36mm Neck PET preform, 45g, 58g, 48g, 72g, 120g clear bottle preform, large weight tube preform
FEATURES
Ansix Tech Standard PET Preform Weights – Complete Range
Ansix Tech maintains an extensive inventory of standard PET preform weights across various neck finishes. For the 36mm neck configuration, our standard available weights include:
36mm Neck Standard Preform Weights:
45g (standard beverage grade)
48g (enhanced structural grade)
53g (heavy-duty beverage grade)
58g (CSD/carbonated beverage grade)
65g (industrial oil container grade)
72g (large-capacity grade)
90g (extra-heavy grade)
100g (5-gallon preform grade)
120g (maximum thickness grade)
For other neck finishes, Ansix Tech produces standard weights including:
28mm neck: 18g, 20g, 21g, 23g, 24g, 25g, 27g, 30g, 35g, 38g, 43g, 45g
30mm neck: 15g, 23g, 28g
38mm neck: 24g, 27g, 34g, 45g, 58g
45mm neck: 90g, 95g, 100g, 115g, 120g
55mm neck: 180g, 250g, 400g, 430g, 560g, 620g, 660g, 700g, 750g, 780g, 800g
All preforms are available in clear transparent finish as standard, with custom colors achievable through masterbatch addition. Custom weights and neck configurations can be developed to meet specific customer requirements.
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Mold Description
Product Materials:
PET PETG
Mold Material:
S136ESR
Number of Cavities:
8
Glue Feeding Method:
Hot runner
Cooling Method:
Water cooling
Molding Cycle
12.5s

- The mold manufacturing process and product material selection
Hard Power Infrastructure – Building Customer Trust Through Equipment Excellence
2.1 Advanced Mold Manufacturing Equipment
At Ansix Tech, we recognize that precision mold manufacturing is the foundation of exceptional preform quality. Our mold manufacturing facility is equipped with state-of-the-art machining centers that enable us to achieve tolerances that directly translate to customer benefits.
CNC Machining Capabilities:
5-Axis High-Speed Machining Centers: Capable of machining complex curved surfaces with 0.002mm precision. This ensures your preform molds produce parts with smooth, burr-free parting lines, eliminating post-molding finishing operations.
Customer Value Delivered: Reduced secondary processing costs, elimination of manual deburring, and consistent part appearance across millions of cycles.
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CNC Milling with ±0.01mm Standard Accuracy: For standard cavity machining, achieving shape accuracy that ensures consistent preform geometry throughout the tool‘s lifetime.
Slow Wire EDM (Electrical Discharge Machining): Precision wire cutting capable of producing fine micro-holes and narrow slots as small as 0.03mm. This capability is particularly critical for creating precise cooling channel geometries and tight-tolerance insert features.
Customer Value Delivered: Ability to produce complex internal features without thin-wall deformation, ensuring uniform cooling and extended mold life.
EDM Machining Workshop:
Ansix Tech has established a dedicated EDM machining workshop as a strategic initiative to systematically reduce customer costs. This facility allows us to perform precision electrode manufacturing and EDM operations entirely in-house.
Customer Value Delivered: Mold repairs and modifications typically completed within 24 hours, eliminating external vendor dependencies and reducing downtime costs.
Quality Verification Equipment:
CMM (Coordinate Measuring Machine): Full dimensional inspection of every mold cavity and core before delivery
Optical Imaging Measurement System: High-speed, non-contact inspection for complex geometries and fine features
Professional Mold Flow Analysis Software: Complete DFM (Design for Manufacturing) validation including filling, packing, cooling, and warp analysis
Customer Value Delivered: Every mold ships with a full dimensional inspection report, with critical dimensions validated to CPK ≥ 1.33 – meaning your production quality is statistically controlled from day one.
2.2 Injection Molding Machine Fleet
Ansix Tech operates one of the most extensive injection molding fleets in the industry, with 260 injection molding machines spanning a clamping force range from 30 tons to 2,800 tons.
Machine Brands and Capabilities:
Equipment Type Brands Application
Japanese Precision Fanuc, Sumitomo, Toshiba, Nissei High-speed, high-precision preform production
European Technology Engel, Arburg (LSR two-color) Medical-grade and precision two-shot molding
Domestic High-efficiency Haitian, TTI Cost-effective mass production
All-Servo Electric Drive Systems:
Our fleet is predominantly equipped with all-servo electric injection molding machines that deliver:
Stable repeatability of ±0.1% – every shot is identical to the last
Reduced energy consumption – up to 50-70% lower energy usage compared to hydraulic machines
Faster response times for more precise process control
Customer Value Delivered: Batch-to-batch consistency eliminates customer production line stoppages caused by dimensional variation. Lower energy consumption translates directly to reduced per-part manufacturing costs passed on to you.
2.3 Industry 4.0 Intelligent Manufacturing Integration
Ansix Tech has pioneered a fully integrated Industry 4.0 intelligent manufacturing ecosystem that fundamentally changes how preforms are produced.
Digital Process Control:
All injection molding machines are networked to a centralized MES (Manufacturing Execution System) that monitors and locks critical process parameters including:
Melt temperature (±1°C precision)
Injection pressure and speed profiles
Holding pressure time and profile
Cooling time
Cycle time
Only authorized engineers can adjust these parameters, and all changes are logged with timestamp and operator identification.
Real-Time Quality Monitoring:
In-mold sensors continuously monitor cavity pressure and temperature, providing closed-loop feedback to the injection molding machine control system. This adaptive process control automatically compensates for material viscosity variations, ambient temperature changes, and other variables that could affect part quality.
Customer Value Delivered: Your preforms are produced under statistically controlled conditions with real-time quality assurance – not just periodic sampling. We don‘t just inspect quality; we build it into every single shot.
PART III: Mold Manufacturing – The Core Competency
3.1 Strategic Material Selection for Preform Molds
The foundation of every Ansix Tech preform mold begins with rigorous material selection – before the first steel is cut.
Standard Mold Steel Grades and Their Application:
Steel Grade Properties Application in Preform Molds
P20 Pre-hardened, good machinability Mold bases, support plates
S136 / 4Cr13 / M340 Stainless steel, corrosion-resistant Mold cores/cavities for food-grade applications
2344 / H13 Hot work tool steel, high toughness High-cycle preform molds (1M+ shots)
2343 High polishability, wear-resistant High-gloss preform cavities
8407 Premium H13 equivalent Critical high-wear areas
SKD11 / SKD61 / DC53 High carbon, high chromium Wear plates, inserts, gate inserts
NAK80 Pre-hardened, excellent polishability High-gloss preform molds requiring fine surface finish
Heat Treatment Standards:
Following GB/T 41102-2021 standards, our mold components undergo precise heat treatment to achieve optimal hardness:
Cavities and cores: 40–55 HRC
Mold plates and support structures: 25–40 HRC
Contact surfaces with PET: Surface hardening treatment with anti-corrosion properties
Customer Value Delivered: We provide full material certification reports and heat treatment curves with every mold. You know exactly what you‘re getting – no surprises.
Mold Life Guarantee:
Based on the material selection and design optimization:
Standard applications (PET, non-filled): 1,000,000 shots minimum
Glass-filled applications (e.g., PET+GF): 500,000 shots minimum
3.2 Precision Manufacturing Process for PET Preform Molds
Manufacturing Workflow:
Rough Machining: Establish basic cavity and core geometry using high-speed CNC machining
Heat Treatment: Applied where required for optimal hardness and wear resistance
Precision Machining: 5-axis finishing achieving final geometry to ±0.005mm
EDM (Electrical Discharge Machining): For complex features and micro-details
Surface Finishing: Polishing to Ra ≤ 0.05μm for high-gloss preform applications
Assembly and Fitting: Precision assembly with interference fits verified
Bench Testing: 1,000–2,000 test shots before mold release
Customer Value Delivered: Our vertically integrated manufacturing process means mold modifications, repairs, and adjustments happen in-house – not outsourced. Standard repairs are completed within 24 hours, and emergency modifications are typically resolved within 48 hours, significantly reducing your downtime costs.
3.3 Hot Runner System Design for PET Preforms
The hot runner system is arguably the most critical component of a high-performance PET preform mold.
Design Parameters:
Operating temperature range: 260–280°C for PET processing
Material selection for hot runner components: Stainless steel with corrosion resistance and thermal stability
Valve gate actuation accuracy: ±0.1mm (meeting GB/T 41102-2021 standards)
Flow Balance and Uniformity:
The core challenge in multi-cavity preform molds is delivering molten PET uniformly to every cavity. An unbalanced hot runner system leads to preforms with differing weights and degrees of crystallinity.
Ansix Tech‘s approach:
Equal-length flow paths to each cavity minimize pressure drop variations
Advanced temperature control systems with multiple zone heating ensure consistent thermal conditions throughout the manifold
Individual nozzle temperature control allows fine-tuning of flow balance
Customer Value Delivered: All cavities produce identical preforms. Your downstream blow molding process won‘t be disrupted by inconsistent preform quality from different mold positions.
3.4 Cooling System Design – The Productivity Differentiator
Cooling accounts for 40-60% of the total preform molding cycle time. An optimized cooling system is the single most important factor in achieving competitive cycle times.
Ansix Tech Cooling Design Principles:
Spiral cooling channels maximize cooling efficiency and ensure uniform temperature distribution
Turbulent flow design ensures Reynolds numbers > 10,000 for maximum heat transfer
Temperature variation across cavities ≤ ±2°C ensures consistent crystallinity and dimensional stability
Independent zone control for neck, body, and bottom regions of the preform
Key Cooling Metrics:
Parameter Ansix Tech Standard Industry Benefit
Core/cavity ΔT ≤ 2°C Minimal warpage, consistent shrinkage
Cooling time as % of cycle 30-40% (vs. industry 40-60%) Higher output from same capital equipment
Ejection temperature ≤ 65°C Immediate downstream handling capability
Customer Value Delivered: Faster cycle times mean more preforms per hour from your purchased molding cells. A 20% reduction in cycle time on a 72-cavity mold running 24/7 can produce over 500,000 additional preforms per month – pure profit without additional capital investment.
3.5 Delivery Standards for Preform Molds
Mold Complexity Standard Lead Time Expedited Option
Simple preform mold (≤ 48 cavities) 25–30 days 18–20 days
Medium complexity (48–96 cavities) 30–45 days 22–25 days
High-cavitation (96–144+ cavities) 45–60 days 30–35 days
PART IV: Injection Molding Process Control – Eliminating Customer Quality Anxiety
4.1 Process Parameter Standardization
Every Ansix Tech injection molding machine is integrated into our MES with locked process parameters that cannot be altered without engineering authorization.
Critical Parameters Monitored and Controlled:
Melt temperature: Zone-specific control with ±1°C precision
Injection speed profiling: 5-10 stage profiles optimized for each preform weight
Holding pressure: Time and pressure curves optimized for shrinkage compensation
Cooling time: Optimized for each weight and geometry
Back pressure: Controlled for melt homogeneity and colorant dispersion
Research has demonstrated that careful optimization of these parameters can reduce warpage by 4.75% and weight variation by over 2% – directly improving material efficiency and product quality.
Customer Value Delivered: Every batch of preforms you receive will be dimensionally identical to the last batch, regardless of when it was produced. Your filling lines won‘t experience jams or leaks caused by preform variation.
4.2 Dimensional Stability Control
Mold Temperature Control:
We implement zone-specific mold temperature control using high-precision mold temperature controllers. The temperature differential between core and cavity is maintained within 2°C, dramatically reducing warpage and shrinkage variations.
In-Mold Monitoring Technology:
High-cavitation molds are equipped with in-mold pressure and temperature sensors that provide real-time feedback to the injection molding machine control system. This closed-loop control system automatically adjusts process parameters to compensate for:
Ambient temperature fluctuations
Variations in raw material IV (intrinsic viscosity)
Changes in recycled material content percentage
Machine wear and tear over time
Customer Value Delivered: Third-party dimensional verification on similar components has shown key feature variation as low as ±0.02mm across three separate production runs one week apart. You receive statistical process control data with every shipment – transparency you can trust.
4.3 Visual Quality Standards
Ansix Tech achieves the following visual quality standards for PET preforms:
Quality Attribute Standard Achieved
Clarity/Transparency No haze, no crystallinity whitening
Bubble content Zero visible bubbles (vacuum/void-free)
Flow marks / splay None on any preform surface
Gate vestige ≤ 0.3mm, cleanly trimmed
Cosmetic surface Smooth, uniform, no ejector pin marks visible
Customer Value Delivered: Preforms are ready for immediate blow molding without any secondary finishing operations. No manual inspection for visible defects – our automated vision inspection systems catch defects before they leave the factory.
4.4 Material Processing Capabilities
Ansix Tech has extensive experience processing a wide range of materials beyond virgin PET, including:
PET and PET-Based Materials:
Virgin PET resin (IV 0.72–0.86 dl/g)
Recycled PET (rPET / PCR-PET) – up to 100% post-consumer recycled content
RPET with food-grade certifications (FDA NOL / EFSA approved)
Barrier-enhanced PET variants for extended shelf-life applications
High-IV PET (0.80–0.86 dl/g for CSD/carbonated beverage applications)
Intrinsic Viscosity (IV) Selection Guide:
IV Range Application
0.72–0.78 dl/g Mineral water, non-carbonated beverages
0.78–0.85 dl/g Carbonated soft drinks (CSD), high-pressure filling
0.70–0.85 dl/g Standard preform-grade PET
Specialty Materials:
PC (Polycarbonate) – high-impact transparent applications
PETG – enhanced clarity and chemical resistance
PCTG – improved toughness for reusable containers
Barrier materials (EVOH + tie layers via co-injection)
Customer Value Delivered: Single-source responsibility for all your preform material requirements – from virgin PET to high-content PCR material (up to 100%), all meeting applicable food contact regulations.
PART V: DFM & Quality Verification – Before You Invest
5.1 Comprehensive DFM (Design for Manufacturing) Report
Before any steel is cut or any mold begins production, Ansix Tech provides a comprehensive DFM report that serves as a contract for quality expectations.
What the DFM Report Includes:
Mold flow analysis results – filling, packing, cooling, and warp simulation
Gate location and number recommendations – optimized for balanced fill
Draft angle recommendations – for reliable ejection without drag marks
Wall thickness optimization suggestions – for uniform cooling and minimal warpage
Ejector pin location mapping – with agreement on visible mark allowances
Shrinkage compensation calculations – based on selected material‘s specific shrinkage rate
Projected cycle time – with supporting simulation data
Critical dimension identification – with target CPK projections
PET Material Shrinkage Consideration:
PET materials typically exhibit shrinkage rates of approximately 1.2–2.0%. Ansix Tech‘s design team pre-compensates cavity and core dimensions based on the specific material‘s shrinkage characteristics, ensuring the final preform dimensions meet specifications after cooling and demolding.
Customer Value Delivered: You see potential problems before they exist. Weld lines, air traps, sink marks – all predicted and resolved in simulation before a single dollar is spent on tooling.
5.2 T0–T3 Sample Verification Protocol
Stage Activity Customer Value
T0 – First Shot Initial mold trial with standard material See real parts within days of mold completion
T1 – Adjustments Dimensional correction, gate optimization Issues identified and corrected immediately
T2 – Optimization Process parameter fine-tuning, cooling optimization Cycle time reduction without quality sacrifice
T3 – Validation Full dimensional report, CPK analysis, 1,000-shot run Quality validated before mass production
Rapid Changeover Capability:
Our mold design philosophy incorporates interchangeable inserts that can be swapped to test different configurations – gate locations, cooling layouts, or runner designs – without rebuilding the entire mold.
5.3 Small-Batch Validation Service
Before committing to full mass production, Ansix Tech offers a small-batch validation service:
100–500 preforms produced on the finalized tooling
First-article inspection report with comprehensive dimensional data
Cycle time verification under real production conditions
Blow molding test on customer-specified blowing equipment (upon request)
Customer Value Delivered: You confirm quality and process stability before committing to volume purchases. This eliminates the risk of discovering production issues after receiving a full container load of non-conforming parts.
5.4 Mold Maintenance and Lifecycle Support
Every Ansix Tech preform mold ships with:
Spare wear parts (ejector pins, core pins, guide bushings) included
Full maintenance manual with recommended service intervals
Lifetime technical support via email or video call
Maintenance Schedule Commitment:
Scheduled mold maintenance recommended every 200,000 shots
Structural warranty on mold components (excluding normal wear parts) – 3 years
Cost-plus pricing on repairs (no hidden markups on maintenance work)
Customer Value Delivered: Your mold isn‘t a black box that fails without warning. You know exactly when to service it, what parts to have on hand, and what it will cost to keep it running – no surprises.
PART VI: Industry 4.0 Intelligent Manufacturing and Efficiency Enhancement
6.1 Digital Factory Integration
Ansix Tech‘s manufacturing facilities operate as digitally integrated production environments where every machine, every process, and every part is connected.
Key Intelligent Manufacturing Components:
Centralized MES (Manufacturing Execution System): Real-time production monitoring, downtime tracking, and OEE (Overall Equipment Effectiveness) calculation
Automated material handling systems: Central drying systems with moisture monitoring (≤ 50 ppm final moisture before processing)
Automated vision inspection: 100% online inspection for dimensional and visual defects
Automated packaging and palletizing: Consistent counting, bagging, and carton packing
6.2 Cycle Time Optimization for Maximum Output
For high-cavitation preform molds (96–144 cavities), typical cycle times in the industry range from 5 to 14 seconds depending on preform weight and wall thickness.
Ansix Tech‘s approach to cycle time optimization:
Optimization Strategy Target Improvement Customer Benefit
Cooling channel geometry optimization 15–25% reduction More parts per machine-hour
Conformal cooling implementation 20–30% reduction Same capital cost, higher output
Automated part handling Reduced operator intervention Lower labor cost per part
Integrated blow molding line compatibility Seamless downstream integration Eliminate buffer inventory
Customer Value Delivered: A 20% reduction in cycle time on a 96-cavity mold producing 45g preforms generates approximately 2 million additional preforms per month from the same equipment – pure incremental profit without additional capital investment.
6.3 Real-Time Quality Assurance Systems
Our quality assurance system is not just about inspection – it‘s about prevention.
Three-Layer Quality Control:
In-line: Automated vision inspection at the machine exit rejects non-conforming parts automatically
At-line: Statistical sampling every 2 hours with dimensional verification
Off-line: Full dimensional CMM inspection on first article and every shift change
All quality data is stored digitally and can be provided to customers with every shipment – full traceability from raw material lot to finished preform.
6.4 Packaging and Logistics
Standard Packaging Configuration:
Preform Weight Standard Packaging Pcs per Carton Carton Dimensions
45g–58g Heavy-duty corrugated carton with liner 500–1,000 Custom
72g–120g Heavy-duty corrugated carton 300–500 Custom
Large weight tube Bulk gaylord or pallet 2,000–5,000 Standard pallet
Quality Assurance Before Shipping:
100% automated visual inspection
Random sampling for dimensional verification
Moisture content verification (≤ 0.005% moisture before sealing)
Shrink-wrapped pallets with desiccant for container shipment
Customer Value Delivered: Preforms arrive dry, clean, and ready for immediate blow molding. No pre-drying required before your production line – we deliver condition-specified material every time.
6.5 Fast Delivery Through Vertically Integrated Operations
Ansix Tech‘s four manufacturing facilities in China and Vietnam provide operational redundancy and geographic coverage that ensures on-time delivery even under challenging circumstances.
Delivery Capabilities:
Standard order (1–2 containers): 7–14 days from receipt of deposit
Large order (10+ containers): 21–30 days
Custom tooling order (new mold development): 25–60 days (lead time depends on complexity and cavitation count)
PART VII: Cost Control – How Ansix Tech Delivers Competitive Pricing
7.1 Raw Material Cost Optimization
Material Volume Purchasing: Ansix Tech‘s annual PET resin consumption across 260 injection molding machines enables direct sourcing from major PET resin manufacturers at preferential pricing that smaller producers cannot match.
Recycled Material Integration: With capability to process up to 100% rPET/PCR content, we can offer significant material cost reductions for customers prioritizing sustainability without sacrificing quality. Our experience with multiple RPET grades (including FDA NOL-approved food-grade PCR-PET) ensures regulatory compliance while reducing material costs by 15–30% depending on market conditions.
Material Grade Selection Guidance: We guide customers toward the optimal material grade (IV 0.72–0.86 dl/g range) for their specific application – never over-specifying unnecessarily.
7.2 Production Efficiency Optimization
Cycle Time Reduction: As detailed above, optimized cooling systems and process control reduce cycle times by 15–25% compared to standard industry benchmarks. For a typical 96-cavity mold running 45g preforms, every second reduction in cycle time adds approximately
50
,
000
–
50,000–100,000 in annual production value.
Energy Efficiency: All-servo electric injection molding machines consume 50–70% less energy than hydraulic alternatives. Energy costs are a significant component of preform pricing – this efficiency translates directly to lower per-part costs.
Labor Efficiency: Automated material handling, part removal, vision inspection, and packaging systems reduce direct labor requirements by 60–80% compared to conventional operations.
7.3 Tooling Cost Control
Standardized Mold Bases: Where possible, we utilize standardized, off-the-shelf mold base components rather than full custom designs, reducing tooling costs by 15–25% without sacrificing cavity performance.
Pre-Validated Designs: Our library of pre-validated preform mold designs for standard 36mm neck weights means lower design costs and faster delivery.
High-Cavitation Efficiency: For customers requiring large volumes, higher cavitation molds (96, 128, 144 cavities) reduce per-part tooling amortization costs.
7.4 Logistics and Supply Chain Optimization
Multi-Plant Manufacturing: With facilities in China and Vietnam, we can produce preforms closer to your filling operations, reducing freight costs and lead times for regional distribution.
Container Optimization: Our packaging team optimizes carton and pallet configurations to maximize container utilization – reducing freight cost per preform by 10–15%.
7.5 Total Cost of Ownership Reduction
Cost Component Traditional Supplier Ansix Tech Advantage Customer Savings
Material cost Standard market pricing Volume direct sourcing + RPET options 5–20%
Cycle time Industry standard (10–14s) Optimized (7–10s) 15–25% lower per-part
Energy Hydraulic machines (baseline) All-servo electric 50–70% lower
Labor Manual intensive Automated MES-controlled 60–80% lower
Freight Single origin Multi-plant optimization 10–15% lower
Tooling Full custom Standardized + pre-validated 15–25% lower
PART VIII: Customer Value Summary – Capabilities That Solve Real Problems
8.1 What Problems We Solve for Our Customers
Customer Problem Ansix Tech Solution Business Impact
Batch-to-batch dimensional variation MES-locked process parameters, closed-loop control Zero production line stoppages, zero cap sealing failures
High reject rates from blow molding Uniform preform quality from balanced hot runner and cooling systems 99.5%+ first-pass yield in blow molding
Slow cycle times limit output Optimized cooling channel design, high-cavitation molds 20–30% higher daily output from same machine count
High tooling costs Standardized mold platforms, pre-validated designs 15–25% lower initial tooling investment
Long mold repair lead times In-house EDM and machining capacity 24-hour turnaround on most repairs
Material cost pressure RPET capability up to 100%, volume sourcing 15–20% lower material costs
Supply chain disruption risk Four facilities across China and Vietnam Resilient supply, geographic redundancy
Food contact compliance risk FDA/EU-compliant materials, full traceability Zero regulatory exposure
8.2 Cost Savings Summary – What Customers Can Expect
Based on actual customer implementations across beverage, water, and industrial packaging sectors, Ansix Tech customers typically achieve:
Per-part manufacturing cost reduction: 15–25% compared to incumbent suppliers
Tooling cost reduction: 15–25% on new projects through standardized design platforms
Reject rate reduction: 2–5% reduction in blow molding rejects (from preform quality improvement)
Energy cost reduction: 50–70% for the molding operation
Logistics cost reduction: 10–15% through container optimization and multi-plant production
8.3 Risk Reduction That Customers Appreciate
Quality risk: Statistical process control data with every shipment – you see the data
Supply risk: Four facilities, redundant capacity – you don‘t worry about single-point failures
Regulatory risk: Full material traceability, food-grade certifications – you avoid compliance issues
Price risk: Stable, cost-plus transparent pricing model – no sudden price increases without notice
Technology risk: Pre-validated designs, DFM before tooling – you don‘t pay for development failures
Conclusion
Ansix Tech is not just a preform manufacturer – we are a strategic partner in your packaging supply chain. With 28 years of manufacturing experience, 260 injection molding machines, 4 production facilities, and over 1,200 employees, we have the scale, the technology, and the expertise to deliver consistent, high-quality PET preforms at competitive costs.
From initial DFM consultation through mold manufacturing, process optimization, mass production, and ongoing technical support, Ansix Tech provides end-to-end solutions for 36mm neck PET preforms in all standard weights – 45g, 48g, 58g, 72g, 120g, and large-weight tube configurations.
Whether you are a global beverage brand, a regional bottler, or an industrial packaging company, Ansix Tech has the capabilities, the certifications (ISO 9001, IATF 16949, ISO 13485, ISO 14001), and the commitment to quality and cost control that you need.
Contact Ansix Tech today to discuss your 36mm neck PET preform requirements. Let us show you how our precision manufacturing, intelligent process control, and relentless focus on cost optimization can transform your packaging supply chain.
Ansix Tech Co Ltd
If you have any plans related to 36mm Neck PET preform, 45g, 58g, 48g, 72g, 120g clear bottle preform, large weight tube preform , you can contact us at any time. We will turn your ideas into reality, let you realize your dreams, and obtain large orders from the market. Our contact information is info@ansixtech.com. Or contact our CTO, mail: stephen@ansixtech.com
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