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EP-HGA.ES-2C150 Food Jars and Cans Bottle Blow Molding Machine

The EP-HGA.ES-2C150 is a dual-cavity fully automatic blow moulding machine purpose-built for the food packaging sector, covering a production range that spans condiment jars, edible oil bottles, dried-food containers, and the increasingly demanded easy-open can format. Running on a proven two-step blow molding machine platform, this model steps beyond the single-cavity entry-level configuration by doubling mold cavities — reaching a theoretical output of 1,800 bottles per hour and supporting container volumes from small 500 ml jars up to substantial 2,500 ml containers. The maximum neck diameter of 110 mm accommodates wide-mouth formats that few competing pet blow molding machine platforms can match at this output rate.

The machine footprint of 4,290 × 1,800 × 2,220 mm and operating weight of 3,500 kg places it squarely in the mid-range industrial category — large enough for meaningful throughput, compact enough to integrate into most food packaging halls without structural modification. Its rated heating power of 42.5 kW with a normal operating draw of 18 kW reflects a meaningful efficiency advantage over older-generation blowing machine designs of similar output capacity.

Food Jars & Cans Series

EP-HGA.ES-2C150

Food Jars and Cans Bottle Blow Molding Machine

A dual-cavity, two-step blow molding machine engineered for high-volume production of food-grade wide-mouth jars, condiment bottles, and easy-open can formats — with containers up to 2,500 ml and neck diameters reaching 110 mm.

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Technical Parameters — HGA.ES-2C150 Blow Molding Machine

Category Blow Molding Machine Parameter 单元 价值
Molding Clamping stroke 毫米 190
Mold-open distance 毫米 440
Mold-close distance 毫米 250
Stretching stroke 毫米 450
Base mold-open distance 毫米 50
Gripper distance 毫米 150
Mold cavities 2
Container Max container volume 毫升 2,500
Max neck diameter range 毫米 110
Max container diameter 毫米 130
Max container height 毫米 250
Output Theoretical output bph 1,800
Electrical Max heating power 千瓦 42.5
Normal operating power 千瓦 18
Air System Operating pressure kg/cm² 7
Low pressure air consumption ltr/min 600
Blowing pressure kg/cm² 26–35
High pressure air consumption ltr/min 1,000–1,500
Cooling Water Operating pressure kg/cm² 5–6
Temperature 摄氏度 8–10
Flow rate ltr/min 30
Machine Dimensions (L×W×H) 毫米 4290×1800×2220
机器重量 kg 3,500

onestepblowmachine-product-Food Jars and Cans Bottle Blow Molding Machine-show

Key Advantages of the EP-HGA.ES-2C150 Blow Molding Machine

Moving from a single-cavity to a dual-cavity blow molding machine platform is not just a capacity decision — it fundamentally changes the economics of wide-mouth food container production. The EP-HGA.ES-2C150 Blow Molding Machine doubles output without proportionally increasing floor space, energy consumption, or operator headcount. At 1,800 bph across two cavities, the per-unit cost of compressed air, chilled water, and heating energy drops significantly compared to running two separate single-cavity automatic pet blowing machine units. That operating cost reduction, sustained across multi-shift production, is what makes this model a high-value choice for established food packaging operations in Colombia, Australia, and across Southeast Asia.

⚙️ Dual-Cavity Efficiency

Two mold cavities operating in a shared blow cycle reduce per-unit machine time compared to single-cavity equivalents. At 1,800 bph, this bottle blow molding machine delivers throughput that justifies mid-tier investment for food packaging lines operating two or three shifts.

🔩 Incision-Free Can Forming

The machine's proprietary forming mechanism handles easy-open can formats in a single continuous process. No downstream cutting station is required, eliminating an equipment cost, a maintenance responsibility, and a common source of container damage on conventional food can lines.

📐 110 mm Wide-Neck Capability

A maximum neck diameter of 110 mm is particularly significant for condiment, dried-food, and pickle jar applications. This is among the widest neck specifications available on a two-step blow molding machine at this output class — giving procurement teams fewer compromises when standardising on container geometry across product families.

⚡ Controlled Energy Profile

Rated at 42.5 kW maximum heating power with a typical operating draw of 18 kW, the electrical efficiency ratio compares favourably with older-generation plastic blow molding machine designs of similar output. Zone-by-zone infrared heating control ensures energy is directed where needed rather than heating the entire oven uniformly.

🔄 Multi-Resin Compatibility

PET, PETG, PP, PC, and PCTG are all processable on this platform. Food and pharmaceutical customers frequently need to switch resin types between container families. This pet blowing machine eliminates the need for a separate machine platform to cover PP applications — mold temperature control handles the thermal difference.

🎛️ PLC Touchscreen Control

Servo-motor integration and PLC-based control with a touchscreen HMI allow parameter adjustment at runtime. Heating profiles, blowing pressure curves, and stretching rod timing can all be modified without stopping the line — a practical advantage for operators running multiple container formats across the same shift.

Partner Brands

More than twenty years of focused engineering in blow molding machine development have built a track record that spans every major packaging category. Our R&D programme holds multiple national patents and has produced dedicated machine platforms for PET, PETG, PC, PCTG, and PP resins across cosmetics, beverage, food, edible oil, pharmaceutical, and baby product segments. We hold a particularly strong position in high-specification food and pharmaceutical packaging, where dimensional accuracy and material compliance are non-negotiable. Clients whose production lines run on our machines include Yibao, Haitian, Luhua, Walch, Blue Moon, Proya, Libai, Estée Lauder, Walmart, Da Senlin, and Shining Eye Drops.

Blow molding machine partner brands

Machine Structure & Mechanical Design

The structural foundation of the EP-HGA.ES-2C150 is a heavy-gauge welded steel frame with precision-bored platen alignment — a requirement for a dual-cavity injection blow molding machine where even minor platen deflection at the clamping point translates directly into neck-finish variation between the two cavities. Clamping stroke of 190 mm and mold-open distance of 440 mm give the tooling team adequate working space for standard food jar and can mold sizes, while the 450 mm stretching stroke accommodates tall slender container formats alongside the wider short-height can profile.

The preform heating section uses vertically arranged infrared lamp banks with independent zone control. Each zone is thermostatically governed, letting operators define a graduated heating profile from the preform neck shoulder down to the base — critical for wide-neck preforms where the shoulder-to-body mass ratio differs sharply from narrow-neck perform profiles common on standard auto pet blowing machine platforms. The dual-cavity configuration means two preforms are heated and transferred simultaneously, which requires the oven length and lamp arrangement to maintain temperature uniformity across both positions.

High-pressure air delivery is specified at 26–35 kg/cm² blowing pressure, with a consumption range of 1,000–1,500 ltr/min under dual-cavity production conditions. An integrated air recovery circuit captures residual pressure from the formed bottle before mold opening, routing it back to the low-pressure supply at 7 kg/cm² — a standard feature on this series that meaningfully reduces net compressed air demand per bottle produced. Cooling water at 8–10 °C with 30 ltr/min flow manages both mold and machine thermal loads under continuous production.

Blow molding machine production line

Mold System

Preform injection mold for blow molding machine

Preform Injection Mold

The die lip uses a split two-component architecture that locks concentricity throughout the preform injection cycle. Maintaining coaxiality at this stage prevents differential wall thickness from forming before the preform even reaches the blow station — a root cause of rejection that two-part lip designs effectively eliminate. Cooling water passages are routed through the mold body along a path calculated to extract heat rapidly and evenly, supporting fast cycle times without leaving residual thermal gradients in the preform wall.

  • Forming surfaces manufactured from imported 2316 die steel — fully heat-treated and corrosion-resistant for long service life in food-grade production environments.
  • Core plate, cavity plate, and load-bearing structural components are produced in 420 stainless steel to resist the process chemicals used in food jar production cleaning cycles.
  • Modular fittings use standardised interchangeable dimensions, reducing spare parts inventory requirements.
  • The mold architecture supports multiple preform profiles from a single tool set — useful when the same machine runs different container families across shifts.

Blowing mold for bottle blow molding machine

Blowing Mold

Cavity profiles for the blowing mold are developed entirely in 3D CAD software, allowing the complete container geometry — from neck finish down to base petaloid — to be validated digitally before any steel is cut. This is particularly relevant for complex food jar profiles with label panel geometry, stepped shoulders, or ribbed sidewalls where physical sampling from an unvalidated tool is expensive and time-consuming. The 3D digital workflow also means alternative container designs can be evaluated and offered from the mold design library without starting from scratch.

  • High-grade alloy steel provides the surface hardness and thermal conductivity balance needed for consistent surface finish under high-cycle blowing conditions.
  • Cooling channels are positioned through simulation to avoid localised hot spots — a source of surface haze and dimensional drift in food jar production.
  • All metal components are fully CNC-machined, ensuring cavity dimensions match the digital design specification without hand-fitting adjustments.

应用场景

The EP-HGA.ES-2C150 targets the segment of food and condiment packaging where container volume exceeds 500 ml, neck geometry requires wide-mouth access, and production volume justifies dual-cavity tooling investment. The following application areas are the primary use cases this two stage blow molding machine serves, drawn from real deployment experience across global markets including Colombia, Australia, the UK, and Southeast Asia.

🥜 Nuts & Dried Foods

Wide-mouth PET or PETG jars for mixed nuts, trail mix, dried fruit, and grain-based snacks. The 110 mm neck diameter allows hand-access scooping, which is a standard requirement for bulk retail formats in supermarket chains across Colombia and Southeast Asia.

🧂 Condiments & Pickled Products

Chilli sauce, mustard, pickle, and fermented soybean products require containers with consistent sealing-surface geometry and strong top-load performance. The two-step blow molding process achieves the wall thickness uniformity these applications demand at 1,800 bph production rates.

🛢️ Edible Oil Bottles

Larger-format edible oil containers up to 2,500 ml are a natural fit for this bottle blow molding machine. The combination of 130 mm maximum body diameter and 250 mm maximum height covers the standard 1 litre, 1.5 litre, and 2 litre oil bottle formats used by mainstream grocery brands.

🥫 Easy-Open Cans

The incision-free can mechanism makes this one of the few automatic pet blowing machine platforms that can genuinely replace metal can packaging for ambient-shelf food products. Beverage companies and food processors in markets transitioning away from tin cans will find this capability directly relevant.

💊 Supplement & Pharmaceutical Jars

PETG and PC are widely used for vitamin supplement and OTC pharmaceutical jars where UV clarity and chemical resistance matter. This auto blowing machine supports both resins within the same platform, making it viable for contract manufacturers serving multiple product categories from a single machine.

🧴 Household & Personal Care

Cream jars, refill containers, and wide-mouth personal care dispensers share dimensional requirements with food jar formats. The blowing machine's mold library includes profiles that cross over into this category without requiring a dedicated platform — a cost benefit for multiproduct contract packagers.

Exploring daily chemicals or cosmetic container production?

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How to Choose the Right Blow Molding Machine

The EP-HGA.ES-2C150 is the appropriate model when three or more of the following conditions apply to your production specification: container volume above 500 ml, neck diameter above 70 mm, dual-shift or three-shift production schedules, a mix of container formats within the same product family, and a preference for incision-free can production capability. If your neck diameter is below 70 mm and volume below 1,000 ml, the single-cavity HGA.ES-1C130 offers a more economical starting point. If volume requirements exceed what 1,800 bph covers, the four-cavity HGA.ES-4C130 or HGA.ES-4C150 within the same series provides a direct upward path.

When comparing blow molding machine manufacturers, three technical details are frequently under-scrutinised in procurement. First, the preform holder count: the HGA.ES-2C150 carries 60 preform holders, which directly determines the oven dwell time available for each preform at any given throughput rate — a higher count supports better temperature uniformity without forcing the oven to run hotter. Second, blowing pressure range: the 26–35 kg/cm² specification gives operators adjustment headroom for different resin grades and wall thicknesses. Third, actual operating power versus rated maximum: at 18 kW normal draw against 42.5 kW rated maximum, the operating efficiency ratio is 42% — compare this figure directly when evaluating competing pet blowing machine manufacturers rather than relying on headline output numbers alone.

For export-market procurement in Colombia, Australia, and the UK, confirm electrical supply configuration at the quotation stage. All machines in this series are configured to destination market specifications from the factory — three-phase supply voltage, frequency, and protective earth standards are matched before shipping, eliminating site electrical rework at commissioning.

关于我们

Our engineering and manufacturing operation has spent more than two decades building, refining, and deploying blow molding machine solutions across every major packaging industry. The depth of knowledge embedded in each machine reflects genuine field experience: our engineers have commissioned systems on food packaging lines in South America, edible oil plants in Southeast Asia, and cosmetic bottle facilities across Europe — returning with direct observations that feed back into the next generation of machine design.

In-house CNC machining, precision assembly, and full FAT testing before shipment are standard for every unit that leaves our facility. This vertical integration means we control the tolerance stack across every critical dimension — platen parallelism, stretching rod concentricity, preform holder spacing — rather than depending on subcontract tolerance chains that can accumulate errors in complex assemblies. Our quality process is built around the standard that every machine performs at specification on day one of customer commissioning, not after a series of site adjustments.

National patents across multiple machine generations reflect genuine innovation in areas that matter to food packaging customers: incision-free forming, precision wide-neck preform handling, and energy-efficient oven architecture. These are not cosmetic distinctions — they represent direct operating cost and quality differences that show up on production line data within the first month of operation.

车间

Blow molding machine workshop 1
Blow molding machine workshop 2
Blow molding machine workshop 3
Blow molding machine production show

Blow molding machine factory

Related Products & System Equipment

Sourcing the EP-HGA.ES-2C150 as part of a complete system — rather than integrating it with auxiliary equipment from separate suppliers — removes a significant source of commissioning risk. Every auxiliary product below has been validated for compatibility with the machine's utility connections, control architecture, and throughput requirements. This one-stop supply approach is particularly valued by food and pharmaceutical packaging operators who need fast, documented commissioning with a single point of technical accountability.

Air compressor for blow molding machine

Air Compressor

The EP-HGA.ES-2C150 requires high-pressure air at 26–35 kg/cm² blowing pressure with a consumption of 1,000–1,500 ltr/min under dual-cavity operating conditions. Our oil-free air compressors are sized and validated specifically for this machine's demand curve — ensuring clean, dry air supply that meets food-grade production hygiene requirements throughout the shift.

模具温度控制器

模具温度控制器

When this blow molding machine is configured for PP resin processing — or when cavity temperature stability is a critical quality control requirement — a Mold Temperature Controller maintains precise thermal conditions across both blowing cavities simultaneously. It prevents the thermal drift between cavities that leads to dimensional variation and surface inconsistency between bottle positions.

Bottle visual inspection machine

Bottle Visual Inspection Machine

For food and pharmaceutical lines where 100% container verification is a regulatory or customer audit requirement, our Bottle Visual Inspection Machine connects directly to the output conveyor of this bottle blow molding machine. It checks neck finish, sidewall integrity, base uniformity, and label panel flatness at production speed — outputting defective containers to a rejection lane before they reach the filling line.

Blow molding machine auxiliary machinery

常见问题解答

Q1. What are the main differences between a two-stage blow molding machine and a single-stage injection stretch blow molding machine for wide-mouth food jar production?

In a two-stage blow molding machine, preform injection and bottle blowing are fully separated processes. The preform is injection-moulded, cooled to ambient temperature, then reheated and stretch-blown as a second discrete operation. This separation allows the operator to optimise each phase independently — particularly important for wide-mouth food jars where the preform shoulder mass and neck geometry require precise, graduated reheating profiles that a combined single-stage machine cannot control with the same precision. For containers like the formats produced on the HGA.ES-2C150 (neck diameters to 110 mm, volumes to 2,500 ml), the two-stage approach consistently delivers better wall thickness distribution and dimensional repeatability across high-volume production runs.

Q2. Which automatic pet blowing machine configuration is best suited for food packaging manufacturers in Colombia who are producing both condiment jars and edible oil bottles?

For a Colombian food packaging operation covering both condiment jars and edible oil bottles in the 500–2,500 ml range, the HGA.ES-2C150 is a strong fit. Its 110 mm neck diameter ceiling covers wide-mouth condiment formats, while the 2,500 ml maximum volume handles larger oil bottle specifications. The dual-cavity configuration at 1,800 bph justifies the investment for operations running two or more production shifts daily. We configure machines to Colombian electrical supply standards from the factory, removing the need for on-site electrical adaptation. If output requirements grow beyond 1,800 bph, the four-cavity HGA.ES-4C150 scales up within the same mold tooling platform.

Q3. How does the incision-free can forming mechanism on this blow molding machine actually work, and what production line advantages does it provide over conventional can forming methods?

The incision-free forming mechanism produces easy-open can containers entirely within the blow mold — the can profile geometry, including the rim and opening feature, is formed during the blowing phase itself. Conventional methods require a separate cutting or trimming station after blowing to create the open-top can format, introducing an additional machine, additional maintenance responsibility, and a common point of container surface damage. By eliminating the cutting step, this blow molding machine reduces line complexity, scrap rate from trimming damage, and capital cost. For food packaging operations transitioning from metal cans to PET format containers, the direct-line replacement capability removes a significant infrastructure barrier.

Q4. What auxiliary equipment does a complete two-step blow molding machine production line need when operating in a food-grade packaging environment in Australia or Southeast Asia?

A complete food-grade bottle blow molding machine installation requires: an oil-free air compressor delivering clean, dry high-pressure air at the machine's specified blowing pressure and volume (26–35 kg/cm², 1,000–1,500 ltr/min for the HGA.ES-2C150); a chiller maintaining cooling water at 8–10 °C with minimum 30 ltr/min flow; a Mold Temperature Controller where PP resin or strict cavity temperature control is required; and a Bottle Visual Inspection Machine for 100% container quality verification on food and pharmaceutical lines. All four products are available from us with validated compatibility to the blow molding machine — reducing commissioning time and providing unified technical support.

Q5. How should a procurement manager evaluate and compare different fully automatic blow moulding machine models when sourcing for a new wide-mouth food container production line?

Go beyond the headline output figure. The preform holder count (60 for this model) determines how long each preform spends in the oven relative to the machine's cycle rate — a number that directly affects temperature uniformity and rejection rate for wide-neck formats. Ask for the actual operating power draw versus rated maximum: for the HGA.ES-2C150 that ratio is 18 kW against 42.5 kW, a meaningful efficiency indicator. Request wall thickness distribution data from a factory trial using a preform specification close to your own. Confirm that the blowing pressure specification covers your resin grade — PETG typically requires 30–35 kg/cm² while standard PET may need less. Finally, ask for a documented factory acceptance test before shipping: a reputable blow molding machine manufacturer should be willing to demonstrate specification compliance on your container design before the machine leaves the facility.

编辑:PXY