Worn Red Bricks in England | Free PBR free download

. Formats: PNG . Free for personal & commercial use.

Preview — Worn Red Bricks in England | Free PBR

IDworn-red-bricks-in-england-free-pbr
Brick
PNG
Size1k (1024x1024px), 2k (2048x2048px), 4k (4096x4096px), 8k (8192x8192px)
sRGB

This high-quality seamless PBR texture showcases worn red bricks commonly found in England, capturing the authentic material characteristics with remarkable detail. The base substrate consists of fired clay minerals, giving the bricks their dense ceramic composition. Over time, the surface has weathered naturally, displaying subtle porosity and micro-cracks that contribute to the aged appearance. Traditional iron oxide pigments provide the distinctive red coloration, which has faded unevenly due to exposure to varying environmental conditions. The mortar binding the bricks is composed of lime and sand aggregates, adding to the overall texture complexity with fine grain orientation and slight erosion from weathering.

In the PBR material channels, the BaseColor or Albedo texture accurately reflects the nuanced red tones and lighter mortar hues, while the Normal map brings out the brick surface’s relief, including chips and indentations. The Roughness channel balances polished and rough areas, portraying the bricks’ partially worn finish, with some smoother spots where foot traffic or rain has smoothed edges. The Metallic channel remains near zero, consistent with the non-metallic ceramic nature of bricks. Ambient Occlusion enhances shadowing in crevices and mortar joints, intensifying depth perception. The Height or Displacement map captures surface unevenness, allowing realistic parallax effects in 3D environments.

Rendered at an impressive 8K resolution, this texture is fully optimized for seamless tiling and performs exceptionally in Blender, Unreal Engine, and Unity workflows. For best results, it is recommended to fine-tune the UV scale to match the real-world brick dimensions, and adjust roughness values slightly higher in areas meant to simulate weather-exposed surfaces for added realism. This worn red brick texture provides an ideal solution for architectural visualizations, game environments, and heritage restoration projects requiring authentic English brickwork materiality with physically based rendering accuracy.

How to Use These Seamless PBR Textures in Blender

This guide shows how to connect a full PBR texture set to Principled BSDF in Blender (Cycles or Eevee). Works with any of our seamless textures free download, including PBR PNG materials for Blender / Unreal / Unity.

What’s inside the download

  • *_albedo.png — Base Color (sRGB)
  • *_normal.png — Normal map (Non-Color)
  • *_roughness.png — Roughness (Non-Color)
  • *_metallic.png — Metallic (Non-Color)
  • *_ao.png — Ambient Occlusion (Non-Color)
  • *_height.png — Height / Displacement (Non-Color)
  • *_ORM.png — Packed map (R=AO, G=Roughness, B=Metallic, Non-Color)

Quick start (Node Wrangler, 30 seconds)

  1. Enable the addon: Edit → Preferences → Add-ons → Node Wrangler.
  2. Create a material and select the Principled BSDF node.
  3. Press Ctrl + Shift + T and select the maps albedo, normal, roughness, metallic (skip height and ORM for now) → Open. The addon wires Base Color, Normal (with a Normal Map node), Roughness, and Metallic automatically.
  4. Add AO and Height using the “Manual wiring” steps below (5 and 6).

Manual wiring (full control)

  1. Create a material (Material Properties → New) and open the Shader Editor.
  2. Add an Image Texture node for each map. Set Color Space:
    • AlbedosRGB
    • AO, Roughness, Metallic, Normal, Height, ORMNon-Color
  3. Connect to Principled BSDF:
    • albedoBase Color
    • roughnessRoughness
    • metallicMetallic (for wood this often stays near 0)
    • normalNormal Map node (Type: Tangent Space) → Normal of Principled. If details look “inverted”, enable Invert Y on the Normal Map node.
  4. Ambient Occlusion (AO):
    • Add a MixRGB (or Mix Color) node in mode Multiply.
    • Input A = albedo, Input B = ao, Factor = 1.0.
    • Output of Mix → Base Color of Principled (replaces the direct albedo connection).
  5. Height / Displacement:
    Cycles — true displacement
    1. Material Properties → SettingsDisplacement: Displacement and Bump.
    2. Add a Displacement node: connect heightHeight, set Midlevel = 0.5, Scale = 0.02–0.08 (tune to taste).
    3. Output of Displacement → Material Output → Displacement.
    4. Add geometry density (e.g., Subdivision Surface) so displacement has polygons to work with.
    Eevee (or lightweight Cycles) — bump only
    1. Add a Bump node: heightHeight.
    2. Set Strength = 0.2–0.5, Distance = 0.05–0.1, and connect Normal output to Principled’s Normal.

Using the packed ORM texture (optional)

Instead of separate AO/Roughness/Metallic maps you can use the single *_ORM.png:

  1. Add one Image Texture (Non-Color) → Separate RGB (or Separate Color).
  2. R (red) → AO (use it in the Multiply node with albedo as above).
  3. G (green) → Roughness of Principled.
  4. B (blue) → Metallic of Principled.

UVs & seamless tiling

  1. These textures are seamless. If your mesh has no UVs, go to UV EditingSmart UV Project.
  2. For scale/repeat, add Texture Coordinate (UV)Mapping and plug it into all texture nodes. Increase Mapping → Scale (e.g., 2/2/2) to tile more densely.

Recommended starter values

  • Normal Map Strength: 0.5–1.0
  • Bump Strength: ~0.3
  • Displacement Scale (Cycles): ~0.03

Common pitfalls

  • Wrong Color Space (normals/roughness/etc. must be Non-Color).
  • “Inverted” details → enable Invert Y on the Normal Map node.
  • Over-strong relief → lower Displacement Scale or Bump Strength.

Example: Download Wood Textures and instantly apply parquet or rustic planks inside Blender for architectural visualization.

To add the downloaded texture, go to Add — Texture — Image Texture.



Add a node and click the Open button.



Select the required texture on your hard drive and connect Color to Base Color.


AITEXTURED Tools

Build, preview, and export seamless PBR materials. Generate full map sets from a single image, inspect them in a real-time WebGL viewer, and re-package maps for Unreal, Unity, and Blender—directly in your browser.