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PVC 90 asteen kyynärpään ruiskumuotti

PVC 90-Degree Elbow Injection Mold: Design and Manufacturing Overview A PVC 90-degree elbow injection mold is a precision tool designed for mass-producing PVC pipe fittings with a 90-degree bend, commonly used in plumbing, irrigation, and industrial fluid systems. The mold must ensure high dimensional accuracy, durability, and efficient production cycles while maintaining the material properties of PVC (polyvinyl chloride). Below is a detailed description of its key aspects. 1. Mold Design Considerations - Part Geometry: The mold cavity replicates the elbow’s inner and outer diameters, including the required radius for smooth flow transition. Wall thickness uniformity is critical to prevent defects like sink marks or warping. - Material Selection: Mold cores and cavities are typically made from hardened steel (e.g., P20, H13) or stainless steel to withstand PVC’s abrasive nature and high-temperature processing (160–200°C). - Cooling System: Strategically placed cooling channels ensure uniform heat dissipation, reducing cycle times and minimizing residual stresses in the molded part. - Ejection Mechanism: Ejector pins or sleeves are designed to release the part without deformation, accounting for PVC’s slight shrinkage (~1–2%) upon cooling. - Venting: Proper venting grooves prevent gas traps, which could cause burns or incomplete filling. 2. Injection Molding Process - Material Preparation: PVC pellets are dried (if necessary) and fed into the hopper. Additives (e.g., stabilizers, plasticizers) may be included for UV resistance or flexibility. - Injection Phase: Molten PVC is injected under high pressure (800–1,500 bar) into the mold cavity via a sprue, runners, and gates. A hot runner system may be used to reduce waste. - Cooling & Solidification: The mold is cooled rapidly to solidify the PVC while maintaining dimensional stability. - Ejection & Post-Processing: The elbow is ejected, and excess material (flash) is trimmed. Some molds include automatic degating for efficiency. 3. Quality Assurance - Dimensional Checks: Critical parameters (e.g., inner/outer diameter, bend radius) are verified using CMM (Coordinate Measuring Machine) or calipers. - Pressure Testing: Sample fittings undergo hydrostatic pressure tests to ensure leak-proof performance. - Surface Inspection: Visual checks detect flaws like flow lines, jetting, or discoloration. 4. Advantages of Injection Molding for PVC Elbows - High Efficiency: Capable of producing thousands of parts per day with minimal post-processing. - Consistency: Tight tolerances (±0.1–0.3 mm) ensure interchangeability in piping systems. - Cost-Effectiveness: Low per-unit cost for large production runs. 5. Challenges & Solutions - PVC Degradation: Overheating can release hydrochloric acid, corroding the mold. Solution: Use corrosion-resistant steels and precise temperature control. - Warping: Uneven cooling may distort the elbow. Solution: Optimize cooling channel layout and cycle time. Conclusion A well-designed PVC 90-degree elbow injection mold balances precision, durability, and production efficiency. By optimizing material selection, cooling, and ejection systems, manufacturers can achieve high-quality fittings that meet industry standards (e.g., ASTM, ISO) while minimizing defects and downtime. Advances in mold flow simulation software further enhance design accuracy, reducing trial-and-error costs. (Word count: 500)

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  • PVC-kyynärpää 90 oviputken sovitusmuotilla

    PVC-kyynärpää 90 oviputken sovitusmuotilla

    kategoria: PVC-putkien asennusmuotti
    Näkymät: 457
    sarjanumero:
    julkaisuaika: 2025-10-28 21:21:53
    PVC-kyynärpää 90 oviputken sovitusmuotillaMuotin nimi:PVC-kyynärpää 90 oviputken sovitusmuotillaOntelo: 2 onteloaMuotin koko: 75 mmMuottiteräs: Saksa2316 china2316 tai 4cr13 ontelolle ja ytimellePortti: suora porttimuotin rakenne: öljysylinteriYtimen/ontelon kovuus: HRC 40-45° alipainelämpökäsittelyn jälkeenRuiskuvalukone: 320 T  PVC-injektioongelma ja ratkaisu1. Materiaalin puute: Ilmiö, että muottia ei voida täyttää, esiintyy usein ruiskuputkien liitosprosessissa. Kun ruiskuvalukone juuri alkoi toimia, koska muotin lämpötila on liian alhainen, PVC-sulan materiaalin lämpöhäviö on suuri, helpp...

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