EP-HGA.ES-6C114 Lotion Bottle Toner Bottle Blow Molding Machine
The EP-HGA.ES-6C114 Daily Chemical Bottle Blow Molder is a high-speed 6-cavity machine designed for efficient production of medium-sized PET/PETG cosmetic bottles. Featuring international brand servo motors and control systems, it ensures stability and energy savings. This model handles containers up to 1500ml volume with a max diameter of 94mm and height of 290/330mm, achieving a theoretical output of 5400 bottles per hour. Key specifications include a 128mm clamping stroke, 328mm mold-open distance, and 96 preform holders. It requires 72kW max heating power and operates at 7kg/cm² pressure. With dimensions of 5300×2150×2250mm and a weight of 6500kg, it is ideal for high-volume manufacturing of complex daily chemical packaging.
EP-HGA.ES-6C114 Daily Chemical Bottle Blow Molder
The EP-HGA.ES-6C114 is a 6-cavity blow molding machine engineered for daily chemical and cosmetic bottle manufacturers who need to push output significantly beyond what standard 4-cavity platforms deliver. Powered by internationally sourced servo motors, precision reducers, and an integrated electronic control system, this machine targets a theoretical throughput of 5400 bottles per hour — making it one of the higher-output bottle blow molding machines in this body-diameter class. It processes PET and PETG materials across a wide range of container shapes, including the asymmetric and special-profile bottles that premium cosmetics brands increasingly specify.
Designed around the two-step blow molding process, the ES-6C114 separates preform conditioning from the blowing stage, which allows each zone to be tuned independently for maximum efficiency. The result is consistent wall distribution, high optical clarity, and reliable dimensional repeatability across all six cavities — shift after shift, without requiring constant process intervention from the operator.
Technical Parameters of Blow Molding Machine
The specifications below are factory-verified for the ES-6C114 pet blow molding machine at rated operating conditions.
| Category | Blow Molding Machine Parameter | इकाई | कीमत |
|---|---|---|---|
| Molding System | Clamping Stroke | मिमी | 128 |
| Mold-Open Distance | मिमी | 328 | |
| Mold-Close Distance | मिमी | 200 | |
| Stretching Stroke | मिमी | 350/450 | |
| Neck Mold-Open Distance | मिमी | 60 | |
| Bottle Mold-Close Distance | मिमी | 114 | |
| Preform Holder / Cavities | — | 96 / 6 | |
| Container Specs | अधिकतम कंटेनर वॉल्यूम | एमएल | 1500 |
| Max. Neck Diameter | मिमी | 68 | |
| Max. Container Diameter | मिमी | 94 | |
| Max. Container Height | मिमी | 250/330 | |
| Output | Theoretical Output | bph | 5400 |
| Electrical System | Max. Heating Power | किलोवाट | 72 |
| Electrical Heating Power | किलोवाट | 32 | |
| Air System | Operating Pressure | kg/cm² | 7 |
| Low Pressure Air Consumption | ltr/min | 1000 | |
| Blowing Pressure / High Pressure Air Consumption | kg/cm² / ltr/min | 35 / 9500 | |
| Cooling Water | Operating Pressure | kg/cm² | 5–6 |
| Temperature | डिग्री सेल्सियस | 8–12 | |
| Flow Rate | ltr/min | 40 | |
| Machine Dimensions | आकार (लंबाई × चौड़ाई × ऊंचाई) | मिमी | 5300 × 2150 × 2250 |
| मशीन वजन | kg | 6500 |
The Case for 6-Cavity Production in High-Volume Daily Chemical Lines
When a packaging line needs to sustain output above 4000 bottles per hour consistently across multiple shifts, the jump from four to six cavities is often the most cost-effective path forward. The ES-6C114 achieves 5400 bph theoretical output while keeping the machine footprint at 5300 × 2150 × 2250 mm — more compact than many buyers expect from a 6-cavity two stage blow molding machine. This matters in real factories where floor space competes directly with other line equipment and warehouse functions.
The dual stretching stroke option — 350 mm or 450 mm — reflects a practical engineering decision. Shorter containers like standard shampoo and conditioner bottles run efficiently at 350 mm; taller dispenser formats that approach the 330 mm height limit benefit from the extended 450 mm stroke, which completes the axial stretch without rushing the rod deceleration phase. Getting this transition timing right is what separates a well-tuned automatic pet blowing machine from one that produces micro-tears at the bottom dome of tall bottles.
The 1500 ml container capacity, 94 mm body diameter, and 68 mm neck diameter specifications place the ES-6C114 squarely in the mainstream of daily chemical and cosmetics container sizes — covering shampoo, conditioner, lotion, liquid soap, and comparable categories across markets in Colombia, Brazil, Australia, and Europe. The 6-cavity layout distributes the clamping force demands across a wider platen area than a 4-cavity unit, which tends to produce more consistent flash control at the parting line for this container body diameter range.

Core Advantages of Blow Molding Machine
Higher Output, Same Diameter Range
At 5400 bph for containers up to 94 mm in body diameter, the ES-6C114 produces roughly 35% more output than a comparable 4-cavity model without requiring a switch to a physically larger machine. For manufacturers running single-product high-volume SKUs — a common scenario in household cleaning and mass-market cosmetics — this output uplift directly improves the return on capital invested in tooling, utilities, and labor per thousand bottles produced.
Servo-Driven Accuracy Across All Six Cavities
Servo motors govern the stretching rod assembly and clamping mechanism, maintaining sub-millimeter positional repeatability even as cycle rates climb toward maximum output. In a 6-cavity bottle blow molding machine, consistency across every cavity is not just a quality issue — it is a reject-rate issue. A single off-spec cavity running at 5400 bph generates a significant volume of waste per shift. The servo system's positional precision is the primary guard against this.
Dual Stretch Stroke Configuration
The selectable 350/450 mm stretching stroke range gives this stretch blow molding machine the flexibility to handle both standard and tall container profiles from the same platform. Most production lines carry at least two bottle height variants for the same product category. Supporting both from a single blow molding machine rather than maintaining two separate units reduces capital cost, training requirements, and spare parts inventory.
International-Grade Component Sourcing
Servo motors, gear reducers, electrical components, and control system hardware are all sourced from internationally recognized suppliers. This is not simply a marketing point — it directly affects spare part procurement lead times, technician familiarity, and the long-term availability of replacement components. For customers in Colombia, the Netherlands, South Korea, and Canada operating production environments where downtime has a material cost, known-brand components are a form of operational insurance.
Machine Structure & Process Control
The frame of this injection blow molding machine is built from heavy welded steel sections, precision-machined on CNC equipment to maintain platen parallelism within the tight tolerances that 6-cavity clamping requires. When clamping loads are distributed unevenly — typically the result of platen flex in lighter frames — the result is differential flash at the parting line between cavities. The ES-6C114 bottle blow molding machine frame eliminates this failure mode at the structural level rather than attempting to compensate through process adjustment.
The oven heating section uses individually addressable infrared lamp zones, allowing temperature profiling along the preform body axis. This independent zone control matters most when processing preforms with varying wall thickness profiles — as is common with cosmetic bottle preforms designed for asymmetric container shapes. The forced-air cooling system within the oven protects the neck finish from crystallization-induced whitening, which would otherwise be visible in the finished container and unacceptable for any personal care product.
Process data — zone temperatures, cycle times, output count, blowing pressure curves, and fault history — are logged continuously by the PLC and accessible via the touchscreen interface. Named recipes allow fast changeover between established product molds. For facilities running ISO quality systems or GMP protocols, the data log provides the traceability documentation required for internal and third-party audits.
Mold Engineering

Preform Injection Mold
The die-lip is engineered as a two-element assembly that locks the preform neck into precise axial alignment during formation. This concentricity at the injection stage is the foundation for uniform wall distribution in the blown container — no downstream process adjustment can fully correct an off-axis preform once it enters the oven. Cooling channels are routed close to the preform surface and optimized for flow velocity, compressing the thermal cycle and enabling the faster production cadence that a 6-cavity platform demands.
Forming surfaces are produced from imported 2316 die steel, selected for its rust-resistant properties and stable hardness after heat treatment — critical for long tooling life in the humid, thermally cycling environment of the injection station. Core and cavity structural plates are 420 stainless steel, which resists the corrosion that condenses on cooled mold surfaces. The standardized component design means individual worn parts can be replaced without pulling the full mold, and a single base mold can be configured to produce preforms for several neck-finish variants.

Blowing Mold
Each blowing mold starts as a 3D CAD model, with draft angles, parting line geometry, and material distribution validated digitally before any machining begins. This front-loaded validation process reduces the physical sampling iterations needed to qualify a new product, which compresses the time from design approval to first commercial production — a concrete advantage for cosmetics and personal care brands operating on seasonal product launch calendars.
All mold components are machined from premium tool steel on CNC milling and EDM equipment, achieving surface finish and dimensional tolerances that determine both container clarity and mold longevity. Cooling circuits are precision-bored for maximum thermal contact with the cavity surface, cutting cycle time and reducing the incidence of hot-spot-related deformation in container shoulders and bases. Standard bottle designs are available from an existing library, or fully custom geometries can be developed to match a brand's packaging specification.
How to Select the Right Blow Molding Machine Configuration
The fundamental question when comparing 4-cavity and 6-cavity blow molding machines is whether the incremental output gain justifies the difference in capital cost, air supply demand, and maintenance complexity. For a manufacturer running a single bottle SKU at volumes above roughly 3500 bph effective output, a 6-cavity platform like the ES-6C114 typically delivers a lower cost per thousand bottles once the higher machine utilization rate is factored in. For producers who frequently switch between short production runs of different bottle sizes, a 4-cavity machine with faster tooling changeover may be the better operational fit.
Material and container geometry should anchor the decision equally. This machine is optimized for PET and PETG in the daily chemical and cosmetics container range, where containers rarely exceed 94 mm in body diameter. Producers handling containers wider than this regularly — such as large institutional cleaning product vessels — should evaluate the ES-4C150 Blow Molding Machine's 130 mm capacity instead. If your production roadmap includes PP or HDPE containers, an extrusion blow molding machine should be evaluated in parallel, since stretch blow technology is optimized for PET-family resins.
Air supply capacity deserves specific attention with a 6-cavity machine. The ES-6C114 requires 9500 ltr/min of high-pressure air at 35 kg/cm² — roughly double the air consumption of a 4-cavity unit at equivalent operating pressure. Confirming that your compressed air infrastructure can sustain this at full output before commissioning avoids the common problem of a new machine running below rated speed due to an undersized compressor. Selecting a matched oil-free air compressor from the same supplier simplifies this sizing exercise considerably.
अनुप्रयोग परिदृश्य
High-Volume Shampoo & Conditioner
Mass-market and salon-grade shampoo, conditioner, and hair treatment containers in PET where output volume and consistent label surface quality are the primary requirements. The 5400 bph capacity aligns this auto pet blowing machine directly with the throughput demand of major personal care brand filling lines.
Cosmetics & Skincare
Lotion, serum, toner, and facial wash containers in PETG where high clarity and dimensional precision matter as much as output rate. The servo stretching system produces the uniform biaxial orientation needed for the optical transparency that premium cosmetics packaging demands across retail shelf environments globally.
Liquid Soap & Hand Sanitizer
Standard pump-top and flip-cap containers for liquid soap, hand sanitizer, and hand cream — a high-turnover category across retail, food service, and healthcare channels in Colombia, Brazil, Europe, and Australia. The bottle blow molding platform sustains the continuous output these demand without requiring extended warm-up time between production batches.
दवा की बोतलें
Oral liquid solutions, topical product containers, and supplement bottles where dimensional repeatability and process documentation meet GMP requirements. The cycle-by-cycle data logging built into the control system provides the process traceability records that pharmaceutical packaging audits require.
Baby & Sensitive Skin Products
Baby wash, baby lotion, and gentle skincare containers produced in food-contact-grade PET under clean process conditions. The enclosed oven section and servo-controlled blowing stage minimize contamination exposure, meeting the hygienic production standards that baby product categories require in markets with stringent regulatory frameworks.
Industry Position & Client Track Record
With more than two decades of engineering development behind us, our team has built a deep and specific understanding of what high-output blow molding machines require to perform reliably in demanding production environments. We hold numerous national patents covering core innovations in servo clamping mechanics, multi-zone oven control, and mold cooling circuit design — technologies that flow directly into every machine we manufacture and ship.
We have developed specialized blow molding machines for packaging materials including PET, PETG, PC, PCTG, and PP across cosmetics, water, oil, beverages, food packaging, pharmaceuticals, and baby products. Our particular strength is in the high-end cosmetics, food, and pharmaceutical sectors. Our clients include well-known brands such as Yibao, Haitian, Luhua, Walch, Blue Moon, Proya, Libai, Estée Lauder, Walmart, Da Senlin, and Shining Eye Drops.
Partner Brands:

हमारे बारे में
We are a dedicated blow molding machine manufacturer operating a fully equipped production facility with CNC machining centers, precision assembly workshops, and a comprehensive quality inspection laboratory. Every machine is fully assembled, run at rated output, and cleared by our quality team before shipment. Our engineering staff covers mechanical design, servo-electrical systems, and process engineering — disciplines that need to collaborate tightly to produce a fully automatic blow moulding machine that performs as specified in the field rather than just on a data sheet.
We maintain active customer relationships across more than 40 countries, with well-established support networks in Colombia, Brazil, Australia, the United Kingdom, the Netherlands, South Korea, and Canada. Our aftersales services include bonded spare parts warehousing, remote diagnostic support via standard industrial communication interfaces, and a network of trained field engineers who can respond to service calls without requiring intercontinental travel for routine issues. When you invest in a pet blowing machine from our range, you are acquiring a production asset with a documented support infrastructure behind it — not just a machine.
कार्यशाला




System-Compatible Auxiliary Equipment
Running a 6-cavity blow molding machine at full rated output places proportionally higher demands on every supporting system. The following auxiliary units are specified and supplied to match the ES-6C114's operating requirements from the start:

Oil-Free Air Compressor
High-pressure oil-free air supply systems sized specifically for 6-cavity plastic blow molding machines. At 9500 ltr/min high-pressure demand, matching the compressor to the machine is not optional — under-supply at the blowing station produces soft containers and dimensional rejects. Oil-free design ensures blowing air meets food-contact and pharmaceutical contamination standards.

मोल्ड तापमान नियंत्रक
Precision temperature control units stabilize mold surface temperature within ±1°C during extended production runs. For a 6-cavity injection blow molding machine operating at high cycle rates, mold temperature stability has a direct impact on container clarity, cycle time consistency, and the incidence of stress whitening in the container wall.

Bottle Visual Inspection Machine
Camera-based automated inspection stations detect dimensional defects, surface contamination, and wall anomalies at full line speed. At 5400 bph output, even a 0.5% defect rate produces a meaningful volume of off-specification containers per shift. Inline inspection catches these before they reach the filling station, protecting downstream process efficiency.

Chiller & Auxiliary Systems
Industrial chiller units, dehumidifying dryers, and complete auxiliary machinery packages sized for the ES-6C114 bottle blow molding machine's cooling water flow rate of 40 ltr/min at 5–6 kg/cm². Single-supplier procurement of the core blow molding machine and its auxiliary systems simplifies commissioning and establishes a unified technical support relationship.
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