Mechanical Design Considerations

In summary, considerations for designing a remote handling machine to deploy tooling in a hazardous environment include understanding the specific task at hand and the desired method of handling, as well as the specific hazards present in the environment. In the case of a nuclear plant, these hazards may include high temperatures. Gathering as much information as possible about the project can help in providing effective suggestions for the design.
  • #1
sagesse
2
0
Please can someone give some of the Mechanical Design considerations in the Design of a Remote Handling Machine to Deploy Tooling in a Hazardous Environment?
 
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  • #2
Hello and welcome to PF Sageese. I'm new here too, but maybe I can help you out.

Lets start with a little more information about what your trying to accomplish like:

What are you trying to handle? and how are you wanting to handle it? Is this similar to a conveyor or a robotic arm?

Second, how is the environment hazardous? Is it poison gas, explosive dust, or high temperature?

Any information you can provide could help us provide you with better suggestions.

Regards,

Hazard
 
  • #3
It is a robotic arm or small machine that can be control with remote to move in small tunnels. It is a nuclear plant environment and it is high temperature environment. The question is just the way it is, because it is given to me to give a presentation on it at a particular job interview.

Thanks
 

Related to Mechanical Design Considerations

1. What is mechanical design and why is it important?

Mechanical design is the process of creating a mechanical system or component that meets a specific function or purpose. It involves the use of principles of mechanics, materials science, and mathematics to design and develop products. Mechanical design is important because it ensures that products are safe, reliable, and efficient.

2. What are the key factors to consider in mechanical design?

The key factors to consider in mechanical design include functionality, performance, materials, manufacturability, and cost. Functionality refers to the product's intended purpose and how well it performs that function. Performance includes factors such as speed, strength, and accuracy. Materials need to be carefully chosen based on their properties and compatibility with the product's environment. Manufacturability involves designing for ease of production and assembly. Cost is an important consideration to ensure the product is affordable and profitable.

3. How do you ensure safety in mechanical design?

Safety is a crucial aspect of mechanical design. It can be ensured by following industry standards and regulations, conducting thorough risk assessments, and performing extensive testing and simulations. It is also important to consider factors such as ergonomics, human factors, and potential hazards in the product's environment.

4. How do you balance aesthetics and functionality in mechanical design?

Aesthetics and functionality are both important aspects of mechanical design. To balance the two, designers must consider the product's intended use and audience. Functional requirements should always take precedence over aesthetics, but the two can be integrated to create a visually appealing and user-friendly product. Regular feedback and iteration can also help strike a balance between the two.

5. How do you incorporate sustainability in mechanical design?

Sustainability is becoming increasingly important in mechanical design. It involves designing products that have a minimal impact on the environment and can be manufactured, used, and disposed of in an environmentally responsible manner. This can be achieved by using sustainable materials, designing for energy efficiency and durability, and considering the product's life cycle. Collaboration with other disciplines, such as environmental engineers, can also help incorporate sustainability into mechanical design.

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