CN103757489A - Al-Fe-Cu-Ti aluminum alloy for automotive wire and wiring harness thereof - Google Patents

Al-Fe-Cu-Ti aluminum alloy for automotive wire and wiring harness thereof Download PDF

Info

Publication number
CN103757489A
CN103757489A CN201310733330.7A CN201310733330A CN103757489A CN 103757489 A CN103757489 A CN 103757489A CN 201310733330 A CN201310733330 A CN 201310733330A CN 103757489 A CN103757489 A CN 103757489A
Authority
CN
China
Prior art keywords
alloy
aluminium alloy
automotive
property
content
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
CN201310733330.7A
Other languages
Chinese (zh)
Inventor
林泽民
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.)
Anhui Joy Sense Cable Co Ltd
Original Assignee
Anhui Joy Sense Cable 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 Anhui Joy Sense Cable Co Ltd filed Critical Anhui Joy Sense Cable Co Ltd
Priority to CN201310733330.7A priority Critical patent/CN103757489A/en
Publication of CN103757489A publication Critical patent/CN103757489A/en
Pending legal-status Critical Current

Links

Abstract

The invention discloses an Al-Fe-Cu-Ti aluminum alloy for an automotive wire, a preparation method thereof and a prepared automotive wiring harness, wherein the Al-Fe-Cu-Ti aluminum alloy for the automotive wire comprises the following components: 0.2-1.4wt% of Fe, 0.01-0.5wt% of Cu, 0.001-0.2wt% of Ti, and the balance of Al and inevitable impurities. The mechanical property and the tensile property of the alloy can be improved by adding an Fe element; the high-temperature creep resistance and the fatigue resistance of the alloy also can be obviously improved by the Fe; the strength and the high-temperature creep property of the alloy also can be improved by adding the Cu; the fatigue resistance can be improved; the processing tensile property and the creep resistance of the alloy are improved by adding the Ti; especially the stability with a connection terminal is improved.

Description

Al-Fe-Cu-Ti aluminium alloy and wire harness thereof for a kind of automotive line
Technical field
The present invention relates to a kind of store battery cable, wire harness or engine can be used as in mobile vehicle wire harness of cable, belong to field of aluminum alloys.
Background technology
In world wide, automobile industry development is rapid at present, automotive industry not only becomes the U.S., the mainstay industry of the developed countries such as Japan, also become the mainstay industry of some developing countries that comprise China, as the automotive line of one of important auxiliary products of automobile, no matter in scale output or kind demand, all there are good market outlook.
Automobile is to miniaturization, lightweight future development simultaneously, and the pilot circuit of various electronicss increases, and increase the distribution position in motor vehicle, in order to reach energy-saving and cost-reducing object, requires low tension cables for automobiles to the performance future development of minification.Therefore,, for weight reduction, attempted the aluminium electric wire that uses conductor to be made by aluminum.
The aluminium electric wire that conductor is made by alumina-base material is due to lightweight and excellent electric conductivity, thereby routinely for the power industry field of overhead electric power transmission line is set.Aluminium alloy more and more for the conductor of aluminium electric wire to improve intensity and resistance to bend(ing), day by day deficient along with copper resource in addition, and the content of aluminium is very abundant, with aluminium substitution copper, received investigator's concern, so aluminium alloy becomes the focus of research as cable conductor.
For example, Japanese Patent Laid-Open 2006-19163 communique discloses a kind of aluminium conductor, it is the twisted wire by aluminium alloy wires twisted is made, the Si of the Mg of the Fe that described aluminium alloy wires contains 1.10-1.50 quality %, 0.03-0.25 quality %, 0.02-0.06% quality %, surplus is Al and inevitable impurity.A kind of hard wire drawing line during aluminium alloy wires that this piece of patent mentioned, thus although described wire intensity increases, extend rate variance, and this causes resistance to bend(ing) and shock-resistance to decline.
Japanese Patent car aluminum electric wire and manufacture method thereof (application number: the conductor providing 200820111739.2) has tensile strength, more than 15% elongation at break and specific conductivity more than 58%IACS more than 110MPa, but this piece of patent do not embody the good effect of improving for the creep resistance of conductor.
Yet as the conductor of the electric wiring body of moving body, wherein a most important problem is exactly the requirement to resistance to creep properties.Because approximately 140 ℃ of the envrionment temperatures of the easy creep of aluminium, and the thermal environment of moving body such as the engine chamber of automobile, drive by these parts of engine and just easily reach in full summer this temperature.In addition, the electric wiring body electric wire of moving body is riveted on terminal, if there is creep, has the hidden danger coming off.
Therefore, the exploitation of the aluminium conductor of resistance to creep properties excellence is necessary.In addition, for preventing infinitely repeatedly under repeated load effect, the conductor of the electric wiring body as moving body being damaged, the raising of resistance to fatigue is also necessary.
Summary of the invention
The object of the present invention is to provide a kind of light weight, have excellent electric conductivity, the automotive wire bundle of Al-Fe-Cu-Ti aluminium alloy and preparation method thereof and preparation thereof for the automotive line of tensile strength, processibility, creep-resistant property.
Above-mentioned purpose realizes by following scheme:
An automotive line Al-Fe-Cu-Ti aluminium alloy, comprises following composition:
Fe, content is 0.2-1.4wt%,
Cu, content is 0.01-0.5wt%,
Ti, content is 0.001-0.2wt%,
Surplus is Al and inevitable impurity.
Described alloy also contains the Si that is no more than 0.1wt%.
In described alloy, also contain the RE of 0.1-0.3wt%, wherein Ce, La account for the more than 50% of total amount of rare earth.
Described aluminium alloy resistance rate is not more than 0.028264 Ω mm 2/ m, elongation at break is not less than 10%, and under 140 ℃ of temperature, 120MPa stress condition, the average creep rate of 1-100 hour is 1 * 10 -3(%/h) or lower, and the tired bending of 90 degree number of times reach 30 or higher.
The preparation method of Al-Fe-Cu-Ti aluminium alloy for described automotive line, forms aluminium alloy rod by melting, casting, rolling.
The described automotive wire bundle that utilizes automotive line to make with Al-Fe-Cu-Ti aluminium alloy, forms aluminium alloy rod by melting, casting, rolling, then through drawing, restraint strand, the softening aluminium alloy conductor core that forms, conductor thread core extrudes one deck insulation outward and makes.
Described conductor thread core is formed by the filament tow strand of 10-1000 root 0.2-0.5mm.
Described insulation layer extrudes one deck sheath outward; Described insulation layer and restrictive coating material adopt polyvinyl chloride, polyvinyl chloride-butyronitrile polymkeric substance, polymeric amide, fluorinated ethylene propylene or polypropylene material.
Under can be used for-40-150 of described automotive wire bundle ℃ environment.
Described automotive wire bundle can be used as store battery cable, wire harness or the engine cable in moving body carrier.
Method for the preparation of aluminium alloy of the present invention comprises the following steps:
A) by molten aluminium alloy is cast and is obtained cast material: add the melting at 700 ℃ or higher temperature of Al ingot, Al-Fe ingot, Al-Cu ingot, Al-Ti ingot or pure metal ingot to process by formula rate; 680 ℃ of following temperature are cast;
B) ingot casting step a) being obtained carries out solution treatment and ageing treatment, rerolls and makes rod of metal alloy;
C) by step b) rod of metal alloy that is rolled into is through cold-drawn, stranded, softening, and extruded insulation is made alloy wiring.
Preferably, the method for the preparation of alloy wiring of the present invention comprises the following steps:
A) by molten aluminium alloy is cast and is obtained cast material: add the melting at 700 ℃ or higher temperature of Al ingot, Al-Fe ingot, Al-Cu ingot, Al-Ti ingot, Al-RE ingot or pure metal ingot to process by formula rate; 680 ℃ of following temperature are cast;
B) ingot casting step a) being obtained carries out solution treatment and ageing treatment, rerolls and makes rod of metal alloy;
C) by step b) rod of metal alloy that is rolled into is through cold-drawn, stranded, softening, and extruded insulation is made alloy wiring.
After conductor thread core of the present invention annealing, compressed with one heart, by the filament tow strand of 10~1000 0.2mm~0.5mm, formed.
Beneficial effect of the present invention is: the preferred Fe of the present invention, Cu, Ti are as the interpolation element of alloy, by adding Fe element, can improve physical strength and the tensile property of alloy, Fe can also significantly improve high-temperature creep resistance, and carry heavy alloyed anti-fatigue performance, adding of Cu can be carried heavy alloyed intensity and high temperature creep property, and can improve anti-fatigue performance.Ti be added in founding time the miniaturization material of ingot bar is worked, carry heavy alloyed processing tensile property, and improve creep-resistant property, particularly improve the stability with splicing ear.The present invention has done restriction to the content of Si, is because too much Si can cause tensile property to reduce, and have influence on the processing characteristics of cable, and may reduce the tired bending property of conductor, and too much Si also can reduce electrical property.In the present invention, Fe content is 0.2-1.4wt%, Cu content is 0.01-0.05wt%, Ti content is 0.001-0.2wt%, and content is no more than the Si of 0.1wt% and the RE that contains 0.1-0.3wt%, Ce wherein, La accounts for the more than 50% of total amount of rare earth, by such formulation alloy formula, both can improve the performance of alloy, the performance that is unlikely to again the alloy that too much amount can worsen, particularly electrical property and extension property, by rational proportion relation, well ensure the Performance Match of alloy, the preferred RE element of the present invention, Ce wherein, La account in RE total content more than 50%, rare earth can significantly improve the electrical property of alloy, middle-weight rare earths of the present invention adds in aluminium alloy, while making aluminum alloy melt casting, increase constitutional supercooling, crystal grain thinning, reduce secondary intergranular distance, reduce the gas in alloy and be mingled with, and make to be mingled with and be tending towards mutually nodularization.Also can reduce smelt surface tension, increase mobility, be conducive to be cast into ingot, processing performance is had to obvious impact, can also play the effect that improves the tired bending property of Alloy Anti, extended the work-ing life of cable, preferably Ce and La, be because these two kinds of elements in the present invention effect compared with other rare earth elements, to improve effect more obvious.Simultaneously aluminum alloy materials by melting, casting, solid solution and ageing treatment, rolling technology after, make aluminium alloy resistance rate be not more than 0.028264 Ω mm 2/ m, elongation at break is not less than 10%, and under 140 ℃ of temperature, 120MPa stress condition, the average creep rate of 1-100 hour is 1 * 10 -3(%/h) or lower, and the tired bending of 90 degree number of times reach 30 or higher.
The automotive wire bundle being prepared from by the present invention, both realized as the necessary electric property of conductor, overcome again the deficiency of aluminium alloy as processing characteristics, creep-resistant property and the anti-fatigue performance aspect of the existence of automotive wire bundle conductor, and realized the desired lightweight problem as automotive wire bundle, aspect technical economic benefit, have very important significance.
Embodiment
Below the technical scheme in the embodiment of the present invention is clearly and completely described, obviously, described embodiment is only the present invention's part embodiment, rather than whole embodiment.Embodiment based in the present invention, those of ordinary skills, not making the every other embodiment obtaining under creative work prerequisite, belong to the scope of protection of the invention.
Embodiment 1
An automotive line aluminium alloy, the weight percent of component and each component following (gross weight: 1T):
Component Fe Cu Ti Si RE Al
Weight (Kg) 3 0.1 0.02 / / 996.88
Weight percent (%) 0.3 0.01 0.002 / / 99.688
In above-mentioned aluminum alloy materials, be preferably added with a certain amount of Ti, Ti be added in founding time the miniaturization material of ingot bar is worked, carry heavy alloyed processing tensile property, and improve creep-resistant property, particularly improve the stability with splicing ear.
Apply above-mentioned aluminum alloy materials and prepare the method for aluminium alloy core, concrete steps are as follows:
A, founding: add according to the above ratio al alloy component, after melting is processed at 730 ℃, at 670 ℃, carry out ingot casting, then be rolled into rod of metal alloy through solution treatment and ageing treatment, the ageing treatment here is preferably carried out at 140 ℃ or higher temperature,
B, wire drawing: the rod of metal alloy being obtained by a is carried out to temperature 150-180 ℃, the process annealing of 4-6 hour, this is when guaranteeing the intensity of alloy, improves its tensile property, resistance to bend(ing) energy strengthens alloy plasticity-, improves subsequent technique efficiency.Here we by rod of metal alloy wire drawing the alloy filaments to Ф 0.2mm.
C, annealing: by after the filament tow strand being made by b in annealing furnace, at 280-320 ℃, be incubated 5-8 hour, annealing time reaches after requirement, the time of being down to 100 ℃ from annealing temperature is more than 15 minutes, and under treatment condition, Ti has miniaturization material effects like this, carry heavy alloyed processing tensile property, and raising creep-resistant property, the Fe of sosoloid form amount is few in addition, and the conductivity of the conductor that makes to anneal is excellent.
Above-mentioned aluminium alloy is by material, and after melting, casting, solid solution and ageing treatment, rolling technology, the aluminium alloy resistance rate obtaining is 0.028264 Ω mm 2/ m, electric conductivity 61%IACS, elongation at break is 15%, under 140 ℃ of temperature, 120MPa stress condition, the average creep rate of 1-100 hour is 0.95 * 10 -3(%/h) or lower, and the tired bending of 90 degree number of times reach 31.
Embodiment 2
An automotive line aluminium alloy, the weight percent of component and each component following (gross weight: 1T):
Figure BDA0000447566740000051
In above-mentioned aluminum alloy materials, content by Si compares, and appropriate Si is improved the effect of recrystallization temperature and crystal grain thinning, surpasses certain content and can reduce its conductivity, and in implementation process, find the too much sample easy fracture in drawing process of Si content.
Apply above-mentioned aluminum alloy materials and prepare the method for aluminium alloy core, concrete steps are as follows:
A, founding: add according to the above ratio al alloy component, after melting is processed at 730 ℃, at 670 ℃, carry out ingot casting, then be rolled into rod of metal alloy through solution treatment and ageing treatment, the ageing treatment here is preferably carried out at 140 ℃ or higher temperature,
B, wire drawing: the rod of metal alloy being obtained by a is carried out to temperature 150-180 ℃, the process annealing of 4-6 hour, this is when guaranteeing the intensity of alloy, improves its tensile property, resistance to bend(ing) energy strengthens alloy plasticity-, improves subsequent technique efficiency.Here we by rod of metal alloy wire drawing the alloy filaments to Ф 0.2mm.
C, annealing: by after the filament tow strand being made by b in annealing furnace, at 280-320 ℃, be incubated 5-8 hour, annealing time reaches after requirement, the time of being down to 100 ℃ from annealing temperature is more than 15 minutes, and under treatment condition, Ti has miniaturization material effects like this, carry heavy alloyed processing tensile property, and raising creep-resistant property, the Fe of sosoloid form amount is few in addition, and the conductivity of the conductor that makes to anneal is excellent.
Above-mentioned aluminium alloy is by material, and after melting, casting, solid solution and ageing treatment, rolling technology, the aluminium alloy resistance rate of the sample 1 obtaining is 0.027367 Ω mm 2/ m, electric conductivity 63%IACS, elongation at break is 16%, under 140 ℃ of temperature, 120MPa stress condition, the average creep rate of 1-100 hour is 0.92 * 10 -3(%/h), and the tired bending of 90 degree number of times reach 31; The aluminium alloy resistance rate of sample 2 is 0.028735 Ω mm 2/ m, electric conductivity 56%IACS, elongation at break is 7%, under 140 ℃ of temperature, 120MPa stress condition, the average creep rate of 1-100 hour is 1.2510 -3(%/h), the tired bending of 90 degree number of times reaches 23.Therefore, in the technical program, Si content is defined as and is not more than 0.1wt%.
Embodiment 3
An automotive line aluminium alloy, the weight percent of component and each component following (gross weight: 1T):
Figure BDA0000447566740000061
In above-mentioned aluminum alloy materials, preferably add a certain amount of RE element, wherein Ce, La account for 55% in RE total content, rare earth can significantly improve the electrical property of alloy, and middle-weight rare earths of the present invention adds in aluminium alloy, increases constitutional supercooling while making aluminum alloy melt casting, crystal grain thinning, reduce secondary intergranular distance, reduce the gas in alloy and be mingled with, and make to be mingled with and be tending towards mutually nodularization.Also can reduce smelt surface tension, increase mobility, be conducive to be cast into ingot, processing performance is had to obvious impact, can also play the effect that improves the tired bending property of Alloy Anti, extended the work-ing life of cable, preferably Ce and La, be because these two kinds of elements in the present invention effect compared with other rare earth elements, to improve effect more obvious.
Apply above-mentioned aluminum alloy materials and prepare the method for aluminium alloy core, concrete steps are as follows:
A, founding: add according to the above ratio al alloy component, after melting is processed at 730 ℃, at 670 ℃, carry out ingot casting, then be rolled into rod of metal alloy through solution treatment and ageing treatment, the ageing treatment here is preferably carried out at 140 ℃ or higher temperature,
B, wire drawing: the rod of metal alloy being obtained by a is carried out to temperature 150-180 ℃, the process annealing of 4-6 hour, this is when guaranteeing the intensity of alloy, improves its tensile property, resistance to bend(ing) energy strengthens alloy plasticity-, improves subsequent technique efficiency.Here we by rod of metal alloy wire drawing the alloy filaments to Ф 0.3mm.
C, annealing: by after the filament tow strand being made by b in annealing furnace, at 280-320 ℃, be incubated 5-8 hour, annealing time reaches after requirement, the time of being down to 100 ℃ from annealing temperature is more than 15 minutes, and under treatment condition, Ti has miniaturization material effects like this, carry heavy alloyed processing tensile property, and raising creep-resistant property, the Fe of sosoloid form amount is few in addition, and the conductivity of the conductor that makes to anneal is excellent.
Above-mentioned aluminium alloy is by material, and after melting, casting, solid solution and ageing treatment, rolling technology, the aluminium alloy resistance rate obtaining is 0.027352 Ω mm 2/ m, electric conductivity 62.9%IACS, elongation at break is 17%, under 140 ℃ of temperature, 120MPa stress condition, the average creep rate of 1-100 hour is 0.91 * 10 -3(%/h), and the tired bending of 90 degree number of times reach 33.
Embodiment 4
An automotive line aluminium alloy, the weight percent of component and each component following (gross weight: 1T):
Component Fe Cu Ti Si RE Al
Weight (Kg) 8.0 4.0 1.0 0.70 2.3 984.00
Weight percent (%) 0.80 0.40 0.10 0.07 0.23 98.40
In above-mentioned aluminum alloy materials, preferably add a certain amount of RE element, wherein Ce, La account for 65% in RE total content, rare earth can significantly improve the electrical property of alloy, and middle-weight rare earths of the present invention adds in aluminium alloy, increases constitutional supercooling while making aluminum alloy melt casting, crystal grain thinning, reduce secondary intergranular distance, reduce the gas in alloy and be mingled with, and make to be mingled with and be tending towards mutually nodularization.Also can reduce smelt surface tension, increase mobility, be conducive to be cast into ingot, processing performance is had to obvious impact, can also play the effect that improves the tired bending property of Alloy Anti, extended the work-ing life of cable, preferably Ce and La, be because these two kinds of elements in the present invention effect compared with other rare earth elements, to improve effect more obvious.
Apply above-mentioned aluminum alloy materials and prepare the method for aluminium alloy core, concrete steps are as follows:
A, founding: add according to the above ratio al alloy component, after melting is processed at 730 ℃, at 670 ℃, carry out ingot casting, then be rolled into rod of metal alloy through solution treatment and ageing treatment, the ageing treatment here is preferably carried out at 140 ℃ or higher temperature,
B, wire drawing: the rod of metal alloy being obtained by a is carried out to temperature 150-180 ℃, the process annealing of 4-6 hour, this is when guaranteeing the intensity of alloy, improves its tensile property, resistance to bend(ing) energy strengthens alloy plasticity-, improves subsequent technique efficiency.Here we by rod of metal alloy wire drawing the alloy filaments to Ф 0.3mm.
C, annealing: by after the filament tow strand being made by b in annealing furnace, at 280-320 ℃, be incubated 5-8 hour, annealing time reaches after requirement, the time of being down to 100 ℃ from annealing temperature is more than 15 minutes, and under treatment condition, Ti has miniaturization material effects like this, carry heavy alloyed processing tensile property, and raising creep-resistant property, the Fe of sosoloid form amount is few in addition, and the conductivity of the conductor that makes to anneal is excellent.
Above-mentioned aluminium alloy is by material, and after melting, casting, solid solution and ageing treatment, rolling technology, the aluminium alloy resistance rate obtaining is 0.027735 Ω mm 2/ m, electric conductivity 62.6%IACS, elongation at break is 17%, under 140 ℃ of temperature, 120MPa stress condition, the average creep rate of 1-100 hour is 0.82 * 10 -3(%/h), and the tired bending of 90 degree number of times reach 37.
Embodiment 5
An automotive line aluminium alloy, the weight percent of component and each component following (gross weight: 1T):
Component Fe Cu Ti Si RE Al
Weight (Kg) 12 4.8 1.2 0.40 2.3 979.3
Weight percent (%) 1.2 0.48 0.12 0.04 0.23 97.93
In above-mentioned aluminum alloy materials, preferably add a certain amount of RE element, wherein Ce, La account for 70% in RE total content, rare earth can significantly improve the electrical property of alloy, and middle-weight rare earths of the present invention adds in aluminium alloy, increases constitutional supercooling while making aluminum alloy melt casting, crystal grain thinning, reduce secondary intergranular distance, reduce the gas in alloy and be mingled with, and make to be mingled with and be tending towards mutually nodularization.Also can reduce smelt surface tension, increase mobility, be conducive to be cast into ingot, processing performance is had to obvious impact, can also play the effect that improves the tired bending property of Alloy Anti, extended the work-ing life of cable, preferably Ce and La, be because these two kinds of elements in the present invention effect compared with other rare earth elements, to improve effect more obvious.
Apply above-mentioned aluminum alloy materials and prepare the method for aluminium alloy core, concrete steps are as follows:
A, founding: add according to the above ratio al alloy component, after melting is processed at 730 ℃, at 670 ℃, carry out ingot casting, then be rolled into rod of metal alloy through solution treatment and ageing treatment, the ageing treatment here is preferably carried out at 140 ℃ or higher temperature,
B, wire drawing: the rod of metal alloy being obtained by a is carried out to temperature 150-180 ℃, the process annealing of 4-6 hour, this is when guaranteeing the intensity of alloy, improves its tensile property, resistance to bend(ing) energy strengthens alloy plasticity-, improves subsequent technique efficiency.Here we by rod of metal alloy wire drawing the alloy filaments to Ф 0.3mm.
C, annealing: by after the filament tow strand being made by b in annealing furnace, at 280-320 ℃, be incubated 5-8 hour, annealing time reaches after requirement, the time of being down to 100 ℃ from annealing temperature is more than 15 minutes, and under treatment condition, Ti has miniaturization material effects like this, carry heavy alloyed processing tensile property, and raising creep-resistant property, the Fe of sosoloid form amount is few in addition, and the conductivity of the conductor that makes to anneal is excellent.
Above-mentioned aluminium alloy is by material, and after melting, casting, solid solution and ageing treatment, rolling technology, the aluminium alloy resistance rate obtaining is 0.027392 Ω mm 2/ m, electric conductivity 62.2%IACS, elongation at break is 16%, under 140 ℃ of temperature, 120MPa stress condition, the average creep rate of 1-100 hour is 0.61 * 10 -3(%/h), and the tired bending of 90 degree number of times reach 31.
Embodiment 6
An automotive line aluminium alloy, the weight percent of component and each component following (gross weight: 1T):
Component Fe Cu Ti Si RE Al
Weight (Kg) 6.0 3.0 0.87 0.5 2.0 987.63
Weight percent (%) 0.6 0.3 0.087 0.05 0.2 98.763
In above-mentioned aluminum alloy materials, preferably add a certain amount of RE element, wherein Ce, La account for 60% in RE total content, rare earth can significantly improve the electrical property of alloy, and middle-weight rare earths of the present invention adds in aluminium alloy, increases constitutional supercooling while making aluminum alloy melt casting, crystal grain thinning, reduce secondary intergranular distance, reduce the gas in alloy and be mingled with, and make to be mingled with and be tending towards mutually nodularization.Also can reduce smelt surface tension, increase mobility, be conducive to be cast into ingot, processing performance is had to obvious impact, can also play the effect that improves the tired bending property of Alloy Anti, extended the work-ing life of cable, preferably Ce and La, be because these two kinds of elements in the present invention effect compared with other rare earth elements, to improve effect more obvious.
Apply above-mentioned aluminum alloy materials and prepare the method for aluminium alloy core, concrete steps are as follows:
A, founding: add according to the above ratio al alloy component, after melting is processed at 730 ℃, at 670 ℃, carry out ingot casting, then be rolled into rod of metal alloy through solution treatment and ageing treatment, the ageing treatment here is preferably carried out at 140 ℃ or higher temperature,
B, wire drawing: the rod of metal alloy being obtained by a is carried out to temperature 150-180 ℃, the process annealing of 4-6 hour, this is when guaranteeing the intensity of alloy, improves its tensile property, resistance to bend(ing) energy strengthens alloy plasticity-, improves subsequent technique efficiency.Here we by rod of metal alloy wire drawing the alloy filaments to Ф 0.2mm.
C, annealing: by after the filament tow strand being made by b in annealing furnace, at 280-320 ℃, be incubated 5-8 hour, annealing time reaches after requirement, the time of being down to 100 ℃ from annealing temperature is more than 15 minutes, and under treatment condition, Ti has miniaturization material effects like this, carry heavy alloyed processing tensile property, and raising creep-resistant property, the Fe of sosoloid form amount is few in addition, and the conductivity of the conductor that makes to anneal is excellent.
Above-mentioned aluminium alloy is by material, and after melting, casting, solid solution and ageing treatment, rolling technology, the aluminium alloy resistance rate obtaining is 0.027792 Ω mm 2/ m, electric conductivity 61.9%IACS, elongation at break is 13%, under 140 ℃ of temperature, 120MPa stress condition, the average creep rate of 1-100 hour is 0.76 * 10 -3(%/h), and the tired bending of 90 degree number of times reach 35.
The foregoing is only preferred embodiment of the present invention, not in order to limit the present invention, all any modifications of doing, be equal to replacement etc., within all should being included in protection scope of the present invention in protection scope of the present invention.

Claims (8)

1. an automotive line Al-Fe-Cu-Ti aluminium alloy, is characterized in that: comprise following composition:
Fe, content is 0.2-1.4wt%,
Cu, content is 0.01-0.5wt%,
Ti, content is 0.001-0.2wt%,
Surplus is Al and inevitable impurity.
2. a kind of automotive line Al-Fe-Cu-Ti aluminium alloy according to claim 1, is characterized in that: described alloy also contains the Si that is no more than 0.1wt%.
3. a kind of automotive line Al-Fe-Cu-Ti aluminium alloy according to claim 1, is characterized in that: in described alloy, also contain the RE of 0.1-0.3wt%, wherein Ce, La account for the more than 50% of total amount of rare earth.
4. according to a kind of automotive line Al-Fe-Cu-Ti aluminium alloy described in claim 1 or 2 or 3, it is characterized in that: described aluminium alloy resistance rate is not more than 0.028264 Ω mm 2/ m, elongation at break is not less than 10%, and under 140 ℃ of temperature, 120MPa stress condition, the average creep rate of 1-100 hour is 1 * 10 -3(%/h) or lower, and the tired bending of 90 degree number of times reach 30 or higher.
5. an automotive wire bundle that utilizes the aluminium alloy described in claim 4 and make, is characterized in that: described conductor thread core is formed by the filament tow strand of 10-1000 root 0.2-0.5mm.
6. wire harness according to claim 5, is characterized in that: described insulation layer extrudes one deck sheath outward, and insulation and sheath material adopt polyvinyl chloride, polyvinyl chloride-butyronitrile polymkeric substance, polymeric amide, fluorinated ethylene propylene or polypropylene material.
7. wire harness according to claim 6, is characterized in that: under can be used for-40-150 of described automotive wire bundle ℃ environment.
8. wire harness according to claim 7, is characterized in that: described automotive wire bundle can be used as store battery cable, wire harness or the engine cable in moving body carrier.
CN201310733330.7A 2013-12-26 2013-12-26 Al-Fe-Cu-Ti aluminum alloy for automotive wire and wiring harness thereof Pending CN103757489A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201310733330.7A CN103757489A (en) 2013-12-26 2013-12-26 Al-Fe-Cu-Ti aluminum alloy for automotive wire and wiring harness thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201310733330.7A CN103757489A (en) 2013-12-26 2013-12-26 Al-Fe-Cu-Ti aluminum alloy for automotive wire and wiring harness thereof

Publications (1)

Publication Number Publication Date
CN103757489A true CN103757489A (en) 2014-04-30

Family

ID=50524803

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201310733330.7A Pending CN103757489A (en) 2013-12-26 2013-12-26 Al-Fe-Cu-Ti aluminum alloy for automotive wire and wiring harness thereof

Country Status (1)

Country Link
CN (1) CN103757489A (en)

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104294095A (en) * 2014-09-15 2015-01-21 安徽欣意电缆有限公司 Al-Fe-Cu-Mg-Zr series aluminum alloy for cables for coal mines and aluminum alloy cable
CN104299670A (en) * 2014-09-15 2015-01-21 安徽欣意电缆有限公司 Al-Fe-Cu-Mn aluminum alloy for coal mine cable and aluminum alloy cable
CN104294114A (en) * 2014-09-15 2015-01-21 安徽欣意电缆有限公司 Al-Fe-Mg-Mn series aluminum alloy for cables for coal mines and aluminum alloy cable
CN104294091A (en) * 2014-09-15 2015-01-21 安徽欣意电缆有限公司 Al-Fe-Cu-Zr series aluminum alloy for cables for coal mines and aluminum alloy cable
CN104294093A (en) * 2014-09-15 2015-01-21 安徽欣意电缆有限公司 Al-Fe-Cu-Mg aluminum alloy for cables for coal mines, aluminum alloy cable and preparation method of alloy cable
CN104294096A (en) * 2014-09-15 2015-01-21 安徽亚南电缆厂 Al-Fe-Cu-Mg-Cr series aluminum alloy for cables for coal mines and aluminum alloy cable
CN105976889A (en) * 2016-06-20 2016-09-28 新疆众和股份有限公司 Aluminum alloy for cables and preparation method and application thereof
CN107653402A (en) * 2017-09-12 2018-02-02 深圳市中金环保科技有限公司 A kind of coal mine cable Al Fe Cu Ti aluminium alloys and aluminium alloy cable and preparation method

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3512221A (en) * 1969-04-07 1970-05-19 Southwire Co Aluminum alloy wire
JPS5245514A (en) * 1975-08-01 1977-04-11 Sumitomo Electric Ind Ltd Production process of electric conductor made of aluminium alloy
CN101886198A (en) * 2010-07-13 2010-11-17 安徽欣意电缆有限公司 High-conductivity aluminum alloy material for cable and preparation method thereof
CN102119233A (en) * 2008-08-11 2011-07-06 住友电气工业株式会社 Aluminum alloy wire

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3512221A (en) * 1969-04-07 1970-05-19 Southwire Co Aluminum alloy wire
JPS5245514A (en) * 1975-08-01 1977-04-11 Sumitomo Electric Ind Ltd Production process of electric conductor made of aluminium alloy
CN102119233A (en) * 2008-08-11 2011-07-06 住友电气工业株式会社 Aluminum alloy wire
CN101886198A (en) * 2010-07-13 2010-11-17 安徽欣意电缆有限公司 High-conductivity aluminum alloy material for cable and preparation method thereof

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104294095A (en) * 2014-09-15 2015-01-21 安徽欣意电缆有限公司 Al-Fe-Cu-Mg-Zr series aluminum alloy for cables for coal mines and aluminum alloy cable
CN104299670A (en) * 2014-09-15 2015-01-21 安徽欣意电缆有限公司 Al-Fe-Cu-Mn aluminum alloy for coal mine cable and aluminum alloy cable
CN104294114A (en) * 2014-09-15 2015-01-21 安徽欣意电缆有限公司 Al-Fe-Mg-Mn series aluminum alloy for cables for coal mines and aluminum alloy cable
CN104294091A (en) * 2014-09-15 2015-01-21 安徽欣意电缆有限公司 Al-Fe-Cu-Zr series aluminum alloy for cables for coal mines and aluminum alloy cable
CN104294093A (en) * 2014-09-15 2015-01-21 安徽欣意电缆有限公司 Al-Fe-Cu-Mg aluminum alloy for cables for coal mines, aluminum alloy cable and preparation method of alloy cable
CN104294096A (en) * 2014-09-15 2015-01-21 安徽亚南电缆厂 Al-Fe-Cu-Mg-Cr series aluminum alloy for cables for coal mines and aluminum alloy cable
CN104294096B (en) * 2014-09-15 2017-09-08 安徽亚南电缆厂 Coal mine cable Al Fe Cu Mg Cr line aluminium alloys and aluminium alloy cable
CN105976889A (en) * 2016-06-20 2016-09-28 新疆众和股份有限公司 Aluminum alloy for cables and preparation method and application thereof
CN107653402A (en) * 2017-09-12 2018-02-02 深圳市中金环保科技有限公司 A kind of coal mine cable Al Fe Cu Ti aluminium alloys and aluminium alloy cable and preparation method

Similar Documents

Publication Publication Date Title
CN103757489A (en) Al-Fe-Cu-Ti aluminum alloy for automotive wire and wiring harness thereof
JP6462662B2 (en) Aluminum alloy wire, aluminum alloy twisted wire, covered electric wire, wire harness, and aluminum alloy wire manufacturing method
JP6499190B2 (en) Aluminum alloy wire, aluminum alloy stranded wire, covered electric wire, wire harness, and aluminum alloy wire manufacturing method
WO2016088888A1 (en) Aluminum alloy wire rod, aluminum alloy stranded conductor, covered conductor, and wire harness, and method for manufacturing aluminum alloy wire rod
US20100294534A1 (en) Conductor wire for electronic apparatus and electrical wire for wiring using the same
WO2014125677A1 (en) Copper alloy wire, copper-alloy strand wire, coated electric wire, and electric wire with terminal
CN104294091A (en) Al-Fe-Cu-Zr series aluminum alloy for cables for coal mines and aluminum alloy cable
CN104294095A (en) Al-Fe-Cu-Mg-Zr series aluminum alloy for cables for coal mines and aluminum alloy cable
CN104294090A (en) Al-Fe-Cu-Mg-Ag aluminum alloy for coal cables, aluminum alloy cable and preparation method thereof
CN104299673A (en) Al-Fe-Mg-Zr aluminum alloy used for coal mine cables, aluminum alloy cable and manufacturing method
CN104299669B (en) Coal mine cable Al Fe Cu Mg Mn line aluminium alloys and aluminium alloy cable
CN103757485A (en) Al-Fe-Cu-Mg aluminum alloy and low-voltage cable manufactured by alloy
CN104294094A (en) Al-Fe-Cu-Zr series aluminum alloy for cables for coal mines and aluminum alloy cable
CN103725930A (en) Al-Fe-Cu-Mg-Be alumium alloy for automobile wire and wiring harness therefore
CN104299670A (en) Al-Fe-Cu-Mn aluminum alloy for coal mine cable and aluminum alloy cable
CN104299674A (en) Al-Fe-Cu aluminum alloy for coal mine cable and aluminum alloy cable
CN104294089A (en) Al-Fe-Cu-Mg-Zr series aluminum alloy for cables for coal mines and aluminum alloy cable
CN103757488A (en) Al-Fe-Mg-Ca aluminum alloy for automobile wire and wire harness thereof
CN103757487A (en) Al-Fe-Mg-Ni aluminum alloy for automobile wire and wire harness thereof
CN103757492A (en) Al-Fe-Cu-Mg series aluminum alloy for automobile wire and wiring harness
CN103757490A (en) Al-Fe-Cu-Zn aluminum alloy for automobile wire and wire harness thereof
CN103757493A (en) Al-Fe-Cu-Ni aluminum alloy for automotive wire and wire harness thereof
CN104299672A (en) Al-Fe-Mg aluminum alloy for coal mine cable and aluminum alloy cable
CN103725928A (en) Al-Fe-Cu-Mg-Zn aluminum alloy for automobile wires and wire harness of Al-Fe-Cu-Mg-Zn aluminum alloy
CN103757486A (en) Al-Fe-Mg-V aluminum alloy for automotive wire and wiring harness prepared from aluminum alloy

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination