This seamless PBR texture authentically represents the intricate fabric of fishnet lace socks tailored specifically for architectural visualization (archviz) and cloth rendering workflows. The base substrate is an organic polymer mesh that mimics delicate nylon threads intricately woven into an open fishnet pattern. Fine lace elements introduce subtle fiber variations and carefully oriented grain enhancing the natural complexity of the surface. The connections between individual fibers are suggested through slight thickness differences and soft shadowing while the porous fishnet structure allows light to pass through producing the natural translucency typical of stockings and underwear fabrics. The surface finish is matte with a gentle subtle sheen that reflects the elasticity and softness inherent in lace socks adding to the realism. Colorants have been carefully applied simulating dyed yarns in neutral skin tones and off-white shades replicating the common colors found in hosiery with consistent true-to-life color fidelity across the texture.
This comprehensive texture set includes all essential PBR maps optimized up to 8K resolution ensuring exceptional detail even when tiled on large surfaces. The BaseColor (Albedo) map accurately depicts the fabric’s true hues and lace intricacies without baked lighting preserving realistic color response. The Normal map captures the fine weave fiber geometry and subtle embossing of the lace while the Roughness channel controls the interplay between the soft matte fabric and the slight specular highlights typical of synthetic cloth supporting lifelike light diffusion. As expected for non-metallic cloth materials the Metallic map is black underscoring the organic nature of the fibers. Ambient Occlusion enhances depth perception by emphasizing the shadows within fishnet holes and lace overlaps. Height and Displacement maps provide detailed surface relief for thread thickness and lace pattern which can be adjusted for parallax or displacement effects in modern rendering engines.
Designed for seamless integration in Blender Unreal Engine Unity and other physically based rendering workflows this texture is well-suited for realistic archviz and cloth visualization projects. When applying the texture it is recommended to carefully adjust the UV scale to maintain the natural size and proportion of the fishnet pattern relative to the 3D model ensuring the lace detail remains convincing and lifelike. Additionally fine-tuning the roughness values offers flexibility to simulate different wear conditions from freshly manufactured stockings with smooth fibers to slightly aged fabric exhibiting increased surface roughness. Ensuring correct color space and gamma settings will help maintain accurate color fidelity and optimal render results throughout your visualization pipeline.
Using This PBR Texture in Blender
Import the texture maps into Blender with sRGB color space for albedo/base color and
Non-Color for normal, roughness, metallic, AO, height, and ORM maps. Connect normal maps
through a Normal Map node, then adjust UV scale with a Mapping node so the material repeats naturally on
your model.
- Albedo -> Principled BSDF Base Color
- Roughness -> Roughness, Metallic -> Metallic
- Normal -> Normal Map node -> Normal
- Height -> Bump or Displacement depending on render setup
For the full step-by-step setup, see
How to Use Seamless Textures in Blender.
Browse related material examples in
wood,
concrete, and
metal.
FAQ
Is this texture seamless and tileable?
Yes. This texture is designed as a seamless tileable PBR material, so it can repeat across large surfaces without visible borders.
Which resolutions and formats are available?
You can download PNG/WEBP versions and use 1K, 2K, 4K and 8K download options when available on the page.
Can I use it in Blender, Unreal Engine and Unity?
Yes. The download options and engine-mapped ZIP workflow are designed for Blender, Unreal Engine, Unity Standard, URP and HDRP material pipelines.
Is commercial use allowed?
Yes. The texture is available under the AITextured free commercial license. Review the license page for redistribution and AI-training restrictions.