leather texture decorative metal panels
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가죽 텍스처 장식용 금속 패널 PVD 색상 코팅 착용 저항성
The Decorative Leather Texture Metal Panels combine the timeless elegance of genuine leather with the exceptional durability and strength of stainless steel. Using advanced embossing technology, a realistic 3D leather texture is applied to the metal surface, creating a luxurious finish that is both visually striking and tactilely satisfying. This premium decorative panel offers a practical alternative to traditional leather. It is completely resistant to wear, moisture,
건축 내부를 위해 저항하는 장식적인 304 돋을새김된 스테인리스 장 부식 -
304 embossed stainless steel sheet features a raised decorative pattern on the surface of Grade 304 stainless steel. Grade 304 is the most widely used austenitic stainless steel, offering an excellent balance of corrosion resistance, formability, and affordability. The embossed texture adds visual interest, conceals scratches, and reduces fingerprint visibility. Our 304 embossed sheets are ideal for architectural interiors, elevator cladding, appliance panels, and decorative
건축물 린 린 린 린 린 린
The Leather Pattern Embossed Stainless Steel Sheet combines the timeless elegance of genuine leather with the exceptional durability and strength of stainless steel. Using advanced embossing technology, a realistic 3D leather texture is applied to the metal surface, creating a luxurious finish that is both visually striking and tactilely satisfying. This premium decorative panel offers a practical alternative to traditional leather. It is completely resistant to wear,
맞춤형 PVD 코팅 스테인리스 스틸 시트 PVD 진공 코팅
PVD coated stainless steel sheet starts with standard stainless steel (grades 201, 304, or 316) and receives a thin, ultra-durable ceramic coating through the Physical Vapor Deposition (PVD) process. Unlike paint or laminate, PVD coating is applied at the molecular level inside a vacuum chamber. The coating material — typically titanium nitride (TiN), chromium nitride (CrN), or zirconium nitride (ZrN) — is vaporized and bonded to the stainless steel surface. The result is a