Modular Planter with Infinite Trellis – Stackable System with Water Reservoir & Assembly
Say hello to the ultimate fusion of form, function, and flexibility – this 3D printed modular planter system features an infinite trellis and interlocking parts designed to grow and evolve with your space (and your plants).
The model includes: A main planting container A bottom water reservoir A trellis system that can be stacked infinitely A plus-shaped connector that attaches everything together: container to trellis, trellis to trellis, and container to base
You can use it as a standalone vertical planter, a dynamic climbing system that grows with your plant, or even print two sets and turn it into a functional bookend for your shelf or desk.
This is more than just a pot — it’s a modular building block for makers who love functional design.
🔹 Key Features: Modular Design: Trellis and components connect with reusable + connectors Bottom Water Reservoir: Keeps plants hydrated with less effort Infinite Trellis Stacking: Add trellis segments as your plant climbs Multi-use: Great as a vertical planter or double up as stylish bookends No Glue Needed: Parts snap together for easy assembly and customization Assembly-First Focus: Designed for the modern era where AI can generate shapes — but not true interlocking, functional designs
📏 What’s Included: Main container STL Bottom reservoir STL Trellis STL Plus connector STL
📐 Scalable and adaptable to your shelf or wall garden 🖨️ Recommended Print Settings: Layer Height: 0.2 mm Infill: 15–20% Supports: None required Filament: PLA or PETG recommended for durability
Assembly Tolerance: Designed with snug-fit tolerances for secure stacking
✨ Why Print This Model? In a world where AI can design just about anything, this model stands out by focusing on what truly matters — function, modularity, and real-world use. It's a customizable, expandable solution for plant lovers, shelf organizers, and makers who love clever, buildable systems.
📥 Download the STL files and start building your trellis system — one print at a time.



























