EP-HGA.JS-2CB152 Edible Oil Bottle & Handle Bottle Blow Molding Machine
Among the models in this edible oil and handle bottle series, the EP-HGA.JS-2CB152 occupies a distinctive position. It bridges the output gap between the ES-2C200 and the larger JS-2C200 model, with a 3,000 ml maximum container volume and a combination preform holder specification that covers 10 preform positions plus a heating section of 128 positions. This configuration supports a theoretical output of 1,600 bph while giving operators the preform dwell time needed for thorough thermal conditioning — a factor that matters significantly when producing handle bottles where uneven heating produces visible wall-thickness irregularities in the grip area and shoulder zones.
The JS-2CB152 designation reflects a jump-station architecture within the transport system, which separates preform conditioning from the blowing sequence in a way that allows each stage to operate at its own optimal timing without creating a bottleneck. This is the same fundamental principle behind the centralized heating and distance-blowing design used throughout this series, but implemented with a modified transport configuration suited to the 3,000 ml container scale.
EP-HGA.JS-2CB152 Edible Oil Bottle & Handle Bottle Blow Molding Machine
Two-Step Blow Molding Machine | Fully Automatic | Up to 3,000 ml | High-Speed Dual-Cavity Configuration
The EP-HGA.JS-2CB152 is a purpose-built blow molding machine designed for the production of medium-to-large-format edible oil bottles and handle containers. Rated at 1,600 bottles per hour and capable of producing containers up to 3,000 ml, this fully automatic blow moulding machine addresses the specific demands of cooking oil, condiment, and bulk liquid packaging lines that require reliable output at competitive per-unit energy costs. The machine's centralized heating and distance-blowing configuration provides the thermal uniformity essential for consistent wall-thickness distribution in handle bottle geometries — a technical requirement that standard bottle blow molding machines not designed for this application often fail to meet.
Technical Specifications — EP-HGA.JS-2CB152 Blow Molding Machine
| Parametro | Unità | EP-HGA.JS-2CB152 Blow Molding Machine |
|---|---|---|
| Molding Parameters | ||
| Clamping Stroke | mm | 190 |
| Mold-Open Distance | mm | 440 |
| Mold-Close Distance | mm | 250 |
| Stretching Stroke | mm | 450 |
| Mold-Open Distance (Bottle) | mm | 50 |
| Mold-Close Distance (Bottle) | mm | 152 |
| Preform Holder | — | Blow: 10 + Heating: 128 |
| Cavities | — | 2 |
| Container Parameters | ||
| Volume massimo del contenitore | ml | 3,000 |
| Neck Diameter Range | mm | 46 |
| Max. Container Diameter | mm | 140 |
| Max. Container Height | mm | 330 |
| Theoretical Output | bph | 1,600 |
| Electrical System | ||
| Max. Heating Power | kW | 48 |
| Heating Power (Running) | kW | 12 |
| Air System | ||
| Operating Pressure | kg/cm² | 7 |
| Low Pressure Air Consumption | litri/min | 2,000 |
| Blowing Pressure | kg/cm² | 35 |
| High Pressure Air Consumption | litri/min | 3,600 |
| Cooling Water System | ||
| Operating Pressure | kg/cm² | 5–6 |
| Temperature | °C | 8–12 |
| Flow Rate | litri/min | 60 |
| Machine Dimensions | ||
| Machine Size (L × W × H) | mm | 3450 × 2150 × 2290 |
| Peso della macchina | kg | 3,500 |

Key Advantages of the EP-HGA.JS-2CB152 Blow Molding Machine
Extended Preform Conditioning System
The 128-position heating section is one of the defining characteristics of the JS-2CB152 compared to earlier models in this series. More preform positions in the heating zone mean each preform receives a longer, more uniform thermal conditioning period before entering the blowing station. For 3 L handle oil bottles — where the preform body needs to achieve full heat penetration across a relatively thick wall — this extended dwell time produces more consistent stretch ratios and better bottle clarity than shorter heating configurations. The result is a finished container with tighter dimensional tolerances and fewer heat-related rejects per thousand bottles produced.
Dual-Cavity Output at Moderate Power Draw
At 48 kW peak heating power and 12 kW running consumption, the JS-2CB152 delivers 1,600 bph from a dual-cavity blowing station without the power infrastructure demands of larger machines. For food-grade bottle production facilities in Colombia and other Latin American markets where electrical infrastructure capacity may be a planning constraint, this power profile gives operators meaningful output at a manageable energy budget. The machine's blowing pressure of 35 kg/cm² is applied with precision timing, reducing air consumption inefficiency across the cycle.
Jump-Station Transport Architecture
The JS designation in this model's name refers to a jump-station preform transport design that decouples the heating and blowing sequences. Rather than linking each preform's movement directly to the blowing cycle, the transport system creates a buffer between the two stations, allowing the heating tunnel to operate at a consistent rate regardless of momentary variations at the blowing station. This architecture reduces the sensitivity of the overall cycle to minor timing variations and supports more stable long-run output on automatic pet blowing machine applications where continuous production shifts are standard.
Front & Rear Handle Bottle Capability
Like other models in this edible oil bottle series, the JS-2CB152 is configured to handle both front-handle and rear-handle bottle profiles. Handle geometry at the 3 L scale requires specific stretch rod timing and blowing pressure curve optimization, all of which are set up in the PLC control system and can be saved as named production recipes. Switching between handle profiles requires a mold change and parameter recall rather than mechanical reconfiguration of the machine — minimizing transition time between SKUs on the same production line.

Manufacturing Expertise & Industry Reach
More than twenty years of concentrated development in blow molding machine technology has allowed us to build specialized knowledge that spans the full production chain — from preform specification and mold tooling through machine design, controls engineering, and post-installation technical support. Our equipment processes PET, PETG, PC, PCTG, and PP materials across container formats from 50 ml to 20 L, covering food, beverage, cosmetics, pharmaceutical, and industrial packaging sectors. We hold national patents in multiple areas of stretch blow molding technology and continue active R&D investment focused on cycle efficiency, energy reduction, and compatibility with post-consumer recycled PET material grades. Our installed base includes major global FMCG brands, contract packagers, and private-label manufacturers across Asia, Latin America — including Colombia, Peru, and Ecuador — the Middle East, and Europe.
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Mold Engineering
Preform Injection Mold

- The gate lip is engineered as a two-piece interlocking assembly, a construction that maintains coaxial alignment between the core and cavity throughout the injection fill and packing stages — the primary mechanical factor controlling preform concentricity.
- Cooling channels are routed to achieve full-length preform coverage, maximizing heat extraction rate during the cooling phase and enabling shorter cycle times without compromising the dimensional stability of the ejected preform.
- All cavity-forming components are machined from imported 2316 die steel — a grade chosen for its proven corrosion resistance and the consistent hardness it achieves after heat treatment, supporting long service life in continuous production environments.
- Core and cavity plates are fabricated from 420 stainless steel, providing additional protection against the moisture and chemical exposure common in food packaging production facilities.
- Maintenance access is built into the mold architecture, with components sized and positioned to allow removal and replacement without requiring specialized equipment or extended downtime.
- All fittings use industry-standard interchangeable specifications, and the mold cavity layout supports production of multiple preform neck sizes from a single tool configuration.
Blowing Mold

- Mold bodies are produced from premium tool steel grades selected for hardness and machinability at the 35 kg/cm² blowing pressures and container sizes used in this production range.
- All bottle cavity geometries are developed in advanced 3D modeling software, ensuring that draft angles, handle sweep geometry, and base dome profiles are optimized for clean, consistent demolding of each container variant.
- A library of proven handle bottle and standard oil bottle designs is available for selection, giving buyers a faster path to production start than a fully custom mold design project would require.
- Internal cooling circuit routing prioritizes heat extraction from the thickest regions of each container — typically the base and handle attachment zones — to maintain consistent mold surface temperatures during long production runs.
- Every structural mold component is finish-machined on CNC equipment to tolerances that ensure repeatable parting-line contact and eliminate flash on the finished bottle across the full production life of the tool.
Blow Molding Machine Application Scenarios
1 L – 3 L Cooking Oil Bottles
The JS-2CB152 blow molding machine's 3,000 ml volume ceiling and 330 mm maximum container height cover the full range of standard retail cooking oil formats sold in Latin American markets. In Colombia and neighboring countries, 1 L, 2 L, and 3 L handle oil bottles represent the dominant retail packaging formats across both supermarket and traditional trade channels.
Condiment & Sauce Packaging
Wide-body PET containers up to 140 mm in diameter produced on this plastic blow molding machine accommodate standard closure formats used for soy sauce, vinegar, hot sauce, and similar condiment products. The neck diameter of 46 mm is typical for the common screw-cap finish used across this product category in global markets.
Household & Personal Care Liquids
The handle bottle geometry produced on this auto blowing machine is equally applicable to household cleaning products, liquid soap, shampoo, and fabric care products in the 1–3 L size range. Mold changeover allows operators to run multiple product categories on the same machine across different production shifts.
Pharmaceutical & Food-Grade Liquids
PET containers produced on food-grade blow molding machines in this series meet the material purity requirements for pharmaceutical liquid packaging and food-contact applications. The 8–12 °C cooling water circuit maintains mold surface temperature within the range required for container dimensional stability in these regulated sectors.
Industrial & Automotive Fluids
At blowing pressures up to 35 kg/cm², the JS-2CB152 can produce PET containers with the wall thickness specifications required for motor oil, hydraulic fluid, and similar industrial liquids. Container robustness at this format is particularly important for the automotive after-market channel, where containers must survive warehouse stacking loads without deformation.
How to Select the Right Blow Molding Machine for Your Production Requirements
Choosing between the models in this edible oil bottle series begins with container volume and output rate. The JS-2CB152 is the right choice when your target is up to 3,000 ml at approximately 1,600 bph with two cavities. If your containers are consistently below 2,500 ml and your output needs are comparable, the ES-2C150 or ES-2C200 may offer a better cost-to-output ratio. If you need to produce both smaller containers (under 1.5 L) and larger containers (3 L and above) on the same machine, the JS-2CB152's 330 mm maximum height and 140 mm maximum diameter give you flexibility across that range without requiring two separate machines.
The jump-station transport architecture of the JS-2CB152 is most valuable when your preform specification requires extended heating dwell time — typically preforms over 80 g or with complex handle geometry that needs deeper heat penetration. If your preforms are lighter and your containers are simpler in shape, the standard ES-series models may achieve similar output with a smaller machine footprint. Your preform supplier can provide weight and geometry specifications that help determine which model is the correct technical match for your application.
Utility planning is the third factor. The JS-2CB152 requires 48 kW peak power, 3,600 L/min of high-pressure air at 35 kg/cm², and 60 L/min cooling water at 8–12 °C. These figures are moderate relative to the machine's output rate, but they do require an industrial compressed air system that can maintain consistent pressure at the rated flow — a point worth confirming with your facility engineer before specifying the compressor. We can provide detailed utility load schedules for this model as part of the project planning process for buyers in Colombia and other export markets.
Core Machine Components
Automated Preform Feeder
The inclined hopper and conveyor system delivers preforms to the heating zone at a consistent feed rate matched to the machine's 1,600 bph cycle. Orientation guides prevent misaligned preforms from reaching the heating spindles, protecting the tooling and maintaining output continuity across multi-hour production runs.
128-Position Infrared Heating System
The 128-position heating section uses zoned infrared lamps with independent temperature control per zone. The extended preform capacity means each preform spends more time in the tunnel than in shorter configurations, enabling deeper, more uniform heat penetration across the full preform body — critical for producing 3 L handle bottles with consistent wall thickness in the grip and shoulder areas.
Dual-Cavity Blowing Station
The blowing station operates with two cavities per cycle at up to 35 kg/cm² blowing pressure. Stretch rods are mechanically synchronized with the air injection sequence to ensure the axial and radial expansion of the preform happens in the correct ratio for each container geometry. The blowing pressure profile is programmable per bottle type and stored in the PLC control system.
PLC Touchscreen Control
The control panel provides a full touchscreen interface for setting and saving production parameters by container model. Alarm outputs for heating zone deviation, pressure drop, and mechanical fault conditions keep operators informed during unmanned production periods. Production data including output count, cycle time, and reject event logs can be reviewed for quality control purposes.

Chi siamo
We design and manufacture blow molding machines with a specialized focus on PET stretch blow molding for food, beverage, and industrial packaging. Our engineering background spans preform tooling, machine mechanical systems, control architecture, and production line integration — areas where depth of experience directly affects the quality and longevity of the equipment we deliver. Every machine we ship undergoes a full-speed production test at the factory, with output data reviewed before the machine is released for shipping. This pre-delivery testing protocol means buyers receive a machine that is confirmed operational rather than one that requires extended on-site commissioning to reach its rated performance.
Our product range covers two-step blow molding machines, macchine per stampaggio a iniezione e stiro-soffiaggio, and dedicated series for edible oil, cosmetics, pharmaceutical, and water bottle production. If you are evaluating multiple models or comparing configurations for a new packaging line, our technical team can provide model selection guidance based on your specific container specifications and output targets.
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Compatible Auxiliary Equipment
Un completo bottle blow molding line requires matched auxiliary systems working in coordination with the main machine. We supply or source the following equipment for one-stop project delivery, ensuring compatibility between the blowing machine and all downstream and utility components.
Air Compressor
Oil-free high-pressure compressors matched to the JS-2CB152's 35 kg/cm² blowing requirement and 3,600 L/min high-pressure air consumption. Oil-free specification is a requirement for food-grade container production — oil carry-over from a standard compressor can contaminate the interior of finished bottles and create compliance issues in regulated markets.

Regolatore di temperatura dello stampo
Precise temperature control units maintain the blowing mold at 8–12 °C throughout production. At the JS-2CB152's output rate, consistent mold temperature is the primary factor controlling cycle-to-cycle dimensional repeatability — a mold that drifts above its target temperature produces bottles with progressively more variation in base diameter and shoulder geometry as the shift progresses.

Bottle Visual Inspection Machine
Automated optical inspection equipment downstream of the blowing molding machine identifies surface defects, wall-thickness anomalies, and incomplete bottle formation before containers reach the filling station. For edible oil and food-grade applications, 100% inspection at the blowing stage is a best-practice quality control measure in export-oriented production operations.

Industrial Chiller
A dedicated industrial chiller maintains the 60 L/min cooling water supply at 8–12 °C. Undersized or unstable chiller capacity is one of the more common causes of extended cycle times and reject spikes in blow molding operations — sizing the chiller to 120% of the machine's rated flow requirement provides the headroom needed to maintain stable mold temperature during peak production conditions.

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