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티타늄 용접 와이어 주식 판매
티타늄 용접 와이어 개요
순수한 티타늄 또는 티타늄 합금으로 만든 Yesheng 티타늄 용접 와이어는 프리미엄 용접 와이어 제품입니다. 항공 우주, 의료, 화학 가공, 해양 및 자동차 산업의 경우 이러한 용접 와이어는 종종 다른 티타늄 부품 및 구성 요소를 결합하는 데 사용됩니다. Yesheng 티타늄 용접 와이어의 고강도, 내식성 및 탁월한 용접 능력으로 인해 인기있는 선택입니다. 조회 경쟁 티타늄 용접 와이어 가격!Yeshengti는티타늄 와이어 공급 업체사용자 지정 선택을 위해 여기를 클릭하십시오.
티타늄 용접 와이어의 특징
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고강도: 티타늄 용접 와이어는 강도 대 중량 비율이 매우 높기 때문에 많은 고성능 응용 분야에 이상적인 소재입니다.
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내식성: 티타늄은 해수, 산 및 알칼리성 용액을 포함한 다양한 환경에서 부식에 매우 강합니다.
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낮은 열 팽창: 티타늄은 매우 낮은 열 팽창 계수를 가지고있어 치수 안정성이 우수합니다.
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높은 융점: 티타늄은 높은 융점을 가지고있어 고온 응용 분야에서 사용하기에 적합합니다.
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좋은 전기 전도성: 티타늄은 전기 전도성이 뛰어나므로 전기 응용 분야에서 사용하기에 이상적입니다.
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경량: 티타늄은 가볍기 때문에 무게가 중요한 요소 인 응용 분야에서 사용하기에 적합합니다.
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생체 적합성: 티타늄은 생체 적합하므로 의료용 임플란트에 사용하기에 이상적입니다.
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비 자기: 티타늄은 비 자성이므로 자기장을 피해야하는 응용 분야에서 사용하기에 이상적입니다.
Titanium Weld Wire Specification
Product Name | Titanium wire |
Grade | GR1, GR2, GR5, GR5ELI, GR7, GR9, GR12, GR23, Ti-4Al-2V, Ti-4Al-1.5Mn. |
Size | Diameter 0.02mm-5mm or as your request |
Standard | ASTM F1341-1999, AMS4951-2003, AMS4954-2003, BS2TA28:1974, GB/T3623-2007, GJB2219-1994, ΓOCT27265-87, JISH4670-1993, DIN17863-1973 |
Brand Name | Yesheng |
Application | chemical industry, Aerospace, deep sea, military, medical, etc. |
Feature | High corrosion resistance, low density, good thermal stability, High strength and light weight. |
Technics | hot rolled and cold rolled, extruded. |
Surface | Annealed surface, pickled surface, bright surface. |
Packing | Export Standard Woodcase |
MOQ | as your request |
Payment terms | T/T, Western Union, PayPal. |
Certificate | ISO 9001:2015; The third test report. |
Delivery time | 10—25days according to the quantity and process of the product |
Quality and test | Ingredient testing |
Price Term: | CIF CNF/CFR FOB Ex-work |
Welding method of titanium welding wire
Welding titanium welding wire is a critical process that demands precision and expertise due to the unique properties of titanium alloys. Several welding methods are available for working with these materials, each with its own advantages and considerations.
Gas tungsten arc welding (GTAW), also known as TIG (tungsten inert gas) welding, is one of the most commonly used methods for welding titanium alloys. It is favored for its ability to produce high-quality welds and its versatility in achieving good results. TIG welding is known for its clean and precise welds, making it a preferred choice in aerospace, medical, and high-performance applications.
Gas metal arc welding (GMAW), or MIG (metal inert gas) welding, is another commonly used method for welding titanium. It is especially suitable for certain situations, such as when high deposition rates are required. This method offers efficiency and ease of use while ensuring strong and reliable welds.
Other methods, like resistance welding, plasma arc welding, and electron beam welding, can also be used for titanium alloys but are relatively limited in their applications.
Additionally, more advanced techniques like laser welding offer benefits in terms of speed and precision, making them suitable for specific requirements.
In summary, the welding method for titanium welding wire is carefully selected based on the specific needs of the application, taking into account factors like material thickness, joint configuration, and the desired weld quality. Each method has its unique strengths, allowing for tailored solutions in various industries, including aerospace, medical, and high-performance manufacturing.
Manufacturing quality certifications for titanium welding wire
Manufacturing quality certifications for titanium welding wire are essential to ensure the reliability and performance of this crucial material in various industries. Titanium welding wire is a vital component used in welding titanium alloys and custom titanium products, and adhering to stringent quality standards is paramount.
Certifications for titanium welding wire manufacturing typically include compliance with industry-recognized standards such as AWS A5.16. This standard specifies the requirements for titanium and titanium alloy welding wire, ensuring that it meets precise composition and quality specifications. The different grades, such as ErTi-2, ErTi-3, ErTi-5, ErTi-7, and Er-12, adhere to these standards, reflecting the specific alloy composition and characteristics suitable for distinct applications.
Quality certifications are a testament to the commitment of manufacturers to maintain consistency and precision in the production of titanium welding wire. These certifications ensure that the material meets the demands of critical industries like aerospace, medical, and high-performance manufacturing, where precision, reliability, and performance are non-negotiable.
Having the appropriate quality certifications guarantees that titanium welding wire aligns with the stringent requirements of industries, reinforcing its value as an indispensable material for welding titanium alloys, and ensuring that it delivers the expected performance and longevity in critical applications.