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EP-HGA.ES-4C150 Food Jars and Cans Bottle Blow Molding Machine

The EP-HGA.ES-4C150 occupies a distinct position in the Food Jars and Cans Series as the larger-capacity sibling model designed for processors who need to go beyond the 800 ml range. With a maximum container volume of 1,500 ml and a neck diameter reaching 98 mm, this bottle blow molding machine opens up a broader set of wide-mouth packaging formats — from litre-size condiment jars and family-sized dried-fruit containers to large-format edible-oil bottles that require both structural rigidity and excellent optical clarity. The four-cavity tooling arrangement drives a theoretical output of 3,200 bottles per hour, making this machine a practical fit for mid-volume food packaging lines where format flexibility and reliable cycle-to-cycle consistency are equally important.

Food Jars & Cans Series

EP-HGA.ES-4C150 Food Jars and Cans
Bottle Blow Molding Machine

An advanced four-cavity two-stage blow molding machine built for high-output production of wide-mouth food jars, easy-open cans, condiment containers, and edible-oil bottles — with a maximum volume of 1,500 ml and neck diameter up to 98 mm.

Technical Parameters — HGA.ES-4C150

The specification table below covers all major mechanical, electrical, pneumatic, and utility parameters for the HGA.ES-4C150 pet blow molding machine. Data is drawn directly from the official engineering data sheet for this model. Contact our technical team for assistance interpreting any parameter in the context of your specific production line.

Parameter Eenheid HGA.ES-4C150 Notities
Molding
Clamping Stroke mm 165
Mold-open Distance mm 415
Mold-close Distance mm 250
Stretching Stroke mm 400
Preform Mold-open Distance mm 50
Bottle Mold-close Distance mm 150
Preform Holder 86
Schimmelholtes 4
Container
Maximale containerinhoud ml 1,500
Neck Diameter Range mm 98 Wide-mouth
Max. Container Diameter mm 110
Max. Container Height mm 230
Theoretical Output bph 3,200
Electrical System
Max. Heating Power kW 68
Heating Power (Normal) kW 30
Air System
Operating Pressure kg/cm² 7
Low Pressure Air Consumption ltr/min 800
Blowing Pressure kg/cm² 35
High Pressure Air Consumption ltr/min 6,000
Cooling Water
Operating Pressure kg/cm² 5–6
Temperature °C 8–12
Flow Rate ltr/min 40
Machine Dimensions
Afmetingen (L×B×H) mm 5450×2070×2320
Machinegewicht kg 6,500

Understanding the Two-Stage Blow Molding Process

The fundamental distinction between a two-step blow molding machine and a single-stage platform lies in how the two core operations — preform production and bottle blowing — are sequenced. In the single-stage configuration, the plastic is injected and immediately blown within a single continuous machine cycle, which limits throughput and reduces operational flexibility. The two-stage blow molding machine architecture decouples these operations entirely. Preforms are produced by a dedicated injection press, cooled, and held as inventory. The blowing station then receives conditioned preforms, reheats them to the exact stretching temperature using a zoned infrared oven, and applies the stretch-blow sequence at high pressure to form the finished bottle.

For the EP-HGA.ES-4C150, this translates directly into practical line management advantages. Because the blowing station is never waiting on injection cycle time, it can operate at full rated output whenever preform inventory is available. This is particularly valuable for food packaging processors producing large-format containers — the additional volume per bottle (up to 1,500 ml) means any downtime on the bottle blow molding machine has an amplified impact on filling-line productivity. The separation of operations also means that different preform geometries can be run through the same blowing station with tooling changes, giving processors the flexibility to manage multiple SKUs without committing to separate machine assets for each container size.

Two-Stage Blow Molding Machine Production

Key Product Advantages

◆ 1,500 ml Large-Format Capacity

At 1,500 ml maximum volume, this auto pet blowing machine handles container sizes that most narrow-body machines cannot reach. Litre-size jars for preserved foods, large condiment containers, and family-format supplement bottles all fall within the operational envelope — without requiring a fundamentally different machine class.

◆ 98 mm Wide-Neck Blowing

A 98 mm neck diameter range pushes this fully automatic blow moulding machine into territory that is genuinely rare in mid-scale production platforms. Wide-mouth containers for bulk dry goods and easy-open can formats that require large neck apertures are both achievable with the standard mold configuration.

◆ 3,200 bph Sustained Output

The four-cavity tooling configuration sustains 3,200 bottles per hour under rated conditions. Given the 1,500 ml per-container volume, the volumetric throughput of this plastic blow molding machine is substantial — equivalent in liquid-packaging terms to approximately 4,800 litres of container capacity per hour off the machine.

◆ Efficient Heating Architecture

Normal operating heating power is 30 kW against a 68 kW installed peak — a ratio that keeps energy costs proportional to actual throughput rather than to nameplate capacity. The infrared heating oven zones are individually adjustable, giving process engineers fine control over the temperature profile along the preform wall before the blow stage.

◆ Multi-Resin Compatibility

The EP-HGA.ES-4C150 stretch blow molding machine platform supports PET, PETG, PC, PCTG, and PP with appropriate tooling and parameter settings. This flexibility matters for processors who supply multiple market segments — food, pharmaceutical, and consumer goods — from a shared machine asset.

◆ Patent-Backed Engineering

Multiple registered national patents protect core innovations in the heating system, clamping mechanism, and preform transfer methodology of this injection blow molding machine platform. These are not design-around features — they represent genuine engineering improvements that have been validated in high-volume production environments over years of fielded use.

Partner Brands

Our R&D team has spent more than twenty years refining the design and manufacturing process of blow molding machines across PET, PETG, PC, PCTG, and PP material families. The result is a portfolio of automatic pet blowing machine platforms covering cosmetics, water, oil, beverages, food, pharmaceuticals, and baby products — with particular depth in high-end food and pharmaceutical packaging where quality standards leave no margin for inconsistency. Our production clients include Yibao, Haitian, Luhua, Walch, Blue Moon, Proya, Libai, Estée Lauder, Walmart, Da Senlin, and Shining Eye Drops, and our machines are deployed across production markets in Colombia, Brazil, Australia, the Netherlands, South Korea, and beyond.

Partner Brands Blow Molding Machine

Mold Engineering

Every pet blowing machine in the HGA.ES series is supplied with mold tooling engineered to match the machine's rated mechanical parameters. Mold quality is the single most direct determinant of bottle dimensional accuracy and surface quality, and the tooling for the 4C150 reflects that fact in its material selection and manufacturing process.

Preform Injection Mold

Preform Injection Mold

  • A two-part gate and lip assembly ensures that the preform forms on a shared axis, preventing the off-axis deformation that leads to uneven wall distribution in the finished bottle.
  • Water channels are engineered for maximum heat extraction per unit of water flow, shortening the preform cooling phase and compressing cycle time without sacrificing structural quality.
  • All preform-forming surfaces are machined from imported 2316 die steel — a grade chosen for its corrosion resistance and dimensional stability after heat treatment.
  • Structural components including the core plate and cavity plate are fabricated from 420 stainless steel, providing long-term resistance to the chemical environment of mold cooling circuits.
  • Standardised interchangeable fitting interfaces are used throughout, enabling mold maintenance without specialist tooling or extended downtime.
  • The mold architecture supports multi-profile preform production from a single mold, reducing tooling investment for processors with diverse preform requirements.

Blowing Mold

Blowing Mold

  • Cavity blocks are cut from premium-grade alloy steel selected for high fatigue strength under sustained high-pressure blowing cycles — critical for machines running at 35 kg/cm² blowing pressure.
  • Container geometries originate from professional 3D CAD and CAE workflows, allowing complex wide-mouth profiles to be validated and optimised before any cutting begins.
  • An established library of validated bottle shapes — covering jars, cans, condiment bottles, and oil containers — is available to accelerate tooling lead times for standard formats.
  • Cooling channels follow geometry-specific routing paths that remove heat uniformly across the full container surface, keeping wall clarity consistent and reducing the risk of stress whitening.
  • Every metal component is finished on CNC machining centres to tight dimensional tolerances, ensuring parting-line quality and surface finish that translate directly into bottle appearance.

Toepassingsscenario's

The EP-HGA.ES-4C150 blow molding machine serves a range of food and consumer-goods packaging applications across global markets. Its expanded volume capacity and wide-neck blowing capability make it particularly well-suited to the following production contexts — including in Colombia, Brazil, and across the broader Latin American food processing sector where wide-mouth rigid plastic containers are experiencing strong demand growth.

Large-Format Dried Fruit Jars

Family-size and foodservice-format containers in the 1,000–1,500 ml range are among the fastest-growing SKUs in the dried-fruit sector across Colombia and Southeast Asia. The 4C150 auto blowing machine handles this size class without compromise on cycle speed or bottle clarity.

Edible Oil Bottles

High-clarity PET bottles for cooking oil up to 1.5 litres require excellent biaxial orientation to achieve the correct combination of wall stiffness and transparency. The precise stretch-rod control on this pet blow molding machine achieves the molecular orientation that delivers both properties reliably across production batches.

Condiment & Sauce Containers

Wide-mouth containers for soy sauce, chilli paste, and other thick condiments benefit from the generous neck diameter range of this bottle blow molding machine, which allows filling equipment with larger nozzle diameters to operate without restriction on line speed.

Easy-Open Plastic Cans

Automatic production of incision-free easy-open plastic cans in large sizes demands the combination of a wide clamping stroke (165 mm), accurate mold-close control (250 mm), and stable blowing pressure that the 4C150 delivers as part of its standard specification.

Nutritional Supplements

Supplement brands moving into larger pack sizes — protein powders, multi-vitamin containers, or sports nutrition canisters — can rely on this fully automatic blow moulding machine to produce consistent container geometry across batches that must interface with automated capping and labelling equipment.

Pharmaceutical-Grade Food Products

Where national regulatory requirements for food contact materials apply — in Colombia, the Netherlands, and major export markets — the PET material processing on this machine meets the relevant food-grade standards, and the tight dimensional tolerances of the blowing tooling support tamper-evident closure compatibility.

onestepblowmachine-Food Jar & Can Blow Molding Machine-product-show2

Choosing the Right Blow Molding Machine for Your Line

Selecting between the HGA.ES-4C100, HGA.ES-4C150, and larger models in the Food Jars and Cans Series depends on a small set of production parameters that should be defined before any equipment enquiry. Getting this decision right early prevents both under-investment — where the bottle blow molding machine becomes a throughput bottleneck — and over-investment in capacity that sits idle.

Step 1 — Identify Your Maximum Container Volume

If any SKU in your current or planned portfolio exceeds 800 ml, the 4C100 is the floor of the range — the 4C150 with its 1,500 ml capacity is the appropriate starting point. Do not size to your smallest container; size to your largest, then confirm the smaller formats are within the same tooling family.

Step 2 — Check Neck Diameter Requirements

Wide-mouth formats require a pet blowing machine specified for that neck range. The 4C150 handles up to 98 mm, which covers the vast majority of food jar and can formats currently in commercial production. If your brief exceeds this, enquire about the 4C130 or bespoke tooling options.

Step 3 — Match Output to Downstream Speed

A blow molding machine producing 3,200 bottles per hour must be matched to a filler, capper, and labeller running at comparable speed. Apply a 10–15% real-world efficiency factor to the theoretical output number and verify the net figure against your downstream equipment ratings before finalising the order.

Step 4 — Audit Plant Utilities

The 4C150 requires high-pressure blowing air at 35 kg/cm² with a flow of 6,000 ltr/min, cooling water at 40 ltr/min between 8 and 12°C, and a total electrical supply sufficient for 68 kW peak heating load. Match an oil-free air compressor and chiller to these figures before installation begins.

Auxiliary Equipment & System Compatibility

A complete production line built around this injection blow molding machine needs a set of auxiliary units that are validated for compatibility with the machine's utility specifications. We supply all of the following from our own portfolio, giving customers a single point of accountability for the full line — a genuine one-stop supply advantage that shortens commissioning timelines and eliminates integration risk.

Oil-Free Air Compressor for Blow Molding Machine

At 35 kg/cm² blowing pressure and 6,000 ltr/min high-pressure consumption, this machine demands a purpose-matched oil-free air compressor. Oil contamination in blowing air directly affects bottle clarity and food-contact compliance — oil-free output is non-negotiable for food-grade applications.

Temperatuurregelaar voor de matrijs

Temperatuurregelaar voor de matrijs

Maintaining cooling water temperature between 8 and 12°C as specified for this blow molding machine requires active chilling, not ambient-temperature water supply. Our mold temperature controller units hold the set point within ±0.5°C under continuous production load, directly supporting the bottle clarity and cycle time targets in the specification.

Bottle Visual Inspection Machine

Bottle Visual Inspection Machine

For food and pharmaceutical-grade lines, inline visual inspection at the blow-moulding exit catches contamination, deformation, and wall anomalies before bottles reach the filler. Our inspection units operate at production speed without introducing additional machine-side downtime, and they are fully compatible with the output rate of the EP-HGA.ES-4C150.

Blow Molding Machine Auxiliary Chiller and Compressor

Chiller & Compressor Package

We offer pre-matched chiller and compressor bundles for processors commissioning a complete blow molding machine line. Bundled supply eliminates compatibility uncertainty and allows our engineers to verify that utility capacities are correctly matched before the primary machine is installed.

Over ons

We design, manufacture, and support blow molding machines En injection blow molding machines for industrial buyers across a broad range of packaging markets. Our engineering team has been developing and refining blow-moulding technology for over two decades, working directly with production processors to understand what actually matters at the machine level — throughput consistency, energy cost, mold longevity, and the ability to change formats quickly without extended downtime.

Our production facility is equipped with precision CNC machining centres, dedicated mold trialling infrastructure, and a quality management system that requires every fully automatic blow moulding machine to be run-tested and calibrated against documented output specifications before it leaves the plant. We hold multiple national patents on core mechanical innovations and can provide English-language technical documentation, remote commissioning support, and on-site engineering visits for major installations. Customers from Colombia to South Korea, from Brazil to the Netherlands, rely on our machines for continuous food and beverage packaging production — and that trust is built on engineering substance, not on sales claims.

Workshop

Blow Molding Machine Workshop
Blow Molding Machine Manufacturing
Production Facility
Blow Molding Machine Product Range

Veelgestelde vragen

What makes the EP-HGA.ES-4C150 blow molding machine the right choice for producing large-format food jars and wide-mouth containers in the Colombian food processing industry?
The 4C150 addresses the two specific requirements that define wide-mouth large-format food container production: a maximum neck diameter of 98 mm and a container volume up to 1,500 ml. Most comparable blow molding machines in the mid-scale category cap out at narrower necks or lower volumes, forcing processors to either compromise on format or invest in a larger machine class. The 4C150 bridges that gap within a production footprint of 5450×2070×2320 mm that fits practical factory layouts.
How does a two-stage blow molding machine differ from a single-stage machine when it comes to producing PET bottles for edible oil and condiment packaging in the food sector?
In a two-stage blow molding machine, preform injection and bottle blowing are independent operations. This means the blowing station is never waiting on injection cycle time, which is a structural throughput advantage for large-volume containers where each bottle represents more material and more energy per unit. For edible oil and condiment producers who need consistent wall distribution and clarity across high-volume batches, the two-stage process also provides greater control over the preform reheating step, which directly determines biaxial orientation quality in the blown bottle.
Which auxiliary machines should I install alongside a fully automatic blow moulding machine for a food-grade PET bottle production line in Latin America?
At minimum, a food-grade line requires an oil-free air compressor matched to the machine's 35 kg/cm² blowing pressure and 6,000 ltr/min high-pressure consumption, a chiller or mold temperature controller holding cooling water between 8 and 12°C at 40 ltr/min, and ideally an inline bottle visual inspection unit at the blow-moulding exit. Each of these is available from us as a pre-matched package, eliminating the compatibility verification work that comes with sourcing from multiple suppliers.
Where can food packaging manufacturers in Colombia and South Korea find a reliable pet blowing machine supplier that also offers after-sales engineering support and mold tooling?
Our organisation supplies pet blowing machines to production markets across Colombia, South Korea, Brazil, the Netherlands, and Australia with full English-language technical documentation, remote commissioning assistance, and the option for on-site engineering visits for major installations. Mold tooling — both preform injection molds and blowing molds — is designed in-house using 3D CAD/CAE software and manufactured from 2316 die steel and 420 stainless steel to our own dimensional specifications. This means the mold is fully supported within the same engineering chain as the primary machine, rather than relying on a third-party toolmaker.
How do I calculate real-world output for a four-cavity stretch blow molding machine when planning a new PET food container line with downstream filling and capping equipment?
Start from the theoretical output figure — 3,200 bph for the HGA.ES-4C150 — and apply a realistic efficiency factor. For well-maintained blow molding machines in food-grade environments, a factor of 85–90% is typical under normal multi-shift conditions, giving a working output of approximately 2,720–2,880 bottles per hour. Size your downstream filler, capper, and labeller to this adjusted figure, not the theoretical maximum. Also account for planned format change intervals: switching between different bottle sizes on a two-step blow molding machine requires mold changes that will take the line offline for a defined period per shift.

Redacteur: PXY