Bespoke Prototyping Solutions
SANDO specializes in precision plastic injection molds and parts, from prototypes to mass production,
with leading technologies like SLA and SLS.
We guarantee tight tolerances and high resolution, meeting your exact standards. Trust in our expert team for custom, quality components.
Advantages Of Prototyping And 3D Printing
Our skilled team utilizes SLA, SLS, FDM, and DLP printing methods to produce accurate and functional prototypes.
Our skilled team utilizes SLA, SLS, FDM, and DLP printing methods to produce accurate and functional prototypes.
Our skilled team utilizes SLA, SLS, FDM, and DLP printing methods to produce accurate and functional prototypes.
Our skilled team utilizes SLA, SLS, FDM, and DLP printing methods to produce accurate and functional prototypes.
Prototyping
Prototyping is a critical stage of product development that allows designers and engineers to validate, test, and improve their design concepts. 3D printing, CNC machining, and vacuum casting are three commonly used prototyping techniques that each have their own characteristics in terms of the appearance, structure, and function of producing prototypes.
● Appearance: Complex designs with possible layer lines on the surface.
● Structure: Suitable for complex internal structures, moderate strength.
● Function: Rapid iteration, ideal for design verification.
● Appearance: Complex designs with possible layer lines on the surface.
● Structure: Suitable for complex internal structures, moderate strength.
● Function: Rapid iteration, ideal for design verification.
● Appearance: Complex designs with possible layer lines on the surface.
● Structure: Suitable for complex internal structures, moderate strength.
● Function: Rapid iteration, ideal for design verification.
1 Design Phase
Create a digital model with CAD software, set design specs, and requirements.
1 Design Phase
Create a digital model with CAD software, set design specs, and requirements.
1 Design Phase
Create a digital model with CAD software, set design specs, and requirements.
1 Design Phase
Create a digital model with CAD software, set design specs, and requirements.
1 Design Phase
Create a digital model with CAD software, set design specs, and requirements.
1 Design Phase
Create a digital model with CAD software, set design specs, and requirements.
Technologies and Materials:
Materials include plastics (ABS, PLA, PETG, PC), metals (aluminum, steel), rubber/silicone, and resins. The selection of technology and materials for prototyping is driven by its intended use, complexity, and durability. The objective is to mirror the final product’s functionality and aesthetics, while managing cost and time effectively.
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3D Printing
3D printing technology, also known as additive manufacturing, is a technique for producing three-dimensional objects by layering materials on top of each other. The basic principle of 3D printing involves breaking down a digital model into a series of thin layers, which are then sequentially printed and stacked by a specific 3D printer, ultimately forming a three-dimensional entity.
It enables the creation of complex structures that are difficult to achieve with traditional manufacturing methods.
It enables the creation of complex structures that are difficult to achieve with traditional manufacturing methods.
It enables the creation of complex structures that are difficult to achieve with traditional manufacturing methods.
It enables the creation of complex structures that are difficult to achieve with traditional manufacturing methods.
It enables the creation of complex structures that are difficult to achieve with traditional manufacturing methods.
It enables the creation of complex structures that are difficult to achieve with traditional manufacturing methods.
Application
The application scenarios of 3D printing technology are very extensive, including but not limited to the following fields:
Printing architectural models, buidling structures and decorative items
Printing architectural models, buidling structures and decorative items
Printing architectural models, buidling structures and decorative items
Printing architectural models, buidling structures and decorative items
Printing architectural models, buidling structures and decorative items
Printing architectural models, buidling structures and decorative items
Case Showcase
The 3D-printed nylon gears are exceptional in quality and performance. They operate smoothly with minimal noise and have shown great resistance to wear. The precision of the gears has significantly improved our machinery’s efficiency. Absolutely thrilled with the durability and the excellent service provided. Highly recommend GV MOLD for anyone seeking high-quality 3D printing solutions.
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The 3D-printed nylon gears are exceptional in quality and performance. They operate smoothly with minimal noise and have shown great resistance to wear. The precision of the gears has significantly improved our machinery’s efficiency. Absolutely thrilled with the durability and the excellent service provided. Highly recommend GV MOLD for anyone seeking high-quality 3D printing solutions.
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The 3D-printed nylon gears are exceptional in quality and performance. They operate smoothly with minimal noise and have shown great resistance to wear. The precision of the gears has significantly improved our machinery’s efficiency. Absolutely thrilled with the durability and the excellent service provided. Highly recommend GV MOLD for anyone seeking high-quality 3D printing solutions.
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Get In Touch Or Visit Us
Let's Talk About Your Mould Project Now.
Design With More Intelligence, Speed, & Profitability
- Build accurate 3D models and tailor them for optimal manufacturing efficiency.
- Have a team of skilled designers and engineers to provide professional design support.
- Minimizing rework and increasing overall productivity and profitability of molding operations