Products Laboratory Hydraulic Press Cold Isostatic Press Electric Split Lab Cold Isostatic Pressing CIP Machine
Electric Split Lab Cold Isostatic Pressing CIP Machine

Cold Isostatic Press

Electric Split Lab Cold Isostatic Pressing CIP Machine

Item Number : PCESI

Price varies based on specs and customizations


Pressure Range
0-200T
Isostatic Pressure
0-300MPa
Isostatic Pressure Chamber
Φ50×150mm~Φ90×150mm
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KINTEK Lab Electric Cold Isostatic Press: Precision Sample Preparation

Elevate your laboratory research with KINTEK's Lab Electric Cold Isostatic Presses. Designed for precision, efficiency, and versatility, our presses are essential tools for material scientists, pharmaceutical developers, and engineers in ceramics and electronics. Achieve superior sample density and uniformity for consistent, reliable results.

Explore our range of models, engineered to meet diverse pressure and capacity requirements:

Electric Split Lab Isostatic Press 65T
Electric Split Lab Isostatic Press 65T
Electric Split Lab Isostatic Press 100T
Electric Split Lab Isostatic Press 100T
Electric Split Lab Isostatic Press 150T
Electric Split Lab Isostatic Press 150T
Electric Split Lab Isostatic Press 200T
Electric Split Lab Isostatic Press 200T

Unlock Superior Material Properties with Isostatic Pressing

Our Lab Electric Isostatic Presses apply high, uniform pressure to your samples from all directions. This process significantly increases sample density, ensures consistent material properties, and allows you to create precisely shaped samples for your research and development needs. For applications demanding even higher pressures (over 200T), our split structure models provide exceptional performance.

Ready to improve your sample preparation? Discuss your application with our specialists today!

Key Features & Benefits for Your Laboratory

  • Optimal Sample Quality: Achieves higher and more even pressure around samples, leading to increased density and uniformity compared to uniaxial pressing.
  • Compact & Versatile: Small footprint and light weight make it easy to carry, move, and ideal for use within vacuum glove boxes for controlled environment processing.
  • Precise Control: Features a high-precision digital pressure gauge and programmable pressure cycles. The hydraulic system automatically maintains set pressure, restarting if a drop is detected.
  • User-Friendly Interface: A clear 7-inch LCD screen allows for intuitive operation, parameter setting (pressure, time, demolding, sample size), and real-time monitoring.
  • Robust & Reliable Design:
    • Durable construction with chrome-plated cylinders, high-quality seals to prevent oil leakage, and molds made from Japanese high-speed steel for longevity.
    • One-piece main board structure integrates the oil pool, main board, and oil cylinder, minimizing seal connections.
    • External oil pool with filtration for easy maintenance.
  • Customizable: We can tailor solutions to meet your specific research requirements. Need a specific pressure range or chamber size? Let us know!
  • High-Pressure Capability: Split structure models are available, capable of providing pressures exceeding 200T for demanding applications.

Wide Range of Applications

KINTEK's Lab Electric Cold Isostatic Presses are indispensable in various fields, including:

  • Materials Science Research (e.g., ceramics, metals, polymers)
  • Pharmaceutical Development (e.g., tablet pressing, drug formulation)
  • Catalytic Reaction Studies
  • Electronics Industry (e.g., component manufacturing)
  • And any application requiring high-density, uniformly compacted samples.

Intuitive Operation Interface

Our presses are equipped with a user-friendly 7-inch LCD touchscreen, simplifying operation and programming:

Setting interface

  • Standard Interface: Easily set parameters like pressure, demolding, time, and sample size.
  • Programmable Pressurization: Configure multi-stage pressurization programs for complex sample preparation.
  • Real-time Monitoring: Switch between list and curve displays to monitor the pressing process.

Operation interface

This intuitive system ensures efficient and repeatable sample preparation, suitable for both routine tasks and advanced research in high-end laboratories.

Technical Specifications

Instrument model PCESI-65T PCESI-100T PCESI-150T PCESI-200T
Pressure Range 0-65T 0-100T 0-150T 0-200T
Piston diameter 160mm (d) in chrome plated oil cylinder 200mm (d) in chrome plated oil cylinder 200mm (d) in chrome plated oil cylinder 290mm (d) in chrome plated oil cylinder
Pressurization process Program pressurization - Program holding -Timed pressure relief
Pressure conversion The program automatically converts the pressure borne by the sample
Display 7-inch LCD screen
Equipment protection Steel plate protection with organic glass door
lsostatic pressure 0-300MPa 0-300MPa 0-300MPa 0-300MPa
lsostatic pressure chamber Φ50×150mm(M×N) Φ60×150mm(M×N) Φ80×150mm(M×N) Φ90×150mm(M×N)
Cylinder stroke (T) 50mm  50mm  50mm 50mm
Space size 220×400mm(M×N) 260×400mm(M×N) 280×400mm(M×N) 290×420mm(M×N)
External dimensions 700×450×1050mm(L×W×H) 850×500×1100mm(L×W×H) 950×550×1150mm(L×W×H) 1000×650×1200mm(L×W×H)
Equipment power supply 1500W (220V/110V can be customized)
Equipment weight 350kg 580kg 680kg 980kg
Diagram of hydraulic powder press size
Diagram of hydraulic powder press size

Detailed Operating Guidance

A brief overview of the operational steps is visualized below:

1.Set parameters in the manual interface.

1. Set parameters (pressure, time, sample size) in the manual interface.

3. Start pressurization.

2. Initiate pressurization via the manual or programmed mode.

10. Take out the sample.

3. Once complete, demold and retrieve your precisely pressed sample.

Partner with KINTEK for Your Lab Press Needs

KINTEK is committed to providing high-quality, reliable lab press machines that empower your research. Whether you need an automatic lab press, a lab isostatic press, or a heated lab press, we have the expertise to support your laboratory's requirements.

Have questions or need a customized solution? Don't hesitate to contact us using the form below. Our team is ready to assist you!

Full range of types of laboratory press molds

We have a full range of molds for you to choose from, and the molds fit the body perfectly.

If you need molds with special shapes, we can also customize them for you.

laboratory press mold

Click to see all press molds.

The Right Lab Press Awaits

The right lab press for your needs awaits

See All Lab Press Types.

Expert Advice? We're Here. Get in Touch!

FAQ

What Is The Principle Of Cold Isostatic Press (CIP)?

Cold Isostatic Pressing (CIP) applies a uniform, equal force over the entire product using fluid (such as water or oil) or gas (typically argon) pressure. This ensures maximum density uniformity by modifying materials uniformly in all directions, regardless of the product's shape or size. The process can be performed at both high temperatures and room temperature, providing consistent density and eliminating constraints of unidirectional compaction in rigid dies.

What Is The Principle Of A Laboratory Isostatic Press?

A laboratory isostatic press applies uniform, equal force over the entire product using fluid (like water or oil) or gas (typically argon) pressure. This ensures uniform modification of materials in all directions, achieving maximum density uniformity. The process can be performed at both high temperatures and room temperature, and it eliminates the constraints of unidirectional compaction found in rigid dies.

What Is An Isostatic Press?

An isostatic press is a device that applies uniform pressure from all directions to a powdered material enclosed in a flexible mold or container, using a liquid or gas medium. This process enhances the material's density, strength, and dimensional accuracy.

What Are The Advantages Of Cold Isostatic Press (CIP)?

Cold Isostatic Pressing offers several advantages, including high green strength (ability to withstand manipulation before hardening), uniform density and strength, and versatility in producing difficult shapes and large-sized materials. It also improves corrosion resistance and enhances mechanical properties such as ductility and strength. CIP can produce components with longer length-to-diameter ratios and uniform density along their entire length, with higher densities and green strengths (up to 10 times greater) compared to die-compacted counterparts. Additionally, complex undercut and threaded shapes can be produced using CIP.

What Are The Advantages Of Using A Laboratory Isostatic Press?

The advantages include the ability to create parts with high density and complex shapes, uniform density, high green strength, and freedom from compact defects. It is particularly useful for brittle or fine powders and can produce difficult shapes and large-sized materials. Additionally, it improves corrosion resistance and enhances mechanical properties like ductility and strength.

What Are The Main Types Of Isostatic Presses?

The main types of isostatic presses are Cold Isostatic Pressing (CIP), Warm Isostatic Pressing (WIP), and Hot Isostatic Pressing (HIP). CIP operates at room temperature, WIP at moderate temperatures (50-100°C), and HIP at high temperatures.

What Are The Applications Of Cold Isostatic Press (CIP)?

CIP is commonly used for consolidating ceramic powders, graphite, refractory materials, and electrical insulators. It is expanding into new applications like pressing sputtering targets and coatings for engine valve parts. Examples include preforming large isolators from ceramic powders or making melting pots from graphite powders.

What Are The Common Applications Of A Laboratory Isostatic Press?

Common applications include producing balls, tubes, rods, nozzles, fuse tubes, grinding wheels, battery electrolytes, spark plug insulators, sewer pipes, crucibles, oxygen sensors, and rocket nose cones. It is also used for consolidating ceramic powders, graphite, refractory materials, and electrical insulators, as well as pressing sputtering targets and coatings for engine valve parts.

How Does An Isostatic Press Work?

An isostatic press works by enclosing powdered material in a flexible mold and applying uniform pressure from all directions using a liquid (like water or oil) or gas (like argon) medium. This eliminates voids and air pockets, resulting in products with high density and uniform strength.

What Types Of Cold Isostatic Press (CIP) Machines Are Available?

There are several types of CIP machines, including Manual Cold Isostatic Pressing CIP Machines, Electric Lab Cold Isostatic Press CIP Machines, Electric Split Lab Cold Isostatic Pressing CIP Machines, and Automatic Lab Cold Isostatic Pressing CIP Machines. These machines vary in operation (manual, electric, automatic) and design (split or standard), catering to different lab needs for precision, efficiency, and sample quality.

What Types Of Laboratory Isostatic Presses Are Available?

Types include Lab Isostatic Pressing Molds for Isostatic Molding, Electric Lab Cold Isostatic Press (CIP) Machines, Warm Isostatic Presses for solid-state battery research, Automatic Lab Cold Isostatic Pressing (CIP) Machines, and Electric Split Lab Cold Isostatic Pressing (CIP) Machines. These cater to various research and industrial needs with features like uniform compaction and customizable models.

What Are The Advantages Of Using An Isostatic Press?

Isostatic pressing offers advantages such as the ability to produce parts with high density, complex shapes, and uniform density. It provides high green strength, improved corrosion resistance, and enhanced mechanical properties like ductility and strength. It is especially useful for brittle or fine powders.

How Does Cold Isostatic Press (CIP) Compare To Uniaxial Die Compaction?

CIP can produce components and preforms of much greater size and complexity than uniaxial die compaction. It allows for components with longer length-to-diameter ratios and uniform density along their entire length. CIP compacts have higher densities and green strengths (up to 10 times greater) compared to die-compacted counterparts. Additionally, complex undercut and threaded shapes can be produced using CIP, which are difficult or impossible to achieve with uniaxial die compaction.

How Does A Laboratory Isostatic Press Ensure Uniform Density?

The press applies uniform pressure equally across the entire product surface, regardless of its geometric complexity or size. This uniform pressure distribution ensures consistent density throughout the material, which is crucial for achieving high-quality, defect-free components.

What Industries Use Isostatic Presses?

Isostatic presses are used in various industries including pharmaceuticals, explosives manufacturing, chemicals, food production, and nuclear fuel and ferrites production. They are also used for consolidating ceramic powders, graphite, refractory materials, and electrical insulators.

What Are The Applications Of Cold Isostatic Pressing (CIP)?

Cold Isostatic Pressing (CIP) is commonly used for consolidating ceramic powders, graphite, refractory materials, and electrical insulators. It is also expanding into new applications like pressing sputtering targets and coatings for engine valve parts.

What Is The Difference Between CIP, WIP, And HIP?

CIP (Cold Isostatic Pressing) operates at room temperature, WIP (Warm Isostatic Pressing) at moderate temperatures (50-100°C), and HIP (Hot Isostatic Pressing) at high temperatures. Each type is suited for different materials and applications, with HIP often used for densifying materials and eliminating porosity.

Why Is Uniform Density Important In Isostatic Pressing?

Uniform density is important because it ensures consistent material properties throughout the product, such as strength and durability. This uniformity is critical for applications requiring high performance and reliability, such as in aerospace or medical devices.
View more faqs for this product

4.8

out of

5

Incredible precision and speed! This machine exceeded all expectations. A game-changer for our lab.

Elara Voss

4.7

out of

5

Top-notch quality and durability. Worth every penny for the advanced technology it offers.

Rafael Mendoza

4.9

out of

5

Fast delivery and flawless performance. This CIP machine is a must-have for any serious lab.

Anika Patel

4.8

out of

5

The split design makes maintenance a breeze. Highly efficient and reliable.

Lars Bjornsson

4.9

out of

5

Perfect for high-pressure applications. The electric operation is smooth and quiet.

Yuki Tanaka

4.7

out of

5

Great value for money. The build quality is outstanding and it’s incredibly user-friendly.

Mateo Silva

4.9

out of

5

Impressive technological advancement. This machine has revolutionized our workflow.

Nia Okoro

4.8

out of

5

Reliable and precise. The cold isostatic pressing is consistently perfect every time.

Dmitri Volkov

4.7

out of

5

Easy to set up and operate. The results are always uniform and high-quality.

Sofia Costa

4.9

out of

5

Exceptional performance and durability. A fantastic investment for any research facility.

Hiroshi Nakamura

4.8

out of

5

The electric operation is a huge plus. Saves time and energy without compromising on power.

Aisha Al-Farsi

4.7

out of

5

Superb craftsmanship. This machine handles even the most demanding tasks with ease.

Elias Schmidt

4.9

out of

5

Fast, efficient, and reliable. Perfect for high-volume labs needing consistent results.

Leila Chen

4.8

out of

5

The split design is genius. Maintenance is quick and hassle-free.

Oscar Lindqvist

4.7

out of

5

Excellent value for the price. The technology is cutting-edge and the build is solid.

Priya Kapoor

4.9

out of

5

Outstanding machine! Delivered quickly and performs beyond expectations. Highly recommend.

Luca Rossi

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Electric Split Lab Cold Isostatic Pressing CIP Machine

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Cold Isostatic Press

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