After mastering the complete design and manufacturing method of the four-legged drone's mechanical firepower platform, Ye Bai revealed a satisfied expression.
In this way, he did not waste his time and effort in learning for more than a month.
Even though Elder Huang's course in the Weapon Engineering major was called " Super Unmanned Combat Vehicle Engineering and Design ", Elder Huang had talked a lot about the knowledge and technology of the bio-inspired robot in this last class. He also agreed that the students should try to build a bio-inspired robot in the homework.
Therefore, Ye Bai decided to use the four-legged drone mechanical firepower platform as his homework.
The four-legged unmanned mechanical firepower platform was the same as the VU-T10 tracked ground unmanned combat platform. The reason why they were both referred to as platforms was because all new designs of military vehicles were focused on a platform.
For example, the VU-T10 tracked ground unmanned combat platform's tracked chassis and vehicle shell were actually a certain type of armored combat vehicle of our army.
The large-aperture integrated rapid-fire gun and parallel machine gun were not the standard weapons of every unmanned vehicle. The unmanned vehicle was only a firepower platform. Elder Huang had mentioned that with the development of unmanned turrets and fire control technology in the future, the VU-T10 tracked ground unmanned combat platform was bound to carry a variety of weapons and equipment.
The unmanned vehicle's chassis was common to the armored infantry vehicle's. The two shared a platform not because it was difficult to develop new vehicles, but because it was to avoid the military's various equipment and vehicles being too complicated.
If there were dozens of different models of vehicles and equipment carriers in a synthetic battalion, it would be a huge pressure on logistics, maintenance, and repairs.
Logistics played an important role in the victory of a war.
It was also due to these considerations that even if it was an unmanned vehicle, it would use the most suitable armored track as the chassis.
Unmanned vehicles were a kind of existence that charged into battle and pushed forward on the battlefield. Their maintenance and supply frequency was bound to be very frequent. At this time, as a shared platform, any logistics support team could repair and supply them. Its advantage was invisible.
Elder Huang had mentioned these during his lecture.
Therefore, even if many students in the Weaponry Engineering Department couldn't understand Elder Huang's professional skills and knowledge, Elder Huang, as a big shot in the military industry, had given them an invisible influence on their future military design. The concept of the overall situation and development that he had cultivated would definitely benefit them for life.
Ye Bai's four-legged unmanned mechanical firepower platform was slightly different from the VU-T10 tracked unmanned ground combat platform.
The VU-T10 unmanned vehicle was also used as a platform. It was a tracked armored platform developed by other military designers.
However, Ye Bai's four-legged unmanned mechanical firepower platform was the first model of a bio-inspired robot that was expected to be installed in the military in large numbers. It would become a platform that other military bio-inspired robots could use as a reference in the future.
For example, Ye Bai had developed a firepower platform. If someone wanted to develop a four-legged unmanned mechanical supply transportation platform or other platforms in the future, there was a high chance that they would use Ye Bai's four-legged unmanned mechanical platform.
It could be said that once the four-legged unmanned mechanical firepower platform was successfully developed and installed in large quantities, Ye Bai would lay the foundation for the development of the military four-legged unmanned mechanical platform in the future!
In the future, Ye Bai might also become a prominent figure in the military industry. He might even be the first page of the bio-robot textbook.
However, the prerequisite for all of this was that Ye Bai's four-legged unmanned mechanical firepower platform had to be a huge success!
After Elder Huang left, Ye Bai's class gathered and rushed to the cafeteria for lunch. Then, they went back to the dormitory to start the new homework design.
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In the male dormitory building of the Defense Technology University.
Ye Bai was sitting in front of his desk, thinking about two questions.
The first problem was the module design of the four-legged unmanned mechanical firepower platform.
The so-called module design was also to reduce production costs, ease maintenance, and meet the different needs of multitasking.
For example, when performing different missions, the module design allowed the four-legged unmanned mechanical firepower platform to freely change parts to meet the needs of different missions.
In addition, in terms of overall design, the modules could also allow the four-legged unmanned mechanical firepower platform to quickly replace the damaged parts and continue to fight even if a part of it was damaged.
Currently, Ye Bai had roughly divided the four-legged unmanned mechanical firepower platform into three major modules:
At the bottom, the four anti-life spider structures and their independent legs were considered a module. This was also a component that was extremely easy to be damaged in battle. Not only did it need to be modeled, but the bionic joints also needed to be strengthened with small shields.
Above the limbs, there was another module that was integrated with the power and detection system.
Lastly, there was a weapon system that could rotate 360 degrees on the rotating shaft in the middle of the integrated part.
Ye Bai already had a concrete solution to the module design of the entire four-legged unmanned mechanical firepower platform. What really troubled him was the second problem, which was the firepower composition of the four-legged unmanned mechanical firepower platform.
According to Ye Bai's plan, a normal platoon in a military company would have about nine soldiers, while the reinforced platoon would have twelve soldiers. The four-legged robots needed to replace the flesh and blood of the soldiers to advance on the battlefield, so they naturally had to be designed according to the number of reinforced platoons.
In other words, Ye Bai had to design at least 12 four-legged unmanned mechanical firepower platforms, and design a set of weapons and equipment for them that could cooperate with each other, cover each other, and form a crossfire suppression team.
However, since Ye Bai had never gone deep into the company, he lacked an effective understanding of the weapons and equipment composition of the Firepower Enhancement Squad and the specific firepower.
In addition, Ye Bai still wanted to make the four-legged unmanned mechanical firepower platform's team more ferocious, so Ye Bai had no choice but to go online to find out what everyone's ideal individual firepower and class firepower were!
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Everyone, pay attention to food safety when you eat out in the summer. The author has food poisoning and is only feeling better now, so the update is a little late!
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