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Titanium alloys for aviation are high-quality materials that find wide application in the aviation and aerospace industries due to their unique properties. Titanium aviation alloys possess high strength and lightness, making them ideal for use in the construction of airplanes and other aircraft. Aviation titanium is distinguished by its corrosion resistance, which is especially important […]
Titanium alloys for aviation are high-quality materials that find wide application in the aviation and aerospace industries due to their unique properties. Titanium aviation alloys possess high strength and lightness, making them ideal for use in the construction of airplanes and other aircraft.
Aviation titanium is distinguished by its corrosion resistance, which is especially important in the operating conditions of aviation equipment. These alloys can withstand extreme temperatures and loads, maintaining their mechanical properties over a long period. That is why titanium alloys for aviation are widely used in the production of critical components such as engines and aircraft bodies.
One of the main advantages of titanium alloys for aerospace engineering is their high strength at a relatively low weight. This significantly reduces the overall weight of aircraft, contributing to fuel economy and increased flight range. Light and strong titanium alloys also improve the maneuverability and overall efficiency of aircraft.
Corrosion-resistant titanium alloys are used not only in aviation but also in the aerospace industry. Titanium alloys for the aerospace industry are used in the creation of spacecraft and satellites, where the reliability and durability of materials play a key role.
Titanium materials for aircraft have excellent operational characteristics and can withstand exposure to aggressive environments. This makes them indispensable in the production of aviation equipment, where reliability and safety requirements are paramount.
High-quality titanium alloys are used to create various parts and components of aviation equipment. Titanium components for aviation include various structural elements, from small parts to large engine and aircraft body sections. Titanium parts for aircraft ensure the durability and reliability of aircraft operations.
Titanium products for aviation equipment are manufactured in compliance with all modern standards and safety requirements. Each stage of the production of titanium alloys for aviation undergoes strict quality control, guaranteeing their high operational characteristics.
Thus, titanium alloys for aviation are essential materials that ensure the reliability, strength, and durability of aviation and aerospace equipment. Titanium alloys for the aviation and aerospace industries are the choice of professionals striving for innovation and high quality in every detail.
By purchasing titanium alloys for aviation, you are investing in advanced technologies and the safety of your aircraft.
| TITANIUM CROSS-REFERENCE | |||||||
| TYPE | COMPOSITION | FORM | CONDITION | SPECIFICATIONS | MIL-T-9046H DESIGNATION | MIL-T-9046J DESIGNATION | ASTM-B265 DESIGNATION |
| COMMERCIALLY PURE | UNALLOYED | SHEET/PLATE | 25 KSI MIN YEILD | AMS-4940 | – | CP4 | GRADE 1 |
| UNALLOYED | SHEET/PLATE | 40 KSI MIN YEILD | AMS-4902 | TYPE I COMP A | CP3 | GRADE 2 | |
| UNALLOYED | SHEET/PLATE | 55 KSI MIN YEILD | AMS-4900 | TYPE I COMP C | CP2 | GRADE 3 | |
| UNALLOYED | SHEET/PLATE | 70 KSI MIN YEILD | AMS-4901 | TYPE I COMP B | CP1 | GRADE 4 | |
| BAR | AMS-4921 | TYPE I COMP B | CP1 | GRADE 4 | |||
| ALPHA ALLOYS | 5Al-2.5Sn | SHEET/PLATE | ANNEALED | AMS-4910 | TYPE II COMP A | A-1 | GRADE 6 |
| BAR | ANNEALED | AMS-4926, AMS-6900 | TYPE II COMP A | A-1 | GRADE 6 | ||
| 5Al-2.5Sn ELI | SHEET/PLATE | ANNEALED | AMS-4909 | TYPE II COMP B | A-2 | ||
| BAR | ANNEALED | AMS-4924, AMS-6901 | TYPE II COMP B | A-2 | |||
| 8Al-1Mo-1V | SHEET/PLATE | ANNEALED | AMS-4972, AMS-4915 | TYPE II COMP F | A-4 | ||
| SHEET/PLATE | DUPLEX ANNEALED | AMS-4916 | TYPE II COMP F | A-4 | |||
| BAR | DUPLEX ANNEALED | AMS-6910 | TYPE II COMP F | A-4 | |||
| ALPHA -BETA ALLOYS | 8MN | AMS-4908 | TYPE III COMP A | AB-6 | |||
| 6Al-4V | SHEET/PLATE | ANNEALED | AMS-4911 | TYPE III COMP C | AB-1 | GRADE 5 | |
| SOLUTION | AMS-4903 | TYPE III COMP C | AB-1 | GRADE 5 | |||
| STA | AMS-4904 | TYPE III COMP C | AB-1 | GRADE 5 | |||
| BAR | ANNEALED | AMS-4928, AMS-6931 | TYPE III COMP C | AB-1 | GRADE 5 | ||
| STA | AMS-6930 | TYPE III COMP C | AB-1 | GRADE 5 | |||
| 6Al-4V ELI | SHEET/PLATE | ANNEALED | AMS-4907 | TYPE III COMP D | AB-2 | ||
| BAR | ANNEALED | AMS-4930, AMS-6932 | TYPE III COMP D | AB-2 | |||
| 6Al-6V-2Sn | SHEET/PLATE | ANNEALED | AMS-4918 | TYPE III COMP E | AB-3 | ||
| SOLUTION | AMS-4988 | TYPE III COMP E | AB-3 | ||||
| STA | AMS-4990 | TYPE III COMP E | AB-3 | ||||
| BAR | ANNEALED | AMS-4978, AMS-4979, | TYPE III COMP E | AB-3 | |||
| STA | AMS-3935 | TYPE III COMP E | AB-3 | ||||
| 6Al-2Sn-4Zr-2Mo | SHEET/PLATE | DUPLEX ANNEALED | AMS-4919 | TYPE III COMP G | AB-4 | ||
| BAR | DUPLEX ANNEALED | AMS-4975, AMS-6905 | TYPE III COMP G | AB-4 | |||
| 3Al-2.5V | SHEET/PLATE | ANNEALED | AMS-4989 | AB-5 | |||
| TUBE | AMS-4943, AMS-4944, | AB-5 | |||||
| BETA ALLOYS | 13V-11Cr-3Al | SHEET/PLATE | AMS-4917 | TYPE IV COMP A | B-1 | ||
| WIRE | AMS-4959 | TYPE IV COMP A | B-1 | ||||
| 3Al-8V-6Cr-4Mo- 4Zr | SHEET/PLATE | SOLUTION | AMS-4939 | TYPE IV COMP C | B-3 | ||
| BAR | ST | AMS-6920 | TYPE IV COMP C | B-3 | |||
| BAR | STA | AMS-6921 | TYPE IV COMP C | B-3 | |||
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