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Diatomic Nano TechnologyWedka technologia

Wedka technologia is a mile-long step in the high-modulus graphite rods business. In 2006, after many laboratory tests and trials, we dared to introduce the first blanks made in the RNT technology which opened a whole new chapter in fishing. The on-going development of the technology allowed us to produce equipment that was not possible to obtain just a few years ago due to material deficiency. The base of the DNT technology is the molecular level production supervising - crystallike placement of the carbon particles creates 'invincible' material capabilities. This material has the highest durability parameters and is used by NASA to construct elements meant for space. The base for such exceptional features of the DNT rods are the two, key elements: CS-Matrix (Ceramic System Matrix) and HP-Core (Hyper Power Core).

CS-MATRIX
(Ceramic System Matrix)

Wedka technologia

is a system of placing the graphite so that it allows the lowest amount of epoxy resin. Due to the nanotechnology we create a material of the highest class. The second step though is complicated: the following layers must be placed in a special manner so that the final product encompasses the precise highest parameters. This requirement can be met when the amount of epoxy resin will be lowered to the point when graphite and resin will be come a homogenous ceramics.

HP-Core
(Hyper Power Core)

Wedka technologia

Building the blank starts from placing the internal core - it's a base for the next graphite layers. The core construction could be used not only as a 'basis' but it can be also designed to bear the circular loads therefore to become an element preventing ovalization of the blank. Bending of the rod made of a thin-wall tube always generates horizontal pressure which in the first phase leads to the ovalization of the diameter and then to deformation and damage. HP-Core describes the way of constructing the core that eliminates the possibility of ovalizing the diameter in the scale of the aforementioned loads.

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