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RAWLPLUG R-TFIX-8S-395 screw-in facade anchor 8 mm, 395 mm length, with coating, pack 50
RAWLPLUG R-TFIX-8S-395 screw-in facade anchor is a long threaded anchor with an 8 mm nominal diameter and 395 mm length, supplied in a pack of 50. Designed for secure fixing of facade elements into masonry and concrete where extended embedment is required, this anchor features an injected protective coating for corrosion resistance and two tool engagement options to accommodate surface or flush installation. It is intended for exterior cladding, insulation anchors and heavy façade attachments that need a durable mechanical connection.
The injected coating provides enhanced corrosion protection for outdoor applications and extends service life in exposed environments. Two tool engagement options allow flexible installation: either surface-mounted or flush with the installed material. The long 395 mm length enables deep embedment into masonry or concrete substrates to achieve higher pull-out and shear resistance for heavy loads. Supplied in a pack of 50, the anchors are convenient for medium to large installations and reduce handling time on site.
Drill a hole to the required diameter and depth into the masonry or concrete substrate, ensuring the hole is clean and free of dust. Insert the screw-in anchor and engage the selected tool interface (surface or flush) to drive the anchor to the required embedment depth. Tighten the threaded connection to secure the façade element or insulation rail according to the design torque or manufacturer’s load guidance. Follow common practice for spacing and edge distances to achieve the specified load-bearing performance.
Use anchors of this type in sound masonry or concrete substrates. Verify substrate condition, load requirements and embedment depth before installation. For coastal or highly corrosive environments consider additional corrosion protection measures and follow local building standards for façade anchors. Refer to structural design documents for spacing, edge distances and grouped-load effects.
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