ZM1.4 Series Ceramic Laboratory Horizontal Bead Mill for Inkjet Ink with 1.0L Capacity and Variable Frequency Control

Professional 1.0L ceramic laboratory horizontal bead mill designed for inkjet ink R&D and small batch production. Features zirconia grinding components, mechanical seal system, AC drive control, and explosion-proof options. Ideal for precise particle size reduction and formulation development with easy cleaning and continuous operation capabilities.

Brand Name Degold
Payment Terms LC, T/T, D/P, PayPal, Western Union, Small-amount payment
Discharge method Screen discharge
Place of Origin Chongqing,China
Transportation method diaphragm pump
Main motor power (ABB motor) 4kw
Product Description
ZM1.4 Series Laboratory Horizontal Bead Mill
The ZM1.4 Series laboratory horizontal bead mill is a precision wet grinding system designed specifically for R&D applications and small batch production of inkjet inks. With a 1.0L grinding chamber capacity, this equipment delivers reliable performance for research and sample development.
Key Specifications
  • Mechanical seal with static screen separator for optimal containment
  • Precision grinding with small-sized media for accurate laboratory analysis
  • Easy disassembly of grinding chamber for cleaning and formulation changes
  • Continuous grinding operation ideal for small batch production
  • AC drive control system for consistent performance
Available Options
Component Available Materials
Grinding Chamber & Discs Various materials including zirconia for enhanced durability
Transfer Pumps Multiple pump configurations available
Safety Rating Explosion-proof or non-explosion-proof for solvent/water-based formulations
Application Features
Laboratory horizontal bead mill with ceramic grinding chamber for inkjet ink production This ceramic laboratory bead mill is specifically engineered for inkjet ink formulations, providing precise particle size reduction and consistent dispersion quality. The variable frequency control allows for optimized grinding parameters to achieve desired fineness and viscosity characteristics.
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