213 TECHNIC

ROCKET IS OUR WAY

WELCOME ON BOARD

WELCOME ON BOARD

Rocket Is Our Way

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213 TECHNIC

213 Technic is a student team established to produce innovative solutions in the field of space and aviation technologies, put theoretical knowledge into practice and push the boundaries of engineering. As a team, we conduct research especially in the field of rocket technologies and try to optimize rocket processes with the use of innovative materials and environmentally friendly designs. We also test new generation materials and aim to make rocket design processes more sustainable through various engineering analyses.

Our team consists of individuals specialized in different engineering disciplines such as mechanical design, software, aerodynamics, materials science and electronics. Each team member contributes to the projects with a collective effort by adopting innovative thinking in their own field. Our common goal is to produce more efficient, sustainable and innovative solutions by applying theoretical knowledge in the field, using scientific methods and developing experimental processes.

Our vision is to be a team that develops environmentally friendly and innovative projects in the field of rocket technologies in accordance with international standards. In the long term, we aim to bring the knowledge and experience we have gained in model rocketry to larger-scale projects and to produce effective solutions in the field of professional aerospace engineering with green rocket technologies. In line with this vision, we will not only participate in competitions, but also develop sustainable engineering solutions and eco-friendly technologies.

Excellence and Sustainability

Excellence and Sustainability

Rocket Is Our Way

Rockets

Rockets

Rocket Is Our Way

213 TECHNIC Rockets

MILLENNIUM MK-I

The Millennium Rocket is designed for flight in the transonic regime with its lightweight and durable structure.
The fuselage and nose cone are made of balsa wood due to its low density. In order to increase structural strength, fiberglass is coated on the balsa and reinforced with epoxy resin. The fins are also of the same composite structure. Thanks to this combination of materials, the rocket can operate safely at high altitudes that push the limits of the troposphere.

  • It provides an advantage against pressure changes in the transonic regime: Thanks to its low density, it reduces the mass of the rocket while accelerating at high speeds, minimizing the aerodynamic loads on the structure.
  • It offers low drag with the ogive form in the nose cone: Thanks to the shapeability of Balsa, precise aerodynamic profiles can be easily created.
  • It supports fuel efficiency when climbing to the upper limit of the troposphere: It allows the rocket to reach higher altitudes with less mass.
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Magazine

213 TECHNIC
Millennium Rockets MK-I

213 Technic's Millennium Rocket Magazine, which reflects our innovative rocket engineering approach, is prepared to share our model rocket studies, technical analyses and unique solutions we have developed. You can find our research and tests in many fields from aerodynamics to material science and structural design in our magazine. Follow us to discover the work of our team that aims to contribute to rocket technologies!

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Consultant

Consultant

Our Team Managers provide consultancy services for you, our rocket building partners.

Aziz Yiğit Can DURMUŞ

Coordinator - Structure Department Leader

I provide consultancy in the field of rocket structural dynamics and strength of material calculations.

Contact to me

Berkay DOĞAN

Coordinator - Avionic Department Leader

I provide consultancy on rocket avionics systems and green energy solutions.

Contact to me
Contact

Contact

Rocket Is Our Way

Address

University of Kyrenia
Şehit Yahya Bakır Street
Karakum Kyrenia, KKTC

Call Us

+90 538 361 4844

Email Us

213tech.mill@gmail.com

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