JP3453607B2 - High-strength aluminum alloy extruded material with excellent chip breaking performance - Google Patents

High-strength aluminum alloy extruded material with excellent chip breaking performance

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Publication number
JP3453607B2
JP3453607B2 JP01939196A JP1939196A JP3453607B2 JP 3453607 B2 JP3453607 B2 JP 3453607B2 JP 01939196 A JP01939196 A JP 01939196A JP 1939196 A JP1939196 A JP 1939196A JP 3453607 B2 JP3453607 B2 JP 3453607B2
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JP
Japan
Prior art keywords
mass
aluminum alloy
extruded material
alloy
machinability
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.)
Expired - Fee Related
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JP01939196A
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Japanese (ja)
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JPH09194977A (en
Inventor
伸二 吉原
正和 平野
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Kobe Steel Ltd
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Kobe Steel Ltd
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Priority to JP01939196A priority Critical patent/JP3453607B2/en
Publication of JPH09194977A publication Critical patent/JPH09194977A/en
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Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【発明の属する技術分野】本発明は、切削性、特に切粉
分断性に優れる高力アルミニウム合金押出材に関するも
のである。
BACKGROUND OF THE INVENTION The present invention is, cutting ability, especially chips
The present invention relates to a high-strength aluminum alloy extruded material having excellent partitioning properties .

【0002】[0002]

【従来の技術】アルミニウム合金のうち特に2000系
のAl−Cu合金を中心とした熱処理型合金は高い機械
的性質をもち、航空機等の各種構造材としての使用実績
が多い。この系の合金の一般的な加工法として切削加工
や穴あけ加工を施される場合が多いが、例えば2014
合金や2024合金等は切削時に発生する切粉が分断さ
れにくいため切削性が劣り、複雑な切削や穴あけ加工す
る機械部品への採用が困難であった。
2. Description of the Related Art Among aluminum alloys, heat treatment type alloys centering on 2000 series Al-Cu alloys have high mechanical properties and have been used as various structural materials for aircrafts. As a general processing method for this type of alloy, cutting or drilling is often performed.
Alloys and 2024 alloys, etc., have poor machinability because the chips generated during cutting are difficult to divide, and it has been difficult to employ them in machine parts for complex cutting and drilling.

【0003】一方、この系のアルミニウム合金の切削性
を向上させるためには、従来は例えばAA2011合金
(Cu:5.0〜6.0質量%、Pb:0.2〜0.6
質量%、Bi:0.2〜0.6質量%、残部Al)のよ
うに、Pb、Bi、Sn等の低融点金属が添加された。
これら低融点金属はアルミニウム中にほとんど固溶せ
ず、アルミニウム合金中に粒状に存在し、その低融点金
属粒子が切削加工時の加工発熱により溶融して切粉を分
断し、アルミニウム合金の切削性を向上させる。
On the other hand, in order to improve the machinability of this type of aluminum alloy, conventionally, for example, AA2011 alloy (Cu: 5.0 to 6.0 mass%, Pb: 0.2 to 0.6) was used.
%, Bi: 0.2 to 0.6% by mass, balance Al), and low-melting-point metals such as Pb, Bi, and Sn were added.
These low-melting-point metals hardly form a solid solution in aluminum and exist in granular form in the aluminum alloy.The low-melting-point metal particles are melted by the heat generated during the cutting process to cut the chips and cut the aluminum alloy. Improve.

【0004】[0004]

【発明が解決しようとする課題】ところが、これらの低
融点金属を含むアルミニウム合金は切削性が向上する反
面耐食性が十分とはいえず、また、低融点金属は熱脆性
を引き起こす欠点もあり、使用環境に十分な注意を払う
必要があった。さらに、低融点金属を含むアルミニウム
合金は溶解用スクラップとしてリサイクルされる場合、
Pb、Bi等を必要とする比較的少ない合金種にしか転
用ができず、転用範囲が狭まるためにリサイクル性に不
利であるという課題も有している。また、機械部品は耐
食性、耐摩耗性又は装飾効果を高めるために、表面にア
ルマイト処理を施す場合があるが、PbやBiが添加さ
れたアルミニウム合金の場合、表面にPbやBiが露出
した箇所において酸化皮膜が形成されず、不均質で光沢
のないアルマイト皮膜しか得られないという問題があ
る。
However, although aluminum alloys containing these low melting point metals have improved machinability, they cannot be said to have sufficient corrosion resistance, and low melting point metals have the drawback of causing thermal embrittlement. It was necessary to pay sufficient attention to the environment. In addition, aluminum alloys containing low-melting metals, when recycled as scrap for melting,
There is also a problem that it can be diverted only to a relatively small alloy type that requires Pb, Bi, etc., and the diverted range is narrowed, which is disadvantageous in recyclability. Mechanical parts may be anodized on the surface in order to improve corrosion resistance, wear resistance or decorative effect. However, in the case of an aluminum alloy containing Pb or Bi, a part where Pb or Bi is exposed on the surface is exposed. However, there is a problem in that an oxide film is not formed, and only an alumite film that is inhomogeneous and has no gloss is obtained.

【0005】本発明は上記従来技術の問題点に鑑みてな
されたもので、従来の2014合金や2024合金と同
等の機械的性質及び耐食性を備え、しかも切削性(本発
明では特に切粉分断性を意味する)に優れる高力アルミ
ニウム合金押出材を得ることを目的とする。同時に、リ
サイクル性が高く、均質で光沢のあるアルマイト皮膜を
形成することのできる切削性に優れた高力アルミニウム
合金押出材を得ることを目的とする。
[0005] The present invention has been made in view of the problems of the prior art, equipped with mechanical properties and corrosion resistance equivalent to that of the conventional 2014 alloy and 2024 alloy, moreover machinability (the onset
The purpose of the present invention is to obtain a high-strength aluminum alloy extruded material which is particularly excellent in chip breaking property . At the same time, it is an object to obtain a high-strength aluminum alloy extruded material having high recyclability and capable of forming a uniform and glossy alumite coating and excellent in machinability.

【0006】[0006]

【課題を解決するための手段】本発明者らは前記課題を
解決するために鋭意研究を重ねた結果、AA2011合
金等の高切削性アルミニウム合金に切削性を向上させる
目的で添加されていたPb、Bi、Sn等の低融点金属
を添加せず、代わりにSi及びMg等を用いることで上
記目的を達成できることを見い出し、その知見を基に本
発明を完成するに至った。すなわち、本発明に関わる切
削性に優れる高力アルミニウム合金押出材は、Si:
2.0〜6.0質量%(3.0質量%以下を除く)、C
u:3.5〜6.0質量%、Mg:0.4〜0.8質量
%、Ti:0.01〜0.1質量%をそれぞれ含有し、
残部がAl及び不可避不純物からなる。また、本発明に
関わる切削性に優れる高力アルミニウム合金押出材は、
必要に応じて、上記合金元素に加え、Mn:0.5〜
1.5質量%を含有し、あるいは、Fe:0.5〜
1.0質量%、Cr:0.1〜0.5質量%、Zr:
0.1〜0.5質量%のうちいずれか1種以上を含有
し、あるいは、上記、の双方に挙げた元素を自由
に組み合わせて含有する。また、本発明に関わるアルマ
イト処理用アルミニウム合金押出材は、上記の切削性に
優れる高力アルミニウム合金押出材の用途をアルマイト
処理用に特定したものである。
As a result of intensive studies to solve the above-mentioned problems, the inventors of the present invention have found that Pb was added to a highly machinable aluminum alloy such as AA2011 alloy for the purpose of improving machinability. It was found that the above object can be achieved by using Si and Mg or the like instead of adding a low melting point metal such as Si, Bi and Sn, and based on the findings, the present invention has been completed. That is, the high-strength aluminum alloy extruded material excellent in machinability according to the present invention is Si:
2.0-6.0 mass% (excluding 3.0 mass% or less), C
u: 3.5 to 6.0% by mass, Mg: 0.4 to 0.8% by mass, Ti: 0.01 to 0.1% by mass , respectively,
The balance consists of Al and unavoidable impurities. Further, the high-strength aluminum alloy extruded material excellent in machinability according to the present invention,
If necessary, in addition to the above alloy elements, Mn: 0.5 to
Containing 1.5 wt%, or, Fe: 0.5 to
1.0% by mass, Cr: 0.1 to 0.5% by mass, Zr:
At least one of 0.1 to 0.5% by mass is contained, or the above-mentioned elements are freely combined and contained. In addition, the aluminum alloy extruded material for alumite treatment according to the present invention specifies the use of the above-mentioned high-strength aluminum alloy extruded material having excellent machinability for alumite treatment.

【0007】上記の切削性に優れる高力アルミニウム合
金は、機械的性質が優れるものの切削性が劣るため多く
の機械部品などへの適用ができなかった従来の2014
合金や2024合金と比較すると、機械的性質、耐食性
が同等で、切削性が著しく改善された熱処理型アルミニ
ウム合金であり、複雑な切削加工を可能とする合金であ
る。そして、切粉の分断性がよく、長い切粉による工具
への切粉の巻き付き等のトラブルが発生しない。また、
切削性向上のためPb、Bi等の低融点金属を添加して
いないので、AA2011合金と比較して高耐食、高ア
ルマイト処理性であり、熱脆性も生じ得ず、リサイクル
性も阻害されない。なお、上記アルミニウム合金は、常
法に従い、例えば、溶解、鋳造、均質化処理を施した後
押出加工を行い、これに溶体化、焼入れ、時効処理を施
し所定の強度を与えた後、切削加工に供することができ
る。
The above-mentioned high-strength aluminum alloy having excellent machinability has excellent mechanical properties, but is inferior in machinability and cannot be applied to many machine parts.
Compared with the alloy and 2024 alloy, it is a heat-treatable aluminum alloy that has the same mechanical properties and corrosion resistance and has significantly improved machinability, and is an alloy that enables complex cutting. Further, the cutting ability of the cutting chips is good, and troubles such as winding of the cutting chips around the tool due to long cutting chips do not occur. Also,
Since no low-melting-point metal such as Pb or Bi is added to improve machinability, it has higher corrosion resistance and higher alumite processability than the AA2011 alloy, does not cause thermal embrittlement, and does not impair recyclability. Incidentally, the aluminum alloy, in accordance with a conventional method, for example, subjected to melting, casting, homogenization treatment, then extrusion processing, solution treatment, quenching, aging treatment to give a predetermined strength, then cutting Can be used for

【0008】次に、上記アルミニウム合金における各元
素の添加理由及び添加量の限定理由を説明する。
Next, the reason for adding each element and the reason for limiting the amount added in the aluminum alloy will be described.

【0009】Si:1.5〜12.0質量% Siはアルミニウム組織中にSi系の化合物を形成さ
せ、切粉分断をよくし、切削性を向上させる。これはS
i系化合物が歪み伝播の起点となるためである。Si添
加下限値は、アルミニウム中での固溶限である1.5%
を越えていることが必要であり、Siによる効果を明確
にさせるためには2.0%以上の添加が望ましい。一
方、Siの添加上限は、粗大な初晶Siが生じ変形抵抗
が増加することによる押出性の低下や押出材の脆化を招
かないために、共晶点の12.0%より少なくする必要
があり、特に押出生産性が良好な6%以下が望ましい。
Si: 1.5 to 12.0 mass% Si forms a Si-based compound in the aluminum structure, improves cutting of chips and improves machinability. This is S
This is because the i-based compound becomes a starting point of strain propagation. The lower limit of Si addition is 1.5%, which is the solid solubility limit in aluminum.
It is necessary to exceed 2.0%, and in order to clarify the effect of Si, addition of 2.0% or more is desirable. On the other hand, the upper limit of addition of Si must be less than 12.0% of the eutectic point in order to prevent the deterioration of extrudability and the embrittlement of the extruded material due to the formation of coarse primary crystal Si and the increase in deformation resistance. 6% or less, which is particularly favorable for extrusion productivity.

【0010】Cu:3.5〜6.0質量% Cuは熱処理により強度を高めるとともに、歪み硬化能
を向上させるため切粉分断を助長する。Cu含有量が
3.5%未満ではその効果に乏しく、一方6.0%を越
えて添加すると耐食性が低下し、また押出性も低下す
る。特に強度と良好な耐食性及び押出性を確保するとの
観点から、3.8%以上、5.5%以下が望まれる。
Cu: 3.5 to 6.0% by Mass Cu enhances strength by heat treatment and enhances strain hardening ability to promote cutting of chips. If the Cu content is less than 3.5%, its effect is poor, while if it is added in excess of 6.0%, the corrosion resistance decreases and the extrudability also decreases. Particularly, from the viewpoint of securing strength and good corrosion resistance and extrudability, 3.8% or more and 5.5% or less are desired.

【0011】Mg:0.4〜1.0質量% MgはSiとの共存によって熱処理時にMg2Siとな
って析出し、強度を高める効果がある。Mg含有量が
0.4%未満ではその効果が得られず、一方、1.0%
を越えて添加すると押出性が低下する。特に強度と良好
な押出性を確保するとの観点から、0.6%以上、0.
8%以下が望まれる。
Mg: 0.4 to 1.0% by mass Mg coexists with Si and becomes Mg 2 Si during heat treatment to be precipitated, which has the effect of increasing strength. If the Mg content is less than 0.4%, the effect cannot be obtained, while 1.0%
If it is added over the range, the extrudability decreases. In particular, from the viewpoint of securing strength and good extrudability, 0.6% or more, 0.
8% or less is desired.

【0012】Mn:0.5〜1.5質量% Mnは固溶体化して素材の強度を高める効果があり、ま
た、歪硬化能を向上させるため切粉分断を助長する効果
を持つ。しかし、Mn含有量が0.5%未満では十分な
効果が得られず、一方、1.5%を越えて添加すると押
出性が低下する。特に強度と良好な押出性を確保すると
の観点から、0.7%以上、1.3%以下が望まれる。
Mn: 0.5 to 1.5% by mass Mn has the effect of forming a solid solution to increase the strength of the material, and also has the effect of promoting cutting of chips in order to improve the strain hardening ability. However, if the Mn content is less than 0.5%, a sufficient effect cannot be obtained, while if it is added over 1.5%, the extrudability deteriorates. Particularly, from the viewpoint of securing strength and good extrudability, 0.7% or more and 1.3% or less are desired.

【0013】Ti:0.01〜0.1質量% Tiは鋳造組織を微細化して機械的性質を安定化する。
しかし、Ti含有量が0.01%未満ではその効果が得
られず、一方0.1%を越えて添加してもその効果は飽
和する。
Ti: 0.01-0.1 mass% Ti refines the cast structure and stabilizes the mechanical properties.
However, if the Ti content is less than 0.01%, the effect cannot be obtained, while if added over 0.1%, the effect is saturated.

【0014】Fe:0.5〜1.0質量%、Cr:0.
1〜0.5質量%、Zr:0.1〜0.5質量% Fe、Cr、ZrはそれぞれAlとの化合物を形成し、
切粉分断の起点となって切削性を向上させる。含有量が
それぞれ下限値未満ではその効果が十分でなく、一方、
上限値を越えると粗大な化合物を生成し押出性が低下す
る。
Fe: 0.5 to 1.0% by mass, Cr: 0.
1 to 0.5% by mass, Zr: 0.1 to 0.5% by mass Fe, Cr, and Zr each form a compound with Al,
Improves machinability by becoming the starting point for cutting chips. If the content is less than the lower limit, the effect is not sufficient, on the other hand,
If it exceeds the upper limit, a coarse compound is formed and the extrudability deteriorates.

【0015】また、上記アルミニウム合金の不可避不純
物としては、JISH4040に規定する化学成分に準
じ、Pb、Bi、Snは各々0.05質量%以下であれ
ば許容される。これらの成分は多く含まれると上記アル
ミニウム合金の耐食性及びアルマイト処理性を劣化させ
るが、上記範囲内であればこれらの特性に影響を与えな
い。また、他の不可避不純物も個々に0.05質量%以
下が許容される。
As the inevitable impurities of the aluminum alloy, Pb, Bi, and Sn are each allowed to be 0.05 mass% or less in accordance with the chemical composition defined in JIS H4040. If a large amount of these components is contained, the corrosion resistance and the alumite processability of the aluminum alloy are deteriorated, but within the above range, these properties are not affected. Further, other unavoidable impurities are also allowed to be 0.05% by mass or less.

【0016】[0016]

【実施例】以下、本発明の実施例について、比較例と比
較して具体的に説明する。表1及び表2に示した化学組
成の合金を溶解し半連続鋳造により160mm径の押出
ビレットを作成し、470℃で4時間均質化熱処理を施
した後、400℃の押出温度で60mm径に押し出し、
これを500℃で1時間溶体化処理して水中に焼入れ自
然時効を行った。これを供試材とし、各々の機械的性
質、切削性、耐食性及びアルマイト処理性を下記の要領
で測定した。また、押出性をみるため上記押出では押出
荷重を一定(600トン)とし、その押出速度(押出材
が出てくるときの速度)を計測し、各押出材の押出性を
下記の要領で評価した。
EXAMPLES Examples of the present invention will be specifically described below in comparison with comparative examples. An alloy having the chemical composition shown in Table 1 and Table 2 was melted, an extruded billet having a diameter of 160 mm was prepared by semi-continuous casting, homogenized and heat-treated at 470 ° C. for 4 hours, and then extruded at a temperature of 400 ° C. to a diameter of 60 mm. Extrusion,
This was solution treated at 500 ° C. for 1 hour, quenched in water, and then subjected to natural aging. Using this as a test material, the mechanical properties, machinability, corrosion resistance and alumite treatment property of each were measured in the following manner. In addition, in order to check the extrudability, the extrusion load is fixed (600 tons) in the above extrusion, and the extrusion speed (speed at which the extruded material comes out) is measured, and the extrudability of each extruded material is evaluated as follows. did.

【0017】[0017]

【表1】 [Table 1]

【0018】[0018]

【表2】 [Table 2]

【0019】機械的性質;押出方向に採取したJIS4
号試験片を用い、JISZ2241に規定する金属材料
試験方法に準じ、引張強さ、耐力、及び伸びを測定し
た。 切削性;市販の高速度鋼製の4mm径ドリルを用い、回
転数1500mm/分、送り300mm/分の条件にて
切削し、ドリルへの巻き付き発生の有無を観察するとと
もに、切粉分断性を調べるために切粉100個当りの重
量を測定した。 耐食性;72時間のCASS試験(5%食塩水に塩化第
二銅を100ppm添加し、さらに酢酸にてpH=3に
調整した液を50℃にて噴霧)による単位面積当りの重
量減少を測定した。 アルマイト処理性:研磨した供試材表面に硫酸アルマイ
ト処理を施し、酸化皮膜の厚さを10μmにして表面の
光沢を観察した。 押出性;押出速度の値が5m/分より大のとき◎(優れ
ている)、2〜5m/分のとき○(使用可能である)、
2m/分より小のとき×(使用に耐えない)と評価し
た。
Mechanical properties: JIS4 sampled in the extrusion direction
Tensile strength, proof stress, and elongation were measured using the No. test piece according to the metal material test method specified in JISZ2241. Machinability; using a commercially available high-speed steel 4 mm diameter drill, cutting at a rotation speed of 1500 mm / min and a feed of 300 mm / min, and observing the occurrence of wrapping around the drill, as well as chip cutting property. For inspection, the weight per 100 chips was measured. Corrosion resistance: A 72-hour CASS test (adding 100 ppm of cupric chloride to 5% saline and spraying a solution adjusted to pH = 3 with acetic acid at 50 ° C.) to measure weight reduction per unit area . Alumite treatment property: The polished sample surface was subjected to sulfuric acid alumite treatment to make the thickness of the oxide film 10 μm and the surface gloss was observed. Extrudability: ◎ (excellent) when the value of the extrusion speed is greater than 5 m / min, ○ (useable) when the value is 2 to 5 m / min,
When it was less than 2 m / min, it was evaluated as x (not usable).

【0020】これらの試験結果を表3及び表4に示す。
本発明の実施例に相当する合金1〜14は、いずれも優
れた切削性と耐食性を示し、これを比較例の合金24
(従来の2014合金に相当)及び合金25(従来の2
024合金に相当)と比較すると、切削性において著し
く優れ、同等の機械的性質を有し、耐食性でも同等ない
し優れている。また、押出材にはむしれや焼き付き痕は
なく表面性状は良好で、押出性も十分使用可能な範囲内
にある。
The test results are shown in Tables 3 and 4.
Alloys 1 to 14 corresponding to the examples of the present invention all showed excellent machinability and corrosion resistance, and this was confirmed to be alloy 24 of the comparative example.
(Corresponding to conventional 2014 alloy) and alloy 25 (conventional 2
(Compared to 024 alloy), it has remarkably excellent machinability, has the same mechanical properties, and has the same or excellent corrosion resistance. Further, the extruded material has no peeling or seizure marks, has a good surface property, and has an extrudability within a range in which it can be sufficiently used.

【0021】[0021]

【表3】 [Table 3]

【0022】[0022]

【表4】 [Table 4]

【0023】これに対し、比較例の合金15〜26は組
成が本発明の範囲外の合金であり、いずれも何らかの特
性が実施例合金1〜14に比べ劣っている。すなわち、
合金16はSiの含有量が不足のため切削性に劣り(切
粉の分断性が劣り、切粉の巻き付きがある)、合金1
5、17、19、21〜23は、それぞれSi、Mg、
Cu、Fe、Cr、Zrが過剰なため押出性に劣り、合
金19は耐食性にも劣る。また、従来の合金24、25
は切削性に劣り、Pb及びBiを添加した合金26(従
来のAA2011合金に相当)は切削性は改善されてい
るが耐食性及びアルマイト処理性が悪い。
On the other hand, the alloys 15 to 26 of the comparative examples are alloys whose compositions are out of the range of the present invention, and some properties are inferior to those of the example alloys 1 to 14. That is,
Alloy 16 is inferior in machinability due to insufficient Si content (inferior cutting ability of cutting chips and winding of cutting chips).
5, 17, 19, 21 to 23 are Si, Mg, and
Since Cu, Fe, Cr and Zr are excessive, the extrudability is poor and the alloy 19 is also poor in corrosion resistance. Also, conventional alloys 24, 25
Is poor in machinability, and alloy 26 containing Pb and Bi (corresponding to the conventional AA2011 alloy) has improved machinability but poor corrosion resistance and alumite treatment.

【0024】[0024]

【発明の効果】このように、本発明に関わるアルミニウ
ム合金は、2014合金、2024合金に比べて切削性
が著しく優れ、機械的性質、耐食性が同等に優れる熱処
理型合金である。そして、長い切粉の巻き付き等のトラ
ブルが発生せず、しかも従来のAA2011合金のよう
にPb、Biを使用せずに切削性を向上させているの
で、低融点金属に起因する熱脆性も生じ得ず、アルマイ
ト処理性に優れ、リサイクル性も高いので、従来AA2
011合金が使用されていた各用途に適用できる高力ア
ルミニウム合金として工業的価値がきわめて大きい。
INDUSTRIAL APPLICABILITY As described above, the aluminum alloy according to the present invention is a heat-treatable alloy which has remarkably excellent machinability, mechanical properties, and corrosion resistance as compared with 2014 alloy and 2024 alloy. Further, since troubles such as long wrapping of chips do not occur, and the machinability is improved without using Pb and Bi unlike the conventional AA2011 alloy, thermal embrittlement due to the low melting point metal also occurs. Since it is not obtained, it has excellent anodizing property and high recyclability.
The industrial value is extremely high as a high-strength aluminum alloy that can be applied to each application in which the 011 alloy has been used.

フロントページの続き (56)参考文献 特開 昭61−259830(JP,A) (58)調査した分野(Int.Cl.7,DB名) C22C 21/00,21/02 C25D 11/04 Continuation of front page (56) References JP-A-61-259830 (JP, A) (58) Fields investigated (Int.Cl. 7 , DB name) C22C 21 / 00,21 / 02 C25D 11/04

Claims (4)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 Si:2.0〜6.0質量%(3.0質
量%以下を除く)、Cu:3.5〜6.0質量%、M
g:0.4〜0.8質量%、Ti:0.01〜0.1質
量%をそれぞれ含有し、残部がAl及び不可避不純物か
らなることを特徴とする切粉分断性に優れる高力アルミ
ニウム合金押出材。
1. Si: 2.0 to 6.0 mass% (excluding 3.0 mass% or less), Cu: 3.5 to 6.0 mass%, M
g: 0.4 to 0.8% by mass, Ti: 0.01 to 0.1% by mass, respectively, the balance being Al and unavoidable impurities, and high-strength aluminum excellent in chip breaking property. Alloy extruded material.
【請求項2】 Si:2.0〜6.0質量%(3.0質
量%以下を除く)、Cu:3.5〜6.0質量%、M
g:0.4〜0.8質量%、Mn:0.5〜1.5質量
%、Ti:0.01〜0.1質量%をそれぞれ含有し、
残部がAl及び不可避不純物からなることを特徴とする
切粉分断性に優れる高力アルミニウム合金押出材。
2. Si: 2.0 to 6.0 mass% (excluding 3.0 mass% or less), Cu: 3.5 to 6.0 mass%, M
g: 0.4 to 0.8% by mass, Mn: 0.5 to 1.5% by mass, Ti: 0.01 to 0.1% by mass, respectively,
The balance consists of Al and unavoidable impurities
A high-strength aluminum alloy extruded material with excellent cutting ability .
【請求項3】 さらに、Fe:0.5〜1.0質量%、
Cr:0.1〜0.5質量%、Zr:0.1〜0.5質
量%のうちいずれか1種以上を含有することを特徴とす
請求項1又は2に記載された切粉分断性に優れる高力
アルミニウム合金押出材。
3. Fe: 0.5 to 1.0% by mass,
Cr: 0.1-0.5% by mass, Zr: 0.1-0.5% by mass, any one or more of them are contained, and the chip cutting according to claim 1 or 2. High strength aluminum alloy extruded material with excellent properties .
【請求項4】 請求項1〜3のいずれかに記載された化
学組成を有する切粉分断性に優れるアルマイト処理用ア
ルミニウム合金押出材。
4. An aluminum alloy extruded material for alumite treatment , which has the chemical composition according to any one of claims 1 to 3 and is excellent in chip cutting property .
JP01939196A 1996-01-09 1996-01-09 High-strength aluminum alloy extruded material with excellent chip breaking performance Expired - Fee Related JP3453607B2 (en)

Priority Applications (1)

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JP01939196A JP3453607B2 (en) 1996-01-09 1996-01-09 High-strength aluminum alloy extruded material with excellent chip breaking performance

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP01939196A JP3453607B2 (en) 1996-01-09 1996-01-09 High-strength aluminum alloy extruded material with excellent chip breaking performance

Publications (2)

Publication Number Publication Date
JPH09194977A JPH09194977A (en) 1997-07-29
JP3453607B2 true JP3453607B2 (en) 2003-10-06

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CN106282681A (en) * 2016-07-31 2017-01-04 余姚市婉珍五金厂 A kind of high hardness aluminium alloy mold material and preparation method thereof
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