1 Bachelors Degree in Mechanical Engineering, Electrical Engineering, Mechatronics, Automation, or a related engineering field, combined with 2 years of professional experience in project management, equipment maintenance, or utility system construction and 3 year of projects management experience. 2 Willingness to travel extensively and repeatedly overseas to participate in the company's internal technical and operational training programs. 3 Demonstrable professional proficiency in Solidworks, AutoCAD, and WPS (or Microsoft Office Suite). Familiarity with LFP cathode material production processes and utility system layouts is highly preferred. JD: 1. Read, interpret, and apply blueprints, technical drawings, schematics, equipment layouts, computer-generated reports, and technical documentation for Company Internal lithium iron phosphate utility and production-support systems, using Solidworks, CAD, WPS, and CAD/WPS to evaluate installation drawings, duct routing, wastewater-treatment layouts, equipment interfaces, and mechanical system details. Review drawings against Company Internal LFP Product Process Flow and Production Line Layout requirements to confirm that utility equipment, production-support infrastructure, and maintenance access points are positioned to support safe operation, stable material flow, heat recovery, wastewater handling, and finished-product quality control. 2.Research, evaluate, install, operate, and maintain mechanical equipment, utility systems, and process-support systems tied to Company Internal Spray-drying exhaust heat recirculation and reuse device, including the exhaust collection structure, heat-transfer path, recirculation ducting, reuse connection points, airflow-control components, temperature-control interfaces, insulation requirements, and safety or maintenance access features. Use Solidworks and CAD to review component arrangement and spatial fit, and use WPS to organize operating procedures, maintenance records, inspection findings, equipment-status reports, and corrective-action documentation for engineering and management review. 3.Specify system components and direct equipment modifications to ensure that mechanical assemblies, utility systems, ductwork, pumps, valves, tanks, filtration components, sensors, support frames, and control interfaces conform to Company Internal engineering design requirements, performance specifications, environmental obligations, and production needs. Evaluate whether each component properly supports Company Internal spray-drying exhaust heat reuse, Company Internal copper and zinc equipment-management practices, and Company Internal LFP production-line requirements, including energy conservation, thermal stability, equipment reliability, maintenance accessibility, and compatibility with downstream production or wastewater-treatment operations. 4.Confer with engineers, production personnel, maintenance staff, technical supervisors, and other internal personnel to implement operating procedures, resolve equipment malfunctions, and provide technical guidance involving Company Internal LFP production-support systems. Use WPS to prepare troubleshooting summaries, maintenance plans, operating records, technical explanations, and service schedules, and use CAD-based drawings to communicate equipment layout constraints, utility tie-in points, repair plans, installation sequences, duct or piping conflicts, wastewater-treatment connections, and design changes needed to restore stable production and utility-system performance. 5.Investigate equipment failures, abnormal operating conditions, heat-recovery inefficiencies, wastewater-treatment issues, energy losses, and production-support interruptions by reviewing equipment drawings, system data, inspection records, manuals, maintenance histories, and field observations. Diagnose faulty operation and recommend remedial actions involving adjustment, repair, replacement, redesign, revised operating procedures, or pr
Not specified in the original listing.
Not specified in the original listing.