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ArcShot: Sci-Fi Break-Action BB Blaster
ArcShot: Sci-Fi Break-Action BB Blaster
Single-shot mechanical blaster featuring highly satisfying break-action reloads and a sleek sci-fi design. Load custom reusable BB casings and experience incredibly satisfying reloads!
Vostok Labs
2 created · 135 backers
USD 105
pledged of USD 1,000 goal
10
backers
Funding Unsuccessful
The project’s funding goal was not reached on 2026/05/24 14:28 UTC.
Story

ArcShot

Break-Action BB Blaster

I wanted to share a passion project I’ve been working on for quite some time now: single-shot BB blaster with a heavy sci-fi aesthetic and a deeply satisfying loading mechanism. It's highly tactile, mechanical, and designed to be a ton of fun to build and use.

 

What is this

This is a 3D-printable mechanical blaster that fires standard 6mm BBs. It is designed to be fun to play and easy to assemble. To build it, you only need a Maker's Beginner Kit, OR you can easily source the parts yourself using:

  • 3 to 6 standard rubber bands
  • 16x BT3x8 self-tapping screws

How It Works

I wanted to capture the incredibly satisfying feeling of mechanical reloads. Instead of just pouring BBs into a hopper, this blaster uses custom 3D-printed bullet casings.

  • The Ammo: Standard 6mm BBs snap snugly into reusable 3D-printed bullet casings.
  • The Action: It operates as a single-shot, break-action blaster.
  • The Process: Pull back the mechanism to cock it, break open the barrel, slide your loaded casing into the chamber, snap it shut, and fire. Afterward, break the barrel open again to extract the spent casing. It's hands-on, mechanical, and highly addictive to use.

Watch the full cycle if  cock, load, fire and eject with sound.

Why Crowdfunding

 Right now, I have a highly functional prototype, but I want to bring this project to a truly polished, finished state. Raising funds will allow me to dedicate the time needed to perfect the core mechanics and build out a complete ecosystem around the blaster.

With your support, I will finish:

  • Refining the mechanism: Tweaking tolerances so the moving parts print and operate flawlessly across various 3D printers.
  • Extra designs and accessories: Designing alternative aesthetic parts, a display stand, and dedicated storage cases for both the blaster and the bullet casings.
  • Comprehensive documentation: Creating clear, step-by-step written build instructions and a complete video assembly guide so anyone can put it together easily.
     

IMPORTANT: Safety, Usage, and Liability Disclosures

Please read carefully before backing, downloading, or printing this project.

  • Product Classification & Intended Use: The ArcShot is a 3D-printable mechanical toy, prop, and recreational item. It is not a real firearm. It is designed solely for recreational use and display, and must never be used in any way that could threaten, intimidate, or harm people or animals.
  • Safety Warnings & Eye Protection: Always wear eye protection when operating this toy. Never, under any circumstances, aim or fire the blaster at people, animals, or faces. Always ensure you have a safe, controlled backstop when firing.
  • Visual Representation & Public Safety: The sci-fi appearance of this blaster is purely aesthetic and is not intended to represent any real firearm, nor should it ever be marketed as such. I strongly advise printing the ArcShot in bright, distinctive, non-realistic colors (such as neon orange, green, or bright blue) to prevent any confusion. Never carry, display, or use this toy in public spaces, and never present it as a real firearm. It should only be used in private, controlled environments.
  • Age Restrictions & Choking Hazards: This project is recommended for users aged 14 and up. The build involves small parts, screws, rubber bands, and 6mm BBs, all of which present severe choking hazards. Adult supervision is strictly required for younger users.
  • Projectile & Mechanism Limits: The ArcShot is designed exclusively to fire standard plastic 6mm BBs using the tension of 3 to 6 standard rubber bands. Do not exceed this maximum tension and do not use metal bearings or unauthorized projectiles. Doing so greatly increases the risk of injury from snapping bands or shattered plastic.
  • Printing & Assembly Risks: The structural integrity of 3D-printed parts depends entirely on the user and the inherent limitations of plastic. Weak prints, incorrect filament, or using the wrong size screws/hardware may cause the blaster to break under mechanical tension, which can lead to malfunction or injury. Even well-printed plastic can experience unpredictable material fatigue over time. Follow all recommended print settings and instructions carefully, and always test the mechanism in a safe direction before standard use.
  • Modification Risks: Modifying the 3D files (e.g., altering the projectile system, increasing the rubber band capacity, or changing the core mechanics) creates severe safety hazards. Any modifications are done entirely at your own risk.
  • Legal Compliance: Laws regarding replica weapons, toy blasters, and projectile devices vary drastically by country, state, and municipality. You, the user, are solely responsible for checking and strictly complying with your local laws before downloading, printing, assembling, or using the ArcShot.
  • Strict Liability Disclaimer: By backing this campaign, downloading the files, or assembling the ArcShot, you acknowledge and agree that the designer, MakerWorld, and Bambu Lab are absolutely not responsible or liable for any injuries, property damage, or legal issues caused by the use, proper or improper, of this item. Because 3D-printed plastic under mechanical tension can be unpredictable, this liability waiver applies even if all instructions, hardware recommendations, and safety guidelines are followed perfectly. You assume all inherent risks associated with the fabrication and operation of this project.
Risks and Challenges
The risk for this campaign is minimal. The project is already about 85% complete, and the core mechanism is fully functional and tested on my own machines. The remaining work is primarily focused on creating the extra accessories, refining tolerances, and producing the assembly documentation. Because the physical hardware requirements are so simple (just rubber bands and screws or a standard Maker's Beginner Kit), you won't have to worry about complex electronics or supply chain nightmares. My main challenge is ensuring the digital files are as forgiving as possible across different filament types and printer brands. I commit to keeping the community fully updated on my progress as we cross the finish line.
Use of AI
AI Technology Implementation in Content Creation
The campaign description, images and text formatting were created by me and then reviewed and edited by AI language models to ensure the messaging is clear, accurate, and comprehensive, as English is not my native language.
Human Oversight & Creative Originality
AI has played only an editorial role in this project All 3D files been created entirely without the use of AI.
Third-Party Intellectual Property Compliance
AI generated content has been produced based on my personal data and materials
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