EVO PT®
Specification
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Overview
- Self-tapping fastener for thermoplastics
- Optimised locating point
- Depth independent installation torque
- Support with complete CAE based designing
- Excellent process safety
- Standardisation potential
CAD & more - Your Online-Service
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EVO PT® CAD Data *
Here you can directly download CAD data, PDF and DXF drawings.
EVO CALC® Prognosis Program *
Take advantage of our new prognosis program for designing your screw joint and calculating assembly parameters. This software combines the VDI 2230 guidelines with EJOT's long-term expertise in direct fastening into plastic.
CAD & more - Your Online Service Area
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For technical questions please contact our Hotline Team +49 2751 529-123
Problems with your access? Mail to: service-industrie@ejot.com
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For technical questions please contact our Hotline Team +49 2751 529-123
Problems with your access? Mail to: service-industrie@ejot.com
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For technical questions please contact our Hotline Team +49 2751 529-123
Problems with your access? Mail to: service-industrie@ejot.com
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For technical questions please contact our Hotline Team +49 2751 529-123
Problems with your access? Mail to: service-industrie@ejot.com
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For technical questions please contact our Hotline Team +49 2751 529-123
Problems with your access? Mail to: service-industrie@ejot.com
Can not process your request for CAD
Please contact our customer care
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For technical questions please contact our Hotline Team +49 2751 529-123
Problems with your access? Mail to: service-industrie@ejot.com
Help, guidance and technical support
Your contacts for industrial fastening systems
EJOT’s advanced fastening systems are found in countless industrial and engineering assemblies around the world. Click below for sales and technical support from one of our experienced team. We conduct inspections and observations onsite, in addition to providing help and advice direct from our UK manufacturing centre.
The Evolution of self-tapping into plastic materials
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The EVO PT® is the evolutionary development of self-tapping fasteners for thermoplastics. For the first time, this innovative fastening solution successfully integrates manufacturing and application knowledge with new methods based on physical computer simulations into the development process. The result of this cross-disciplinary approach is a screw with excellent connection properties.
Innovative forming thread
![](/medias/sys_master/images/images/h9d/h86/9000077656094/IND-PB-EVO-PT-1-EJOT.jpg)
One of the most innovative characteristics of the EVO PT® is the way its forming thread creates a torque curve during the installation phase, almost independently of the screw-in depth. As a result, a uniform tightening torque can be used in the production at different screw lengths.
The special lead-in feature of the EVO PT® creates a uniform load on the thread flanks when completely fastened. This is achieved because the screw centres automatically in the pilot hole during the installation. In addition, this innovative thread allows an easy self-alignment in the pilot hole.
EJOT EVO CALC®
![](/medias/sys_master/images/images/hcd/h41/9342361501726/IND-PB-EVO-PT-3-EJOT-mit-Logo.jpg)
With the digital calculation service EJOT EVO CALC®, EJOT is able to offer design engineers a prediction of the torques and preload forces according to component requirements. Additionally, in conjunction with the EVO PT® screw, we can provide an individual FEM-supported component optimisation. The resulting valuable time and cost saving effects can already be realised in the design phase.
CAE services - component optimisation and individual design engineering assistance
![](/medias/sys_master/root/h18/h4d/9065907257374/IND-PB-CAE-Services-EJOT.jpg)
EJOT’s design support extends further during your development stages through our CAE services. With the help of innovative calculation and simulation tools we can estimate the behaviour and effect of our fastening elements on your proposed component under various loads. This enables us to give you respective recommendations that you can depend on. For example, we can calculate the clamp load relaxation of individual screw joints and also to analyse the behaviour of the complete assembly. More...