Low Cost Esfiha Shaping Machine

Client

  • Name: Confidential (Food Production Company)
  • Industry/Field: Food & Hospitality

Summary

  • Objective: The goal was to create a cost-effective Esfiha Shaper Machine using readily available materials, primarily MDF sheets coated with food-safe resin, to streamline the process of shaping Esfiha dough.
  • Inspiration and Concept: The concept was driven by the need to reduce manufacturing costs while ensuring the machine meets food safety standards and enhances kitchen productivity.
  • Challenges:
    • Balancing cost-effectiveness with functionality.
    • Ensuring compliance with food safety standards.
    • Designing a compact machine that fits into the existing kitchen layout.

Photos and Sketches

Production Process

  • Materials Used:
    • MDF Sheets: Used for the main structural components.
    • Food-Safe Resin: Applied to the MDF sheets to ensure a hygienic, smooth, and durable surface suitable for kitchen use.
  • Tools and Techniques:
    • CAD: Used to create a detailed and precise virtual model of the Esfiha Shaper Machine.
  • Prototyping:
    • A prototype was created using cut MDF sheets, coated with food-safe resin, and tested for functionality in a kitchen environment.
  • Final Output:
    • The final machine was a compact, space-saving device that improved the speed and consistency of shaping Esfiha dough.

Results and Client Feedback

  • The client was highly satisfied with the final design, noting the significant improvement in productivity and ease of use.
  • The machine was seamlessly integrated into the kitchen workflow, saving time and effort for the staff.

Conclusion and Key Takeaways

  • This project demonstrated my ability to deliver innovative and cost-effective engineering solutions.
  • The use of readily available materials and a focus on functionality and food safety ensured the project met the client’s unique requirements.
  • The Low-Cost Esfiha Shaper Machine showcased my proficiency in using 3D CAD tools and applying practical engineering principles to real-world challenges.

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