MPEA Co1 Cr1 Fe1 Ni1 Ti0.3
Embed This Widget
Add the script tag and a data attribute to embed this widget.
Embed via iframe for maximum compatibility.
<iframe src="https://alloyfyi.com/iframe/entity/mpea-co1-cr1-fe1-ni1-ti03/" width="420" height="400" frameborder="0" style="border:0;border-radius:10px;max-width:100%" loading="lazy"></iframe>
Paste this URL in WordPress, Medium, or any oEmbed-compatible platform.
https://alloyfyi.com/entity/mpea-co1-cr1-fe1-ni1-ti03/
Add a dynamic SVG badge to your README or docs.
[](https://alloyfyi.com/entity/mpea-co1-cr1-fe1-ni1-ti03/)
Use the native HTML custom element.
Add one script tag to your page:
<div data-alloyfyi="entity" data-slug="mpea-co1-cr1-fe1-ni1-ti03"></div>
<script src="https://cdn.jsdelivr.net/npm/alloyfyi-embed@1/dist/embed.min.js" defer></script>
Embed as an iframe:
<iframe src="https://alloyfyi.com/iframe/entity/mpea-co1-cr1-fe1-ni1-ti03/?style=modern&theme=light" width="420" height="400" frameborder="0" loading="lazy" style="border:0;border-radius:10px;max-width:100%"></iframe>
Paste the URL in WordPress, Medium, or Ghost:
https://alloyfyi.com/ko/alloys/mpea-co1-cr1-fe1-ni1-ti03/
Shields.io-compatible SVG badge:

Web Component:
<alloyfyi-entity slug="mpea-co1-cr1-fe1-ni1-ti03"></alloyfyi-entity>
<script src="https://cdn.jsdelivr.net/npm/alloyfyi-embed@1/dist/embed.min.js" defer></script>
High-entropy alloy. Phase: FCC. Processing: WROUGHT.
성능 평가
Performance Radar
| 특성 | Rating |
|---|---|
| Strength | 7 / 10 |
| Corrosion Res. | 7 / 10 |
| Lightweight | 5 / 10 |
| Machinability | 2 / 10 |
| Affordability | 2 / 10 |
| Heat Res. | 9 / 10 |
성분
기계적 특성
| 인장 강도 | 772.0 MPa |
| 항복 강도 | 540.0 MPa |
| 연신율 | 60.0% |
| 경도 (브리넬) | 224.0 HB |
| 경도 (로크웰) | |
| 탄성 계수 | 214.0 GPa |
물리적 특성
| 밀도 | 7.800 g/cm³ |
화학 성분
| 원소 | 비율 (%) |
|---|---|
| Co | 1.0 |
| Cr | 1.0 |
| Fe | 1.0 |
| Ni | 1.0 |
| Ti | 0.3 |
구매처 MPEA Co1 Cr1 Fe1 Ni1 Ti0.3
링크를 통해 추가 비용 없이 수수료가 발생할 수 있습니다.
설명
This high-entropy alloy (HEA) with nominal composition Co1 Cr1 Fe1 Ni1 Ti0.3 is a predominantly face-centered cubic (FCC) austenitic alloy system within the multi-principal element alloy research space, incorporating Co, Cr, Fe and 2 additional elements. Key properties include good strength-ductility balance, high fracture toughness especially at cryogenic temperatures, and moderate corrosion resistance; titanium additions promote intermetallic precipitation for additional strengthening. Investigated applications include cryogenic structural components, alloy design research platforms, and high-entropy coating systems.