Engineering-Grade & Metrology-Grade 3D Scanning

Engineering-grade and metrology-grade 3D scanning in an industrial plant environment.

Choosing the Right Tool for the Right Scale

At Hamilton By Design, we do not approach 3D scanning as a visual service โ€” we approach it as an engineering measurement tool.

Different projects require different levels of accuracy, coverage and control. For this reason, we operate with two distinct scanning capabilities:

  • Engineering-Grade Terrestrial Laser Scanning
  • Metrology-Grade Handheld 3D Scanning

Each serves a specific purpose within industrial, mining and mechanical environments.


Engineering measurement workflow combining plant scanning and precision component capture.

Engineering-Grade 3D Scanning

Capturing Entire Environments with Structural Accuracy

Engineering-grade laser scanning is used when capturing:

  • Processing plants
  • Conveyor systems
  • Structural steel platforms
  • Brownfield facilities
  • Infrastructure corridors
  • Stockpiles
  • Full building interiors and exteriors

This system is tripod-based and captures large-scale environments with millimetre-level accuracy across significant distances.

Typical Performance:

  • Up to hundreds of metres scanning range
  • ~2 mm accuracy at 10 m
  • Full 360ยฐ environmental capture
  • Suitable for survey control alignment

Used For:

  • As-built plant documentation
  • Structural verification
  • Clearance assessments
  • Shutdown planning
  • Retrofit design
  • Compliance validation under AS standards

If you can walk inside it โ€” this is the correct tool.

This system establishes the macro geometry of a site.


Metrology-Grade 3D Scanning

Capturing High-Precision Component Geometry

Metrology-grade handheld scanning is designed for detailed component-level capture.

This system is compact, highly accurate, and capable of sub-0.05 mm precision.

Typical Performance:

  • Accuracy to ~0.020 mm
  • Volume accuracy to 0.015 mm + scale factor
  • Ideal for complex surfaces and confined spaces
  • Suitable for reverse engineering

Used For:

  • Worn chute liners
  • Flanges and bolt patterns
  • Pump housings
  • Lifting lugs
  • Machined components
  • Distorted structural connections
  • Deep hole geometry
  • Fit-up verification prior to fabrication

If you can hold it โ€” this is the correct tool.

This system establishes the micro geometry of a part.


Why Both Matter

Industrial projects often require both levels of capture.

Example: Mining Shutdown

  1. Engineering-grade scanning captures the entire transfer station.
  2. Metrology-grade scanning captures the worn liner plate.
  3. Data is combined to:
    • Verify fit
    • Model replacement components
    • Reduce fabrication risk
    • Avoid rework during shutdown

This integrated approach reduces:

  • Site time
  • Fabrication errors
  • Installation clashes
  • Cost overruns

Measurement With Engineering Intent

We do not scan for visualisation alone.

We scan to support:

  • Structural compliance
  • Mechanical design
  • FEA validation
  • Access verification
  • Brownfield modification
  • Asset documentation
  • Engineering governance

Scanning without engineering oversight introduces risk.

Scanning with engineering intent reduces it.


When To Use Each Scanner

ScenarioEngineering-Grade ScannerMetrology-Grade Scanner
Full plant captureโœ”
Structural steel verificationโœ”
Conveyor alignmentโœ”
Large-area as-built surveyโœ”
Reverse engineering a componentโœ”
Flange or bolt pattern captureโœ”
Wear measurementโœ”
Fabrication fit verificationโœ”
Confined detailed geometryโœ”

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3D LiDAR scanning and 3D modelling service button โ€” laser scanner capturing a point cloud for engineering and CAD modelling
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National Capability

Hamilton By Design provides:

  • Engineering-grade terrestrial scanning
  • Metrology-grade handheld scanning
  • Integrated modelling and verification
  • Compliance-aligned documentation

Across mining, industrial and infrastructure environments throughout Australia.


If your project requires both macro capture and micro precision, we can deliver a structured scanning approach aligned with engineering outcomes.


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3D Scanning Engineering in Karratha

3D Scanning Engineering in Karratha

Delivering Engineering Accuracy for Mining, LNG, Transport & Heavy-Industry Projects in the Pilbara

Karratha sits at the centre of one of the most productive industrial regions on Earth โ€” the Pilbara. With world-leading iron ore operations, LNG processing facilities, heavy-haul export systems, and complex industrial assets spread across vast distances, Karratha demands engineering services that are precise, efficient and built for extreme conditions.

Hamilton By Design supports this region with high-accuracy 3D LiDAR laser scanning, advanced 3D CAD modelling, mechanical and structural engineering, FEA capability, and fabrication-ready drafting. Our engineer-led workflow ensures Pilbara-grade reliability from first scan to final design.


Why Karratha Is Unique for Engineering

Karratha combines characteristics few Australian cities share:

1. World-class industrial density

Surrounded by major iron ore shipping terminals, LNG refineries, rail infrastructure, conveyor systems, heavy-haul workshops and port operations, the region requires engineering solutions built for scale, precision and uptime.

2. Harsh environmental conditions

Extreme heat, corrosive coastal environments, red-dust infiltration, cyclones, and heavy-load machinery demand designs that are resilient, compliant and thoroughly engineered.

3. Remote-location project challenges

Shutdown access windows are short. Transport costs are high. Rework is expensive. A single measurement error can delay an entire shutdown or fabrication job.

4. Legacy systems + continuous expansion

Many facilities are decades old yet constantly being upgraded. This makes accurate as-built documentation essential for safe, reliable retrofits.

These conditions make digital engineering a necessity โ€” not an optional extra.


High-Accuracy 3D LiDAR Scanning for Karratha Operations

Hamilton By Design provides millimetre-level scanning using industry-leading equipment, capturing the true as-built geometry of:

  • conveyors, stackers, reclaimers & load-out stations
  • pipe racks, process modules and structural steel
  • mechanical workshops & fabrication facilities
  • ports, jetties, access platforms and plant services
  • brownfield upgrade areas with complex tie-ins

3D scanning removes guesswork, eliminates site-measurement risk, and ensures all design work is based on verified spatial data.

๐Ÿ”— Learn more about our 3D Laser Scanning service:
https://www.hamiltonbydesign.com.au/home/3d-lidar-scanning-digital-quality-assurance/3d-laser-scanning/


Turning Point Clouds Into Engineering-Ready Models

After the scan, Hamilton By Design converts your site into detailed, accurate and fully navigable 3D models โ€” perfect for engineering reviews, fabrication, and installation planning.

๐Ÿ”— 3D CAD Modelling:
https://www.hamiltonbydesign.com.au/engineering-services/3d-cad-modelling-australia/

Our deliverables include:

  • structural and mechanical 3D models
  • general-arrangement (GA) drawings
  • fabrication drawings with BOMs
  • equipment layouts & tie-in studies
  • clash detection across modules or expansions
  • digital plant walk-throughs for remote teams

This reduces shutdown duration, prevents fabrication error, and speeds up approvals.


Engineering & FEA Services for Pilbara-Scale Projects

Karrathaโ€™s assets operate under extreme mechanical, thermal and structural loads. Hamilton By Design provides engineering support such as:

  • structural assessments & upgrade design
  • mechanical design for conveyors, piping, frames and steelwork
  • cyclonic loading considerations
  • deformation, corrosion & fatigue assessments
  • failure investigations
  • brownfield upgrade engineering

For heavy-industry clients, we also provide advanced simulation and analysis.

๐Ÿ”— FEA Capabilities:
https://www.hamiltonbydesign.com.au/engineering-services/fea-capabilities/

Our analysis includes:

  • static & dynamic loading
  • thermal expansion and heat distribution
  • fatigue simulations for high-cycle equipment
  • buckling, vibration and modal studies
  • pressure vessel and pipe stress reviews

This ensures every design is validated, safe and compliant.


Drafting & Documentation Built for Remote Industrial Work

Every Karratha project requires clear, fabrication-ready documentation. Hamilton By Design supplies:

  • detailed mechanical & structural drafting
  • isometrics for piping and services
  • workshop-ready fabrication drawings
  • accurate as-built documentation
  • digital QA records for future upgrades

๐Ÿ”— Drafting Services:
https://www.hamiltonbydesign.com.au/engineering-services/services-drafting-lidar-scanning/

With precise drafting and laser-scanned data, fabricators and installers work with confidence โ€” even in remote Pilbara locations.


Why Karratha Clients Prefer Hamilton By Design

  • Engineer-led scanning โ€” ensuring data captured matches engineering requirements
  • Single-source accountability โ€” scanning, modelling, engineering, drafting all in one place
  • Reduced shutdown risk โ€” cutting rework, delays and onsite measurement time
  • Better fabrication outcomes โ€” designs based on real geometry, not assumptions
  • Clear documentation for tenders, fabrication, installation and QA compliance
  • Ideal for brownfield upgrades where accuracy is essential

For Karrathaโ€™s mining, LNG, industrial and logistics hubs, this level of certainty is invaluable.


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Your Next Project in Karratha โ€” Delivered with Precision

From conveyor upgrades to structural redesigns, plant expansions, shutdown engineering, and fabrication modelling, Hamilton By Design provides the full digital-engineering workflow to keep projects safe, efficient and on schedule.

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3D Scanning Engineering Simplified in Pilbara

3D Scanning Engineering Simplified in Pilbara

The Pilbara is one of the most iconic industrial landscapes in the world โ€” a region defined by massive iron ore operations, rail networks, export ports, processing hubs, remote infrastructure, and some of the toughest working conditions in Australia. With extreme heat, red-dust environments, heavy-duty machinery and 24-hour production schedules, engineering in the Pilbara demands precision, reliability and speed.

Hamilton By Design supports Pilbara projects with an end-to-end workflow that integrates 3D LiDAR laser scanning, 3D CAD modelling, engineering assessments, FEA analysis, and fabrication-ready drafting โ€” all engineered to remove guesswork and simplify brownfield and greenfield upgrades in high-risk, high-value industrial environments.

Whether you work across Port Hedland, Karratha, Newman, Tom Price, Dampier, Paraburdoo, or remote mine-site operations, our engineering-led scanning workflow delivers the clarity you need to design, install and maintain plant assets with confidence.


Why the Pilbara Is Unique for Engineering Projects

The Pilbara stands apart from nearly every other region in the country. Its uniqueness comes from:

1. Mega-scale iron ore operations

With some of the worldโ€™s largest open-cut mines and export volumes, the Pilbaraโ€™s infrastructure is constantly expanding โ€” conveyors, stackers, reclaimers, crushers, screening plants, workshops, fuel systems, and ore-handling upgrades all require high-accuracy as-builts for planning and design.

2. Remote location and logistics constraints

Downtime is expensive and mobilisations are even more so. Every hour counts. Designs need to be right the first time โ€” which is where digital capture and modelling become essential.

3. Harsh environmental conditions

Extreme temperatures, abrasive dust, corrosion, wind loads and environmental regulations make compliance, materials selection, and structural design more complex.

4. Brownfield complexity

Most Pilbara sites have decades of modifications layered over the original design. This means undocumented interferences, alignment issues, legacy steelwork, variable foundations and inconsistent documentation that require precise digital capture.

5. High-risk, high-value assets

Bulk-handling machines, load-out systems, transfer towers, and ore-processing plant modules rely on millimetre-accurate measurement for safe and compliant upgrades.

These factors make 3D laser scanning + engineering modelling the most reliable way to plan and execute upgrades across Pilbara operations.


High-Accuracy 3D LiDAR Scanning for Mining & Processing

Hamilton By Design captures full site geometry using engineering-grade LiDAR scanners to deliver millimetre-accurate as-built data.

Our scanning is ideal for:

  • conveyors, transfer towers & trestles
  • stackers, reclaimers, crushers & screening plants
  • train load-out facilities
  • pipe racks, pump systems & mechanical services
  • structural platforms, handrails & walkways
  • workshop fit-outs and maintenance bays
  • port and marine bulk-handling infrastructure

Explore our service:
3D Laser Scanning

The resulting point cloud forms a digital twin of your facility โ€” enabling precise design checks, measuring, clash detection and upgrade planning without repeated site visits.


Turning Scans Into Engineering-Ready Models

Once captured, your point cloud is converted into clean, accurate 3D CAD models suitable for mechanical, structural and fabrication workflows.

Learn more:
3D CAD Modelling

Our models support:

  • brownfield plant upgrades
  • conveyor realignment or replacement
  • new steelwork tie-ins
  • equipment skid design & integration
  • pump, piping & mechanical layouts
  • layout optimisation & access compliance

This level of detail dramatically reduces installation risk and fabrication rework โ€” critical in remote regions like the Pilbara.


Engineering & FEA for Heavy Industry

The Pilbaraโ€™s large-scale machinery and structures require robust engineering verification. Hamilton By Design provides mechanical and structural assessments backed by advanced simulation.

View capabilities:
FEA Capabilities

Our engineering services include:

  • linear static stress checks
  • fatigue assessment
  • buckling & stability analysis
  • thermal, vibration and modal analysis
  • pressure vessel & structural load evaluation
  • mechanical failure diagnostics

From bucket-wheel components to crusher supports, conveyor gantries and mobile equipment frames โ€” we ensure your assets meet compliance and performance requirements.


Fabrication-Ready Drafting for Pilbara Projects

Clear drawings reduce installation errors, accelerate shutdown work, and streamline fabrication.

Explore drafting services:
Drafting

We deliver:

  • GA drawings
  • detailed fabrication drawings
  • weld maps & BOMs
  • workshop documentation
  • isometric piping & ducting drawings
  • tender & construction documentation

Our drafting aligns with your fabricatorโ€™s preferences, ensuring clean workflow from modelling to installation.


Why Pilbara Projects Choose Hamilton By Design

Hamilton By Design offers a fully integrated engineering workflow:

  1. 3D LiDAR Scan โ€“ capture the real-world geometry
  2. Point-Cloud Processing โ€“ aligned, registered and clean
  3. Engineering 3D Models โ€“ accurate and clash-checked
  4. Engineering Analysis โ€“ FEA, structural checks, mechanical assessment
  5. Fabrication Drafting โ€“ ready for workshop, procurement or installation
  6. Ongoing Support โ€“ modifications, design updates, QA records

This leads to:

  • fewer shutdown delays
  • reduced on-site measuring
  • safer brownfield engineering
  • faster design cycles
  • less fabrication error
  • significant cost savings on remote-site mobilisation

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Supporting Pilbara Iron Ore, Energy, Infrastructure & Export Projects

Hamilton By Design supports work across:

  • Rio Tinto, BHP, FMG & Roy Hill operations
  • processing plants & ore-handling facilities
  • rail infrastructure and load-out systems
  • marine and port bulk-handling terminals
  • camp facilities, utilities & remote plants
  • structural and mechanical maintenance upgrades

From Newman to Port Hedland, Dampier, Karratha, Christmas Creek, Tom Price and beyond โ€” our engineering-led scanning capability simplifies complex projects in one of Australiaโ€™s most demanding industrial environments.

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Digital Precision in Mining: How 3D Scanning Transforms Maintenance, Design, and Safety

Mining is no longer just about moving tonnes โ€” itโ€™s about precision, predictability, and performance.
Across Australiaโ€™s mining sector, the most forward-looking operators are adopting 3D scanning to transform the way they maintain and optimise chutes, hoppers, and material-handling systems.

At Hamilton By Design, weโ€™ve been applying advanced scanning technology to reduce downtime, improve plant design accuracy, and extend asset life.
You can read our detailed technical overview here:
๐Ÿ‘‰ 3D Scanning Chutes, Hoppers & Mining

But hereโ€™s the bigger picture โ€” why this shift matters for the future of mining.


From Manual Inspection to Measured Insight

Traditional inspections rely on tape measures, hand sketches, and assumptions.
3D laser scanning replaces that guesswork with millimetre-accurate data captured safely, often without shutting down production.

  • Reduced risk: Personnel spend less time inside confined spaces.
  • Shorter shutdowns: Entire structures can be captured in minutes.
  • Design-ready models: Engineers receive CAD-compatible data for modification or replacement.

This means decisions are made on facts, not estimates.


Integrating Data into the Design Cycle

The true value of scanning is unlocked when the data feeds directly into design and maintenance workflows.
Once a chute or hopper is scanned, engineers can:

  • Compare actual geometry to design intent.
  • Detect deformation, wear patterns, and misalignment early.
  • Pre-fit replacement liners or components in CAD โ€” reducing on-site rework.

This seamless link between field reality and digital design enables data-driven engineering, saving both time and capital.


A New Standard for Asset Reliability

3D scanning creates a living record of your assets.
Each scan becomes a baseline for future condition monitoring, allowing for proactive maintenance scheduling.

When combined with finite-element analysis (FEA) or wear modelling, site managers can predict failures before they happen.
That means safer plants, lower maintenance costs, and fewer unplanned stoppages.


Part of a Larger Digital Ecosystem

The rise of digital twins and predictive analytics in mining depends on accurate base geometry โ€” and thatโ€™s where scanning fits in.
By capturing exact dimensions, operators can:

  • Link asset data into their digital twin models.
  • Simulate flow behaviour and wear progression.
  • Train AI models using accurate 3D data.

3D scanning isnโ€™t just a tool โ€” itโ€™s the foundation of intelligent mining operations.


Why Hamilton By Design?

Our engineering approach combines field experience with digital precision.
We integrate scanning, modelling, and mechanical design into a single workflow โ€” from problem definition to implementable solutions.

Whether youโ€™re replacing a worn-out chute, upgrading a hopper, or building a new transfer station, our 3D scanning process gives you clarity, accuracy, and confidence.

Learn more about our methodology and recent projects here:
3D Scanning Chutes, Hoppers & Mining

Mechanical Engineering | Structural Engineering

Mechanical Drafting | Structural Drafting

3D CAD Modelling | 3D Scanning

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