magnetic material of structure, the expression formula of this nano crystal permanent magnetic material is SmCo XM Y, the atom number of X is 5.5~8.5, the atom number of Y is 0.1~1.5; Wherein element M can be a kind of among Ni, Mo, Ti, C, B, W, Ta, Ga, the Pt.
That a kind of preparation does not contain Fe, Cu element and have a TbCu 7The method of the SmCo1:7 type nano crystal permanent magnetic material of structure includes the following step:
The first step: preparation target component foundry alloy
Adopting purity is that rare earth element Sm, purity more than 99.95% is that Co, purity more than 99.9% is the foundry alloy that element M more than 99.9% is mixed with target component;
In the present invention, target component is meant according to chemical formula SmCo XM YThe middle atom number that requires is carried out proportioning and is taken by weighing each element simple substance.
Second step: melting ingot casting
The target component foundry alloy of first step preparation is put in the water jacketed copper crucible of vacuum arc melting furnace, and the vacuum degree of regulating vacuum chamber reaches 2~4 * 10 -3Pa fills high-purity argon gas to 0.1~0.8 * 10 then 5Pa, through electric arc melting 20~90s, treat that alloying element melts fully after, current interruption forms alloy pig; The upset alloy pig, melt back 3~5 times guarantees that the alloy pig internal component is even;
The 3rd step: fragmentation just and high-energy ball milling
Be filled with high-purity argon gas to 0.1 * 10 5In the glove box of Pa, after second step, the alloy spindle that makes was smashed to pieces with iron mortar, sieve, obtain the meal of particle size≤1.0mm, use high energy ball mill ball milling 20~180min under the high-purity argon gas protection then, obtain the non crystalline structure powder;
The weight ratio of ball material is 1: 1~20: 1 in the mechanical milling process, and abrasive body is two kinds of steel balls of diameter 10mm and diameter 5mm;
The 4th step: crystallization and thermal treatment
Go on foot the burner hearth that the non crystalline structure powder that makes is put into vacuum heat treatment furnace, vacuum degree to 2~4 * 10 in the adjusting vacuum heat treatment furnace with the 3rd -3Pa feeds high-purity argon gas to 0.05~0.1 * 10 5Pa at 500~1000 ℃, carries out after 10~300min heat preservation hot handles, and then the cooling rate with 0.1~5 ℃/min slowly is cooled to 200~400 ℃, and gas is quenched and is cooled to room temperature then, makes to have TbCu 7The SmCo1:7 type nano crystal permanent magnetic material of structure.
The SmCo that adopts the invention described above preparation method to make XM YNano crystal permanent magnetic material, its room temperature HCJ is 950~1900kA/m, and saturation magnetization is 0.58~1.0T, and Curie temperature is 780~900 ℃.
Embodiment 1:SmCo 6.8Ni 0.2Nano crystal permanent magnetic material
The first step: preparation target component foundry alloy
Adopt rare earth element Sm, the Co of purity 99.9% of purity 99.95%, the Ni simple substance of purity 99.9%, press SmCo 6.8Ni 0.2Chemical formula preparation foundry alloy;
Second step: melting ingot casting
The target component foundry alloy of first step preparation is put in the water jacketed copper crucible of vacuum arc melting furnace, and the vacuum degree of regulating vacuum chamber reaches 4 * 10 -3Pa fills high-purity argon gas to 0.1 * 10 then 5Pa, through electric arc melting 30s, treat that alloying element melts fully after, current interruption forms alloy pig; The upset alloy pig, melt back 5 times guarantees that the alloy pig internal component is even;
The 3rd step: fragmentation just and high-energy ball milling
Be filled with high-purity argon gas to 0.1 * 10 5In the glove box of Pa, after second step, the alloy spindle that makes was smashed to pieces with iron mortar, sieve, obtain the meal of particle size≤1.0mm, use high energy ball mill ball milling 100min under the high-purity argon gas protection then, obtain the non crystalline structure powder;
The weight ratio of ball material is 20: 1 in the mechanical milling process, and abrasive body is two kinds of steel balls of diameter 10mm and diameter 5mm;
The 4th step: crystallization and thermal treatment
Go on foot the burner hearth that the non crystalline structure powder that makes is put into vacuum heat treatment furnace, vacuum degree to 4 * 10 in the adjusting vacuum heat treatment furnace with the 3rd -3Pa feeds high-purity argon gas to 0.1 * 10 5Pa at 750 ℃, carries out after the 120min heat preservation hot handles, and then the cooling rate with 2 ℃/min slowly is cooled to 400 ℃, and gas is quenched and is cooled to room temperature then, makes SmCo 6.8Ni 0.2Nano crystal permanent magnetic material.
The SmCo that makes 6.8Ni 0.2Nanocrystalline permanent magnetism powder material all is shown as TbCu through X-ray diffraction and thermomagnetic analysis 7Type SmCo1:7 phase structure, average grain size is about 60nm.To finding in this magnetic magnetism testing process that therefore a large amount of nanocrystalline crystal boundaries that exist cause big coercive force to the strong pinning effect of the mobile generation of neticdomain wall; And there is strong exchange interaction between the nanocrystal, shows as tangible remanent magnetism enhancement effect.The alloy Curie temperature is 895 ℃, on the basis that is added in the stable phase structure of Ni, raising to a certain degree the Curie temperature of this type compound.This SmCo 6.8Ni 0.2The room temperature HCJ of nanocrystalline permanent magnetism powder material reaches 1058.4kA/m, and saturation magnetization is 0.939T.
Adopt above-mentioned identical preparation method to make the SmCo of different component XNi YNano crystal permanent magnetic material, its performance parameter is as shown in table 1.
Table 1.SmCo XNi YStructure and magnetic property
Chemical formula iH c(kA/m) M r(T) M s(T) M r/M s T c(℃) Phase composition
SmCo 6.7Ni 0.3 1090.2 0.580 0.908 0.64 884 1:7
SmCo 6.6Ni 0.4 1161.8 0.575 0.887 0.65 880 1:7
SmCo 6.5Ni 0.5 1130.0 0.552 0.844 0.65 870 1:7
SmCo 6.4Ni 0.6 1193.7 0.567 0.823 0.69 859 1:7
SmCo 6.0Ni 1.0 978.8 0.564 0.802 0.70 830 1:7
Embodiment 2:SmCo 8.5Mo 0.4Nano crystal permanent magnetic material
The first step: preparation target component foundry alloy
Adopt rare earth element Sm, the Co of purity 99.9% of purity 99.95%, the Mo simple substance of purity 99.9%, press SmCo 8.5Mo 0.4Chemical formula preparation foundry alloy;
Second step: melting ingot casting
The target component foundry alloy of first step preparation is put in the water jacketed copper crucible of vacuum arc melting furnace, and the vacuum degree of regulating vacuum chamber reaches 2 * 10 -3Pa fills high-purity argon gas to 0.1 * 10 then 5Pa, through electric arc melting 20s, treat that alloying element melts fully after, current interruption forms alloy pig; The upset alloy pig, melt back 5 times guarantees that the alloy pig internal component is even;
The 3rd step: fragmentation just and high-energy ball milling
Be filled with high-purity argon gas to 0.1 * 10 5In the glove box of Pa, after second step, the alloy spindle that makes was smashed to pieces with iron mortar, sieve, obtain the meal of particle size≤1.0mm, use high energy ball mill ball milling 100min under the high-purity argon gas protection then, obtain the non crystalline structure powder;
The weight ratio of ball material is 15: 1 in the mechanical milling process, and abrasive body is two kinds of steel balls of diameter 10mm and diameter 5mm;
The 4th step: crystallization and thermal treatment
Go on foot the burner hearth that the non crystalline structure powder that makes is put into vacuum heat treatment furnace, vacuum degree to 4 * 10 in the adjusting vacuum heat treatment furnace with the 3rd -3Pa feeds high-purity argon gas to 0.1 * 10 5Pa at 800 ℃, carries out after the 120min heat preservation hot handles, and then the cooling rate with 2 ℃/min slowly is cooled to 400 ℃, and gas is quenched and is cooled to room temperature then, makes SmCo 8.5Mo 0.4Nano crystal permanent magnetic material.
Record SmCo 8.5Mo 0.4The room temperature HCJ of nano crystal permanent magnetic material reaches 919.7kA/m, and saturation magnetization is 0.901T, and Curie temperature reaches 825 ℃, and crystallite dimension is about 70nm.
Adopt above-mentioned identical preparation method to make the SmCo of different component XMo YNano crystal permanent magnetic material, its performance parameter is as shown in table 2.
Table 2.SmCo XMo YStructure and magnetic property
Chemical formula iH c(kA/m) M r(T) M s(T) M r/M s T c(℃) Phase composition
SmCo 6.9Mo 0.1 970.8 0.523 0.844 0.62 800 The a small amount of Co of 1:7+ 3Mo
SmCo 6.8Mo 0.2 1002.7 0.497 0.823 0.60 823
Embodiment 3:SmCo 8.1Ti 0.4Nano crystal permanent magnetic material
The first step: preparation target component foundry alloy
Adopt rare earth element Sm, the Co of purity 99.9% of purity 99.95%, the Ti simple substance of purity 99.9%, press SmCo 8.1Ti 0.4Chemical formula preparation foundry alloy;
Second step: melting ingot casting
The target component foundry alloy of first step preparation is put in the water jacketed copper crucible of vacuum arc melting furnace, and the vacuum degree of regulating vacuum chamber reaches 4 * 10 -3Pa fills high-purity argon gas to 0.8 * 10 then 5Pa, through electric arc melting 20s, treat that alloying element melts fully after, current interruption forms alloy pig; The upset alloy pig, melt back 3 times guarantees that the alloy pig internal component is even;
The 3rd step: fragmentation just and high-energy ball milling
Be filled with high-purity argon gas to 0.1 * 10 5In the glove box of Pa, after second step, the alloy spindle that makes was smashed to pieces with iron mortar, sieve, obtain the meal of particle size≤1.0mm, use high energy ball mill ball milling 60min under the high-purity argon gas protection then, obtain the non crystalline structure powder;
The weight ratio of ball material is 20: 1 in the mechanical milling process, and abrasive body is two kinds of steel balls of diameter 10mm and diameter 5mm;
The 4th step: crystallization and thermal treatment
Go on foot the burner hearth that the non crystalline structure powder that makes is put into vacuum heat treatment furnace, vacuum degree to 2 * 10 in the adjusting vacuum heat treatment furnace with the 3rd -3Pa feeds high-purity argon gas to 0.5 * 10 5Pa at 600 ℃, carries out after the 80min heat preservation hot handles, and then the cooling rate with 1 ℃/min slowly is cooled to 400 ℃, and gas is quenched and is cooled to room temperature then, makes SmCo 8.1Ti 0.4Nano crystal permanent magnetic material.
Record SmCo 8.1Ti 0.4The room temperature HCJ of nano crystal permanent magnetic material reaches 1000.7kA/m, and saturation magnetization is 0.897T, and Curie temperature reaches 798 ℃, and crystallite dimension is about 50nm.
Adopt above-mentioned identical preparation method to make the SmCo of different component XNi YNano crystal permanent magnetic material, its performance parameter is as shown in table 3.
Table 3.SmCo XTi YStructure and magnetic property
Chemical formula iH c(kA/m) M r(T) M s(T) M r/M s T c(℃) Phase composition
SmCo 5.6Ti 0.4 1773.2 0.391 0.581 0.67 789 The a small amount of 1:5 of 1:7+
SmCo 6.1Ti 0.4 1636.2 0.508 0.739 0.69 790 The a small amount of 1:5 of 1:7+
SmCo 6.6Ti 0.4 1868.2 0.492 0.718 0.69 805 1:7
SmCo 7.1Ti 0.4 1677.8 0.517 0.792 0.65 800 1:7
SmCo 7.6Ti 0.4 1193.3 0.575 0.908 0.62 811 1:7
Embodiment 4:SmCo 6.0B 0.45Nano crystal permanent magnetic material
The first step: preparation target component foundry alloy
Adopt rare earth element Sm, the Co of purity 99.9% of purity 99.95%, the B simple substance of purity 99.9%, press SmCo 6.0B 0.45The chemical formula alloyage, the alloy gross mass is about 50g, with each component of the accurate weighing of electronic balance.
Second step: melting ingot casting
The target component foundry alloy of first step preparation is put in the water jacketed copper crucible of vacuum arc melting furnace, and the vacuum degree of regulating vacuum chamber reaches 4 * 10 -3Pa fills high-purity argon gas to 0.1 * 10 then 5Pa, through electric arc melting 20, treat that alloying element melts fully after, current interruption forms alloy pig; The upset alloy pig, melt back 3 times guarantees that the alloy pig internal component is even;
The 3rd step: fragmentation just and high-energy ball milling
Be filled with high-purity argon gas to 0.1 * 10 5In the glove box of Pa, after second step, the alloy spindle that makes was smashed to pieces with iron mortar, sieve, obtain the meal of particle size≤1.0mm, use high energy ball mill ball milling 100min under the high-purity argon gas protection then, obtain the non crystalline structure powder;
The weight ratio of ball material is 15: 1 in the mechanical milling process, and abrasive body is two kinds of steel balls of diameter 10mm and diameter 5mm;
The 4th step: crystallization and thermal treatment
Go on foot the burner hearth that the non crystalline structure powder that makes is put into vacuum heat treatment furnace, vacuum degree to 4 * 10 in the adjusting vacuum heat treatment furnace with the 3rd -3Pa feeds high-purity argon gas to 0.1 * 10 5Pa at 700 ℃, carries out after the 120min heat preservation hot handles, and then the cooling rate with 2 ℃/min slowly is cooled to 400 ℃, and gas is quenched and is cooled to room temperature then, makes SmCo 6.0B 0.45Nano crystal permanent magnetic material.
Record SmCo 6.0B 0.45The room temperature HCJ of nano crystal permanent magnetic material reaches 965.1kA/m, and saturation magnetization is 0.752T, and Curie temperature reaches 790 ℃, and crystallite dimension is about 70nm.
Adopt above-mentioned identical preparation method to make the SmCo of different component XB YNano crystal permanent magnetic material, its performance parameter is as shown in table 4.
Table 4.SmCo 6.5B 0.35Structure and magnetic property
Chemical formula iH c(kA/m) M r(T) M s(T) M r/M s T c(℃) Phase composition
SmCo 6.5B 0.35 1168.3 0.501 0.798 0.63 799 1:7
Embodiment 5:SmCo 6.0W 1.5Nano crystal permanent magnetic material
The first step: preparation target component foundry alloy
Adopt rare earth element Sm, the Co of purity 99.9% of purity 99.95%, the W simple substance of purity 99.9%, press SmCo 6.0W 1.5Chemical formula preparation foundry alloy;
Second step: melting ingot casting
The target component foundry alloy of first step preparation is put in the water jacketed copper crucible of vacuum arc melting furnace, and the vacuum degree of regulating vacuum chamber reaches 4 * 10 -3Pa fills high-purity argon gas to 0.1 * 10 then 5Pa, through electric arc melting 20, treat that alloying element melts fully after, current interruption forms alloy pig; The upset alloy pig, melt back 3 times guarantees that the alloy pig internal component is even;
The 3rd step: fragmentation just and high-energy ball milling
Be filled with high-purity argon gas to 0.1 * 10 5In the glove box of Pa, after second step, the alloy spindle that makes was smashed to pieces with iron mortar, sieve, obtain the meal of particle size≤1.0mm, use high energy ball mill ball milling 60min under the high-purity argon gas protection then, obtain the non crystalline structure powder;
The weight ratio of ball material is 10: 1 in the mechanical milling process, and abrasive body is two kinds of steel balls of diameter 10mm and diameter 5mm;
The 4th step: crystallization and thermal treatment
Go on foot the burner hearth that the non crystalline structure powder that makes is put into vacuum heat treatment furnace, vacuum degree to 4 * 10 in the adjusting vacuum heat treatment furnace with the 3rd -3Pa feeds high-purity argon gas to 0.1 * 10 5Pa at 1000 ℃, carries out after the 30min heat preservation hot handles, and then the cooling rate with 2 ℃/min slowly is cooled to 400 ℃, and gas is quenched and is cooled to room temperature then, makes SmCo 6.0W 1.5Nano crystal permanent magnetic material.Record SmCo 6.0W 1.5The room temperature HCJ of nano crystal permanent magnetic material reaches 1015.7kA/m, and saturation magnetization is 0.725T, and Curie temperature reaches 795 ℃, and crystallite dimension is about 80nm.
Adopt above-mentioned identical preparation method to make the SmCo of different component 6.6W 0.4Nano crystal permanent magnetic material, its performance parameter is as shown in table 5.
Table 5.SmCo 6.6W 0.4Structure and magnetic property
Chemical formula iH c(kA/m) M r(T) M s(T) M r/M s T c(℃) Phase composition
SmCo 6.6W 0.4 1201.6 0.519 0.786 0.66 808 1:7
Embodiment 6:SmCo 7.1Ta 0.4Nano crystal permanent magnetic material
The first step: preparation target component foundry alloy
Adopt rare earth element Sm, the Co of purity 99.9% of purity 99.95%, the Ta simple substance of purity 99.9%, press SmCo 7.1Ta 0.4Chemical formula preparation foundry alloy;
Second step: melting ingot casting
The target component foundry alloy of first step preparation is put in the water jacketed copper crucible of vacuum arc melting furnace, and the vacuum degree of regulating vacuum chamber reaches 4 * 10 -3Pa fills high-purity argon gas to 0.1 * 10 then 5Pa, through electric arc melting 20, treat that alloying element melts fully after, current interruption forms alloy pig; The upset alloy pig, melt back 3 times guarantees that the alloy pig internal component is even;
The 3rd step: fragmentation just and high-energy ball milling
Be filled with high-purity argon gas to 0.1 * 10 5In the glove box of Pa, after second step, the alloy spindle that makes was smashed to pieces with iron mortar, sieve, obtain the meal of particle size≤1.0mm, use high energy ball mill ball milling 100min under the high-purity argon gas protection then, obtain the non crystalline structure powder;
The weight ratio of ball material is 15: 1 in the mechanical milling process, and abrasive body is two kinds of steel balls of diameter 10mm and diameter 5mm;
The 4th step: crystallization and thermal treatment
Go on foot the burner hearth that the non crystalline structure powder that makes is put into vacuum heat treatment furnace, vacuum degree to 4 * 10 in the adjusting vacuum heat treatment furnace with the 3rd -3Pa feeds high-purity argon gas to 0.1 * 10 5Pa at 800 ℃, carries out after the 120min heat preservation hot handles, and then the cooling rate with 2 ℃/min slowly is cooled to 400 ℃, and gas is quenched and is cooled to room temperature then, makes SmCo 7.1Ta 0.4Nano crystal permanent magnetic material.Record SmCo 7.1Ta 0.4The room temperature HCJ of nano crystal permanent magnetic material reaches 1055.2kA/m, and saturation magnetization is 0.854T, and Curie temperature reaches 810 ℃, and crystallite dimension is about 60nm.
Adopt above-mentioned identical preparation method to make the SmCo of different component XTa YNano crystal permanent magnetic material, its performance parameter is as shown in table 6.
Table 6.SmCo XTa YStructure and magnetic property
Chemical formula iH c(kA/m) M r(T) M s(T) M r/M s T c(℃) Phase composition
SmCo 6.6Ta 0.4 1180.5 0.498 0.791 0.63 793 1:7
SmCo 5.6Ta o.4 995.0 0.483 0.776 0.62 790 1:7
Embodiment 7:SmCo 7.1Ga 0.45Nano crystal permanent magnetic material
The first step: preparation target component foundry alloy
Adopt rare earth element Sm, the Co of purity 99.9% of purity 99.95%, the Ga simple substance of purity 99.9%, press SmCo 7.1Ga 0.45Chemical formula preparation foundry alloy;
Second step: melting ingot casting
The target component foundry alloy of first step preparation is put in the water jacketed copper crucible of vacuum arc melting furnace, and the vacuum degree of regulating vacuum chamber reaches 4 * 10 -3Pa fills high-purity argon gas to 0.1 * 10 then 5Pa, through electric arc melting 20, treat that alloying element melts fully after, current interruption forms alloy pig; The upset alloy pig, melt back 3 times guarantees that the alloy pig internal component is even;
The 3rd step: fragmentation just and high-energy ball milling
Be filled with high-purity argon gas to 0.1 * 10 5In the glove box of Pa, after second step, the alloy spindle that makes was smashed to pieces with iron mortar, sieve, obtain the meal of particle size≤1.0mm, use high energy ball mill ball milling 100min under the high-purity argon gas protection then, obtain the non crystalline structure powder;
The weight ratio of ball material is 5: 1 in the mechanical milling process, and abrasive body is two kinds of steel balls of diameter 10mm and diameter 5mm;
The 4th step: crystallization and thermal treatment
Go on foot the burner hearth that the non crystalline structure powder that makes is put into vacuum heat treatment furnace, vacuum degree to 4 * 10 in the adjusting vacuum heat treatment furnace with the 3rd -3Pa feeds high-purity argon gas to 0.1 * 10 5Pa at 850 ℃, carries out after the 120min heat preservation hot handles, and then the cooling rate with 2 ℃/min slowly is cooled to 400 ℃, and gas is quenched and is cooled to room temperature then, makes SmCo 7.1Ga 0.45Nano crystal permanent magnetic material.Record SmCo 7.1Ga 0.45The room temperature HCJ of nano crystal permanent magnetic material reaches 1301.3kA/m, and saturation magnetization is 0.801T, and Curie temperature reaches 811 ℃, and crystallite dimension is about 65nm.
Prepared alloy is carried out structure and performance test, and its result is as shown in table 7.
Table 7.SmCo 7.1Ga 0.45Structure and magnetic property
Chemical formula iH c(kA/m) M r(T) M s(T) M r/M s T c(℃) Phase composition
SmCo 7.1Ga 0.45 1301.3 0.511 0.801 0.64 811 The a small amount of 2:17 of 1:7+
Embodiment 8:SmCo 5.8Pt 0.2Nano crystal permanent magnetic material
The first step: preparation target component foundry alloy
Adopt rare earth element Sm, the Co of purity 99.9% of purity 99.95%, the Pt simple substance of purity 99.9%, press SmCo 5.8Pt 0.2Chemical formula preparation foundry alloy;
Second step: melting ingot casting
The target component foundry alloy of first step preparation is put in the water jacketed copper crucible of vacuum arc melting furnace, and the vacuum degree of regulating vacuum chamber reaches 4 * 10 -3Pa fills high-purity argon gas to 0.1 * 10 then 5Pa, through electric arc melting 20, treat that alloying element melts fully after, current interruption forms alloy pig; The upset alloy pig, melt back 3 times guarantees that the alloy pig internal component is even;
The 3rd step: fragmentation just and high-energy ball milling
Be filled with high-purity argon gas to 0.1 * 10 5In the glove box of Pa, after second step, the alloy spindle that makes was smashed to pieces with iron mortar, sieve, obtain the meal of particle size≤1.0mm, use high energy ball mill ball milling 100min under the high-purity argon gas protection then, obtain the non crystalline structure powder;
The weight ratio of ball material is 8: 1 in the mechanical milling process, and abrasive body is two kinds of steel balls of diameter 10mm and diameter 5mm;
The 4th step: crystallization and thermal treatment
Go on foot the burner hearth that the non crystalline structure powder that makes is put into vacuum heat treatment furnace, vacuum degree to 4 * 10 in the adjusting vacuum heat treatment furnace with the 3rd -3Pa feeds high-purity argon gas to 0.1 * 10 5Pa at 800 ℃, carries out after the 120min heat preservation hot handles, and then the cooling rate with 2 ℃/min slowly is cooled to 400 ℃, and gas is quenched and is cooled to room temperature then, makes SmCo 5.8Pt 0.2Nano crystal permanent magnetic material.Record SmCo 5.8Pt 0.2The room temperature HCJ of nano crystal permanent magnetic material reaches 894.7kA/m, and saturation magnetization is 0.741T, and Curie temperature reaches 785 ℃, and crystallite dimension is about 60nm.
Adopt above-mentioned identical preparation method to make the SmCo of different component XPt YNano crystal permanent magnetic material, its performance parameter is as shown in table 8.
Table 8.SmCo XPt YStructure and magnetic property
Chemical formula iH c(kA/m) M r(T) M s(T) M r/M s T c(℃) Phase composition
SmCo 6.6Pt 0.4 1286.5 0.509 0.790 0.64 792 1:7
SmCo 6.8Pt 0.2 1156.0 0.523 0.813 0.64 801 1:7
Embodiment 9:SmCo 8.0C 0.4Nano crystal permanent magnetic material
The first step: preparation target component foundry alloy
Adopt rare earth element Sm, the Co of purity 99.9% of purity 99.95%, the C simple substance of purity 99.9%, press SmCo 8.0C 0.4Chemical formula preparation foundry alloy;
Second step: melting ingot casting
The target component foundry alloy of first step preparation is put in the water jacketed copper crucible of vacuum arc melting furnace, and the vacuum degree of regulating vacuum chamber reaches 4 * 10 -3Pa fills high-purity argon gas to 0.1 * 10 then 5Pa, through electric arc melting 30s, treat that alloying element melts fully after, current interruption forms alloy pig; The upset alloy pig, melt back 5 times guarantees that the alloy pig internal component is even;
The 3rd step: fragmentation just and high-energy ball milling
Be filled with high-purity argon gas to 0.1 * 10 5In the glove box of Pa, after second step, the alloy spindle that makes was smashed to pieces with iron mortar, sieve, obtain the meal of particle size≤1.0mm, use high energy ball mill ball milling 100min under the high-purity argon gas protection then, obtain the non crystalline structure powder;
The weight ratio of ball material is 20: 1 in the mechanical milling process, and abrasive body is two kinds of steel balls of diameter 10mm and diameter 5mm;
The 4th step: crystallization and thermal treatment
Go on foot the burner hearth that the non crystalline structure powder that makes is put into vacuum heat treatment furnace, vacuum degree to 4 * 10 in the adjusting vacuum heat treatment furnace with the 3rd -3Pa feeds high-purity argon gas to 0.1 * 10 5Pa at 750 ℃, carries out after the 120min heat preservation hot handles, and then the cooling rate with 2 ℃/min slowly is cooled to 400 ℃, and gas is quenched and is cooled to room temperature then, makes SmCo 8.0C 0.4Nano crystal permanent magnetic material.
Record SmCo 8.0C 0.4The room temperature HCJ of nano crystal permanent magnetic material reaches 1215.3kA/m, and saturation magnetization is 0.814T, and Curie temperature reaches 813 ℃, and crystallite dimension is about 65nm.

Claims (4)

1, a kind of have a TbCu 7The SmCo1:7 type nano crystal permanent magnetic material of structure is characterized in that: the expression formula of this nano crystal permanent magnetic material is SmCo XM Y, the atom number of X is 5.5~8.5, the atom number of Y is 0.1~1.5; Element M is Ni, Mo, Ti, C, B, W, Ta, Ga or Pt.
2, according to claim 1 have a TbCu 7The SmCo1:7 type nano crystal permanent magnetic material of structure is characterized in that: SmCo XM YThe room temperature HCJ of nano crystal permanent magnetic material is 950~1900kA/m, and saturation magnetization is 0.58~1.0T, and Curie temperature is 780~900 ℃.
3, according to claim 1 have a TbCu 7The SmCo1:7 type nano crystal permanent magnetic material of structure is characterized in that:
SmCo XNi YNano crystal permanent magnetic material has SmCo 6.8Ni 0.2Nano crystal permanent magnetic material, SmCo 6.6Ni 0.4Nano crystal permanent magnetic material, SmCo 6.4Ni 0.6Nano crystal permanent magnetic material, SmCo 6.0Ni 1.0Nano crystal permanent magnetic material;
SmCo XMo YNano crystal permanent magnetic material has SmCo 8.5Mo 0.4Nano crystal permanent magnetic material, SmCo 6.8Mo 0.2Nano crystal permanent magnetic material;
SmCo XTi YNano crystal permanent magnetic material has SmCo 5.6Ti 0.4Nano crystal permanent magnetic material, SmCo 6.6Ti 0.4Nano crystal permanent magnetic material, SmCo 8.1Ti 0.4Nano crystal permanent magnetic material;
SmCo XC YNano crystal permanent magnetic material has SmCo 8.0C 0.4Nano crystal permanent magnetic material;
SmCo XB YNano crystal permanent magnetic material has SmCo 6.0B 0.45Nano crystal permanent magnetic material, SmCo 6.5B 0.35Nano crystal permanent magnetic material;
SmCo XW YNano crystal permanent magnetic material has SmCo 6.0W 1.5Nano crystal permanent magnetic material, SmCo 6.6W 0.4Nano crystal permanent magnetic material;
SmCo XTa YNano crystal permanent magnetic material has SmCo 5.6Ta 0.4Nano crystal permanent magnetic material, SmCo 6.6Ta 0.4Nano crystal permanent magnetic material, SmCo 7.1Ta 0.4Nano crystal permanent magnetic material;
SmCo XGa YNano crystal permanent magnetic material has SmCo 7.1Ga 0.45Nano crystal permanent magnetic material;
SmCo XPt YNano crystal permanent magnetic material has SmCo 5.8Pt 0.2Nano crystal permanent magnetic material, SmCo 6.6Pt 0.4Nano crystal permanent magnetic material.
4, a kind of preparation is as claimed in claim 1 has a TbCu 7The method of the SmCo1:7 type nano crystal permanent magnetic material of structure is characterized in that the following step is arranged:
The first step: preparation target component foundry alloy
Adopt rare earth element Sm, the Co of purity 99.9%, the element M of purity 99.9% of purity 99.95% to be mixed with the foundry alloy of target component;
Second step: melting ingot casting
The target component foundry alloy of first step preparation is put in the water jacketed copper crucible of vacuum arc melting furnace, and the vacuum degree of regulating vacuum chamber reaches 2~4 * 10 -3Pa fills high-purity argon gas to 0.1~0.8 * 10 then 5Pa, through electric arc melting 20~90s, treat that alloying element melts fully after, current interruption forms alloy pig; The upset alloy pig, melt back 3~5 times guarantees that the alloy pig internal component is even;
The 3rd step: fragmentation just and high-energy ball milling
Be filled with high-purity argon gas to 0.1 * 10 5In the glove box of Pa, after second step, the alloy spindle that makes was smashed to pieces with iron mortar, sieve, obtain the meal of particle size≤1.0mm, use high energy ball mill ball milling 20~180min under the high-purity argon gas protection then, obtain the non crystalline structure powder;
The weight ratio of ball material is 1: 1~20: 1 in the mechanical milling process, and abrasive body is two kinds of steel balls of diameter 10mm and diameter 5mm;
The 4th step: crystallization and thermal treatment
Go on foot the burner hearth that the non crystalline structure powder that makes is put into vacuum heat treatment furnace, vacuum degree to 2~4 * 10 in the adjusting vacuum heat treatment furnace with the 3rd -3Pa feeds high-purity argon gas to 0.05~0.1 * 10 5Pa at 500~1000 ℃, carries out after 10~300min heat preservation hot handles, and then the cooling rate with 0.1~5 ℃/min slowly is cooled to 200~400 ℃, and gas is quenched and is cooled to room temperature then, makes to have TbCu 7The SmCo1:7 type nano crystal permanent magnetic material of structure.
CNB2007101797459A 2007-12-18 2007-12-18 A kind of have a TbCu 7The SmCo1:7 type nano crystal permanent magnetic material and the preparation method of structure Expired - Fee Related CN100555481C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2007101797459A CN100555481C (en) 2007-12-18 2007-12-18 A kind of have a TbCu 7The SmCo1:7 type nano crystal permanent magnetic material and the preparation method of structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2007101797459A CN100555481C (en) 2007-12-18 2007-12-18 A kind of have a TbCu 7The SmCo1:7 type nano crystal permanent magnetic material and the preparation method of structure

Publications (2)

Publication Number Publication Date
CN101236814A true CN101236814A (en) 2008-08-06
CN100555481C CN100555481C (en) 2009-10-28

Family

ID=39920354

Family Applications (1)

Application Number Title Priority Date Filing Date
CNB2007101797459A Expired - Fee Related CN100555481C (en) 2007-12-18 2007-12-18 A kind of have a TbCu 7The SmCo1:7 type nano crystal permanent magnetic material and the preparation method of structure

Country Status (1)

Country Link
CN (1) CN100555481C (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101962722A (en) * 2010-10-15 2011-02-02 北京工业大学 Method for preparing single-phase SmCo7 nanocrystalline alloy block material without doping elements
CN102403118A (en) * 2011-11-23 2012-04-04 北京航空航天大学 Preparation method of anisotropic samarium cobalt-based nanocrystalline rare earth permanent magnet
CN107557634A (en) * 2017-08-07 2018-01-09 中南大学 A kind of SmCo rare-earth magnetic nanoporous alloy and preparation method thereof
CN108335900A (en) * 2018-03-21 2018-07-27 重庆科技学院 It is a kind of to prepare SmCo7The method and its magnet of/Co composite permanent magnets
CN110895984A (en) * 2018-09-12 2020-03-20 河南科技大学 Strong texture SmCo5Base nano composite permanent magnetic material and its preparation method
CN111180157A (en) * 2019-12-24 2020-05-19 中国计量大学 A method of manufacturing a semiconductor device, comprises the following steps: 17-type SmCoCuFeZrB sintered permanent magnet and preparation method thereof

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101962722A (en) * 2010-10-15 2011-02-02 北京工业大学 Method for preparing single-phase SmCo7 nanocrystalline alloy block material without doping elements
CN102403118A (en) * 2011-11-23 2012-04-04 北京航空航天大学 Preparation method of anisotropic samarium cobalt-based nanocrystalline rare earth permanent magnet
CN107557634A (en) * 2017-08-07 2018-01-09 中南大学 A kind of SmCo rare-earth magnetic nanoporous alloy and preparation method thereof
CN108335900A (en) * 2018-03-21 2018-07-27 重庆科技学院 It is a kind of to prepare SmCo7The method and its magnet of/Co composite permanent magnets
CN108335900B (en) * 2018-03-21 2020-08-25 重庆科技学院 Preparation of SmCo7Method for manufacturing/Co composite permanent magnet and magnet thereof
CN110895984A (en) * 2018-09-12 2020-03-20 河南科技大学 Strong texture SmCo5Base nano composite permanent magnetic material and its preparation method
CN111180157A (en) * 2019-12-24 2020-05-19 中国计量大学 A method of manufacturing a semiconductor device, comprises the following steps: 17-type SmCoCuFeZrB sintered permanent magnet and preparation method thereof
CN111180157B (en) * 2019-12-24 2021-04-06 中国计量大学 A method of manufacturing a semiconductor device, comprises the following steps: 17-type SmCoCuFeZrB sintered permanent magnet and preparation method thereof

Also Published As

Publication number Publication date
CN100555481C (en) 2009-10-28

Similar Documents

Publication Publication Date Title
CN102800454B (en) Low-cost double-main phase Ce permanent-magnet alloy and preparation method thereof
US8361242B2 (en) Powders for rare earth magnets, rare earth magnets and methods for manufacturing the same
JP2017128793A (en) MANUFACTURING METHOD OF SINTERED Nd-Fe-B MAGNETIC SUBSTRATE CONTAINING NO HEAVY RARE EARTH ELEMENT
CN100555481C (en) A kind of have a TbCu 7The SmCo1:7 type nano crystal permanent magnetic material and the preparation method of structure
CN102140598B (en) Preparation method of super high coercivity and low-Co type Sm-Co nanocrystalline alloy
CN106128674A (en) A kind of double Hard Magnetic principal phase mischmetal permanent magnet and preparation method thereof
CN101370606B (en) Rare earth sintered magnet and method for producing same
CN108352233B (en) R-Fe-B rare earth sintered magnet compositely containing Pr and W
CN107578870A (en) A kind of method that permanent-magnet material is prepared using high abundance rare earth element
CN108231312A (en) A kind of permanent-magnet alloy prepared based on mischmetal and preparation method thereof
CN103106992B (en) High bending force resistant permanent magnet materials and preparation method thereof
CN106328331B (en) Sintered NdFeB magnet assistant alloy slab and preparation method thereof
EP0049141B1 (en) Iron-chromium-base spinodal decomposition-type magnetic (hard or semi-hard) alloy
JPH04184901A (en) Rare earth iron based permanent magnet and its manufacture
CN101962722A (en) Method for preparing single-phase SmCo7 nanocrystalline alloy block material without doping elements
Tao et al. Rapidly solidified Nd7Fe67B22Mo3Zr1 nanocomposite permanent magnets
JP2740981B2 (en) R-Fe-Co-BC permanent magnet alloy with excellent thermal stability with small irreversible demagnetization
JPH04165012A (en) Production of anisotropic sintered permanent magnet based on rare earth element
JP2794496B2 (en) R-Fe-Co-BC permanent magnet alloy with small irreversible demagnetization and excellent thermal stability
Ll et al. High coercivity nanocrystalline YCo5 powders produced by mechanical milling
CN113871120B (en) Mixed rare earth permanent magnet material and preparation method thereof
CN101256860A (en) Neodymium iron boron permanent magnetic material using zirconium to substitute niobium
CN113539600A (en) Dy-containing rare earth permanent magnet with high magnetic energy product and high coercivity and preparation method thereof
CN101552059A (en) SmCoAl1: 7 type nano-crystalline permanent magnetic material and preparation method
JP3126199B2 (en) Manufacturing method of rare earth permanent magnet

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20091028

Termination date: 20101218