JPS6341977B2 - - Google Patents
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- Publication number
- JPS6341977B2 JPS6341977B2 JP60287459A JP28745985A JPS6341977B2 JP S6341977 B2 JPS6341977 B2 JP S6341977B2 JP 60287459 A JP60287459 A JP 60287459A JP 28745985 A JP28745985 A JP 28745985A JP S6341977 B2 JPS6341977 B2 JP S6341977B2
- Authority
- JP
- Japan
- Prior art keywords
- content
- effect
- toughness
- alloy
- dental
- 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
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Description
〔産業上の利用分野〕
この発明は、歯科床や歯冠などの歯科用部材に
要求される特性を具備し、かつ鋳造性の著しくす
ぐれた歯科用Co基鋳造合金に関するものである。
〔従来の技術〕
一般に、上記の歯科用部材には、実際に口腔内
に装着した時に、咬合の際の圧力で変形しない強
度、口腔内の分泌液などで腐食しない耐食性、さ
らに鋳造後、研削加工されるので、ある程度の硬
さを保持した上での靭性などの特性が要求される
ことから、これらの部材の製造には、各種ある材
料のうち、特にこれらの特性を具備したCo―Cr
基鋳造合金が広く用いられている。
〔発明が解決しようとする問題点〕
しかし、この従来歯科用Co―Cr基鋳造合金は、
融点が著しく高く、かつ湯流れ性の悪いものであ
るために、鋳造に際しては、鋳物形状が複雑であ
ることと相まつて、どうしても溶湯温度を高くし
て鋳込まなければならず、この結果鋳型との間に
焼付きが生じ易く、鋳肌のきれいな鋳物を製造す
ることが困難であり、その仕上研削にはかなりの
手間と時間を要するものであつた。
〔問題点を解決するための手段〕
そこで、本発明者等は、上述のような観点か
ら、歯科用部材に要求される特性を具備した上記
のCo―Cr基鋳造合金に着目し、これにすぐれた
鋳造性、すなわち比較的低い溶湯温度での鋳造に
よつてもすぐれた湯流れ性を示し、複雑な形状の
鋳物をきれいな鋳肌で、かつ健全に製造すること
のできる合金を開発すべく研究を行なつた結果、
重量%で(以下%は重量%を示す)、
Si:0.1〜5%、
Mn:0.1〜3%、
Cr:12〜35%、
Mo:1〜20%、
Hf:0.005〜5%、
B:0.0001〜0.5%、
を含有し、さらに必要に応じて、
(A) W:0.1〜10%、
(B) Ti,Nb,およびTaのうちの1種または2種
以上:0.1〜12%、
(C) FeおよびNiのうちの1種または2種:1〜
10%、
以上(A)〜(C)のうちの1種または2種以上を含有
し、残りがCoと不可避不純物からなる組成を有
するCo基鋳造合金は、歯科用部材に要求される
強度、耐食性、靭性、および硬さを有し、かつ湯
流れ性がよく、鋳造性にすぐれているので、複雑
な形状の歯科用部材をきれいな鋳肌で製造するこ
とができるという知見を得たのである。
この発明は、上記知見に基づいてなされたもの
であつて、以下に成分組成を上記の通りに限定し
た理由を説明する。
(a) Si
Si成分には、脱酸作用があるほか、合金の融点
を下げて湯流れ性を良くし、もつて鋳造性を向上
させる作用があるが、その含有量が0.1%未満で
は前記作用に所望の効果が得られず、一方5%を
越えて含有させると、Cr含有量と関係して合金
の靭性が低下するようになることから、その含有
量を0.1〜5%と定めた。
(b) Mn
Mn成分には、Si成分と同様に脱酸作用がある
ほか、素地に固溶して、素地のオーステナイトを
安定化する作用があるが、その含有量が0.1%未
満では前記作用に所望の効果が得られず、一方3
%を越えて含有させても前記作用により一層の向
上効果が得られないばかりでなく、むしろ耐食性
に劣化傾向が現われるようになることから、その
含有量を0.1〜3%と定めた。
(c) Cr
Cr成分には、その一部が素地に固溶して、こ
れを強化し、強度を向上させるほか、耐食性を著
しく向上させる作用があるが、その含有量が12%
未満では前記作用に所望の効果が得られず、一方
35%を越えて含有させると、靭性に低下傾向が現
われるようになることから、その含有量を12〜35
%と定めた。
(d) Mo
Mo成分にも、Cr成分と同様に素地に固溶し
て、これを強化し、強度を向上させる作用がある
が、その含有量が1%未満では所望の強度および
硬さを確保することができず、一方20%を越えて
含有させると合金の靭性が低下するようになるこ
とから、その含有量を1〜20%と定めた。
(e) Hf
Hf成分には、主としてCoおよびCr成分によつ
て形成されたオーステナイト素地に固溶して、靭
性と強度を向上させると共に、合金の融点を下げ
て湯流れ性を改善し、もつて鋳造性を向上させる
作用があるが、その含有量が0.005%未満では前
記作用に所望の効果が得られず、一方5%を越え
て含有させてもより一層の向上効果が現われない
ことから、経済性を考慮して、その含有量を
0.005〜5%と定めた。
(f) B
B成分には、その一部が素地に固溶して、強度
を向上させるほか、硼化物を形成して硬さを向上
させ、さらに湯流れ性に寄与して鋳造性を一段と
向上させる作用があるが、その含有量が0.0001%
未満では前記作用に所望の効果が得られず、一方
0.5%を越えて含有させると、靭性に低下傾向が
現われるようになることから、その含有量を、
0.0001〜0.5%と定めた。
(g) W
W成分には、CrおよびMo成分と同様に、素地
に固溶して、これを強化し、強度を向上させる作
用があるので、特にこれらの特性が要求される場
合に必要に応じて含有されるが、その含有量が
0.1%未満では前記作用に所望の向上効果が得ら
れず、一方10%を越えて含有させると靭性が低下
するようになることから、その含有量を0.1〜10
%と定めた。
(h) Ti,Nb,およびTa
これらの成分には、素地の結晶粒の成長を著し
く抑制し、むしろ結晶粒を微細化させる作用があ
るので、これらの特性が要求される場合に必要に
応じて含有されるが、その含有量が0.1%未満で
は前記作用に所望の向上効果が得られず、一方12
%を越えて含有させると合金の靭性が低下するよ
うになることから、その含有量を0.1〜12%と定
めた。
(i) FeおよびNi
これらの成分には、Coと同等の作用効果があ
るので、コスト低減をはかる目的で、高価なCo
成分の一部を代替することができるが、その含有
量が1%未満では経済的効果が低く、一方10%を
越えて含有させるとCoによつてもたらされるす
ぐれた耐食性および靭性が低下するようになるこ
とから、その含有量を1〜10%と定めた。
なお、不可避不純物としてZr成分を含有する
場合があるが、その含有量が0.3%を越えると、
靭性および鋳造性に悪影響を及ぼすようになるの
で、Zrの含有量が0.2%を越えるようにしてはな
らない。
〔実施例〕
つぎに、この発明のCo基鋳造合金を実施例に
より具体的に説明する。
通常の高周波溶解炉を用い、大気中で、それぞ
れ第1表に示される成分組成をもつた本発明Co
基鋳造合金1〜40および従来Co基鋳造合金の溶
湯を調製し、ついで砂型に鋳造して、硬さ測定用
試験片、引張強さ測定用試験片、および湯流れ測
定用素材をそれぞれ製造した。
つぎに、これらの試験片を用いて、耐摩耗性を
評価する目的で、常温ビツカース硬さを、また強
度および靭性を評価する目的で、引張強さ、0.2
%耐力、および伸びを測定し、さらに鋳造性を評
価する目的で上記素材を鋳型との反応がほとんど
生じない1450℃の比較的低い温度に加熱して溶融
し、この温度に到達後直ちに、燐酸塩系材料から
なる鋳型内に形成した直径:0.5mmφ×長さ:
[Industrial Application Field] The present invention relates to a dental Co-based casting alloy that has properties required for dental components such as dental beds and dental crowns, and has excellent castability. [Prior Art] In general, the above-mentioned dental components have strength that does not deform due to pressure during occlusion when actually installed in the oral cavity, corrosion resistance that does not corrode due to secretions in the oral cavity, etc., and also requires grinding after casting. Since these parts are processed, they require properties such as toughness while maintaining a certain degree of hardness. Therefore, among the various materials available, Co-Cr, which has these properties, is used to manufacture these parts.
Base casting alloys are widely used. [Problems to be solved by the invention] However, this conventional dental Co-Cr based casting alloy,
Due to its extremely high melting point and poor flowability, the molten metal must be heated to a high temperature during casting due to the complex shape of the casting. It is difficult to produce a casting with a clean surface because seizure is likely to occur during the grinding process, and finishing grinding requires considerable effort and time. [Means for Solving the Problems] Therefore, from the above-mentioned viewpoint, the present inventors focused on the above-mentioned Co--Cr-based cast alloy that has the characteristics required for dental components, and developed the following. In order to develop an alloy that exhibits excellent castability, that is, excellent flowability even when cast at a relatively low molten metal temperature, and that allows castings of complex shapes to be produced with clean casting surfaces and in a sound manner. As a result of research,
In weight% (hereinafter % indicates weight%), Si: 0.1 to 5%, Mn: 0.1 to 3%, Cr: 12 to 35%, Mo: 1 to 20%, Hf: 0.005 to 5%, B: 0.0001 to 0.5%, and if necessary, (A) W: 0.1 to 10%, (B) one or more of Ti, Nb, and Ta: 0.1 to 12%, ( C) One or two of Fe and Ni: 1-
A Co-based casting alloy containing one or more of the above (A) to (C) at 10%, with the remainder consisting of Co and unavoidable impurities, has the strength required for dental components. They discovered that it has corrosion resistance, toughness, and hardness, as well as good flowability and excellent castability, making it possible to manufacture dental parts with complex shapes and a clean casting surface. . This invention was made based on the above knowledge, and the reason why the component composition was limited as described above will be explained below. (a) Si In addition to having a deoxidizing effect, the Si component also has the effect of lowering the melting point of the alloy, improving flowability, and improving castability, but if its content is less than 0.1%, The desired effect could not be obtained, and if the content exceeded 5%, the toughness of the alloy would decrease in relation to the Cr content, so the content was set at 0.1 to 5%. . (b) Mn The Mn component has a deoxidizing effect similar to the Si component, and also has the effect of stabilizing the austenite of the substrate by forming a solid solution in the substrate, but if its content is less than 0.1%, it has the effect of deoxidizing. The desired effect was not obtained, while 3
If the content exceeds 0.1%, not only will further improvement effects not be obtained due to the above-mentioned action, but the corrosion resistance will tend to deteriorate, so the content was set at 0.1 to 3%. (c) Cr A part of the Cr component dissolves in the base material, strengthens it, improves strength, and significantly improves corrosion resistance, but the content is 12%.
If it is less than the desired effect, the desired effect cannot be obtained;
If the content exceeds 35%, the toughness tends to decrease, so the content should be reduced to 12 to 35%.
%. (d) Mo Mo component, like the Cr component, has the effect of forming a solid solution in the base material, strengthening it, and improving its strength, but if its content is less than 1%, the desired strength and hardness cannot be achieved. However, if the content exceeds 20%, the toughness of the alloy decreases, so the content was set at 1 to 20%. (e) Hf The Hf component is a solid solution in the austenite matrix formed mainly by Co and Cr components, improving toughness and strength, lowering the melting point of the alloy and improving flowability. It has the effect of improving castability, but if the content is less than 0.005%, the desired effect cannot be obtained in this effect, and on the other hand, if the content exceeds 5%, no further improvement effect will appear. , considering economic efficiency, the content is
It was set at 0.005 to 5%. (f) B A part of the B component dissolves in solid solution in the base material, improving strength, forming borides to improve hardness, and further contributing to flowability to further improve castability. It has an improving effect, but its content is 0.0001%
If it is less than the desired effect, the desired effect cannot be obtained;
If the content exceeds 0.5%, the toughness tends to decrease, so the content should be
It was set at 0.0001-0.5%. (g) Like the Cr and Mo components, the W component has the effect of forming a solid solution in the base material, strengthening it, and improving its strength, so it is especially necessary when these properties are required. It is contained depending on the content, but the content is
If the content is less than 0.1%, the desired effect of improving the above action cannot be obtained, while if the content exceeds 10%, the toughness will decrease.
%. (h) Ti, Nb, and Ta These components have the effect of significantly suppressing the growth of crystal grains in the substrate and, in fact, making the crystal grains finer, so they may be used as needed when these properties are required. However, if the content is less than 0.1%, the desired effect of improving the above action cannot be obtained;
Since the toughness of the alloy decreases if the content exceeds 0.1% to 12%. (i) Fe and Ni These components have the same effects as Co, so for the purpose of cost reduction, expensive Co
Although it is possible to replace some of the components, if the content is less than 1%, the economic effect is low, while if the content exceeds 10%, the excellent corrosion resistance and toughness provided by Co may be reduced. Therefore, the content was set at 1 to 10%. In addition, Zr may be contained as an unavoidable impurity, but if the content exceeds 0.3%,
The Zr content should not exceed 0.2%, as this will adversely affect toughness and castability. [Example] Next, the Co-based casting alloy of the present invention will be specifically explained with reference to Examples. Using an ordinary high-frequency melting furnace, in the atmosphere, the present invention
Molten metals of base casting alloys 1 to 40 and conventional Co base casting alloys were prepared and then cast into sand molds to produce test pieces for hardness measurement, tensile strength measurement test pieces, and materials for melt flow measurement, respectively. . Next, using these test pieces, we measured the normal temperature Vickers hardness for the purpose of evaluating wear resistance, and the tensile strength of 0.2 for the purpose of evaluating strength and toughness.
In order to measure the % proof stress and elongation, and further evaluate the castability, the above material was heated and melted at a relatively low temperature of 1450℃, where almost no reaction with the mold occurs, and immediately after reaching this temperature, phosphoric acid was added. Diameter: 0.5mmφ x length: Formed in a mold made of salt-based material.
【表】【table】
【表】【table】
【表】【table】
第2表に示される結果から、本発明Co基鋳造
合金1〜40は、いずれも従来Co基鋳造合金と同
等、あるいはこれ以上の高硬度、高強度、および
高靭性を有し、かつ前記従来Co基鋳造合金に比
して一段とすぐれた鋳造性をもつことが明らかで
ある。
このように、この発明のCo基鋳造合金は、歯
科用部材に要求される、すぐれた耐摩耗性、耐食
性、および靭性を具備するほか、その製造に際し
て不可欠の一段とすぐれた鋳造性を有するのであ
る。
From the results shown in Table 2, Co-based casting alloys 1 to 40 of the present invention all have high hardness, high strength, and high toughness equivalent to or higher than the conventional Co-based casting alloys, and It is clear that this alloy has much better castability than Co-based casting alloys. As described above, the Co-based casting alloy of the present invention not only has the excellent wear resistance, corrosion resistance, and toughness required for dental parts, but also has even better castability, which is essential for the production thereof. .
Claims (1)
成(以上重量%)を有することを特徴とする歯科
用Co基鋳造合金。 2 Si:0.1〜5%、 Mn:0.1〜3%、 Cr:12〜35%、 Mo:1〜20%、 Hf:0.005〜5%、 B:0.0001〜0.5%、 を含有し、さらに、 W:0.1〜10%、 を含有し、残りがCoと不可避不純物からなる組
成(以上重量%)を有することを特徴とする歯科
用Co基鋳造合金。 3 Si:0.1〜5%、 Mn:0.1〜3%、 Cr:12〜35%、 Mo:1〜20%、 Hf:0.005〜5%、 B:0.0001〜0.5%、 を含有し、さらに、 Ti,Nb,およびTaのうちの1種または2種以
上:0.1〜12%、 を含有し、残りがCoと不可避不純物からなる組
成(以上重量%)を有することを特徴とする歯科
用Co基鋳造合金。 4 Si:0.1〜5%、 Mn:0.1〜3%、 Cr:12〜35%、 Mo:1〜20%、 Hf:0.005〜5%、 B:0.0001〜0.5%、 を含有し、さらに、 FeおよびNiのうちの1種または2種:1〜10
%、 を含有し、残りがCoと不可避不純物からなる組
成(以上重量%)を有することを特徴とする歯科
用Co基鋳造合金。 5 Si:0.1〜5%、 Mn:0.1〜3%、 Cr:12〜35%、 Mo:1〜20%、 Hf:0.005〜5%、 B:0.0001〜0.5%、 を含有し、さらに、 W:0.1〜10%と、 Ti,Nb,およびTaのうちの1種または2種以
上:0.1〜12%、 を含有し、残りがCoと不可避不純物からなる組
成(以上重量%)を有することを特徴とする歯科
用Co基鋳造合金。 6 Si:0.1〜5%、 Mn:0.1〜3%、 Cr:12〜35%、 Mo:1〜20%、 Hf:0.005〜5%、 B:0.0001〜0.5%、 を含有し、さらに、 W:0.1〜10%と、 FeおよびNiのうちの1種または2種:1〜10
%、 を含有し、残りがCoと不可避不純物からなる組
成(以上重量%)を有することを特徴とする歯科
用Co基鋳造合金。 7 Si:0.1〜5%、 Mn:0.1〜3%、 Cr:12〜35%、 Mo:1〜20%、 Hf:0.005〜5%、 B:0.0001〜0.5%、 を含有し、さらに、 Ti,Nb,およびTaのうちの1種または2種以
上:0.1〜12%と、 FeおよびNiのうちの1種または2種:1〜10
%、 を含有し、残りがCoと不可避不純物からなる組
成(以上重量%)を有することを特徴とする歯科
用Co基鋳造合金。 8 Si:0.1〜5%、 Mn:0.1〜3%、 Cr:12〜35%、 Mo:1〜20%、 Hf:0.005〜5%、 B:0.0001〜0.5%、 を含有し、さらに、 W:0.1〜10%と、 Ti,Nb,およびTaのうちの1種または2種以
上:0.1〜12%と、 FeおよびNiのうちの1種または2種:1〜10
%、 を含有し、残りがCoと不可避不純物からなる組
成(以上重量%)を有することを特徴とする歯科
用Co基鋳造合金。[Claims] 1 Si: 0.1 to 5%, Mn: 0.1 to 3%, Cr: 12 to 35%, Mo: 1 to 20%, Hf: 0.005 to 5%, B: 0.0001 to 0.5%, A dental Co-based casting alloy characterized by having a composition (by weight %) with the remainder consisting of Co and unavoidable impurities. 2 Contains Si: 0.1 to 5%, Mn: 0.1 to 3%, Cr: 12 to 35%, Mo: 1 to 20%, Hf: 0.005 to 5%, B: 0.0001 to 0.5%, and further contains W. A dental Co-based casting alloy characterized by having a composition (by weight %) of: 0.1 to 10%, with the remainder consisting of Co and unavoidable impurities. 3 Contains Si: 0.1 to 5%, Mn: 0.1 to 3%, Cr: 12 to 35%, Mo: 1 to 20%, Hf: 0.005 to 5%, B: 0.0001 to 0.5%, and further contains Ti , Nb, and Ta: 0.1 to 12%, with the remainder consisting of Co and unavoidable impurities (weight %). alloy. 4 Contains Si: 0.1 to 5%, Mn: 0.1 to 3%, Cr: 12 to 35%, Mo: 1 to 20%, Hf: 0.005 to 5%, B: 0.0001 to 0.5%, and further contains Fe. and one or two of Ni: 1 to 10
%, with the remainder consisting of Co and unavoidable impurities (weight %). 5 Contains Si: 0.1 to 5%, Mn: 0.1 to 3%, Cr: 12 to 35%, Mo: 1 to 20%, Hf: 0.005 to 5%, B: 0.0001 to 0.5%, and further contains W. : 0.1 to 10%, one or more of Ti, Nb, and Ta: 0.1 to 12%, and the remainder is Co and unavoidable impurities (weight %). Characteristic dental Co-based casting alloy. 6 Contains Si: 0.1 to 5%, Mn: 0.1 to 3%, Cr: 12 to 35%, Mo: 1 to 20%, Hf: 0.005 to 5%, B: 0.0001 to 0.5%, and further contains W. : 0.1 to 10% and one or two of Fe and Ni: 1 to 10
%, with the remainder consisting of Co and unavoidable impurities (weight %). 7 Contains Si: 0.1 to 5%, Mn: 0.1 to 3%, Cr: 12 to 35%, Mo: 1 to 20%, Hf: 0.005 to 5%, B: 0.0001 to 0.5%, and further contains Ti , Nb, and Ta: 0.1 to 12%, and one or two of Fe and Ni: 1 to 10%.
%, with the remainder consisting of Co and unavoidable impurities (weight %). 8 Contains Si: 0.1 to 5%, Mn: 0.1 to 3%, Cr: 12 to 35%, Mo: 1 to 20%, Hf: 0.005 to 5%, B: 0.0001 to 0.5%, and further contains W. : 0.1 to 10%, one or more of Ti, Nb, and Ta: 0.1 to 12%, one or two of Fe and Ni: 1 to 10
%, with the remainder consisting of Co and unavoidable impurities (weight %).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP60287459A JPS62146233A (en) | 1985-12-20 | 1985-12-20 | Dental cast co alloy |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP60287459A JPS62146233A (en) | 1985-12-20 | 1985-12-20 | Dental cast co alloy |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| JPS62146233A JPS62146233A (en) | 1987-06-30 |
| JPS6341977B2 true JPS6341977B2 (en) | 1988-08-19 |
Family
ID=17717604
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP60287459A Granted JPS62146233A (en) | 1985-12-20 | 1985-12-20 | Dental cast co alloy |
Country Status (1)
| Country | Link |
|---|---|
| JP (1) | JPS62146233A (en) |
Families Citing this family (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US5182080A (en) * | 1990-12-27 | 1993-01-26 | General Electric Company | Advanced high-temperature brazing alloys |
| JP4892726B2 (en) * | 2006-09-13 | 2012-03-07 | 国立大学法人岩手大学 | Implant material for living body |
| JP5816411B2 (en) | 2010-03-24 | 2015-11-18 | セイコーインスツル株式会社 | Ni-free bio-based Co-based alloy and stent with high strength, high elastic modulus and excellent plastic workability |
| CN104511587B (en) * | 2013-09-27 | 2018-11-02 | 精工爱普生株式会社 | Dental is cut processing blank material and metal powder for powder metallurgy |
-
1985
- 1985-12-20 JP JP60287459A patent/JPS62146233A/en active Granted
Also Published As
| Publication number | Publication date |
|---|---|
| JPS62146233A (en) | 1987-06-30 |
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