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Purpose of Document

This document is intended to help Designers, Builders and Building Consent Authority (B.C.A.) Building Officials who want to ensure that saveBOARD betterBRACE 10mm rigid air barrier lining is specified, installed, and performs correctly as a rigid air barrier lining.

The following instructions within this document are important to ensure correct product use and the ongoing support of the manufacturer's warranty.

Designer and Installer Qualification and Skill level

Where saveBOARD betterBRACE is specified / installed, the designer/installers should have the appropriate skills and knowledge of the product and, where necessary, the qualification required by law.

Please Note:

The design and Installation of saveBOARD betterBRACE relates to building work that forms part of the primary structure and weathertight envelope of a building which is Restricted Building Work (RBW). RBW must be carried out or supervised by a Licensed Building Practitioner (LBP).

It is also necessary to obtain building consent before the commencement of work. Failure to do so is an offence under the Building Act 2004.

Technical Support

This document must be read in conjunction with the saveBOARD betterBRACE CodeMark Certification CMNZ70162. Please refer to saveBOARD betterBRACE ‘download section’, which contains other important information from the saveBOARD website.

For product maintenance and warranty requirements, please refer to the guidance on the saveBOARD website (betterBRACE Rigid Air Barrier).

saveBOARD provides technical support for the full range of saveBOARD products. By visiting Technical Literature, you can access all the latest information regarding our products, including:

Material Safety Datasheet, Substitution Guides, Test Certificates and Environmental Product Declarations.

Product Information

saveBOARD betterBRACE is a unique structural composite panel made from 100% upcycled materials.

The core of the product is made from shredded and compressed composite packaging, giving the user a sustainable and superior performing product.

 

The manufacturing process does not involve glues, resins, or other biological or environmentally harmful products. During construction or in-service use, it does not create toxic dust, vapours, or other potentially harmful inhalants Volatile Organic Compounds (V.O.C.'s) or Formaldehydes.

saveBOARD betterBRACE is a semi-vapour permeable1, rigid air barrier designed for use with timber or steel framing (thermal break must be used). It is finished with a moisture-resistant facer on one side and a paper facing on the interior side.

saveBOARD betterBRACE is manufactured in New Zealand and Australia for exclusive use. Please refer to the saveBOARD Product Assurance Supplier Statement for compliance with relevant performance clauses of the New Building Code.

 

saveBOARD betterBRACE sheet sizes are as follows:

  • 2450mm x 1200mm x 10mm

  • 2750mm x 1200mm x 10mm

  • 3050mm x 1200mm x 10mm

  • Custom cut up to 6000mm (special order, min x 70)

saveBOARD betterBRACE has been manufactured and tested by independent testing laboratories in New Zealand (N.Z.) - Australia (Aus), and the United States (U.S.) and has demonstrated compliance with New Zealand Building Code for specific requirements relating to a rigid air barrier application.

The following accredited laboratories have carried out an independent assessment and additional compliance testing to verify compliance with New Zealand Building Code

Assessment table

Performance Summary

The high-level performance and Environmental credentials of saveBOARD betterBRACE 10mm is displayed below for quick reference. The document goes into further details on design and installation requirements to ensure that betterBRACE 10mm is correctly used.

Performance bracing type table

Not Perfect

betterBRACE is made from 100% recycled composite packaging. Please note that the surface may look marked, or even mouldy. This appearance is simply the colour in the recycled packaging that can be seen through the moisture resistance facer. The colour can get embedded into the surface during manufacture when heat and pressure are applied. This does not affect the performance of the product in any way. saveBOARD products also have a dimensional tolerance of + / - 1mm.

Working safely with saveBOARD

All saveBOARD products are safe to work and live with.

  • saveBOARD can be cut, drilled, and sanded in the same manner and methods as most wood-based products.

  • saveBOARD products do not contain materials that are known to cause cancer if work-related dust is inhaled.

  • saveBOARD cutting activities do not generate harmful dust, but we recommend you always follow Health & Safety best practices to reduce or limit inhalation.

Safety recommendations for working with saveBOARD betterBRACE 10mm

  • We recommend cutting is completed outside or in a well-ventilated area.

  • ALWAYS wear Personal Protective Equipment (PPE). We recommend minimum P.P.E. of Safety glasses - Hearing protection – Dusk mask. When working near others, instruct them to also wear P.P.E. Always use the right tool(s), following the manufacturer's safety recommendations.

  • The front face of betterBRACE has a facing material for external exposure. The installer should wear gloves & covered sleeves during the installation along with the minimum PPE. Repeated rubs on bare skin can cause irritation. We recommend carrying sheets with the paper side against the body to minimise contact with skin.

  • Refer to saveBOARD Material Safety Data Sheet for further details.

Cutting – Hand saw and Power tools

saveBOARD betterBRACE can be cut in the same manner and methods as most wood-based products.

STEP 1 - Using a standard carpentry pencil, mark the cut line on the saveBOARD betterBRACE Hand-Cut - For handsaw cutting, a standard 500mm Handsaw with a > 7 Teeth Per Inch (T.P.I.) is suitable.

STEP 2 - For accurate cutting, it is always recommended that the cut is made with a power saw running against a fixed straight edge. Power Cut - For power saw cutting, a circular saw with > 1200w motor fitted with a standard ripping blade > 40 Teeth is suitable.

STEP 3 - Clean up the cut with a sandpaper block/ 80 Grade sandpaper or as required. *For all cutting, always follow the tool manufacturer's safety recommendations.

Drilling – Hole forming – For smooth, clean-cut circular holes:

saveBOARD betterBRACE can be drilled in the same manner and methods as most wood-based products.

STEP 1 - Mark the centre of the hole required on the sheet.

STEP 2 - Using a 3 – 5mm standard drill bit, pre-drill a central 'pilot' hole.

STEP 3 – Using the pilot hole as a guide, cut the hole with the hole saw that is correct for the hole size required. It is recommended to use a heavy-duty power drill, but a battery drill with sufficient power can achieve a good result.

T.I.P. – Allow the hole saw to cut. Do not apply excessive pressure as this may damage the back of the board upon exit.

Always follow the tool manufacturer's safety recommendations.

Hole saw

Sanding

Clean up cut edges with a sandpaper block /80 Grade Sandpaper or as required.

Seal

All cut edges must be sealed with an acrylic undercoat sealer.

Handling and Storage

Safe handling in transport and storage on-site is essential for worker's safety and protection of saveBOARD betterBRACE.

When manually handling saveBOARD betterBRACE ensure the panels are lifted correctly. For safety, we recommend a minimum of 2 people.

Where multiple pallets are stacked, all storage bearers must align to the ground. For safe working, it is not advisable to stack materials above chest height on-site and materials should always remain restrained to protect against high wind exposure.

Do not store betterBRACE outdoors without protective waterproofing. betterBRACE is intended for external use, but whilst laid flat on a pallet water will migrate between the layers making the backing paper wet which will degrade the product. betterBRACE should be stored flat on suitable bearers under protective waterproofing with a minimum of 50mm clearance from the ground and water sources. The spacing between the bearers should be no more than 600mm apart. If not stored correctly claims for damaged product will not be accepted.

It is good to trade practice to allow sheet materials to climatize to the site conditions for 48 hours prior to Installation.

Standard Installation

Installation Scope

saveBOARD betterBRACE is suitable for use as a rigid air barrier for buildings up to and including E.H. wind zone within the scope of NZS 3604 and E2/AS1, not exceeding 10 metres in height for bracing applications, follow the saveBOARD betterBRACE bracing details specified in this installation guide. Bracing with rigid air barriers can only be achieved when fixed directly to the frame. The board must be fixed in accordance with the bracing details of all framing.

saveBOARD betterBRACE must always be fixed directly to the framing, the vertical face joints and bottom edge must be sealed with acrylic undercoat sealer.

The cladding systems used over saveBOARD betterBRACE must satisfy the various performance requirements of the NZBC E2 (Accepted or Alternative Solution) saveBOARD betterBRACE is suitable for use behind NZBC E2/AS1 complying cladding systems approved by a B.C.A.

The cladding system must not be directly fixed to saveBOARD betterBRACE and must be installed by incorporating a ventilated cavity E2/AS1 type cladding system.

Support Framing

All support timber framing shall comply with NZS 3604 or comply with the Specific Engineering Design (S.E.D.) requirements.

All frame durability treatments must comply with NZBC B2/AS1. saveBOARD does not recommend board installation (Externally or Internally) on very wet timber framing. It is the builder's responsibility to ensure that framing is confirmed at a moisture content < 16% before internal linings are applied. This is a saveBOARD warranty requirement.

90 x 45mm minimum timber framing size is the minimum recommended for fixing saveBOARD betterBRACE. It is the designer's responsibility to ensure that the framing and the saveBOARD substrate are suitable for installing the selected cladding.

Diagram 1 vertical board layout

Vertical Installation and Joints

All saveBOARD betterBRACE sheets must be installed vertically (stencil facing outwards), with an expansion gap between the sheet edges of 2-4mm required. This includes external and internal vertical corner joints.

All vertical board joints should be fully supported by vertical timber studs. Any horizontal joints or cut-outs within a sheet should be supported by backing blocks.

The bottom edge of sheets must overhang below the bottom plate by 15 – 20mm. The bottom sheet edge must remain a minimum of 100mm clearance (150mm recommended) to the ground and saveBOARD betterBRACE should not be in contact or exposed to standing water during construction.

Horizontal Joints

For two storey buildings (not exceeding 10mtrs) saveBOARD betterBRACE must not be fixed directly to intermediate floor joists. At the intermediate floor level, a horizontal joint detail is required.

Step 1: The lower vertical board should project over the intermediate floor joist to a maximum of 50mm.

Step 2: A continuous Z type flashing must be installed horizontally to the full length of the wall. For wall lengths over 3m the Z flashing must be lapped 50mm and silicone sealed. The Z flashing must provide face covering to the lower sheets to a minimum of 40mm.

Any vertical or internal corners to the horizontal Z flashing must be sealed with appropriate joint tape with a minimum 75mm cover to the corner joint.

When installing the intermediate level boards, a minimum of a 15mm movement gap is required between lower and upper boards. The Z flashing upstand behind the intermediate boards must provide a minimum 30-35mm back cover.

No fixings are allowed in the floor joist or Z flashing area. The lowest sheet fixing to the upper intermediate boards must be into the intermediate floor subframe bottom plate and stud only.

Horizontal Sheet Joints

For wall heights greater than 3050mm or the custom length used, horizontal wall joints are permitted, provided the panel joint is over solid blocking of the same gauge as the studs. Minimum of 5mm expansion joint to allow for vertical expansion of the sheets as per Diagram 4.

Diagram 2 2 Storey Horizontal Joint
Diagram 4 caption
Diagram 3 Bottom Edge Detail
Diagram 4 Horizontal Joints at Nog

System 1: saveBOARD betterBRACE 10mm

400 x 2400 mm wall using GIB HandiBrac® hold down brackets (or similar)

Wall construction: 

  • 90 x 45 MSG8 studs.

  • saveBOARD betterBRACE 10mm panel one side.

  • Fixings: 2.8mm x 50mm Galv Ring Shank Gun Nails at 100 mm centres around the perimeter.

  • GIB HandiBrac® hold down brackets fixed to each end-to end studs and to bottom plate with concrete hold downs as per manufacturer’s specifications.

  • Tested for concrete or timber floors with M12 hold down bolts.

Diagram 5

System 2: saveBOARD betterBRACE 10mm

600 x 2400 mm wall using GIB HandiBrac® hold down brackets (or similar)

Wall construction: 

  • 90 x 45 MSG8 studs.

  • saveBOARD betterBRACE 10mm panel one side.

  • Fixings: 2.8mm x 50mm Galv Ring Shank Gun Nails at 100 mm centres around the perimeter.

  • GIB HandiBrac® hold down brackets fixed to each end-to end studs and to bottom plate with concrete hold downs as per manufacturer’s specifications.

  • Tested for concrete or timber floors with M12 hold down bolts.

Diagram 6 System 2

System 3: saveBOARD betterBRACE 10mm

1200 x 2400 mm wall using GIB HandiBrac® hold down brackets (or similar)

Wall construction: 

  • 90 x 45 MSG8 studs.

  • saveBOARD betterBRACE 10mm panel one side.

  • Fixings: 2.8mm x 50mm Galv Ring Shank Gun Nails at 100 mm centres around the perimeter.

  • GIB HandiBrac® hold down brackets fixed to each end-to end studs and to bottom plate with concrete hold downs as per manufacturer’s specifications.

  • Tested for concrete or timber floors with M12 hold down bolts.

Diagram 7 System 3

TOP PLATE HOLD-DOWN CONNECTIONS

Type A Fixing or 0.7kN uplift capacity

The standard fixing details as shown in the diagrams for Systems 4, 5 & 6 comply with a Type A fixing or 0.7kN uplift capacity as listed in Table 8.18, NZS 3604 based on the fixings being 12mm from sheet edge.

Type B Fixing or 4.7kN uplift capacity

To comply with a Type B fixing or 4.7kN uplift capacity as listed in Table 8.18, NZS 3604. No additional nailing of betterBRACE rigid air barrier is required to the top and bottom plates. The only change to the nailing pattern is that the minimum sheet edge must be 20mm on the top and bottom plates in accordance with the details shown in Diagram 8.

Fastening

Nails must be 50mm x 2.8mm ring shank gun nails either hot dip galvanised or stainless steel as described in the betterBRACE rigid air barrier Design and Installation Guide for Fastener Durability. Nailing to the top plate (and bottom plate) is at 100mm centres and 20mm from the sheet edge.

 

The remainder of the sheet (vertical edges) perimeter is fastened at 100mm centres no less than 12mm from the sheet edge and 300mm at intermediate studs as with standard nailing for betterBRACE rigid air barrier.

Standard nailing of the betterBRACE rigid air barrier to the top plate in accordance with the betterBRACE rigid air barrier design and installation guide will provide a top plate hold-down capacity that exceeds a Type A fixing or 0.7kN uplift capacity as listed in Table 8.18, NZS 3604.

Diagram 8 type B

saveBOARD betterBRACE fixings

saveBOARD betterBRACE must be installed with its moisture resistant surface facing out towards the external cladding (stencil facing outwards). The moisture resistant surface applied on the face helps the board to drain the moisture freely over the face and keeps it dry. To retain board integrity, all nail fixings must finish flush with the board surface.

Bracing and Non-Bracing fixings

saveBOARD betterBRACE should be fixed with pneumatic nails (gun nails). Tables 2 & 3 below lists the recommended fixing types.

All fixings must have a minimum clearance of 50mm horizontally and 75mm vertically from the sheet corners and minimum of 12 mm from the sheet edges.

Nail gun fixings must be of a suitable round head type with a ring shank to provide the minimum hold capacity required.

Table 2 and 3

Fixing Durability

​​Structural fixings are a critical component of a building system. To comply with the NZBC B2 Durability requirements, all structural fixings must have the same level of Durability as required for a structural wall system. Tables 2 and 3 list fixings suitable fixings for NZBC Corrosion Zones A-C only.

System 1, 2, 3 table

It is the designer's responsibility to confirm exposure requirements for individual projects. When such corrosion risks as Sea Spray or Geothermal exposure exist, it will be necessary to increase the fixing Durability to Stainless steel type or equivalent to the satisfaction of the B.C.A.

Bottom Plate Fixing Use GIB HandiBrac® hold-down connections at each end of the bracing element. Install in accordance with the installation instructions supplied with the connectors and follow instructions for the recommended fastenings to be used for either concrete or timber floors. Within the length of the bracing element, bottom plates are to be fixed in accordance with the requirements of NZS 3604.

BRACING DESIGN AND INSTALLATION

saveBOARD betterBRACE may be used as a bracing element with structural timber wall and steel framing systems that comply with New Zealand Building Code.

Scope of use

saveBOARD betterBRACE bracing may be used for;

  • New buildings construction; and

  • Alterations to existing buildings

For alterations to existing buildings, the designer/ builder must satisfy themselves that the existing subframe/structure is suitable to achieve the desired bracing performance, and the saveBOARD betterBRACE BU/m must be considered indicative only when applied to the existing structure.

Bracing Design requirements

When specifying saveBOARD betterBRACE as a design bracing element, it is the designer's responsibility to confirm the following site-specific conditions:

  • Environmental exposure zone

  • Wind zone

  • Critical structural design input (Wind and Earthquake loads) as applicable to the wall bracing calculations required

  • Structural framing specification requirements

  • Suitable durability treatment for structural frames/substrate

  • Suitable design and specification for an NZBC compliant cladding and roof system

  • All other matters that may affect performance

Bracing Design Performance Input table

Specification for Extra High Wind Zone

Wind zones: Extra High.

Wind pressure: Up to 4.5 kPa U.L.S.

Substrate structural fixings: saveBOARD betterBRACE installation must be as per the instructions in this manual. Bracing elements can be achieved effectively by using all current New Zealand Building Code approved mechanical fixing strap, bracket, and hold down systems (Pryda, HandiBrac, Mitek, etc.).

Substrate framing - timber: Wall stud spacing must not exceed 400 mm centres for EH Wind Zones as per Table 2 & 3. Prior to internal lining installation, the structural framing moisture content is recommended to be ≤ 16%.

 

Substrate framing – steel: Refer to S.E.D

 

Bracing Sheet service penetrations: Service penetrations holes must not exceed 100mm x 100mm in dimension or 150mm diameter maximum. Penetrations are limited to a maximum of 2 holes per sheet, and multiple penetrations must be a minimum of 750mm apart. Penetrations are not to be located within the top 150mm or bottom 250mm of a bracing sheet.

 

Sheet Installation and fixing: Must be strictly in accordance with the instructions in this guide.​​​

Diagram 9 caption
Diagram 9

JOINT TREATMENT, OPENINGS AND PENETRATIONS

Option A: Over-fix with Synthetic Wall Wrap / Underlay

betterBRACE can be over-fixed with a synthetic underlay within 30 days, to achieve a 90-day exposure duration before cladding installation as per the wall wrap manufacturers specification. Once the building is enclosed with betterBRACE and signed off by council (if required), it allows the builder to install the internal linings at the same time as claddings. Follow the manufacturers’ instructions for fixing over a rigid air barrier. When over-fixing a wall underlay betterBRACE sheet joints do not need to be taped but all openings and penetrations must be sealed.

If the underlay is torn or punctured, the damaged area must be patched with flashing tape or additional wrap overlaid (ship lapped) with an overlap of at least 150mm.

 

Leave window and door openings covered (diagram 10) until the joinery is ready to be installed. Cut the underlay and install flashing tape when the joinery has arrived and is ready to be installed (diagram 11).​​

Diagrams 10 and 11

Recommended Underlays

  • Thermakraft Watergate Plus

  • Marshalls Tekton Building Wrap

  • Proclima Tescon Extora, Tescon Extoseal and Solitex Extasana Adhero.

Sealing Site Cut Edges

All cut edges made on site must be sealed with an acrylic undercoat sealer before wrapping.

Penetrations

Service penetrations (including cabling) must be sealed with a flexible flashing tape providing a minimum of 100mm cover beyond the joint or penetration or a penetration seal.

Service penetrations through saveBOARD betterBRACE and a wall underlay must slope to the outside (Angle of > 5°).

Diagram 12
Diagram 12 caption

The flashing tape or penetration seal must be installed with a minimum of 25 mm cover projecting around the pipe and 100 mm minimum surface adhesion to the underlay surrounding the penetration.

Recommended Penetration Seals

  • Thermakraft OneSeal

  • Marshalls Trade Seal

Window /Door Openings

The surface must be free of dust and dirt and must be dry before applying any tape. Use a minimum of 150mm wide tape and refer to the tape manufacturer installation instructions for full details.

Check that the flashing tape being used is compatible with the wall underlay. Extend the flashing tape from the corner in both directions a minimum of 200mm, or further if required, to ensure all exposed framing and the exposed edge of betterBRACE has been covered. As best practice, it is recommended that the full opening is taped.

Use a strip of tape 75mm x 150mm across all corners at a 45 degree angle (butterfly strip). Apply first, under the tape used to seal the opening on the bottom of the opening. On the top corners, apply the butterfly strips over the top sealing tape, pushing the tape in to the corners of the opening. This provides a secondary measure of protection in the corners.

Diagrams 13 and 14

Recommended Penetration Seals

  • Thermakraft Thermaflash

  • Marshalls SuperStick Building Tape

Option B: Tape Joints and Penetrations

betterBRACE joints and penetrations can be tapped to achieve a 30-day exposure duration before cladding installation. All vertical board joints and openings must be sealed to stop the moisture ingress into the framing behind betterBRACE. Once the building is enclosed with betterBRACE and signed off by council (if required), it allows the builder to install the internal linings at the same time as claddings. The vertical joints must be sealed with a minimum of a compatible 75mm wide joint tape applied with even coverage to both sheets.

Jointing Tape

The following products are recommended:

  • Thermakraft Premium Joining Tape

  • Marshall Superstick

  • SIGA Wigluv

It is important to follow the joint tape manufacturers' recommendations regarding the installation of their jointing tapes in specific climatic conditions and substrate preparation. We recommend the use of a firm rubber roller to ensure firm and even pressure resulting in the correct bond when installing the joint tape to the saveBOARD betterBRACE 10mm surface.

 

Any horizontal joints or service penetrations should be sealed with a suitable flexible flashing tape or a penetration seal providing a minimum of 100mm cover beyond the joint or penetration.​​

Penetrations

Service penetrations (including cabling) must be sealed with a flexible flashing tape providing a minimum of 100mm cover beyond the joint or penetration or a penetration seal.

 

Service penetrations through saveBOARD betterBRACE and a wall underlay must slope to the outside (Angle of > 5°).

Diagram 15

Sealing Site Cut Edges

​​All cut edges made on site must be sealed with an acrylic undercoat sealer

Installing Window /Door Openings

The surface of the betterBRACE must be free of dust and dirt and must be dry before applying any tape. Refer to the tape manufacturer installation instructions for full details.

Using a recommended flashing tape or sealing tape seal the full opening to cover all exposed timber of joinery openings.

Using a minimum of 150mm wide tape, apply to the timber frame as per manufacturers instruction, wrap the tape a minimum of 60mm on to the face of the betterBRACE.

Use a strip of tape 75mm x 150mm across all corners at a 45-degree angle (butterfly strip). Apply first, under the tape used to seal the opening on the bottom of the opening. On the top corners, apply the butterfly strips over the top sealing tape, pushing the tape into the corners of the opening. This provides a secondary measure of protection in the corners.

ADDITIONAL INFORMATION

saveBOARD is committed to a sustainable future. We hold many of the common industry environmental certifications & labels. Ultimately, we can provide transparency to our clients and customers on how we make our saveBOARD products. We have provided relevant additional information below:

Designing Out Waste

We are focused on several initiatives that design out waste in the built environment, these include:

💲Free Return Service: Send back off-cuts and end-of-life products to be remanufactured into new materials. It costs less than landfill and better for the planet.

🛠️Cut-to-Length Service: Only pay for what you need, saving money and reducing on-site labour for cutting sheets.

🚪Recycling Manufacturing Waste: Our side trimmings and reject boards are continuously recycled into new saveBOARD products, it's just something we do.

🌏Soft Plastics Recycling: We offer free soft plastics recycling to all our clients, providing a comprehensive site-wide solution not just saveBOARD focused.

GreenStar Credits

The use of saveBOARD products will earn, or contribute towards earning, Green Star credits in the following Green Star categories:

Credit 19: Life Cycle Impacts

saveBOARD are low-carbon products. We have 5x EPDs covering 6x products, which are registered on EPD Australasia website. The global warming potential of our products ranges from -4.3 to -10.1 kgCO2e/m2 for A1-3 including biogenic carbon attached to the original fibre packaging.

Credit 21: Sustainable Products

Only one of following Credits may be claimed per product ie saveBOARD products currently meet 3 out the 4 requirements, but you can only claim against one requirement.

21B: Sustainable content

saveBOARD products contain 99% recycled content.

21C: EPD (Environmental Product Declaration)

Our EPDs are available on our website (EPD).

21D: Third Party

Certified by Eco Choice Aotearoa, and GECA Ecolabel both Level A certifiers.

21E: Stewardship Program

saveBOARD has a Product Steward Program that will qualify for this criterion.

Credit 22: Construction and Demolition Waste

Credits for this clause are claimed for the total amount across the project. Soft plastic waste generated on site can be collected and sent to saveBOARD to use in the manufacture of new board. This can be included in the overall total.

HomeStar (NZ Specific)

Homestar is New Zealand's leading holistic sustainability certification for new home design and construction. The use of saveBOARD products will contribute towards earning Homestar Points in the following categories:

EN2 Embodied Carbon

For use in your calculations the embodied carbon of saveBOARD products is 0.11 kgCO2e/kg.

EN3 Sustainable Materials

Up to 10 points are available where at least 50% of the material content is reused, eco-preferred or responsibly sourced materials. When calculating enter saveBOARD products in category (6), measured in m2.

EN4 Construction Waste Minimisation

Minimising Waste

saveBOARD products are available cut to length (minimum quantities apply). This will reduce off cuts during installation.

 

Onsite Sorting

Soft Plastics can be sorted and returned to saveBOARD to be remanufactured into new board. Ask us for a copy of “Accepted Plastics”.

Waste Diversion

As above, soft plastic waste can be recycled with saveBOARD. Any off cuts can also be returned to be manufactured into new boards.

Declare Label

Declare is a database of non-toxic, sustainably sourced building products that meet the stringent requirements of the International Living Future Institute’s Living Building Challenge.

Declare label is available for all saveBOARD products. Declare is like a nutritional label for building products, offering specifiers, contractors and building users insight into the ingredients used in the manufacture of building products. All saveBOARD products have all achieved Red List Free status.

Environmental Labels - Eco Choice Aotearoa

Eco Choice Aotearoa is New Zealand's official ecolabel. More than listing sustainable products for green homes or businesses, Eco Choice's Type I ecolabel offers strong, independent proof of environmental best practice for those products and services that bear the mark.

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