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Manufacturing Capabilities Overview | Xiamen Creator Technology

Published: July 30, 2026

This is the official company video of Xiamen Creator Technology. As an in-house OEM manufacturer, we support customers from concept to production with the following core capabilities: ✔ CNC Machining (Metal & Plastic) ✔ Custom Injection Molding (Single/Double Shot & Insert Molding) ✔ Complete Product OEM Development ✔ DFM (Design for Manufacturability) & Mold Flow Analysis ✔ In-House Mold Design & Tooling ✔ ISO 9001 & ISO 13485 Certified Quality Control We keep critical processes under one roof to ensure quality, speed, and IP protection.

Automated Injection Molding Production Video | ABS PC PP PA | 15–30 Days Lead Time

Published: June 29, 2026

Automated Thermoplastic Injection Molding in Production — ABS, PC, PP, PA This video shows our automated injection molding cell running standard thermoplastic materials including ABS, PC (Polycarbonate), PP, and PA (Nylon). The process is straightforward: plastic pellets are dried, melted in the barrel, injected into a cooled mold, packed, cooled, and ejected as a solid part — no chemical curing, no heating the mold to cure, fully recyclable if reground. What the footage captures: • Hopper drying and automatic pellet feeding • Barrel melting and screw plasticizing (standard thermoplastic setup) • Injection into a water-cooled mold (not a heated thermoset tool) • Cooling phase controlled by mold temperature controller • Automated ejector sequence + robotic take-out arm placing parts on conveyor • In-line visual check and box packing Materials we run in this cell: • ABS – housings, brackets, handles • PC – transparent lenses, medical enclosures • PP – containers, living hinges • PA (Nylon) – gears, wear strips, structural clips • Optional: PC/ABS, POM, PBT, ASA Process specs: • Tolerance: ±0.05mm standard, ±0.01mm on critical seated dimensions • Mold base: LKM / HASCO / DME, single or multi-cavity • Shot weight and tonnage matched per part • Lead time: 15–30 days for tooling and first article (depending on complexity) • Inspection: CMM, caliper, FAIR on request This is live production footage of the same line we use for your custom ABS/PC parts — not a 3D render, not a thermoset process. Send your STEP/IGES and material preference; we return DFM feedback within 24 hours.

Insert Injection Molding with Automatic Insert Feeding | ±0.05mm Tolerance | Xiamen Creator Technology

Published: June 29, 2026

Insert Injection Molding with Automatic Insert Feeding | ±0.05mm Tolerance This video demonstrates our insert injection molding process using an automatic insert feeding system. Metal or non-metal inserts (such as threaded bushings, pins, contacts, or electrical terminals) are automatically picked, positioned, and overmolded with thermoplastic material in a single cycle — eliminating manual placement and ensuring consistent part quality. What the footage captures: • Automatic bowl feeder / vibratory feeder orienting inserts • Robotic pick-and-place or pneumatic shuttle transferring inserts into the mold • Precision alignment of inserts within the mold cavity • Injection of ABS, PC, PA (Nylon), or other engineering plastics over the inserts • Cooling and ejection of fully encapsulated or partially exposed insert-molded parts • In-line inspection and part collection Key advantages of automatic insert molding: • Eliminates manual insert loading — higher consistency, lower labor cost • Tight tolerance control: ±0.05mm on critical dimensions • Strong mechanical bond between plastic and insert (pull-out resistance) • Reduced post-assembly steps (no press-fit or gluing required) • Ideal for high-volume production with stable cycle times Typical insert-molded components: • Threaded bushings and nuts overmolded into plastic housings • Electrical contacts and terminals encapsulated in connectors • Metal shafts or pins integrated into gears, pulleys, or levers • Sensor bodies with embedded metal cores • Medical device components with stainless-steel inserts Process specs: • Materials: ABS, PC, PC/ABS, PA (Nylon), POM, PBT, TPU • Insert types: Brass, stainless steel, carbon steel, copper, ceramic • Mold base: LKM / HASCO / DME, single or multi-cavity • Tolerance: ±0.05mm standard; ±0.01mm on critical seated features • Lead time: 15–30 days for tooling and first articles • Inspection: Insert position check, pull-out test, CMM measurement, FAIR available This is live production footage of our automated insert molding cell — the same process we use for your custom components. Send your STEP/IGES file and insert specifications; we provide DFM feedback and sampling plans within 24 hours.

Custom Injection Molding OEM Product Demo | AutoCAD DFM Support | ±0.01mm Tooling Precision | Xiamen Creator

Published: June 29, 2026

Custom Injection Molding OEM Product Demonstration — From DFM to Finished Goods This video is not a machine-run clip — it is a functional showcase of OEM plastic products we develop and manufacture for global brands. Using AutoCAD, UG, SolidWorks, and Pro/E for DFM analysis and tooling design, we turn client concepts (kitchen utilities, patented consumer devices, medical accessories, electronic enclosures) into production-ready goods. What the video demonstrates: • Functional overview of the OEM product (assembly, moving parts, user interaction points) • Key design features: snap-fits, living hinges, sealed interfaces, ergonomic grips • Material selection in action — ABS, PC, PP, PA, TPE overmold where applicable • Molded components coming together with metal inserts, screws, and electronics (if part of the SKU) • Sub-assembly and full-product integration on the clean line • End-of-line check: fit test, function test, cosmetic inspection, custom packaging Engineering & tooling backbone: • Design software: AutoCAD (2D/3D), UG, SolidWorks, Pro/E — DFM feedback within 24h • Mold precision: ±0.01mm on critical tooling/seated dimensions (H13/S136 steel, LKM/HASCO/DME base) • Process: single-shot, multi-cavity, insert molding, or overmolding per product requirement • Tolerance on molded part: ±0.05mm standard; ±0.01mm after CNC finishing on seated features • Lead time: 15–30 days for tooling + first article; mass production scaled per PO Why clients use this service as OEM partner: • One accountable entity — design review, tooling, molding, secondary ops, assembly, pack-out • Patent-friendly: we sign NNN, protect client IP, support utility/design patent filing packages • Kitchen & household: measured dispensers, storage locks, hinge-lid containers, patented gadgets • Consumer & medical: handheld housings, dosage cups, sterilizer trays, cable organizers • Low-to-medium volume friendly: pilot runs of 500–5,000 pcs before full ramp This footage shows the actual product behavior and factory integration — the same workflow we run for private-label and patented SKUs. Send your 2D/3D files and target retail price; we return DFM, tooling quote, and sample plan.

Automated Die Casting Production Video | Aluminum & Zinc Alloy HPDC | Xiamen Creator Technology

Published: June 29, 2026

Automated High-Pressure Die Casting (HPDC) in Production — Aluminum & Zinc Alloy This video shows our automated die casting cell running real production. Molten non-ferrous metal (aluminum A380 / ADC12 or zinc Zamak 3/5) is dosed from the furnace, injected into a hardened steel die under high pressure, rapidly solidified, ejected, and trimmed — all in a continuous automated cycle. What the footage captures: • Aluminum ingots / zinc alloy loaded into the melting furnace (500°C+ holding temperature) • Auto ladle or dosing furnace transferring molten metal into the cold-chamber shot sleeve • Plunger injecting molten metal into the water-cooled steel die at high pressure • Rapid solidification inside the die, then automatic die opening • Ejector pins pushing out the casting onto a conveyor or robot take-out arm • Degating, trimming, and transfer to deburring / CNC secondary ops Materials we run: • Aluminum alloys: A380, ADC12, A360, A356 • Zinc alloys: Zamak 3, Zamak 5 • Optional: Magnesium (AZ91D) on request Process specs: • Machine type: Cold chamber die casting (aluminum), hot chamber available for zinc • Die material: H13 (1.2344) hardened steel, water-cooled • Tolerance: ±0.05mm standard, ±0.01mm on critical machined features after CNC • Wall thickness: 0.8–5mm typical • Tool life: 50,000–100,000+ shots • Lead time: 20–35 days for tooling + first article (depends on part complexity) • Inspection: Dimensional check, X-ray / dye penetrant on request, FAIR available Why die casting (not plastic injection): Die cast metal parts deliver higher strength, heat resistance, EMI shielding, and dimensional stability than molded plastics — ideal for structural brackets, heatsinks, motor housings, pump bodies, and enclosure frames. Typical applications: • Automotive brackets, sensor housings, EV cooling plates • LED lighting heatsinks and fixture frames • Industrial pump bodies and valve covers • Power tool gearboxes and motor end caps • Consumer electronics metal enclosures This is live floor footage of the same HPDC cell we use for customer orders — not a 3D animation. Send your STEP/IGES and alloy specification; we return DFM feedback and sampling plan within 24 hours.

Double Shot Injection Molding Production Video | 2K Two-Color Overmolding | Rotary Platen Automation

Published: June 29, 2026

Double Shot Injection Molding (2K Molding) in Automated Production This video shows our double shot injection molding cell running live on the floor. Two different thermoplastic materials are molded into a single integrated part within one machine cycle — no manual transfer, no glue, no secondary assembly. What the footage captures: • Two independent injection units (barrel A + barrel B) plasticizing different resins simultaneously • First shot (substrate): rigid material — ABS, PC, or PA — injected into the first cavity to form the structural base • Rotary platen indexing 180° while the substrate is still warm (optimal bonding window 40–60°C surface temp) • Second shot (overmold): softer or contrasting material — TPE, TPU, or a second color — injected onto the substrate and chemically/mechanically bonded • Automatic ejection of the finished two-material part and simultaneous filling of the next substrate cavity • Robotic take-out or conveyor transfer to deflashing / inspection Typical material combinations we run: • ABS + TPE (soft-touch grips, medical handles) • PC + TPU (impact zones, gasket-integrated housings) • PP + TPE-O (automotive trim, appliance buttons) • PA (Nylon) + TPU (gear hubs, wear-resistant seals) • Dual-color ABS / PC/ABS for aesthetic switches and indicators Mold & process specs: • Machine type: 2K injection molding machine with rotary platen • Mold material: H13 (1.2344) hardened steel, water-cooled, dual cavity set • Tolerance: ±0.05mm standard; ±0.01mm on critical seated features after CNC • Cycle time: 35–60s depending on wall thickness and material pair • Tooling: Single tool, two stations, no intermediate handling • Lead time: 15–30 days for tooling and first article • Inspection: Bond check (peel/pull-out), dimensional CMM, visual, FAIR on request Why double shot instead of assemble-after-molding: Eliminates glue lines, fasteners, and tolerance stack-up. The bond is created at the molecular interface while the substrate is still warm, giving higher peel strength and better sealing than pick-and-place overmolding. Typical applications: • Power tool grips and trigger housings • Medical device handles with antimicrobial soft zones • Automotive interior switches, gear-shift knobs, vent bezels • Consumer electronics keypads, soft-edged enclosures • Dual-color industrial control buttons and indicators This is live production footage of the same 2K cell we use for customer orders — not a 3D render. Send your STEP/IGES and material pair (e.g. ABS+TPE); we return DFM feedback and sampling plan within 24 hours.

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Xiamen Creator Technology

Hello! I am the AI assistant for Xiamen Creator Technology. We provide custom plastic injection molding, CNC machining and die casting for global OEMs since 2007. How can I help you today?