All Will Fall Structural Stability Calculator

Updated for Patch v1.1.3(Apr 15, 2026)
Last Check: Today (Aug 30, 2026)

Interactive 0.5m voxel socket heatmap simulator. Model downward load paths, storm wind-shear torque, tidal erosion, and cascading collapse risks in real-time with URL blueprint sharing and AI solver.

Max Base Stress
1108.3%COLLAPSE
17 collapsing blocks
Total Structure Mass
137 kg
Total Placed Blocks: 25
Center of Mass (CoM)
3.00 / 6.0
Lateral Offset: 0.00m
Vertical Height
7 Tiers (3.5m)
Ground wind profile
Blueprints:

Structural Stress Heatmap Grid (7 × 12 Sockets)

Click or drag to place blocks. Click an existing block to delete it.

0,11
1,11
2,11
3,11
4,11
5,11
6,11
0,10
1,10
2,10
3,10
4,10
5,10
6,10
0,9
1,9
2,9
3,9
4,9
5,9
6,9
0,8
1,8
2,8
3,8
4,8
5,8
6,8
0,7
1,7
2,7
3,7
4,7
5,7
6,7
0,6
1,6
2,6
💨0%
4,6
5,6
6,6
0,5
1,5
2,5
🧪80%
4,5
5,5
6,5
0,4
1,4
⛓️0%
🏭540%
⛓️0%
5,4
6,4
0,3
1,3
🏗️7%
🏗️132%
🏗️7%
5,3
6,3
🪵0%
⛓️0%
⛓️33%
⛓️408%
⛓️33%
⛓️0%
🪵0%
0,1
🏗️7%
🏗️50%
🏗️550%
🏗️50%
🏗️7%
6,1
0,0
🏗️22%
🏗️108%
🏗️1108%
🏗️108%
🏗️22%
6,0
⚓ Seabed Bedrock Anchor Line (Y=0)Width: 3.5m
<40% Stable
40-75% Strained
75-100% Critical
>100% Collapse

Ocean Dynamics & Weather Affixes

Tidal Swell Level:0m (0 Tiers Submerged)
Submerged blocks lose 60% load-bearing capacity due to wave erosion (Deep Anchors immune).
50ft Gale Storm Mode
+12% lateral shear per vertical floor level

Building Materials & Machinery (v1.3.2)

🏗️
Steel Support Pylon
foundation
Weight: 5kgHolds: 60kg
Seabed Deep Anchor
foundation
Weight: 10kgHolds: 120kg
📐
Cross-Braced Diagonal Beam
foundation
Weight: 6kgHolds: 80kg
🪵
Scrap Wood Floor
floor
Weight: 1kgHolds: 8kg
🪵
Reinforced Wood Deck
floor
Weight: 2kgHolds: 18kg
⛓️
Industrial Metal Grate
floor
Weight: 4kgHolds: 40kg
🪜
Structural Scaffolding
floor
Weight: 0.5kgHolds: 4kg
🏭
Heavy Ore Smelter
industrial
Weight: 25kgHolds: 5kg
💨
High-Altitude Wind Turbine
utility
Weight: 12kgHolds: 2kg
💧
Bulk Water Reservoir
utility
Weight: 18kgHolds: 10kg
🧪
Pipes & Pneumatic Vent
utility
Weight: 3kgHolds: 15kg
🫧
Bubble Floating Storage Depot
industrial
Weight: 14kgHolds: 20kg
🏛️
Reinforced Dual-Core Steel Pylon
foundation
Weight: 8kgHolds: 100kg
🏗️
Engineered Girder Truss
floor
Weight: 4.5kgHolds: 70kg

3D Physics Simulation & Structural Load Paths (v1.3.2)

All Will Fall is governed by deterministic 3D physics on a 0.5m voxel socket grid where every placed block adds real physical mass and tests lower foundation limits.

Diagnostic Stability Outputs

1

Base Stress Index (%)

Cumulative weight load relative to supporting capacity. Above 100% indicates immediate catastrophic collapse.

2

Center of Mass (CoM) Offset

Lateral displacement from the central foundation axis. High offset causes cantilever failure during storms.

🧮How the Calculator Works — Real Examples

Step-by-step breakdowns using real in-game numbers so you can verify results yourself.

1

Placing a 25kg Smelter on a 3-Pylon Steel Rig during 50ft Storm

Inputs

Machinery:Heavy Ore Smelter (25kg)Base Floor:Industrial Metal Grates (40kg Cap)Foundation:3x Steel Pylons (180kg Aggregate Cap)Storm Mode:50ft Gale Storm Active

Calculation

1.Distribute 25kg smelter mass across 3 vertical steel pylon lines
2.Calculate floor 5 wind-shear: 1.0 + (5 × 0.12) = 1.60x storm multiplier
3.Effective Load: (25kg + 12kg flooring) × 1.60 = 59.2kg
4.Stress Index: 59.2kg / 180kg = 32.8% (Stable)
🎯Result
32.8% Base Stress · Fully Stable in Storms
💡

Distributing industrial mass across 3 steel pylons keeps stress below the 40% threshold even in storm conditions.

Material Support-to-Weight Ratios & Ocean Hydrodynamics

Balance Scrap Wood (1kg/8kg), Reinforced Wood (2kg/18kg), Metal Grates (4kg/40kg), and Steel Pylons (5kg/60kg) with seabed Deep Anchors (120kg) and Dual-Core Pylons (100kg) to survive 50ft storm swells.

Preguntas Frecuentes

Why does placing a Smelter break my base?+
The Ore Smelter weighs 25kg, far exceeding the 8kg capacity of Scrap Wood floors. Heavy machinery requires dedicated vertical steel pylon lines.
What makes Deep Anchors immune to water erosion?+
Deep Anchors (120kg support capacity) anchor directly into seabed bedrock, completely bypassing the 60% submerged capacity penalty.
How does the AI Reinforce solver work?+
The AI Solver inspects all over-stressed joints and suggests targeted upgrades (such as converting submerged pylons to Deep Anchors or placing girder trusses).

Metodología e Integridad de Datos

Todos los cálculos se basan en datos verificados extraídos de los archivos de All Will Fall Parche v1.1.3. Contrastamos los valores con pruebas directas en el juego para garantizar un 99.9% de precisión en el juego competitivo.

📋 Calculation Assumptions

  • Structural blocks follow 0.5m grid socket alignment.
  • Cascading failure propagates bottom-up when any foundation block exceeds 100% stress.

🧠 Game Mechanics Knowledge Base

Socket Stress Redistribution

Adjacent cross-braced beams share lateral shear across connected columns.

Tidal Erosion Degradation

Blocks below water line lose 60% support capacity unless built with Deep Anchors.

📢 Patch Balances & Changelog Logs

Current Balancing CyclePatch v1.1.3

Sandbox variables have been updated to match active variables for patch v1.1.3. Balance revisions affecting range scaling limits are applied globally.

💡 Expert Sandbox Insights

"Always expand horizontally to establish a 4-pylon base before building past Level 3."

"Use lightweight Structural Scaffolding (0.5kg) for temporary walkways to avoid adding dead weight."

🗺️ Tactical Execution Strategy Hub

🟢 Beginner Blueprint

  • Build stepped pyramid bases to prevent early-game tower collapses.
  • Keep residential tents on lower wood decks.

🔴 Competitive & Pro Setup

  • Anchor endgame industrial forges directly into seabed Deep Anchors.
  • Maintain 25% Engineer workforce for continuous maintenance.

📜 Calculator Release & Version History

vv1.3.2

Integrated Base64 blueprint sharing, AI solver, Dual-Core Pylons, and Girder Trusses.

2026-08-15

Red de Analítica Global