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🔬 Acoustic Deep Dive: Why Ceramic Ocarinas Sound Better Than Plastic
Welcome to the Eidolove Material Comparison class! While Plastic Ocarinas have a place in the beginner market due to their durability and low cost, the Ceramic Ocarina remains the undisputed champion for anyone seeking Performance Grade Ocarina quality. Why is there such a huge difference in sound? This guide will use Acoustic Principles to reveal the four reasons why the Ceramic Ocarina Tone is superior.I. 🧱 Material Density: The Foundation of Sustain and Projection The first determinant of Tone Quality is the density of the instrument's material. Plastic Absorption: Plastic (Polymer) is relatively light and flexible. As the airflow passes through, the body of the instrument absorbs and dampens some of the sound vibration energy. This results in short sustain and a "dull" or "flat" sound. Ceramic Reflection: Fired ceramic is highly dense and rigid. This rigidity allows the Ocarina chamber to act as an efficient resonance box, maximally reflecting sound energy back into the cha
Posted on
🔬 Acoustic Deep Dive: Why Ceramic Ocarinas Sound Better Than Plastic
Welcome to the Eidolove Material Comparison class! While Plastic Ocarinas have a place in the beginner market due to their durability and low cost, the Ceramic Ocarina remains the undisputed champion for anyone seeking Performance Grade Ocarina quality. Why is there such a huge difference in sound? This guide will use Acoustic Principles to reveal the four reasons why the Ceramic Ocarina Tone is superior.I. 🧱 Material Density: The Foundation of Sustain and Projection The first determinant of Tone Quality is the density of the instrument's material. Plastic Absorption: Plastic (Polymer) is relatively light and flexible. As the airflow passes through, the body of the instrument absorbs and dampens some of the sound vibration energy. This results in short sustain and a "dull" or "flat" sound. Ceramic Reflection: Fired ceramic is highly dense and rigid. This rigidity allows the Ocarina chamber to act as an efficient resonance box, maximally reflecting sound energy back into the cha