"Furthermore, the data particularly shows that the solubility of hydrogen in the Alpha phase is very small, and the hydroxide in the titanium alloy is too much hydrogen to dissolve and the alloy becomes very brittle. Usually the hydrogen content in the titanium alloy is controlled at zero percent. Below zero and one-five. The dissolution of hydrogen in titanium is reversible and can be removed by vacuum annealing."

"Master, this is an explanation of all the information on the titanium alloy. Is there anything else you need?"

Jiang Cheng did an experiment before, namely, a series of experiments comparing super-hard aluminum alloy, heat-resistant aluminum alloy, high-strength magnesium alloy, high-strength bonded steel, and comparison of ultra-high-strength bonded steel and high-strength titanium alloy.

Among them, the flexural strength of ultra-high-strength bonded steel and high-strength titanium alloy is the highest, but the density of high-strength titanium alloy is much lower than that of ultra-high-strength bonded steel, which is almost half of that of ultra-high-strength bonded steel.

Moreover, in the elastic simulation experiment, high-strength titanium alloy, ultra-high-strength bonded gold and high-strength bonded steel are also very prominent, but due to the relative comparison of density, the final result obtained is the titanium alloy is still the best and the most suitable .

Another is that high-strength titanium alloys are much better than refractory aluminum alloys in heat resistance compared to refractory aluminum alloys. At temperatures below two hundred degrees, heat-resistant aluminum alloys can still be smooth, but If the temperature is higher than the two Baidu temperature, it will not be possible. Only titanium alloy. Moreover, this temperature represents the temperature of the weapon when it bursts. This is also a point that Jiang Cheng must carefully consider. harm.

Originally firing weapons to protect yourself turned out to cause harm to yourself.

There is. Titanium alloys work in humid atmosphere and seawater media, and the corrosion resistance of stainless steel is far inferior to him, and its resistance to pitting, acid and stress corrosion is particularly strong. Moreover, the excellent corrosion resistance is also shown in organic substances such as alkali, chloride, chlorine, nitric acid, sulfuric acid, etc., but there is a problem that the corrosion resistance to reducing oxygen and chromium salt media will be very poor.

Titanium alloy can still maintain its mechanical properties at low and ultra-low temperature. The titanium alloy with good low temperature performance and extremely low interstitial elements can maintain a certain degree of plasticity at a temperature of minus two hundred and fifty-three. Therefore, titanium alloy is also an important low-temperature structural material. We have just done experiments on this. Titanium alloys can withstand the test under the simulated low temperature of space.

·· ·Look for flowers········-·

Jiang Cheng completed a series of decomposition and research on the titanium alloy, and then what Jiang Cheng prepared was to fuse the titanium alloy and the nitrogen element with each other.

Because nitrogen has good protection and corrosion resistance, Jiang Cheng wants to make this element and titanium alloy fuse.

...... .......

Jiang Cheng took a little bit of nitrogen and took a piece of titanium alloy. The approximate ratio should be one to six. I saw Jiang Cheng financialize titanium and put nitrogen in it. The next step is to integrate them into one, and then compare it with the titanium alloy without adding nitrogen before to see what the difference is. Let's see if there is any stronger change in this modified titanium alloy.

In the effort Jiang Cheng thought, this has been done.

Jiang Cheng excitedly took it to the test bench and observed it with a resolver: "My God, this effect is really extraordinary. There is no gap between what I imagined, and it is even better than mine. A smart computer. "deficit.

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