Enhanced Chamber Kinematics
Optimised chamber kinematics, increased head motion, and refined crushing forces deliver higher throughput, improved reduction ratios, and superior end-product quality. This advanced crushing performance makes the HP350e ideal for secondary, tertiary, and quaternary crushing applications.
Expanded Application Coverage
The HP350e offers a wide range of chamber profiles, including new and enhanced cavity options, allowing the crusher to be configured for various feed materials, production targets, and end-product requirements. This flexibility ensures optimum performance across a broad range of aggregate and mining applications.
Hydraulic Setting Adjustment
Advanced hydraulic setting adjustment enables fast and accurate crusher setting changes, allowing operators to optimise product gradation, improve productivity, and adapt quickly to changing application requirements.
Advanced Tramp Release Protection
The HP350e’s hydraulic tramp release system combines high-response accumulators and dual-acting cylinders to automatically clear uncrushable material. This protects critical components, minimises downtime, and improves overall crusher reliability.
Optimised Feed Opening Design
The spider-less design and optimised feed opening allow the HP350e to accept larger feed sizes while maintaining high throughput and efficient crushing performance. This contributes to increased productivity and operational flexibility.
Feed Cone Lifting Tool
A dedicated feed cone lifting tool enables safer and more efficient maintenance procedures, reducing service time and helping maintain optimal crusher performance throughout the machine’s lifecycle.
No-Backing Liners
The HP350e features no-backing manganese liners that simplify liner changes and eliminate the need for backing compounds. This improves maintenance safety, reduces downtime, and minimises environmental impact.
Head Anti-Spin Brake
An integrated head anti-spin brake reduces head rotation when the crusher is operating without load. This minimises liner wear, extends component life, and lowers maintenance costs.
