Animator Ave Espelita Shared Painterly Fight Scene
The creator showcased a new fight sequence on LinkedIn featuring unique hand-drawn stylistic techniques.
Updated on Sept. 21, 2026 in Animation

Animator Ave Espelita released a fighting animation on LinkedIn that depicts a young girl battling a masked uniformed man. The short sequence utilizes a distinct painterly aesthetic.
Why it matters
The work highlights evolving techniques in digital character motion design and the use of specialized frames to achieve a traditional artistic look in modern media.
The animation was developed using Blender software to execute the character movements. The creator incorporated smear frames into the design to achieve the desired painterly visual quality.
The players
Ave Espelita
Ave Espelita is an animator who utilizes 3D software to create stylized character performances.
The details
The animation features a high-stakes encounter between a young girl and a masked uniformed man. By integrating smear frames—a technique used to imply speed and motion—the creator produced a fluid, hand-painted aesthetic.
Timeline
September 21, 2026: The animation was shared on LinkedIn.
Industry Dynamics
This project follows a growing trend of digital artists using Blender 3D software to replicate hand-drawn aesthetics in independent animation. These creators are increasingly challenging traditional studio output by prioritizing specific artistic styles over high-fidelity realism.
The animation is currently available for viewing on LinkedIn via the creator's professional profile. Audiences can follow the development of these stylized sequences directly through the platform's professional networking feed.
The takeaway
Artists are increasingly using professional networking platforms to showcase technical experiments outside of large studio projects. This shift allows animators to bypass traditional gatekeepers and demonstrate niche stylistic capabilities directly to the industry.
Further reading
Explore more projects in Animation for insights into the latest techniques in digital motion design.
Source note: This article includes information reported by 80.







