SolidWorks Sydney is a specialist engineering blog focused on structural steel detailing, mechanical design, and 3D LiDAR scanning across Sydney and Australia. We explore real-world project workflows—from scan to CAD to fabrication—using SolidWorks and the 3DEXPERIENCE platform. Our content is tailored for engineers, fabricators, and project managers seeking accurate CAD data, practical design solutions, and modern digital engineering methods that reduce risk and improve buildability.
Friday, June 8, 2012
Solidworks Sydney: Solidworks Designer for the Mining Industry
Solidworks Designer for the Mining Industry
SolidWorks Designer for the Mining Industry
What Mining Companies, Engineers & Fabricators Are Looking For Today
The mining industry has always demanded precision, reliability, and performance. Whether operating in coal, base metals, or bulk handling facilities, the margin for error is minimal—especially when projects involve shutdown windows, heavy equipment, and high-risk environments.
In today’s mining sector, expectations around design and drafting have shifted significantly. Mining companies, engineers, and fabrication teams are no longer looking for basic drawings.
👉 They are looking for complete, accurate, and accessible engineering data.
And increasingly, that data is expected to be delivered in SolidWorks, supported by certified designers and connected through modern platforms like the 3DEXPERIENCE ecosystem.
Hamilton By Design | SolidWorks
What the Mining Industry Is Actually Looking For
Mining projects are fundamentally different from standard construction projects.
They typically involve:
- Brownfield modifications
- Integration with existing plant
- Heavy-duty structural and mechanical systems
- Tight shutdown schedules
Because of this, mining clients expect a higher level of engineering support.
1. Accuracy in Real-World Conditions
Mining environments are complex and often poorly documented.
Engineers and site teams need:
- Accurate models of existing structures
- Confidence that new components will fit
- Minimal reliance on assumptions
Errors in mining projects can lead to:
- Extended shutdowns
- Production losses
- Safety risks
As a result, the industry demands engineering-grade modelling, not just drafting.
2. Fabrication-Ready Outputs
Fabricators supporting mining operations require:
- Detailed shop drawings
- CNC-ready DXF profiles
- Clear assembly models
These outputs are used directly in workshops to manufacture:
- Conveyor structures
- Chutes and transfer points
- Platforms and access systems
- Mechanical equipment
👉 There is no room for interpretation—drawings must be complete and correct.
3. Fast Turnaround Under Pressure
Mining projects are often tied to:
- Shutdown windows
- Maintenance schedules
- Production targets
This means engineering deliverables must be:
- Delivered quickly
- Accurate the first time
- Ready for immediate use
Delays in design directly impact production.
4. Integration Between Structural & Mechanical Design
Mining systems are rarely isolated.
They involve integration between:
- Structural steel
- Mechanical equipment
- Pipework and services
This is why mining companies are increasingly favouring 3D parametric modelling platforms like SolidWorks, which allow full assembly modelling and coordination.
Engineering | Drafting | Laser Scanning
Why SolidWorks Certification Matters in Mining
In a competitive market, SolidWorks certification has become a strong differentiator.
1. Demonstrated Competency
Certification proves that a designer can:
- Build parametric models
- Manage assemblies
- Produce accurate drawings
For mining companies, this reduces risk when selecting engineering partners.
2. Confidence in Complex Projects
Mining projects often involve:
- Large assemblies
- Moving equipment
- Complex interfaces
Certified SolidWorks users are trained to:
- Manage design intent
- Maintain model integrity
- Handle changes efficiently
3. Alignment with Industry Tools
SolidWorks is widely used across:
- Mining contractors
- Fabrication workshops
- Equipment manufacturers
Having certified capability ensures compatibility across the supply chain.
4. Reduced Errors and Rework
Certified designers are more likely to:
- Follow best practices
- Produce clean, structured models
- Deliver consistent outputs
This directly reduces:
- Fabrication errors
- Site modifications
- Project delays
What Mining Fabricators Are Looking For
Fabricators supporting mining operations are highly practical.
They want:
✔ Models That Reflect Reality
Fabricators expect:
- Accurate geometry
- Realistic tolerances
- Buildable designs
✔ Direct Manufacturing Outputs
They need:
- DXF profiles for cutting
- Assembly drawings
- Bill of materials
SolidWorks supports this directly, allowing design-to-fabrication workflows without excessive conversion.
✔ Clear Communication
Fabricators prefer:
- Visual models
- Easy-to-understand drawings
- Minimal ambiguity
The Role of the 3DEXPERIENCE Platform
The biggest shift in mining engineering workflows is not just CAD—it is data accessibility.
This is where the 3DEXPERIENCE platform becomes critical.
24/7 Access to Engineering Data
Mining operations do not stop.
They run:
- 24 hours a day
- 7 days a week
Engineering data must be available at all times.
The 3DEXPERIENCE platform enables:
👉 Access to models, drawings, and data anytime, anywhere
What This Means in Practice
Site teams can:
- View models on tablets or laptops
- Access the latest revision instantly
- Avoid working from outdated drawings
Fabricators can:
- Download DXF files
- Access assemblies
- Review models before fabrication
Engineers can:
- Update models in real time
- Share changes instantly
- Maintain control over revisions
Key Advantages for the Mining Industry
1. Single Source of Truth
All data is stored in one location, ensuring:
- Version control
- Data integrity
- Reduced errors
2. Real-Time Collaboration
Teams can:
- Review models together
- Add markups
- Resolve issues quickly
3. Integrated Workflows
The platform connects:
- Design
- Simulation
- Fabrication
4. Accessibility Without Complexity
Users can access:
- Drawings
- DXF profiles
- eDrawings-style visualisations
Without needing full CAD software installed.
5. Reduced Project Risk
With better access and coordination:
- Errors are identified earlier
- Decisions are made faster
- Projects run more smoothly
Why This Matters for Mining Projects
Mining environments are:
- Remote
- High-risk
- Time-critical
The ability to access accurate data instantly is not just convenient—it is essential.
The 3DEXPERIENCE platform ensures that:
👉 Everyone is working from the same information
👉 At the same time
👉 Anywhere in the operation
The Future of Mining Engineering
The mining industry is moving toward:
- Digital engineering workflows
- Integrated CAD platforms
- Cloud-based collaboration
- Real-time data access
SolidWorks, combined with the 3DEXPERIENCE platform, sits at the centre of this shift.
What Clients Are Ultimately Buying
Mining clients are not just buying drawings.
They are buying:
- Confidence in design
- Reliability in fabrication
- Efficiency in installation
- Reduced operational risk
Conclusion
The expectations of the mining industry have evolved.
Mining companies, engineers, and fabricators are looking for:
- Accurate, engineering-led models
- Fabrication-ready outputs
- Certified SolidWorks capability
- 24/7 access to data
SolidWorks provides the modelling capability.
The 3DEXPERIENCE platform provides the accessibility and control.
Together, they deliver:
👉 A complete engineering solution—from design to fabrication to operation
And in mining, where time, safety, and cost are critical:
👉 That makes all the difference.
Hamilton By Design | SolidWorks
Engineering | Drafting | Laser Scanning
Friday, June 1, 2012
E-drawings on the iPad
eDrawings, iPad & the Evolution to 3DEXPERIENCE
What Engineers, Clients & Fabricators in Sydney Actually Want Today
There was a time when opening a 3D model on an iPad felt revolutionary.
For many engineers and fabricators in Sydney, eDrawings was one of the first tools that made this possible—taking complex CAD models and turning them into something portable, visual, and easy to share.
At the time, it wasn’t just useful—it was inspirational.
It changed how people thought about:
- Reviewing designs
- Communicating with clients
- Visualising fabrication before it happened
But more importantly, it laid the groundwork for something much bigger.
Why eDrawings Was So Important
eDrawings solved a very real problem:
👉 How do you share engineering data with people who don’t have CAD?
Instead of sending:
- Heavy CAD files
- Static PDFs
- Confusing drawings
You could send a lightweight file that allowed users to:
- Rotate models
- Zoom into details
- Measure geometry
- Understand assemblies visually
For engineers and fabricators, this was a major shift.
Early Influence on Design Review & Coordination
Tools like eDrawings didn’t just improve communication—they influenced the development of more advanced platforms.
Software such as Autodesk Navisworks expanded on this idea by allowing teams to:
- Combine multiple models
- Review them in real time
- Detect clashes
- Simulate construction sequencing (4D)
This marked the transition from:
❌ Viewing models
➡️
✅ Managing entire project environments
In many ways, eDrawings helped pave the path toward this kind of integrated thinking.
What Sydney Engineers & Fabricators Want Today
Fast forward to today—and expectations have changed dramatically.
Across Sydney’s construction, infrastructure, and industrial sectors, engineers, clients, and fabricators are now looking for:
1. Live Access to Models (Not Files)
The old workflow:
- Email a file
- Download it
- Open it locally
The new expectation:
👉 Access models instantly, from anywhere
2. Real-Time Collaboration
Teams now expect to:
- Review models together
- Add comments and markups
- Share feedback instantly
Not after the fact—but during the process.
3. Single Source of Truth
One of the biggest problems in Sydney projects is:
- Multiple versions of drawings
- Conflicting information
- Outdated files on site
Clients now want:
👉 One central, controlled model
4. Cross-Platform Access
Fabricators, engineers, and site teams all use different tools.
They need:
- A system that works across devices
- Compatibility with multiple CAD formats
- Easy access without specialist software
5. Reduced Risk on Site
Ultimately, everything comes back to:
👉 Does it reduce risk?
Better model access means:
- Fewer errors
- Better coordination
- Improved installation outcomes
The Shift: From eDrawings to 3DEXPERIENCE
This is where the industry has moved.
eDrawings was:
- File-based
- Local
- Static (even if interactive)
Today, that functionality has evolved into:
👉 3DEXPERIENCE platform
What the 3DEXPERIENCE Platform Actually Is
The 3DEXPERIENCE platform is not just a viewer.
It is a cloud-based engineering environment that connects:
- CAD models
- Project data
- Teams and stakeholders
All in one place.
It provides a real-time, collaborative ecosystem where people, data, and tools are connected across the entire project lifecycle
Instead of sending files, teams now:
👉 Work on the same model—at the same time
From Viewer to Platform
The key difference is simple:
| eDrawings | 3DEXPERIENCE |
|---|---|
| File-based | Cloud-based |
| Individual viewing | Team collaboration |
| Static sharing | Live data access |
| Limited workflow | Full project integration |
The 3DEXPERIENCE viewer alone allows:
- Real-time navigation
- Annotation
- Model comparison
- Cross-platform access
But that’s just the entry point.
5 Key Services the 3DEXPERIENCE Platform Offers
Here are the five most important capabilities for engineers and fabricators in Sydney:
1. Cloud Data Management (Single Source of Truth)
All CAD data is stored centrally in the cloud.
This allows:
- Version control
- Secure access
- Elimination of duplicate files
No more emailing drawings or wondering which version is correct.
2. Real-Time Collaboration & Markup
Teams can:
- View models in a browser
- Add comments and markups
- Share feedback instantly
No downloads required.
This is a major evolution from eDrawings-style file sharing.
3. Product Lifecycle Management (PLM)
The platform manages:
- Design changes
- Revisions
- Approval workflows
- Project tracking
It supports the full lifecycle of a project from concept to fabrication and beyond
4. Simulation & Engineering Analysis
Integrated tools allow:
- Structural analysis
- Performance simulation
- Design validation
This ensures models are not just visually correct—but engineering validated.
5. Manufacturing & Fabrication Integration
The platform supports:
- Manufacturing workflows
- Toolpath generation
- Digital fabrication planning
This connects design directly to production, improving efficiency and reducing errors
Why This Matters in Sydney
Sydney projects are:
- Fast-paced
- High-risk
- Highly coordinated
The shift to platforms like 3DEXPERIENCE enables:
- Faster decision-making
- Better coordination between trades
- Reduced site issues
For fabricators, it means:
👉 Less guesswork, more certainty
For engineers, it means:
👉 Better control of design intent
For clients, it means:
👉 Reduced risk and improved delivery
The Bigger Picture
eDrawings was never just a viewer.
It was the first step toward digital collaboration in engineering.
Today, that vision has evolved into:
- Cloud platforms
- Connected workflows
- Real-time engineering environments
The 3DEXPERIENCE platform represents the next stage:
👉 From sharing files → to sharing reality
Conclusion
The expectations in Sydney have changed.
Engineers, clients, and fabricators are no longer satisfied with:
❌ Static drawings
❌ File-based sharing
❌ Disconnected workflows
They are looking for:
✅ Live model access
✅ Real-time collaboration
✅ Controlled data environments
✅ Integration from design to fabrication
eDrawings inspired this shift.
3DEXPERIENCE delivers it.
And the result is simple:
👉 Better communication, better coordination, and better-built projects
Hamilton By Design | SolidWorks
Engineering | Drafting | Laser Scanning
Solidworks Sydney | E-drawings ipad | Structural Detailing | Mechanical Detailing
Drafting Contractors – Hamilton By Design
Monday, April 16, 2012
Solidworks Sydney: Structural Drafting
SolidWorks Sydney – Structural Drafting for Real Projects
What Structural Engineers, Clients & Steel Fabricators in Sydney Are Looking For Today
Structural drafting in Sydney has fundamentally changed. What was once a 2D drafting exercise has now become a data-driven, model-based engineering process, driven by fabrication requirements, coordination complexity, and increasing project risk.
Across Sydney’s commercial, infrastructure, and industrial sectors, structural engineers, clients, and steel fabricators are aligned in what they expect:
👉 Accurate, usable, and editable CAD data—delivered in SolidWorks.
Drafting Contractors – Hamilton By Design
The Reality of Structural Drafting in Sydney
Sydney is not a greenfield market. Most projects involve:
- Modifying existing structures
- Tight construction environments
- Complex coordination between trades
This creates pressure on drafting to deliver:
- High accuracy
- Clear documentation
- Seamless integration with fabrication
Traditional 2D drafting simply cannot keep up.
What Structural Engineers in Sydney Want
1. Design Intent That Survives Drafting
Structural engineers expect:
- Load paths maintained
- Connection intent preserved
- Compliance with standards
But more importantly, they now want:
👉 A model they can interrogate—not just drawings
3D modelling allows engineers to validate structure before fabrication, ensuring the design performs as intended.
2. Editable CAD Data
One of the biggest shifts in Sydney is this:
❌ PDFs are no longer enough
❌ Static drawings are not enough
Engineers want:
- Native CAD files
- Parametric models
- Reusable data
This allows them to:
- Modify designs
- Coordinate with services
- Maintain a digital asset
3. Integration Across Disciplines
Modern projects require coordination between:
- Structural
- Mechanical
- Architectural
- Services
This is where traditional drafting tools begin to struggle.
What Steel Fabricators in Sydney Want
Fabricators are focused on one outcome:
👉 Steel that fits first time
1. Fabrication-Ready Models
Fabricators want:
- Accurate 3D models
- CNC-ready geometry
- Minimal interpretation
Solid modelling platforms like SOLIDWORKS provide parametric, feature-based design that directly supports fabrication workflows such as cut lists, assemblies, and manufacturing outputs.
2. Reduced Rework
Every error in drafting results in:
- Workshop delays
- Site modifications
- Increased cost
Accurate modelling reduces these risks significantly.
3. Practical Buildability
Fabricators expect detailers to understand:
- Welding access
- Transport constraints
- Installation sequencing
This is where engineering-led drafting separates itself from basic CAD services.
Why SolidWorks Is Being Requested 9 Times Out of 10
There is a noticeable shift in Sydney:
👉 Clients are asking for SolidWorks by name
Not AutoCAD.
Not Inventor.
Why?
1. It Matches How Projects Actually Work
SolidWorks is not just drafting—it is:
- Parametric modelling
- Assembly-driven design
- Fabrication-aware
It allows full integration of:
- Structural steel
- Mechanical equipment
- Custom fabrication
2. Better for Real-World Engineering
Unlike traditional drafting tools:
- Changes propagate through the model
- Assemblies update automatically
- Errors are easier to detect
This aligns with real project workflows.
3. Strong Adoption and Ecosystem
With millions of users globally, SolidWorks has become one of the most widely used 3D CAD platforms for engineering and manufacturing SOLIDWORKS.
Why Some AutoCAD Operators Resist the Shift
Let’s be honest—this is happening across Sydney:
👉 Many AutoCAD-based operators struggle to say that SolidWorks is leading.
Not because it isn’t.
But because:
1. Comfort with 2D Workflows
AutoCAD users are often highly efficient in:
- 2D drafting
- Layout-based workflows
But struggle with:
- Parametric modelling
- Assemblies
- Design intent
2. Learning Curve
SolidWorks requires:
- Understanding of features
- Design intent thinking
- Model-based workflows
This is a shift from drafting → engineering.
3. Loss of Control
In 2D drafting:
- You control every line
In SolidWorks:
- The model controls itself through relationships
This can feel uncomfortable for traditional drafters.
4. Industry Reality
Despite resistance, the reality in Sydney is clear:
👉 Fabricators and engineers prefer SolidWorks outputs
👉 Clients are asking for it directly
👉 Projects are increasingly built around it
This is not opinion—it is workflow evolution.
How Hamilton By Design Makes CAD Data Easy
One of the biggest frustrations in Sydney projects is:
👉 Getting usable CAD data
Hamilton By Design removes this problem entirely.
✔ Simple, Clean Deliverables
Clients receive:
- Native SolidWorks files
- Structured assemblies
- Editable models
✔ No Software Lock-In
You are not forced into:
- Proprietary formats
- Locked ecosystems
✔ Immediate Usability
CAD data is delivered so it can be:
- Used by fabricators immediately
- Modified by engineers
- Integrated into larger projects
✔ Engineering-Led Outputs
This is the difference:
👉 Not just drafting
👉 But engineering-driven modelling
The Modern Workflow in Sydney
The best projects now follow:
- Engineering design
- 3D modelling (SolidWorks)
- Structural detailing
- Fabrication
- Installation
This ensures alignment across the entire lifecycle.
Conclusion
Structural drafting in Sydney is no longer about producing drawings.
It is about delivering:
- Accurate CAD data
- Fabrication-ready models
- Integrated engineering solutions
And increasingly, that means:
👉 SolidWorks is leading
Not because of marketing—but because it works.
The 3DEXPERIENCE Platform & AI in Engineering
The 3DEXPERIENCE platform represents a fundamental shift in how engineering data is managed, shared, and developed.
What the Platform Actually Is
The 3DEXPERIENCE platform is a cloud-based environment that connects:
- Design (SolidWorks, CATIA)
- Simulation
- Data management (PLM)
- Collaboration tools
It allows engineers to:
- Store CAD data centrally
- Access models from anywhere
- Collaborate in real time
This creates a single source of truth across projects.
Why It Matters in Sydney
Sydney projects involve:
- Multiple stakeholders
- Fast timelines
- High coordination requirements
The platform enables:
- Real-time collaboration
- Version control
- Controlled data environments
This is particularly valuable for:
- Large infrastructure projects
- Industrial upgrades
- Multi-vendor environments
AI Assistants – The Next Evolution
The biggest shift is not just cloud—it is AI inside the platform.
SOLIDWORKS AI companions are transforming how engineers work.
What AI Actually Does
AI assistants in SolidWorks can:
- Automate repetitive tasks
- Suggest design improvements
- Generate drawings automatically
- Provide real-time feedback on performance
These tools act as intelligent design partners, helping engineers make faster and better decisions.
Examples of AI Capabilities
- Predictive geometry creation
- Automated assembly structures
- Smart mate suggestions
- Real-time simulation feedback
AI can even interpret sketches or models and generate manufacturing-ready outputs automatically.
Why This Matters
AI is not replacing engineers.
It is:
👉 Reducing low-value work
👉 Accelerating design cycles
👉 Improving decision-making
As stated by industry leaders:
AI acts as a multiplier—enhancing engineering capability, not replacing it.
The Future of Engineering Workflows
The direction is clear:
- CAD → Connected platforms
- Manual work → AI-assisted workflows
- Isolated files → integrated ecosystems
To access the latest AI capabilities, engineering data increasingly needs to be on the platform, not just stored locally.
Final Thought
The combination of:
- SolidWorks
- 3DEXPERIENCE
- AI assistants
is redefining engineering.
For Sydney projects, this means:
👉 Faster delivery
👉 Better coordination
👉 Reduced risk
And ultimately:
👉 Better projects, built with confidence









