Battery Materials Processing
Experts for Battery Materials Processing
Ian K Hancock Eng Tech MIET IEng FIMechE
Bradley PulverizerIan has 35 years’ experience in Engineering and is registered as an IEng Engineer in a variety of disciplines including mechanical, electrical and instrumentation and is a fellow of the IMechE and member of the IET. He studied at Canterbury College of Technology in the Department of Engineering and Mining, followed by a technician apprenticeship in aerospace. He then made a move into heavy engineering in a wide range of industries from paper mills and power generation to quarrying and dredging specializing in bulk material handling with conveyors, size reduction and heavy trommel equipment Chair of the IMechE Bulk material handling committee and IMechE Process industries board He now works for Bradley Pulverizer Company as Vice President sales and operations, managing pulverizing, air classification, acidulation and granulation projects from quote to commissioning worldwide as well as managing upgrades and modernization of existing plants. Specializing in Phosphate fertilizers, fine powders production and size classification for a wide range of industries as well as specialized small-scale milling and classification of unusual materials.

Battery materials processing turns raw and refined bulk solids into the powders that determine how a cell performs. Cathode and anode active materials, precursors, conductive additives and solid-state electrolytes all arrive, move and react as dry particulate — and the way they are conveyed, dosed, milled, mixed and packaged directly sets capacity, cycle life and yield.
The market is scaling faster than the equipment base behind it. Gigafactories, precursor plants and pilot lines for all-solid-state cells are all moving from laboratory batches to continuous tonnage, and they are doing so with materials that conventional powder handling equipment was never designed for: submicron particle sizes, extreme moisture sensitivity, corrosive by-products and zero tolerance for metallic contamination.
This market zone covers the handling and processing side of that transition — from precursor and calcination through ultrafine milling, high-precision batching, dry-room conveying and containment, to the fibrillation and mixing steps behind dry electrode manufacturing.
Looking for battery recycling, black mass processing or end-of-life material recovery? That coverage sits on our sister publication RecyclingInside.





