Engineering built for manufacturing, not just modeling.
The goal is to remove ambiguity before moving into casting, machining, assembly or validation. Every decision is reviewed against the process, material, geometry and end use.
Types and scope.
Development or refinement of geometry designed for function, assembly and manufacturing. Ideal for: New parts, redesigns and component optimization.
Definition of the mold, fixture or tool needed to make the part. Ideal for: Molds, plates, inserts, clamping systems and auxiliary components.
Digital reconstruction of an existing part from a sample, measurement or 3D scan. Ideal for: Spare parts without drawings, obsolete components and existing molds.
Models, drawings, data sheets and manufacturing criteria organized for production. Ideal for: Handoff to manufacturing, change control and traceability.
Technical data sheet.
3D CAD engineering and reverse engineering
Subject to validation based on the part, tooling and target process
Designs for aluminum, steels, polymers and non-ferrous alloys
Drawing set, technical data sheet and manufacturability study
Actual capacity subject to technical validation based on geometry, weight, material, tolerances and process.
How we work.
We review drawings, 3D files, photos, physical samples, existing molds and operating conditions.
We identify dimensions, interfaces, function, constraints and missing data.
We develop the geometry and architecture of the product or tooling.
We check the design against materials, processes, tolerances, assembly and maintenance.
We deliver the agreed files, drawings, technical data sheet and manufacturing recommendations.
Technical considerations.
Geometry must match the actual manufacturing process, not just the nominal shape of the part.
Tolerances are set according to function, process, material and inspection method; we do not publish universal values.
The accuracy of the result depends on the quality of the drawings, samples, scans and requirements provided.
It is best to define who approves, file versions and the scope of each revision.
Why Fundimoldes?
Engineering, patternmaking, casting, machining, assembly, finishing, validation and after-sales support under one operation.
Every proposal is backed by a review of geometry, material, process, equipment and real-world conditions.
Drawings, data sheets, reports and inspections are included according to project scope.
Fundimoldes can manufacture, maintain, repair, modify and reproduce tooling components.
Information for your quote.
Reply within 24 business hours via WhatsApp +57 321 227 8823.
Common questions.
Can you develop engineering from a physical sample?
Yes. The sample can be captured by measurement or 3D scanning and then converted into CAD geometry, subject to the agreed scope.
What files do you deliver?
Depending on the project: 3D geometry, a 2D drawing set, technical data sheet, manufacturability study and manufacturing recommendations.
Does the service include manufacturing the mold or part?
It can be contracted as standalone engineering or combined with Fundimoldes patternmaking, casting, CNC machining, assembly and validation.
What information do you need for a quote?
Drawing, 3D model, sample, photos, material, dimensions, expected volume, functional tolerances and target process, when available.
From design to manufacturing.
Fifteen mold lines designed and built in-house.
Reverse engineering, manufacturing and verification.
Sample digitizing and comparison against CAD.
Validate form and fit before building tooling.
Process finder in five questions.
Send the idea, drawing or sample for engineering review.
Turn your requirement into a manufacturable solution
Share drawings, a 3D model, photos, dimensions, material, quantity and operating conditions. Our technical team will validate the manufacturing route and scope.
