Automatic Hydraulic Press 30T
Engineered for Pure Pressure
- 0 - 30T pressure
- Fully automatic operation
- Programmable pressure & dwell time
- Software compatibility with PC
- Digital control panel
- Minimal operator intervention
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Automatic Hydraulic Lab Press for FTIR & XRF Pellet Preparation
The Automatic Benchtop Hydraulic Pellet Press from Imperial Instruments is a precision-engineered laboratory press designed for reliable FTIR and XRF sample preparation. This versatile pellet press converts powdered materials into uniform, high-density pellets and discs, ensuring consistent, reproducible analytical results.
Available in force capacities ranging from 2 tons up to 150 tons, this pellet press series supports everything from routine FTIR KBr pellet preparation to high-pressure XRF pelletizing for mineral, cement, metal oxide, and geological samples. Its compact benchtop design combined with fully automatic hydraulic operation makes it ideal for research labs, analytical laboratories, universities, and industrial QA/QC facilities.
CE compliant. Works with all Imperial die sets – circular, splitable, heated (up to 300 – 500 °C), and square.
Autotomatic Presses
Manual Press + Heatable Die Sets
Optimize cement production
CIP - Cold Isostatic Press
Optimize ore processing
Specification
Pressure range
0.01 -30 T
Pressure display accuracy
0.01 Tons
Display panel
5” touch screen panel
Metal button /key
Sliver-plated contacts, with a service life of over 100,000 cycles.
Pressure safety
The device has automatic pressure overload protection.
Limited switch
The oil cylinder automatically releases pressure when it reaches the limit height.
Cylinder stroke
40mm (T)
Curve graph
Can display each operation curve graph and support U disk download Excel file
Program control
Up to 18 segments of program control
Speed adjustment
Pressure increasing speed is adjustable
Remote control
A computer is required to analyze, compare, modify, and export data.
Working space
140×160mm (M×N)
Voltage
110V / 220V
Power
500W
Accessories
Evacuable Pellet Die Set
Standard (Circular)
Designed for producing high-quality pressed pellets for laboratory analysis, including FTIR (such as KBr pellets) and XRF applications. With precision-engineered components and mirror-polished pressing surfaces, they ensure smooth, uniform pellets and reliable analytical results. Available in diameters from 2 mm to 150 mm, these die sets offer versatility and consistent performance for a wide range of pellet-making requirements.
Heatable Pellet Die Set
300° – 500° Options with Temperature Controllers
Designed for pellet preparation under controlled heating conditions, these heatable pellet die sets are ideal for applications where temperature plays a critical role in pellet quality. Supplied with an integrated temperature controller, they enable precise heating during pressing to enhance pellet uniformity and bonding. Precision-engineered with polished pressing surfaces, they produce smooth, consistent pellets for FTIR, XRF, and other analytical applications, and are available in a wide range of sizes to suit diverse laboratory requirements.
Square Pellet Pressing Die
Designed for producing square/rectangle-shaped pressed pellets for laboratory analysis, these square pellet die sets are ideal for FTIR, XRF, and other material testing applications where non-circular pellets are required. Precision-engineered with smooth, polished pressing surfaces, they ensure uniform pellet formation and reliable results, and are available in a range of square sizes to meet diverse laboratory needs.
Split Pressing Pellet Die
Easy Pellet Removal
Designed for easy pellet removal and challenging sample materials, these splittable pellet die sets feature a die body that separates into multiple segments, allowing pellets to be extracted without damage. Ideal for brittle, sticky, or difficult-to-release samples, they are precision-engineered with smooth pressing surfaces to ensure uniform pellet formation and reliable results for FTIR, XRF, and other analytical applications.
Ring Pressing Pellet Die
For XRF
Designed for XRF sample preparation where ring-shaped pellets are required, these ring die sets produce uniform, reproducible ring pellets that fit XRF spectrometer holders and automated systems. Engineered with precision tolerances and smooth pressing surfaces, they ensure consistent compaction, optimal density, and reliable analytical results for X-ray fluorescence (XRF) applications. Ideal for high-throughput labs and routine XRF workflows, these die sets support accurate elemental analysis and improved signal stability by forming perfectly defined ring samples for mineral, soil, cement, environmental, and industrial material testing
Boric Acid XRF Pellet Pressing Die Set
For XRF
Designed for XRF sample preparation using boric acid as a binder/matrix, this boric acid XRF pellet pressing die set produces high-quality pressed pellets for accurate X-ray fluorescence analysis. In many XRF workflows, boric acid powder is mixed with finely ground sample to act as a binding and support matrix that improves pellet strength and homogeneity without interfering with elemental detection. Precision-engineered with polished pressing surfaces, the die set ensures uniform pellet compaction and reliable analytical results, making it ideal for routine XRF testing in geology, environmental, cement, soil, and industrial material applications.
Precision Power in a Portable Package
A compact, benchtop hydraulic press engineered for preparing high-quality pellets from powders, especially for KBr-based pellets used in FTIR or solid-sample prep for XRF, XRD, or other analyses. This press delivers up to 2 tons of pressure, producing consistent 7 mm-diameter pellets via a 7 mm die assembly. The integrated pressure gauge ensures reproducible pressure for repeatable results, while the small footprint and lightweight design make it ideal for cramped labs or glove-box use. With simple operation and low maintenance, this press is a cost-effective solution when you need reliable pelletization for quantitative and qualitative analytical work.