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Anti‑Static DTF Films Reduce Powder Adhesion Defects

Anti‑Static DTF Films Reduce Powder Adhesion Defects

New anti‑static DTF films are reducing powder adhesion defects, such as uneven coating and stray powder particles, leading to higher transfer quality and less rework. Static electricity on standard DTF films attracts powder to areas where it shouldn’t stick, causing rough spots or speckles in the final transfer. The anti‑static films have a conductive coating that dissipates charge, ensuring uniform powder application. Field tests show a 60% reduction in defects related to powder distribution, and operators report easier handling as the films don’t cling to each other.

For users of Xinflying DTF printerlari, switching to anti‑static films requires no equipment changes and the cost premium is only about 5–10%. The benefits are most noticeable in low‑humidity environments, where static buildup is worse. Several major film suppliers now offer anti‑static versions of their standard products. Print shops processing high volumes of small, Batafsil dizaynlar (such as logos or text) will see the biggest improvement. As the cost difference is minimal, anti‑static films are expected to become the new standard within two years, making powder defects a thing of the past.

Manba: DTF Technology News

Mundarija

Bepul taklif oling

    Ulushlar

    Keling, gaplashaylik

    Xinflying Digital Textile Printing yechimlarining to'liq spektrini taklif etadi, ishlab chiqaruvchilar va brendlarga biznes salohiyatini oshirishga yordam berish uchun yaratilgan. Bizga eslatma qoldiring - biz sizga ko'proq ma'lumot berishni va sizning o'sishingizni qanday qo'llab-quvvatlashimiz mumkinligini ko'rsatishni xohlaymiz.

    Yuqoridagi ma'lumotlarni taqdim etganda, siz Xin Flying tomonidan bizning shartlarimiz asosida ma'lumotlarni to'plash va qayta ishlashga rozilik bildirasiz MAXFIYLIK SIYOSATI .

    Qo'shimcha ma'lumot uchun biz bilan bog'laning

    Bizning DTF haqida ko'proq bilib oling, DTG, sublimatsiya printerlari va sarf materiallari.