WHY
ADDITIVE
MANUFACTURING

industrial automation
PA-carbon, PET-carbon

industrial automation
PA-carbon, PET-carbon

A traditional way of manufacturing can’t fit anymore to the fast and ever-changing reality we are living in.
The digitalization of the production and a tight connection between physical and digital systems are the most efficient answer to the manufacturing necessities of the industries, giving real time feedback, allowing a more flexible management of the manufacturing cycle and increasing the production.

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finished
products

finished
products

finished
products

no moulds

no moulds

no moulds

fast production

fast production

fast production

on demand

on demand

on demand

confidentiality

confidentiality

confidentiality

production scalability

production scalability

production scalability

ADVANTAGES
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WHY
CARACOL
FACTORY

Caracol Factory is specialized in additive manufacturing for production purpose. In particular we work in the field of industrial application for final parts. Thanks to our partnerships we can offer the best mechanical solution with the best techno-polimers available on the market.

Caracol Factory is specialized in additive manufacturing for production purpose. In particular we work in the field of industrial application for final parts. Thanks to our partnerships we can offer the best mechanical solution with the best techno-polimers available on the market.

Caracol Factory is specialized in additive manufacturing for production purpose. In particular we work in the field of industrial application for final parts. Thanks to our partnerships we can offer the best mechanical solution with the best techno-polimers available on the market.

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your needs

your needs

your needs

co-creation

co-creation

co-creation

digitalizaton

digitalizaton

digitalizaton

manufacturing

manufacturing

manufacturing

delivery

delivery

delivery

optimization

optimization

optimization

WORKFLOW
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EXPERT IN
GENERATIVE
DESIGN

Generative design is a tool to innovate the process of design and engineering. Countless solutions can be generated thanks to digitalization and computer algorithms, which allow to optimize the design keeping inalterated the mechanical characteristics of the pieces. 3D printing then allows the maximum flexibility in shape production.

Generative design is a tool to innovate the process of design and engineering. Countless solutions can be generated thanks to digitalization and computer algorithms, which allow to optimize the design keeping inalterated the mechanical characteristics of the pieces. 3D printing then allows the maximum flexibility in shape production.

Generative design is a tool to innovate the process of design and engineering. Countless solutions can be generated thanks to digitalization and computer algorithms, which allow to optimize the design keeping inalterated the mechanical characteristics of the pieces. 3D printing then allows the maximum flexibility in shape production.

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DISCOVER OUR MATERIALS:
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METAL REPLACEMENT

Case Study: A project developed for a robotic automation company, consisting of a re-design operation of traditional grippers for 6-axis industrial robots Kuka KR Cybertech and Kuka Agilus models. The company's need was to manufacture a tool that was both lightweight and mechanically very performing: our proposal was to intervene on the design of the traditional clamp, commonly made of metal, reinterpret and redesign the shape and use a innovative additive manufacturing technology to create a continuous carbon fiber tool coated with a nylon body. The result is 50% lighter than the traditional tool, with an overall simplification of the tool itself, consisting of 3 parts compared to the original 5.

Case Study: A project developed for a robotic automation company, consisting of a re-design operation of traditional grippers for 6-axis industrial robots Kuka KR Cybertech and Kuka Agilus models. The company's need was to manufacture a tool that was both lightweight and mechanically very performing: our proposal was to intervene on the design of the traditional clamp, commonly made of metal, reinterpret and redesign the shape and use a innovative additive manufacturing technology to create a continuous carbon fiber tool coated with a nylon body. The result is 50% lighter than the traditional tool, with an overall simplification of the tool itself, consisting of 3 parts compared to the original 5.

Case Study: A project developed for a robotic automation company, consisting of a re-design operation of traditional grippers for 6-axis industrial robots Kuka KR Cybertech and Kuka Agilus models. The company's need was to manufacture a tool that was both lightweight and mechanically very performing: our proposal was to intervene on the design of the traditional clamp, commonly made of metal, reinterpret and redesign the shape and use a innovative additive manufacturing technology to create a continuous carbon fiber tool coated with a nylon body. The result is 50% lighter than the traditional tool, with an overall simplification of the tool itself, consisting of 3 parts compared to the original 5.

industrial automation
PA-carbon, PET-carbon

industrial automation
PA-carbon, PET-carbon

#industrial automation
materials: PA-carbon, PET-carbon

AUTOMOTIVE

Case study: This is a functional component produced for after-market sales, the request focused on the need for flexible production, on small lots, at an affordable price, easy goals for our innovative 3d printing service. The original geometry has been re-adapted in a contemporary key, optimizing the component for production in additive manufacturing, made of PET additivated with short carbon fiber: the aesthetic component in this case also plays a central role, considering the appeal required to a product sold after market.

Case study: This is a functional component produced for after-market sales, the request focused on the need for flexible production, on small lots, at an affordable price, easy goals for our innovative 3d printing service. The original geometry has been re-adapted in a contemporary key, optimizing the component for production in additive manufacturing, made of PET additivated with short carbon fiber: the aesthetic component in this case also plays a central role, considering the appeal required to a product sold after market.

Case study: This is a functional component produced for after-market sales, the request focused on the need for flexible production, on small lots, at an affordable price, easy goals for our innovative 3d printing service. The original geometry has been re-adapted in a contemporary key, optimizing the component for production in additive manufacturing, made of PET additivated with short carbon fiber: the aesthetic component in this case also plays a central role, considering the appeal required to a product sold after market.

industrial automation
PA-carbon, PET-carbon

industrial automation
PA-carbon, PET-carbon

#light mechanics
materials: PA-carbon, PET-carbon

PRODUCTS OUT OF SERIES

Case Study: reproduction through additive manufacturing techniques of products and components difficult to find or even out of the market, represents the only accessible answer to a rapidly growing need, a solution that did not exist until a few years ago.

Case Study: reproduction through additive manufacturing techniques of products and components difficult to find or even out of the market, represents the only accessible answer to a rapidly growing need, a solution that did not exist until a few years ago.

Case Study: reproduction through additive manufacturing techniques of products and components difficult to find or even out of the market, represents the only accessible answer to a rapidly growing need, a solution that did not exist until a few years ago.

industrial automation
PA-carbon, PET-carbon

industrial automation
PA-carbon, PET-carbon

#automotive, yacht design, racing&motorsport
materials: PET, ABS, PA

FUNCTIONAL PROTOTYPING

Case Study: K.J. Project Myklebust, D. Le Gall and G. Secco: a project that changes the way pasta is prepared. It is the device that moves, not the dough, the opposite of what happens in traditional pastamakers, thus opening itself to a more practical and intuitive use. 3D printing can come into play in a disruptive way within any product design development in the prototyping phase. A useful tool for designers to make the best choices on design and functionality.

Case Study: K.J. Project Myklebust, D. Le Gall and G. Secco: a project that changes the way pasta is prepared. It is the device that moves, not the dough, the opposite of what happens in traditional pastamakers, thus opening itself to a more practical and intuitive use. 3D printing can come into play in a disruptive way within any product design development in the prototyping phase. A useful tool for designers to make the best choices on design and functionality.

Case Study: K.J. Project Myklebust, D. Le Gall and G. Secco: a project that changes the way pasta is prepared. It is the device that moves, not the dough, the opposite of what happens in traditional pastamakers, thus opening itself to a more practical and intuitive use. 3D printing can come into play in a disruptive way within any product design development in the prototyping phase. A useful tool for designers to make the best choices on design and functionality.

industrial automation
PA-carbon, PET-carbon

industrial automation
PA-carbon, PET-carbon

#manufacturing industry, product design, rapid prototyping
materials: PA-carbon, PET-carbon, PET, ABS, PA

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biomedical

biomedical

biomedical

oild&gas

oild&gas

oild&gas

yacht design

yacht design

yacht design

automotive

automotive

automotive

aircraft

aircraft

aircraft

light mechanics

light mechanics

light mechanics

MAIN APPLICATION SECTORS
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Send your 3d file and we will get back to you with a custom quote based on your needs.
file format: .stl .step

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