ZQ80 IBM Machine: Specs, Output & Buyer’s Guide

ZQ Series Deep Dive — Mid-Range

ZQ80 IBM Machine: Everything You Need to Know Before Buying a Mid-Range IBM Press

A complete technical and commercial guide to the ZQ80 — the 800 kN mid-range IBM machine in the ZQ Series — covering specifications, cavitation capacity, target applications, and how it fits between the ZQ60 and ZQ110 in the range.

800 kN

Clamping Force

55 mm

Screw Diameter

466 g

Max Shot Weight

20

Max Cavities @ 10 ml

4 s

Dry Cycle Time

55 kW

Total Power

The ZQ80 occupies the mid-range position in the ZQ Series — above the ZQ60 in clamping force, shot weight, and maximum cavitation, and below the ZQ110 in scale and total power. It is the natural choice for converters whose production requirements have outgrown the ZQ60’s 600 kN clamp but who do not yet need the full 1,100 kN capacity of the ZQ110. For many pharmaceutical, cosmetic, and daily-chemical packaging operations, the ZQ80’s combination of 800 kN clamping force, 466 g maximum shot weight, and up to 20 cavities at 10 ml makes it the highest-output single IBM press a mid-scale converter can operate without stepping up to large-format machine infrastructure.

This guide covers the ZQ80’s full technical specification, cavitation reference data, target applications, and how it compares to adjacent models — to give buyers the information they need to decide whether the ZQ80 or one of its neighbours is the right press for their line.

ZQ80 Full Technical Specification

Parameter Unit ZQ80 Value
Screw Diameter mm 55
Screw L/D Ratio 22:1
Max Shot Weight g 466
Heating Power kW 12.5
Barrel Zones 3+N
Injection Clamping Force kN 800
Blow Clamping Force kN 120
Max Platen Size (L×W) mm 680 × 460
Max Bottle Diameter mm 160
Max Bottle Height mm 300
Dry Cycle s 4
Motor Power kW 37
Total Installed Power kW 55
Max Cavities @ 10 ml 20
Machine Footprint (L×W×H) m 4.5 × 1.6 × 2.0

ZQ80 IBM Machine

Who Is the ZQ80 Built For?

The ZQ80’s specification profile fits a specific category of IBM converter: one who has moved past the entry-level output of a ZQ60 but is not yet running the kind of high-cavitation, 24/7 production volumes that justify a ZQ110 or ZQ135. In practical terms, this means:

  • Mid-scale pharmaceutical contract packers producing 50 ml to 500 ml HDPE and PP bottles for solid-dose and liquid-dose pharmaceutical products. The ZQ80’s 800 kN clamp supports 10–14 cavities in the 50–100 ml format range, delivering 6,000–9,000 bottles/hr — the output target for a mid-scale pharma converter running one or two filling lines.
  • Personal care and cosmetics producers running 100–500 ml lotion, shampoo, and body wash bottles with pump dispensers. The ZQ80’s 680 × 460 mm platen accommodates the wider mold footprints that 250–500 ml bottles require, while the 466 g shot weight handles the heavier preforms that larger containers need.
  • Daily-chemical bottle manufacturers supplying concentrated cleaner, fabric softener, and dishwasher product containers in 200–500 ml HDPE. The ZQ80’s 800 kN clamp force and wider platen allow up to 12 cavities in 200 ml format — producing over 7,500 bottles per hour at full cavitation and 85% line efficiency.
  • Brazil and South Africa market installers — the ZQ Series installation map shows ZQ80 machines running at Zandei (Brazil, 120 ml personal care) and Formosa (South Africa, 300 ml and 1L household chemical). The ZQ80’s combination of output capacity, compact enough footprint for standard factory bays, and 55 kW total power draw suits markets where electrical infrastructure and floor space are both practical constraints.

ZQ80 vs ZQ60 vs ZQ110: Where It Sits in the Range

Parameter ZQ60 ZQ80 ★ ZQ110
Clamp Force 600 kN 800 kN 1,100 kN
Max Shot Weight 383 g 466 g 540 g
Max Cavities @ 10 ml 14 20 20
Total Power 37 kW 55 kW 80 kW
Footprint (L×W×H) 3.8×1.4×1.8 m 4.5×1.6×2.0 m 5.0×1.8×2.2 m

The ZQ80 delivers a meaningful step up from the ZQ60 in every output parameter — 33% more clamping force, 22% more shot weight, and 43% more cavities at 10 ml — without the full infrastructure commitment of the ZQ110. At 4.5 m floor length and 2.0 m height, it fits in most standard production bays without ceiling modification and is shipped and installed with the same logistics profile as a mid-range hydraulic machine in any export market.

The step from ZQ80 to ZQ110 adds 300 kN of clamping force and 74 g of shot weight at significantly higher power draw (80 kW vs 55 kW). If your bottle range extends above 500 ml or you require more than 20 cavities at small formats, the ZQ110 is the correct specification. If you are comfortably within the ZQ80’s output envelope, choosing it over the ZQ110 means lower machine cost, lower installation cost, lower energy bills, and a shorter commissioning timeline.

ZQ80 Cavitation and Output Reference by Bottle Volume

The following table provides practical cavitation and hourly output reference figures for the ZQ80 across the most common bottle volumes in pharmaceutical, cosmetic, and daily-chemical packaging. Output estimates are based on 4 s dry cycle and 85% line efficiency.

Bottle Volume Typical Cavities Est. Bottles/hr Typical Application
10 ml 20 ~15,300 Eye drops, sample vials, cosmetic miniatures
50 ml 12 ~9,180 Pharma nasal spray, cosmetic serum, condiment
120 ml 8 ~6,120 Personal care pump bottles, lotion, syrup
250 ml 6 ~4,590 Shampoo, conditioner, edible oil, household cleaner
500 ml 4 ~3,060 Laundry detergent, fabric softener, large lotion
1,000 ml 2 ~1,530 Household chemical, industrial cleaner, cooking oil

Estimates based on 4 s dry cycle at 85% line efficiency. Actual output depends on bottle geometry, wall thickness, resin, and cooling water temperature. Confirmed cavitation data available from our engineering team for your specific bottle drawing.

Real-World ZQ80 Installations and Mold Changeover Performance

ZQ80 machines are installed and running in production facilities across multiple continents. Two confirmed active installations on the ZQ Series map illustrate the model’s real-world application range:

  • Zandei, Brazil — 120 ml personal care bottles: A ZQ80 producing 120 ml personal care containers in the Brazilian market, likely in PP or HDPE for a branded personal care line. The ZQ80’s 800 kN clamp is well-matched to 120 ml multi-cavity production, and its compact footprint suits the smaller factory infrastructure typical of South American converter operations.
  • Formosa, South Africa — 300 ml and 1 L household chemical: A ZQ80 running both 300 ml and 1,000 ml household chemical containers for the South African market. This two-format application demonstrates the ZQ80’s mold flexibility — the same machine can switch between 6 cavities at 300 ml and 2 cavities at 1 L with a mold changeover, without needing a second machine or a machine upgrade.

Mold changeover time on the ZQ80 for an experienced operator is typically 45–75 minutes — covering mold removal, new mold installation, core rod alignment, and first-article production trial. The ZQ PLC system stores up to 20 independent recipe sets for different product configurations, so parameter recall at the start of a mold change is a single HMI operation rather than a manual re-entry of all process variables.

For converters running 5–15 active SKUs on a single ZQ80 — a common pattern in mid-scale personal care, pharmaceutical, and daily-chemical operations — the combination of fast mold changeover and recipe memory makes the ZQ80 practical as a flexible multi-product press rather than a dedicated single-product machine. This flexibility is a key commercial advantage for converters who cannot yet justify a dedicated machine for each SKU.

Resin Compatibility and Material-Specific Performance on the ZQ80

The ZQ80’s 55 mm screw with 22:1 L/D ratio and 12.5 kW heating power is sized for consistent melt quality across the full IBM resin spectrum. Each resin behaves differently in the injection and blow stages, and the ZQ80’s barrel zone configuration accommodates all of them without screw changes:

  • HDPE and PP (most common): The ZQ80’s 55 mm screw handles HDPE and PP melt volumes at 466 g maximum shot without pressure instability. Both resins run at the lower end of the barrel temperature range (180–230°C for HDPE, 190–240°C for PP), leaving thermal headroom in the heating zones for energy-efficient steady-state production. These resins are the dominant material for the ZQ80’s pharmaceutical and daily-chemical customer base.
  • PET and PC: Higher barrel temperatures (PET: 265–285°C; PC: 275–310°C) require the full heating capacity of the ZQ80’s 12.5 kW zone system. Both resins need thorough pre-drying before production — PET to below 0.005% moisture, PC to below 0.02% — and the ZQ80’s closed-loop temperature control maintains the tight barrel profile consistency that prevents IV degradation in PET and hydrolytic chain scission in PC.
  • PS: Crystal PS runs easily on the ZQ80 at mid-range barrel temperatures (185–225°C) with no pre-drying requirement. At high cavitation (16–20 cavities at 10 ml), PS on the ZQ80 delivers the highest output rates of any common IBM resin on this platform — making it commercially attractive for high-volume display container and promotional packaging operations.
  • LDPE: The 55 mm screw diameter on the ZQ80 runs LDPE at lower injection pressures than the 40 or 45 mm screws on ZQ40/ZQ60, providing finer control over shot weight at the 466 g upper limit. This is particularly useful when running wide-mouth LDPE squeeze bottles in the 250–500 ml range where precise shot weight control prevents wall variation at the bottle shoulder.

All resin changeovers on the ZQ80 follow the same documented purging procedure as other ZQ models — confirmed barrel purge with compatible transition resin, visual confirmation of purge colour, and first-article weight verification before resuming production. For customers switching between food-grade and non-food-grade resins on the same machine, we provide a dedicated documented changeover protocol as part of the machine documentation package.

ZQ80 — Mid-Range IBM Machine

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editor:WM