Category: blogs

Blogs By Tek1 on Steel detailing, Precast Panel Detailing, Stairs, Projects,

  • A Practical Guide for Australian Steel Projects

    A Practical Guide for Australian Steel Projects

    This article provides an overview of the important Australian Standards for steel detailing and serves as a practical guide for steel detailing projects in Australia.

    Australian steel detailing requires more than accurately modelling beams, columns, plates and connections.

    In addition, a professional steel detailer needs to understand the project documentation and the applicable Australian Standards.These standards provide an important technical framework for structural steelwork, fabrication, erection and access systems.

    However, standards should always be considered together with the project’s structural drawings, specifications, contract documents and other requirements.

    Therefore, understanding the applicable standards is an important part of producing accurate, coordinated and practical steel detailing documentation.

    In particular, For steel detailing projects, several standards are particularly important, including AS 4100, AS/NZS 3678, AS/NZS 3679.1, AS/NZS 1163, AS/NZS 5131, AS 1657 and AS 1428.1:2021.

    1. AS 4100 – Steel Structures

    AS 4100 – Steel Structures is one of the primary standards used for structural steelwork in Australia. The current edition is AS 4100:2020.

    Furthermore, standards Australia describes AS 4100:2020 as an important standard for the Australian steel sector and identifies it alongside AS/NZS 5131 as key guidance for structural steelwork.

    In particular, AS 4100 is particularly important when interpreting structural design information.

    Therefore, a detailer does not normally perform the structural engineer’s design, but needs to understand the design requirements sufficiently to produce accurate fabrication and erection documentation.

    Typical detailing considerations include:

    In addition, the structural engineer’s drawings and specifications remain the primary design inputs.

    Finally, the detailer’s responsibility is to accurately translate those requirements into constructible steelwork.

    2. AS/NZS 3678 – Structural Steel: Hot-Rolled Plates

    AS/NZS 3678 covers structural steel, including hot-rolled plates, floorplates and slabs.

    Furthermore, standards Australia identifies it as one of the key structural steel standards published as part of its steel-sector standards work program.

    In particular, This standard is important when specifying and detailing fabricated steel components such as:

    When preparing shop drawings, the steel grade specified by the engineer should be clearly identified.

    In addition, the detailer should also ensure that the material description used in the drawings and MTO corresponds with the project requirements.

    For example, a plate shown as a particular grade on the structural drawings should not be changed to another grade simply because the alternative material is readily available.

    3. AS/NZS 3679.1 – Hot-Rolled Bars and Sections

    Australian steel projects commonly use hot-rolled sections such as universal beams, universal columns and angles.

    AS/NZS 3679.1 – Structural steel, Part 1: Hot-rolled bars and sections is therefore highly relevant to steel detailing.

    During modelling and detailing, the detailer should verify:

    Furthermore, accurate member identification is especially important in Tekla Structures because incorrect profiles or grades can flow through to fabrication drawings, NC files, MTO reports and material schedules.

    4. AS/NZS 1163 – Cold-Formed Structural Steel Hollow Sections

    Hollow sections are widely used in Australian construction for columns, beams, frames, handrails, balustrades and miscellaneous steelwork.

    In particular, AS/NZS 1163 covers cold-formed structural steel hollow sections.

    Common hollow-section profiles include:

    • SHS – Square Hollow Sections
    • RHS – Rectangular Hollow Sections
    • CHS – Circular Hollow Sections

    During the detailing process, it is important to correctly represent the section size and wall thickness specified by the engineer.

    For example, an SHS column specified as SHS150 × 6 should not be modelled as SHS150 × 9 unless the change has been formally approved.

    Furthermore, this is particularly important when steel members are connected to windows, doors, precast elements, concrete walls or architectural features where dimensional clearances are critical.

    5. AS/NZS 5131 – Fabrication and Erection of Structural Steelwork

    One of the most important standards for the fabrication and erection stage is AS/NZS 5131 – Structural steelwork – Fabrication and erection.

    Furthermore, standards Australia explains that AS/NZS 5131 covers areas including fabrication, bolting and welding, surface preparation, corrosion protection, painting, galvanizing, site erection and modification of steelwork.

    In particular, this standard is particularly relevant to the information shown on shop drawings.

    Therefore, A professional steel detailer should consider fabrication and erection requirements when producing drawings, including:

    Fabrication

    Firstly, Drawings should provide sufficient information for the fabricator to manufacture the component correctly.

    This may include:

    Erection

    In addition, Steelwork must also be practical to assemble on site.

    Detailers should consider:

    However, a connection that looks acceptable on a computer model may still be difficult or impossible to install on site.

    Therefore, Good detailing requires an understanding of both fabrication and erection.

    6. AS 1657 – Fixed Platforms, Walkways, Stairways and Ladders

    AS 1657 is particularly important for industrial steelwork, access platforms, stairs, ladders, walkways and handrails.

    The standard addresses fixed means of access and safe working areas, including platforms, walkways, stairways and fixed ladders.

    For steel detailers, this can affect many components, including:

    When detailing stairs and handrails, the detailer must carefully check the project requirements and applicable standard requirements rather than relying on assumptions from previous projects.

    Important items to verify include:

    The architectural drawings, structural drawings, specifications and project requirements should all be coordinated before finalising the detailing.

    7. AS 1428.1:2021 – Design for Access and Mobility

    AS 1428.1:2021 provides design requirements for access and mobility in new building work. In particular, it covers requirements that can affect accessible paths, ramps, stairs, landings, handrails, circulation spaces and other accessibility-related elements.

    For steel detailers, this standard can be relevant when detailing commercial building stairs, ramps, handrails, balustrades, platforms and other steelwork that forms part of an accessible path of travel.

    During the detailing process, the architectural and engineering drawings should be checked carefully for accessibility requirements. For example, dimensions, clearances, handrail arrangements, ramp and landing requirements may need to be coordinated with the structural steelwork.

    In addition, the detailer should coordinate the steelwork with architectural layouts and project specifications to avoid conflicts with doors, walls, finishes and other building elements.

    However, the steel detailer should not independently determine accessibility compliance. Instead, the applicable project requirements, architectural documentation, NCC requirements and relevant engineering information should be followed.

    Therefore, where AS 1428.1:2021 applies to the project, its requirements should be considered during the steel detailing and coordination process.

    8. AS/NZS 5131 and the Importance of Steel Detailing

    Australian steel detailing is closely connected to fabrication and erection.

    Before finalising the steelwork, several practical questions should be considered:

    These questions can prevent costly fabrication changes and site modifications.

    AS/NZS 5131 provides a framework for fabrication and erection practices, making coordination between engineering, detailing, fabrication and erection particularly important.

    9. Australian Standards and Tekla Structures

    Modern steel detailing is often completed using 3D modelling software such as Tekla Structures.

    However, software does not automatically guarantee compliance with Australian Standards.

    For this reason, The detailer still needs to interpret the project documentation and apply the correct requirements.

    10. Coordination Between Architectural and Structural Drawings

    One of the most common challenges in Australian steel detailing is the difference between architectural and structural information.

    Typical discrepancies include:

    Therefore, the steel detailer should identify these discrepancies during the checking stage.

    An effective RFI should clearly state:

    As a result, this approach reduces assumptions and helps maintain a clear record of design decisions.

    11. MTO and Material Identification

    Australian steel detailing is not complete when the 3D model is finished.

    In addition, The model must also produce accurate fabrication information and material quantities.

    The MTO/BOM should correctly identify:

    However, incorrect modelling can result in incorrect MTO quantities and fabrication information.Therefore, model checking should be performed before issuing the final material report.

    12. Common Steel Detailing Mistakes

    Some common problems encountered in Australian steel detailing include:

    Incorrect steel grade

    Incorrect member size

    Missing connection information

    Poor bolt access

    Architectural conflicts

    Missing site information

    Unapproved design changes

    13. The Role of a Professional Australian Steel Detailer

    A professional steel detailer acts as an important link between engineering design and steel fabrication.

    Therefore, the role involves much more than simply drawing steel members.

    For this reason, A competent detailer should be able to:

    Conclusion

    Australian steel detailing requires a combination of technical knowledge, practical fabrication experience, attention to detail and understanding of Australian Standards.

    In Particularly the Standards such as AS 4100, AS/NZS 3678, AS/NZS 3679.1, AS/NZS 1163, AS/NZS 5131, AS 1657 and AS 1428.1:2021 provide important references for different aspects of structural steelwork.

    However, standards should not be viewed in isolation.

    Therefore, The successful steel projects depend on coordination between the structural engineer, architect, steel detailer, fabricator and erector.

    The goal of professional steel detailing is simple:

    Create accurate, clear and buildable steelwork information that can be safely fabricated, delivered and erected on site.

    Finally, for current editions and official information, always refer to the applicable project specifications and the official Standards Australia catalogue rather than relying on outdated or unofficial copies of standards.

    Read more Tekla tips and technical guides on our Blog

  • Foot Bridge

    Foot Bridge

    Eglinton Street Foot Bridge

    Project Name

    Project description

    Our Services for the City

    The Standards we Follow AS4100 AS 1428 AS1657
    Our ServicesSteel Detailing, Precast Panel Detailing

    Interesting Steel Structures in Melbourne

    Foot Bridge
    Foot Bridge Shop Drawings

    Foot Bridge

    Location Eglinton

    Fabricator – Third Angle

  • How to extract Properties from Tekla Profiles (Tekla Open API)

    How to extract Properties from Tekla Profiles (Tekla Open API)

    Beam Profile Properties. We want to extract them with the Tekla API.
    How to get beam properties.

    You have a profile e.g. “CC200755.0″ obtained via the Tekla API. How can you extract it’s HEIGHT or WIDTH or other parameters (or properties) such as density? The Tekla Documentation is not good on this point, and it took me some time to find this out. I have documented the methodology, so hopefully that will save you some time.

    In our use case, users select a profile via text (or rather via a CLI). How we need to build a shed from it. In order to build that shed, we need to know the specific properties of the profile that is selected. How do you do that via the Tekla Open API?

            public double getHeight(string profileString)
            {
                LibraryProfileItem libraryProfileItem = new LibraryProfileItem();
                libraryProfileItem.Select(profileString);
    
                List<ProfileItemParameter> parameters = libraryProfileItem.aProfileItemParameters.Cast<ProfileItemParameter>().ToList();
                double height = parameters.First(p => p.Property.ToUpper() == "HEIGHT").Value;
    
                return height;
            }

    If you need some further explanation on what this all means, check out the video explanation below:

    For more information our Tekla’s API’s feel free to check out our Tekla API blog.

    Tekla - "open" api
    The API is really closed, though it says it is open
  • .Net | Python Ruby on Rails

    • Tekla Open API Course (Full Outline)

      This is going to be a concise, high value and pithy course on the Tekla Open API. You may find other courses out there that boast about: 50+ hours. That might work well for them and their students, but almost everything you need to know can be boiled down to a few simple concepts. Especially…

    • Introduction – Setting up your Environment (Tekla Open API Course)

      This is a course on how to program using Tekla’s Open API. We will start from the very beginning and get into some complicated topics. These are the principles I use when developing Tekla API applications. The following posts a video tutorial on how to get started using the Tekla Open API. The first thing…

    • The Code Behind the Shed Builder Application – via Tekla’s Open API

      The Code Behind the Shed Builder As promised, here are the key methods behind the ShedBuilder: I have separate classes – e.g. Facia, Column, Chord, Girt etc. to better represent the concepts and the interplay between all the items – and then I simply tie them all together to get the output that I want,…

    • How to Automate the Modelling of Sheds (using Tekla’s Open API)

      The way of the future is automation. Use the Tekla API to automate the modelling of items that are relatively standardised – e.g. sheds, or warehouses etc. The following is a program we putting into production re: the detailing of Sheds. If the designs can be standardized, you can turbo-charge the detailing / design. You…

    • How to extract Properties from Tekla Profiles (Tekla Open API)

      You have a profile e.g. “CC200755.0″ obtained via the Tekla API. How can you extract it’s HEIGHT or WIDTH or other parameters (or properties) such as density? The Tekla Documentation is not good on this point, and it took me some time to find this out. I have documented the methodology, so hopefully that will…

  • Steel Stairs | Melbourne | Sydney | WA

    Steel Stairs | Melbourne | Sydney | WA

    Please view a few trimble connect models

  • SHED | DARETON NSW

    SHED | DARETON NSW

    Darenton-NSW
    Darenton-NSW

  • Steel Detaling | LA

    Steel Detaling | LA

    Shop drawings to Steel Detailing | AISC | ASTM

    The Grand LA

    Los Angles

    Our Services

    Expert Steel Detailing Services

    Our Services for the City

    The Standards we Follow
    Our ServicesSteel Detailing
    Shop drawings to Steel Detailing | AISC | ASTM
    Steel Estimation
    We build a tekla model from Structural drawings in Tekla
    Produce the reports, give you the model and the reports with expert comments.
    Standards we followSteel detailing AISC 360 (Specification for Structural Steel Buildings): The foundational standard for the design, fabrication, and erection of structural steel.
    ASTM Specifications: All materials must be identified and traceable to specific ASTM standards (e.g., A992 for wide flanges, A36 for plates).
    OSHA StandardsWe follow OSHA Standards -1926.754, 1926.755, 1926.756

    Interesting Steel Structures in Los Angeles

    Ribbon Of Light
    Ribbon of LIght

    Ribbon of Light

    650 S Clarence St, Los Angeles, CA 90033

  • Staff Memos

    Staff Memos

    • Memo 52: Team members must own their MTO line items

      As a general rule, the person who prepares the MTO should also create the corresponding line item. If the line item has already been created by our manager, please inform Ben so he can change the ownership of the line item to the correct team member. This is important for management and tracking purposes.

      Read more: Memo 52: Team members must own their MTO line items
    • How can I earn the Big Bucks at Tek1?

      Juniors enter the firm. They complain they have “low wages”. Then they also complain that their earnings are “not stable”……but others are earning HUUUGE dollars. Please note – as we improve in our firm, we are always looking towards better pay. But better pay can only come with better skills. And more innovation for the…

      Read more: How can I earn the Big Bucks at Tek1?
    • Introduction – Setting up your Environment (Tekla Open API Course)

      This is a course on how to program using Tekla’s Open API. We will start from the very beginning and get into some complicated topics. These are the principles I use when developing Tekla API applications. The following posts a video tutorial on how to get started using the Tekla Open API. The first thing…

      Read more: Introduction – Setting up your Environment (Tekla Open API Course)
    • Staff Memos

      Read more: Staff Memos