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Screw-in anchor for insulation panels R-TFIX-8S
Screw-in anchor for insulation panels R-TFIX-8S - 1
Screw-in anchor for insulation panels R-TFIX-8S - 2
Screw-in anchor for insulation panels R-TFIX-8S - 3
Screw-in anchor for insulation panels R-TFIX-8S - 4
Screw-in anchor for insulation panels R-TFIX-8S - 5
Screw-in anchor for insulation panels R-TFIX-8S - 6
Screw-in anchor for insulation panels R-TFIX-8S - 7
Screw-in anchor for insulation panels R-TFIX-8S - 8

For detailed information, other images and documents, please select individual articles from the following table.

Screw-in anchor for insulation panels R-TFIX-8S

With galvanised steel screw

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Available in 10 versions

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  • Screw-in (TX40 drive): installation is gradual, thereby minimising disturbance in the finishing layer and the reinforcement material

  • Can withstand higher loads than traditional hammer-in insulation panel anchors: fewer anchors are required per square metre of insulation, which saves considerable time and money

  • Option of flush mounting to further minimise the thermal bridge and prevent stains appearing on the finishing layer

  • Polypropylene anchor preassembled with galvanised steel screw with fibreglass-reinforced polyamide head

  • Thanks to its particular geometry, the anchor can transfer high loads to the support with a shallower anchoring depth

  • Heat transfer χ = 0.002 W/K
Notice

For soft insulation panels (e.g. made of rock wool), the KWL retaining plate (dia. 90 mm) can be used



* + 10 mm for flush mounting


1) A tolerance of 10 mm is already taken into account (for example, to allow for an adhesive). The presence of layers of plaster on older buildings, for example, reduces the maximum thickness of the insulation panel. For this reason, the specific installation situation should always be considered when calculating the length of the anchor


The insulation panel must have a minimum thickness of 60 mm in the event of flush mounting



Rk, Rd, Ramm are respectively characteristic, design and permissible resistance values. The characteristic and design values are obtained using statistical methods and safety factors. The permissible value is obtained from the design value by applying an additional conventional safety factor of 1.4. For those unfamiliar with the characteristic and design values, we recommend using the permissible strength value by checking that it is greater than the maximum load acting on the anchor

Supports A + B + C + DSupport E
Min. depth
of hole
[mm]
Min. depth
of anchor
[mm]
Max. thickness
of insulation
panel1)
[mm]
Min.
depth
of hole
[mm]
Min.
depth
of hole
mm
Max. thickness
of insulation
panel1)
mm
Length
of anchor
[mm]
Art.
35*25*8055*45*601155921 399 115
100801355921 399 135
1201001555921 399 155
1401201755921 399 175
1601401955921 399 195
1801602155921 399 215
2001802355921 399 235
2202002555921 399 255
2402202755921 399 275
2602402955921 399 295
* + 10 mm for flush mounting
1) A tolerance of 10 mm is already taken into account (for example, to allow for an adhesive). The presence of layers of plaster on older buildings, for example, reduces the maximum thickness of the insulation panel. For this reason,
the specific installation situation should always be considered when calculating the length of the anchor.
The insulation panel must have a minimum thickness of 60 mm in the event of flush mounting
Base materialCategoryRk characteristic
resistance
to extraction
Ramm
permissible
(or recommended) load
Permissible maximum loads and installation conditions:
Concrete C12/15A1.20 kN0.60 kN
Concrete C16/20 - C50/60A1.50 kN0.75 kN
Solid bricksB1.50 kN0.75 kN
Perforated bricksC0.90 kN0.45 kN
Lightweight concreteD0.90 kN0.45 kN
Autoclaved aerated (cellular) concreteE1.20 kN0.60 kN
Min. spacing between anchorsA, B, C, D, E100 mm
Min. distance from edgeA, B, C, D, E100 mm
Min. thickness of supportA, B, C, D, E100 mm
(1 kN ~ 100 kg)
Instructions