Engineering Dynamics: Find gun initial recuperator force to limit recoil

In summary, the conversation discusses the use of a buffer and recuperator to control the recoil of a field gun. The equations used include conservation of momentum and the net force equation. An attempted solution is attached, which involves using energy conservation to determine the initial force necessary to limit the recoil to 1 meter. However, the answer could not be obtained.
  • #1
mdemel
1
0
1)The breech and barrel of a field gun have a total mass of 453.6kg. The recoil of the barrel is controlled by resistance forces from a buffer and recuperator, these forces are given by: Buffer force=71000/(s+1), recuperator force= P+ 4380s. (both are in Newtons). s is the recoil of the barrel. P is the initial force in the recuperator. Determine the value of P necessary to limit the recoil to 1m when a 110N projectile is fired with a muzzle velocity of 760m/s.

2) Equations used: p(before)=p(after) from conservation of momentum. Net force F=ma. a=v.dv/vs.


3) attempted solution and question with diagram is attached. There is also an answer at the bottom but i could not get it.
 

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  • #2
Think in terms of energy conservation. In the instant after the gun fires the gun will have some kinetic energy corresponding to the momentum it gained. The buffer and recuperator will do work on the gun to bring it to a halt over a distance of 1 meter.
 

Related to Engineering Dynamics: Find gun initial recuperator force to limit recoil

What is engineering dynamics?

Engineering dynamics is the branch of engineering that deals with the study of forces and motion of objects, and how they interact with each other in a given system. It involves the application of mathematical and physical principles to analyze and design systems that involve motion.

What is a gun initial recuperator force?

A gun initial recuperator force is the force exerted by the recuperator mechanism in a gun system to absorb the recoil energy generated by the firing of a bullet. It is a critical component in controlling the recoil and ensuring the stability of the gun during firing.

Why is it important to limit recoil in guns?

Limiting recoil in guns is important for several reasons. Firstly, it helps to improve the accuracy of the gun by minimizing the effects of recoil on the shooter's aim. Secondly, it reduces the wear and tear on the gun and its components, prolonging its lifespan. Lastly, it also helps to provide a more comfortable shooting experience for the shooter.

How do engineers determine the required initial recuperator force for a gun?

To determine the required initial recuperator force for a gun, engineers use mathematical models and simulations to analyze the forces and motion involved in the gun system. They also take into account factors such as the weight and velocity of the bullet, the weight and length of the gun, and the desired recoil limit. This information is then used to design the appropriate recuperator mechanism for the gun.

What factors can affect the initial recuperator force in a gun system?

The initial recuperator force in a gun system can be affected by various factors such as the type and weight of the bullet, the weight and length of the gun, the type of ammunition used, and the desired recoil limit. Other factors such as temperature, humidity, and altitude can also have an impact on the performance of the recuperator mechanism.

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