Kenrich Petrochemicals, Inc.'s Ken-React® series of titanate, zirconate and aluminate organometallics provide advancement-in-the-state-of-the-art opportunities for plastics processing and products.
Kenrich Petrochemicals, Inc.'s Ken-React® series of titanate, zirconate and aluminate organometallics provide advancement-in-the-state-of-the-art opportunities for rubber processing and products.
Kenrich Petrochemicals, Inc.'s Ken-React® series of titanate, zirconate and aluminate organometallics provide advancement-in-the-state-of-the-art opportunities for advanced composites that require adhesion to: glass, carbon, aramid fibers.
Kenrich Petrochemicals, Inc.'s Ken-React® series of titanate, zirconate and aluminate organometallics provide advancement-in-the-state-of-the-art opportunities for adhesive compositions that require adhesion to non-polar substrates such as olefins and fluoropolymers.
Kenrich Petrochemicals, Inc.'s Ken-React® series of titanate, zirconate and aluminate organometallics provide advancement-in-the-state-of-the-art opportunities for paint, functional coatings, inks, plastisols and powder coatings.
Kenrich Petrochemicals, Inc.'s Ken-React® series of titanate, zirconate and aluminate organometallics provide advancement-in-the-state-of-the-art opportunities for color concentrates.
Kenrich Petrochemicals, Inc.'s Ken-React® series of titanate, zirconate and aluminate organometallics provide advancement-in-the-state-of-the-art opportunities for cosmetics and sun blocks.
Kenrich Petrochemicals, Inc.'s Ken-React® series of titanate, zirconate and aluminate organometallics provide advancement-in-the-state-of-the-art opportunities for energetic compositions, solid propellants, pyrotechnics, and explosives.
Please see our Product List for a full description of available Kenrich products.
Ken-React® Titanates,
| Adhesion | Anti-Aging |
| Catalysis | Crosslink |
| Regeneration | Curative |
| Nano-Exfoliation | Flame Retardance |
| Hydrophobicity | Biodegration |
| Anti-Corrosion | Deagglomeration |
| Coupling | Polymer Flow |
| Flexibilization | Recyclability |
Understanding Electropneumatics: The Bridge Between Electrons and Air
To understand the basics, you have to look at the three main stages of a system:
At this level, the objective is to move from a theoretical circuit diagram to a functional machine. By mastering the (how the machine moves) and the Schematic Diagram (how the wires and pipes connect), you gain the ability to troubleshoot real-world industrial faults. Electropneumatics, Basic level (Workbook)
This is where the solenoid valve comes in. It is the most critical component, converting an electrical pulse into a mechanical shift that directs airflow to a cylinder. 2. Key Advantages
In basic setups, this is done via relay logic . Relays act as electrically operated switches, allowing a small current to control a larger one, or creating logical "AND/OR" conditions. It is the most critical component, converting an
Electropneumatics is the hybrid technology where electrical control systems meet pneumatic power. In the context of a "Basic Level" workbook, the focus is on how low-voltage electrical signals (the "brain") direct high-pressure compressed air (the "muscle") to perform mechanical work. 1. The Core Components
Electropneumatic systems are the stepping stone to Automation. Once you understand relay logic, transitioning to PLCs (Programmable Logic Controllers) becomes much simpler. 3. Safety and Circuit Design Relays act as electrically operated switches, allowing a
Electronic sensors are far more sensitive and compact than pneumatic limit switches.