666. New materials

Mu Feng left the conference room with Crimson and Liuyun, preparing to go to the airport to take the plane back to the fleet, but met Missouri on the way.

Missouri greeted him and asked directly:

"Commander Mufeng, are you leaving?"

Mu Feng nodded and said:

"Well, things are settled here, but there's still a lot of things going on elsewhere, so I have to go back."

Missouri casually agreed, and then naturally followed the team of three.

Mu Feng was a little puzzled:

"You...... Drop us off at the airport? Now the war situation is urgent, no need to ......"

Missouri shook his head and said:

"No, I'm going back with you, now that the problem between us and us is solved, I naturally have to go back and continue to be an ambassador abroad!"

Mu Feng suddenly:

"Oh...... Well......"

So Missouri joined the team, and then the group took off from the cabin on a fighter jet, arrived at the deck of the Guangdong, waited for Xingyue and Qingyu to come back, and then took off from the deck of the Guangdong again and returned to the space island base.

The whole flight process took more than three hours, and Mu Feng closed his eyes directly when he got on the plane and began to clean up the loot so far.

The deep sea forward base of the Southern Islands, the open sea of the Antarctic snow region, has been a continuous fierce battle, and more than 10,000 deep seas have been wiped out, and a large amount of loot has been obtained.

Continuous ten consecutive lotteries, resources, scientific research points, equipment, drawings, technology, continuous rolling, with more and more draws, new things are becoming more and more rare, and the mentality of drawing to Mu Feng is completely numb.

A long time ago, when the lottery first began, the slave laborers wanted the equipment and blueprints the most, because the equipment was not complete at that time.

And now, the most hopeful thing has become the routine resource rewards and scientific research points, because in the ordinary lottery, there is almost nothing new equipment that Mu Feng can look forward to.

Therefore, at the time of the lottery, Mu Feng no longer looked at what the specific reward was, and it was a completely mechanical click.

The lottery lasted for almost an hour, and when it was finally over, Mu Feng let out a sigh and began to browse the results.

100,000 units each for each resource, followed by 60,000 research points and 40 soul cores.

Most of them are already equipment, technology, and drawings, and a small number of equipment and technologies that were not available before, as well as a small number of unpopular equipment and technologies that were not available before.

Most of the applications of these unpopular equipment and technologies are relatively narrow, and only a few are things that can be widely used.

In Mu Feng's view, among the technologies drawn this time, the most widely used material should be a material called "Active Destruction Element".

"Active Damage Element" is a new type of energetic material, which has won the second prize of the National Technological Invention Award in 2016.

Energetic materials, to put it simply, can be used to make missiles and artillery charges, which are equivalent to explosives, or materials that can be used as rocket fuel.

The active destroyer, which belongs to the former, can be said to be a new type of explosive.

This material has both metal-like mechanical strength, chemical energy comparable to that of high-energy explosives, and a safety profile similar to that of inert materials.

This material, like ordinary metal, can be directly machined and formed, and only when it hits the target at high speed, it will explode after the collision.

In other words, it is something similar to C4 plastic explosives, except that the material properties have changed from plastic to metal.

There are several specific uses.

First of all, it can be used as an outer layer of the warhead of anti-aircraft missiles and air-to-air missiles to replace the fragmentation part of the common fragmentation warhead.

The warheads of general air defense missiles and air-to-air missiles are filled with metal fragments, steel balls, metal continuous rods, etc., and these fragments are blown away by the explosion of the charge to expand the killing range.

These steel balls, fragments, and continuous rods are just ordinary metals, and if they hit the enemy's fighters, they can only kill with kinetic energy, and they will not explode.

So there are times when fighters are hit by fragments of anti-aircraft missiles, and if there are not enough of them and the distance is not close enough, they cannot be shot down.

After replacing these materials with active destruction elements, these fragments will be shot away by the explosion of the charge, and after colliding with the target, a secondary explosion will be produced, and even the body of the fighter will be torn, which greatly increases the destructiveness of air defense missiles and air-to-air missiles.

Then, there is the replacement of existing high-explosive warheads.

The high-explosive warheads of general aerial bombs, cruise missiles, and artillery shells, even in order to pursue the maximum explosive power, must have sufficient metal shell support structures.

The specific gravity of metal is much higher than that of explosives, so the weight of the shell of a high-explosive bomb usually accounts for more than 50% of the entire warhead, and the proportion of explosives inside is only about 40%.

The reactive destruction element is a material that has the properties of explosives and metals at the same time, and also has the characteristics of high-speed collision explosion.

So with a warhead with an active destroyer, it is possible to no longer distinguish between the shell of the projectile and the charge, and even in some cases cancel the fuse.

The whole warhead is a piece of explosive, and at the same time a piece of metal, and at the same time a fuse.

That is, after the use of this material, the charge of high-explosive shells will be infinitely close to 100%.

Finally, can a way of application that Mufeng is not very certain and needs to be further tested be used as a charge for armor-piercing shells?

In order to obtain as much kinetic energy as possible and to make the body as strong as possible, the entire warhead is almost an "iron lump".

The most extreme case was a battleship, with a one-ton armor-piercing warhead with an internal charge of only a dozen or twenty kilograms.

As an explosive, the reactive destroyer has metallic properties, and its specific gravity is basically the same as that of steel.

Used as a charge for armor-piercing shells, the charge of armor-piercing shells can be increased as much as possible, and even up to 40% of the charge of high-explosive bombs of aerial bombs, without affecting the weight and solidity of the projectile body.

The problem is that this material has the property of a collision explosion.

Therefore, it is necessary to determine through research and experiments whether it is possible to increase the buffer layer and other technical means to ensure that the warhead explodes after penetrating the enemy's armor, instead of exploding directly when it touches the armor, forming a smashing effect.

At the same time, it is also because of the characteristics of this collision explosion that this material can currently be determined to be suitable as a warhead for missiles, and as a warhead for conventional artillery shells, because when the shell is blown away by the explosion of the propellant, the effect is equivalent to a violent collision.

The electromagnetic cannon shell is slightly different, the electromagnetic cannon shell accelerates, and it is evenly accelerated in the barrel, not the one-time explosion of the traditional naval gun.

Therefore, the maximum thrust experienced by the electromagnetic cannon when accelerating in the barrel, if it is lower than the impact force required to cause the explosion of this material, can be used as an electromagnetic cannon shell, which also needs to be determined by research.

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