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| PSU precision machining parts are custom components for assemblies requiring heat resistance, electrical insulation, hydrolysis resistance, and reliable dimensional control. JUTAI machines PSU parts from customer drawings for electrical equipment, fluid handling, laboratory instruments, medical-device production equipment, and industrial systems. | |||||||||
JUTAI manufactures custom PSU precision parts using raw materials from BASF and Solvay. CNC milling, turning, drilling, boring, threading, and finishing can be combined to produce housings, sleeves, manifolds, insulators, guides, valve components, and other drawing-specific geometries.
Qualified feature dimensions may be controlled to 0.005 mm when part size, wall thickness, geometry, datum strategy, conditioning, and inspection method support that value. Because PSU is a thermoplastic, machining plans must limit heat, clamping distortion, and residual stress. Critical surfaces are produced through controlled roughing, stabilization where needed, finish machining, and drawing-based inspection.
Customers can submit 2D drawings and 3D models for manufacturability review. Material source, service temperature, chemical exposure, quantity, critical dimensions, and reporting requirements should be identified before production.
· Tolerance capability down to 0.005 mm for suitable features
· BASF and Solvay PSU raw material options
· Good dimensional stability and electrical insulation
· Resistance to hot water, steam, and repeated cleaning cycles
· Custom bores, threads, grooves, sealing faces, and locating features
· Prototype, low-volume, and repeat-batch production
Source | Engineering Characteristics | Selection Basis |
BASF PSU | Balanced thermal, mechanical, and electrical performance for precision components. | Selected according to grade availability, drawing requirements, and operating conditions. |
Solvay PSU | Established polysulfone options for demanding industrial and technical applications. | Selected according to chemical exposure, documentation needs, and component function. |
· CNC milling: housings, manifolds, plates, guides, pockets, and precision hole patterns
· CNC turning: sleeves, bushings, rings, spacers, threaded parts, and concentric components
· Controlled finishing: flat sealing surfaces, fitted bores, thin walls, and related datum features
· Inspection: first-piece, in-process, and final checks based on critical drawing dimensions
· Electrical insulators, terminal supports, and equipment housings
· Pump, valve, sensor, and fluid-control components
· Laboratory and analytical instrument parts
· Sterilization and medical-device manufacturing fixtures
· Precision sleeves, guides, rollers, covers, and structural parts
· Machining sequence planned around functional datums and mating features
· Sharp tools and controlled cutting loads reduce local heat
· Balanced material removal helps limit movement in thin or asymmetric parts
· Inspection methods are selected to avoid deforming the plastic during measurement
· Drawing review aligns tolerance, manufacturability, inspection effort, and cost