TAYNIUM / SHEET 01 OF 01 ENGINEERING & TECHNOLOGY — LINCOLNSHIRE, UK
Engineering · Automation · Software

Engineering, automation and software
built around real manufacturing.

Taynium helps manufacturers and engineering teams improve machinery, automate repetitive CAD processes and build more reliable production-data workflows. From product development and SOLIDWORKS tools to prototyping and process improvement, every solution is grounded in practical engineering experience.

PROBLEM

Most engineering problems live in the gaps.

Not in one big failure — in the space where machinery, CAD systems, production information and business processes have grown up separately, each solving its own problem without ever quite talking to the others.

01

A drawing gets issued from the wrong configuration, and the wrong revision reaches the shop floor.

02

A DXF goes to the laser carrying last month's profile, material or thickness data.

03

A workshop-floor modification never makes it back into the model — and the knowledge stays in someone's head.

None of this is anyone's fault. It's what happens when practical engineering knowledge lives in people, not in a controlled process. Taynium exists to close those gaps — connecting design, manufacturing, software and real-world machinery into something that actually holds together.

Technical schematic drawing of a modular roller-table machine with dimension lines
CAPABILITY

What Taynium does

ENG / 01

Engineering & Machinery Development

Concept work, machinery design and redesign for reliability and manufacture, informed by time spent building, wiring, servicing and installing machinery — not just modelling it.

ENG / 02

SOLIDWORKS Automation

Macros, add-ins and Task Pane applications built around how a specific design office actually works, not how a generic tool assumes it should.

ENG / 03

Drawing & Production-Data Management

Controlling how DXFs, PDFs, BOMs and revisions move from CAD to the shop floor, so the right file reaches the right machine every time.

ENG / 04

Manufacturing Workflow Development

Mapping how information should flow between CAD, PDM, ERP, spreadsheets and production before any software gets bought or built.

ENG / 05

Prototyping & 3D Printing

Functional prototypes, jigs, fixtures and design validation using FDM printing in engineering-grade materials.

ENG / 06

Technical Investigation

Root-cause analysis, feasibility studies and equipment evaluation for problems that haven't yet been scoped into a project.

WHY TAYNIUM

Range, not a single discipline.

Taynium has assembled, wired, serviced, installed and designed machinery — not just drawn it. That range means design decisions get judged on whether they can actually be built, run and maintained, not only whether they work in CAD.

  • Cross-disciplinary knowledge — mechanical, electrical, manufacturing and software
  • Hands-on machinery experience across the full lifecycle
  • Bespoke tools built around your actual workflow, not a generic product
  • Workshop knowledge translated into working software
  • Practical, documented, maintainable implementation
  • Scalable from a quick prototype to an embedded internal system
SELECTED WORK

A sample of the problems this covers

SOLIDWORKS Automation

Engineering workflow and drawing-issue platform

A working SOLIDWORKS Task Pane application built to control project setup, metadata extraction, file validation and PDF drawing issue, replacing a manual, memory-dependent process.

Product Configuration

Configurable modular roller-table system

A rules-based configurator handling table dimensions, panels, rollers, motors, guards and part numbers, with automation linking configuration choices to manufacturing data.

Root-Cause Investigation

Rotating machinery and vibration investigation

Investigation into a rotating coil and shaft assembly, covering runout measurement, bearing arrangement and manufacturing tolerance to separate design issues from assembly issues.

View all selected work
FOUNDER
Luke Taylor, founder of Taynium

Founded by Luke Taylor

More than eight years inside a UK agricultural and packhouse machinery manufacturer, progressing through fitting, electrical work, servicing, installation, design and R&D. That range is the point: design decisions get judged not just on whether they work in CAD, but on whether they can be manufactured, assembled, serviced and controlled in the real world.

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Have an engineering process, machine or CAD workflow that is creating unnecessary work?

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