Qidi PAHT-CF 炭素繊維フィラメント (PPA-CF)
Qidi PAHT-CF 炭素繊維フィラメント (PPA-CF)
Qidi PAHT-CF 炭素繊維フィラメント (PPA-CF)
Qidi PAHT-CF 炭素繊維フィラメント (PPA-CF)
Qidi PAHT-CF 炭素繊維フィラメント (PPA-CF)
Qidi PAHT-CF 炭素繊維フィラメント (PPA-CF)
Qidi PAHT-CF 炭素繊維フィラメント (PPA-CF)
Qidi PAHT-CF 炭素繊維フィラメント (PPA-CF)

Qidi PAHT-CF 炭素繊維フィラメント (PPA-CF)

通常価格$94.99
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題名
  • 在庫あり、発送準備完了
  • 途中の在庫

2 個購入すると15%獲得 オフ
3 つ以上購入すると20 %獲得 オフ

PAHT-CF(PPA-CF) は FDM 3D プリンティングプロセス用に特別に開発されており、基材は低吸湿性、高強度、高耐摩耗性、優れた耐薬品性、高耐熱性を備えた高温ナイロン QIDI UltraPA(PPA) で作られています。耐久性があり、寸法安定性が高く、印刷プロセス中に反りません。

Why Choose Carbon Fiber Filled High Temp Nylon PAHT-CF Material?

QIDI TECH PAHT-CF is specially designed for FDM 3D printing process. The substrate material is high temperature nylon, which has low density, low moisture absorption, high strength, high abrasion resistance, excellent chemical resistance and high heat resistance. It also has good dimensional stability and no warpage.

It can be used together with QIDI TECH S-White Quick-Remove Support Material to solve the problem of poor impression effect on the support surface of complex models.

Smart Fiber Reinforced Technology
Smart Fiber Reinforced Technology greatly improves the mechanical properties and heat resistance of PAHT-CF and relieves internal stresses during printing through the fiber network structure, resulting in good dimensional stability of the printed part and no warpage.

Low Moisture Sensitivity
QIDI TECH PAHT-CF is based on modified high-temperature nylon, whose moisture absorption in a saturated state is only one-tenth that of ordinary PA6. This completely eliminates the deficiencies in mechanical properties and dimensional stability of nylon materials, which change greatly after moisture absorption.

Low Density
Low density can easily meet the requirements for high strength and low weight in industrial applications.

Super Abrasive Resistance
QIDI TECH PAHT-CF has low coefficient of friction, self-lubricating properties and excellent wear resistance, which can easily meet all kinds of high-strength gears or industrial applications with high wear requirements.