18M+
YouTube Viral Views
5% -> 100%
Elasticity Curve
95.1%
Audience Retention
$6,000/mo
Channel Ad Revenue
Architecture Overview
The viral 18-million-view physics simulation formula reverse-engineered: directing progressive soft-body elasticity, hydraulic crushing collisions, and gelatinous kinetic rebound dynamics in Kling 1.5/2.0 without object melting or structural collapse.
Directing Architecture Master Prompt
[Kling Soft-Body Collision Physics Directing Blueprint] Model: Kling 1.5 / 2.0 Pro High-Fidelity Motion Dynamics: Dynamic Vector Brush (Strength: 8.5) Phase Progression & Physics Prompts: [0-6s - Initial Rigidity & 10% Elasticity] A sleek metallic capsule glides smoothly along an industrial assembly track. It strikes a set of rotating steel spike rollers with minimal compression. Crisp metallic impact ping, high surface tension, small elastic vibration with immediate structural recovery. [6-15s - Progressive Elasticity 40% to 60%] The capsule enters an automated hydraulic press station. Under 50 tons of hydraulic force, the capsule walls deform outward with rubbery jelly-like resistance, bulging symmetrically before snapping back into shape with satisfying kinetic rebound. [15-25s - Maximum Elasticity 80% to 100%] The capsule drops into heavy interlocking crushing gears. The object behaves with hyper-elastic silicone softness, stretching, flattening, and wrapping around gear teeth without puncturing or tearing, then violently springing free into a clear glass collection vat. Physics Directives: Strict conservation of volume throughout all deformation states. Machine environment remains 100% rigid and stationary. Hyper-detailed surface reflections, fluid internal viscosity, zero melting, zero clipping into solid boundaries.
Negative Prompt Constraints
melting, dissolving, mesh clipping, disappearing geometry, stutter, plastic sheen, unnatural teleportation, extra appendages, blur, low framerate.
