Alloy member and product
The alloy member, comprising Ru and a ferromagnetic element, addresses corrosion and mechanical property issues by optimizing atomic compositions and phase structure, providing enhanced resistance and durability in reactive fluid environments.
Patent Information
- Application Number
- JP2024032511
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-03-04
- Publication Date
- 2025-09-17
Smart Images

Figure 2025134537000001
Abstract
Description
[Technical Field]
[0001] The present invention relates to an alloy member and product having excellent corrosion resistance. [Background technology]
[0002] Traditionally, stainless steel and the like have been used in various fields as general-purpose materials. In recent years, studies have been conducted to improve corrosion resistance by forming a passive film or the like. Furthermore, the development of metal materials with excellent corrosion resistance has also been promoted, and for example, alloys using metals with excellent corrosion resistance, such as Ti, have been developed (Patent Document 1). Furthermore, technology using highly reactive liquids has been applied to the decomposition of harmful substances and the extraction of specific substances, and is expected to be applied to geothermal power generation in the future. For example, development of components with excellent corrosion resistance against supercritical water has been promoted (Non-Patent Document 1). [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Patent No. 7175477 [Non-patent literature]
[0004] [Non-Patent Document 1] Taro Oe et al., "Corrosion Tests of Noble Metals and Ti-IrO2-Ta2O5 in Supercritical Water and Subcritical Water Oxidation Environments Containing Hydrochloric Acid," Materials and Environment, Vol. 56, No. 8, pp. 367-372, 2007. Summary of the Invention [Problem to be solved by the invention]
[0005] However, these materials lacked versatility and their corrosion resistance was still unsatisfactory. For example, forming a passive film on stainless steel required a complicated process, and the formation method was not easy, resulting in unsatisfactory results. Furthermore, alloys also faced problems, such as poor workability and the degradation of mechanical properties due to the generation of unintended crystalline phases, due to the difficulty of forming the film. The corrosion resistance of various materials, including stainless steels, Ni-based superalloys, Ti-based alloys, and precious metals, to supercritical water has been investigated, but many have had issues with corrosion resistance, or, while precious metals have excellent corrosion resistance, they have had problems with the degradation of mechanical properties.
[0006] The present invention has been made to solve the above problems, and has as its object to provide an alloy member having excellent corrosion resistance and mechanical properties. [Means for solving the problem]
[0007] The alloy member according to the present invention is an alloy member containing Ru, a ferromagnetic element, and a metal other than Ru and the ferromagnetic element, and contains Ru at 28 atomic % to 97 atomic % and the ferromagnetic element at 2 atomic % to 77 atomic %.
[0008] In one example of the alloy member, the alloy member contains 50% by volume or more of an HCP phase.
[0009] In one example of the alloy member, the metal is Mo or W.
[0010] In one example of the alloy member, the metal is Re.
[0011] In one example of the alloy member, the ferromagnetic element is one or more metals selected from Fe, Co, and Ni.
[0012] In one example of the alloy member, the alloy member is formed in a film shape.
[0013] In one configuration example, the alloy member is a corrosion-resistant member.
[0014] The product according to the present invention includes the alloy member or corrosion-resistant member described above. [Effects of the Invention]
[0015] As described above, according to the present invention, an alloy member having excellent corrosion resistance and mechanical properties can be provided, since it contains 28 atomic % or more and 97 atomic % or less of Ru and 2 atomic % or more and 77 atomic % or less of a ferromagnetic element. DETAILED DESCRIPTION OF THE INVENTION
[0016] An alloy member according to an embodiment of the present invention will be described below. This alloy member is a corrosion-resistant member containing Ru, a ferromagnetic element, and a metal other than Ru and the ferromagnetic element. This alloy member contains 28 atomic % to 97 atomic % of Ru and 2 atomic % to 77 atomic % of the ferromagnetic element.
[0017] The alloy member may contain 50% by volume or more of the HCP phase. Preferably, the alloy member contains 75% by volume or more of the HCP phase. This configuration further improves the corrosion resistance of the alloy member.
[0018] In addition, in this alloy member, the metal can be at least one of Mo and W. This configuration can further improve the corrosion resistance and mechanical properties of the alloy member. At least one of Mo and W can be contained in the alloy member in an amount of 1 atomic % or more and 40 atomic % or less.
[0019] Furthermore, this alloy member may contain Re as one of the metals. By including Re, the corrosion resistance and mechanical properties of the alloy member can be further improved. Re may be contained in the alloy member in an amount of 1 atomic % or more and 40 atomic % or less.
[0020] Furthermore, the alloy member may contain one or more metals selected from Fe, Co, and Ni as ferromagnetic elements, which can further improve the corrosion resistance and mechanical properties of the alloy member.
[0021] Furthermore, the alloy member according to the embodiment may contain inevitable impurities in the raw materials as constituent materials.
[0022] The alloy member according to the embodiment can be used as a corrosion-resistant member, for example, in the form of a film. This alloy member can be used as is, or by using known forming techniques, and can be suitably applied to applications requiring corrosion resistance, such as reaction vessels and piping. Furthermore, the alloy member can be provided on the contact surface of a highly reactive fluid in various products. Examples of highly reactive fluids include hydrochloric acid, nitric acid, sulfuric acid, and hydrofluoric acid.
[0023] Furthermore, when the alloy member according to the embodiment is used as a container material, it can be used as the inner wall material of the container. Furthermore, when the alloy member according to the embodiment is used as a piping material, it can be used as the inner wall material of the piping. The piping can be suitably used, for example, as a casing pipe, a strainer pipe, a line pipe, an electrode, a heat pipe for use in a heat exchanger, etc.
[0024] [Example 1] Ru 0.6 Fe 0.02 Mo 0.13 W 0.25 Alloy samples were prepared and subjected to an HF immersion test. SUS316 was used as a comparative sample. As is clear from Table 1, the alloy members according to the embodiment had excellent corrosion resistance and mechanical properties.
[0025] [Table 1]
[0026] The present inventors have conducted extensive research to achieve the object of providing an alloy member having excellent corrosion resistance and mechanical properties, and have found that an alloy member containing Ru, a ferromagnetic element, and a metal other than Ru and the ferromagnetic element, in which the alloy member contains 28 atomic % to 97 atomic % of Ru and 2 atomic % to 77 atomic % of the ferromagnetic element, has excellent corrosion resistance and can solve the above-mentioned conventional problems at once. After obtaining this finding, the present inventors further conducted research and have completed the present invention.
[0027] As described above, according to the present invention, in an alloy member containing Ru, a ferromagnetic element, and a metal other than Ru and the ferromagnetic element, the Ru content is 28 atomic % or more and 97 atomic % or less, and the ferromagnetic element content is 2 atomic % or more and 77 atomic % or less, thereby providing an alloy member with excellent corrosion resistance and mechanical properties.
[0028] It should be noted that the present invention is not limited to the embodiments described above, and it is clear that many modifications and combinations can be made by a person having ordinary knowledge in the art within the technical concept of the present invention.
Claims
1. An alloy member containing Ru, a ferromagnetic element, and a metal other than Ru and the ferromagnetic element, Contains Ru at 28 atomic % or more and 97 atomic % or less, The ferromagnetic element is contained in an amount of 2 atomic % or more and 77 atomic % or less. Alloy components.
2. The alloy member according to claim 1, An alloy member containing 50% by volume or more of the HCP phase.
3. The alloy member according to claim 1, The metal is Mo or W.
4. The alloy member according to claim 1, The alloy member, wherein the metal is Re.
5. The alloy member according to claim 1, The ferromagnetic element is one or more metals selected from Fe, Co, and Ni.
6. The alloy member according to claim 1, An alloy member formed in a film form.
7. The alloy member according to claim 1, Corrosion-resistant alloy components.
8. A product comprising the alloy member or corrosion-resistant member according to claim 1.
Citation Information
Patent Citations
Metallic materials
JP7175477B2