Products

Palmer Holland, Inc.

22 Products found on Palmer Holland, Inc.  in Printed Circuit Boards (PCBs)

BONDERITE® S-FN 213 banner
Palmer Holland, Inc. company logo
Palmer Holland, Inc.BONDERITE® S-FN 213
  • Principal:Henkel Corp
  • RTU Product Type:Lubricant Coating
  • Features:Chemical Resistant, Corona Resistant, Cost Effective, Electrical Resistance, Excellent Compatibility, Excellent Lubricity, Excellent Solvent Resistance, Excellent Wear Protection, Friction Reduction, Good Adhesion, Good Release Properties, Long Lubrication Life, Low Coefficient of Friction, Wear Resistant, Wide Temperature Operating Range
  • Application Area:Bushings, Circuit Board, Cylinders, Locks, Piston, Plungers
  • Compatible Substrates & Surfaces:Ceramic, Glass, Metal, Plastics
  • Chemical Family:Chemical Mixtures & Blends
BONDERITE® S-FN 213 ACHESON is designed to provide controlled electrical resistance properties. BONDERITE® S-FN 213 ACHESON is a dispersion of finely divided graphite pigment in an epoxy resin solution. When properly cured, it has excellent adhesion to epoxy circuit boards, bushings, plastics and ceramics. BONDERITE® S-FN 213 ACHESON also has excellent wearing properties. It provides chemical resistance to oils and many solvents, but not to enamel strippers. BONDERITE® S-FN 213 ACHESON as a lubricant coating provides clean, dry, long-wearing, and superior maintenance-free lubrication for a wide range of light to medium load applications. A thin film of BONDERITE® S-FN 213 ACHESON keeps wear uniform and reduces friction on mating metal parts without requiring increased manufacturing tolerances. Components are protected from metal-to-metal contact even in applications approaching boundary lubrication, reducing the risk of damage due to partial or complete seizure. Formulated from processed micro-graphite and epoxy resin, BONDERITE® S-FN 213 ACHESON forms tightly adherent coatings on many types of substrates. In addition to high lubricity, BONDERITE® S-FN 213 ACHESON coatings exhibit extremely good wear resistance to oils and solvents (except enamel strippers).
3M™ Glass Bubbles A16/500 banner
Palmer Holland, Inc. company logo
Palmer Holland, Inc.3M™ Glass Bubbles A16/500
  • Principal:3M Advanced Materials
  • Functions:Filler, Filler
  • Chemical Family:Borosilicates
  • Processing Methods:Casting, Injection Molding, Molding, Spraying
  • End Uses:Aerospace Syntactic Foam, Aerospace Syntactic Foam, Hydrospace Syntactic Foam, Hydrospace Syntactic Foam, Printed Wire Boards, Radomes
  • Features:Cost Effective, High Filler Loading, Improved Flow, Light Weight, Long Shelf Life, Low Alkalinity, Low Thermal Conductivity, Low Viscosity, Low Warpage, Minimize Shrinkage, Viscosity Stability, Water Resistance
3M™ Glass Bubbles A16/500 is engineered hollow glass microspheres that are alternatives to conventional fillers and additives such as silicas, calcium carbonate, talc, clay, etc., for many demanding applications. These low density particles are used in a wide range of industries to reduce part weight, lower costs and enhance product properties. The spherical shape of 3M™ Glass Bubbles A16/500 offers a number of important benefits, including: higher filler loading, lower viscosity/improved flow, and reduced shrinkage and warpage. It also helps the 3M™ Glass Bubbles A16/500 blend readily into compounds, and makes them adaptable to a variety of production processes, including spraying, casting and molding. In addition, they offer greater survivability under demanding processing conditions, such as injection molding, and also produce stable voids, which results in low thermal conductivity and a low dielectric constant. The chemically stable soda-lime-borosilicate glass composition of 3M™ Glass Bubbles A16/500 provides excellent water resistance, to create more stable emulsions. They are also non-combustible and non-porous, so they do not absorb resin. And, their low alkalinity gives 3M™ Glass Bubbles A16/500 compatibility with most resins, stable viscosity and long shelf life.
3M™ Glass Bubbles A20/1000 banner
Palmer Holland, Inc. company logo
Palmer Holland, Inc.3M™ Glass Bubbles A20/1000
  • Principal:3M Advanced Materials
  • Functions:Filler, Filler
  • Chemical Family:Borosilicates
  • Processing Methods:Casting, Injection Molding, Molding, Spraying
  • End Uses:Aerospace Syntactic Foam, Aerospace Syntactic Foam, Hydrospace Syntactic Foam, Hydrospace Syntactic Foam, Printed Wire Boards, Radomes
  • Features:Cost Effective, High Filler Loading, Improved Flow, Light Weight, Long Shelf Life, Low Alkalinity, Low Thermal Conductivity, Low Viscosity, Low Warpage, Minimize Shrinkage, Viscosity Stability, Water Resistance
3M™ Glass Bubbles A20/1000 is engineered hollow glass microspheres that are alternatives to conventional fillers and additives such as silicas, calcium carbonate, talc, clay, etc., for many demanding applications. These low density particles are used in a wide range of industries to reduce part weight, lower costs and enhance product properties. The spherical shape of 3M™ Glass Bubbles A20/1000 offers a number of important benefits, including: higher filler loading, lower viscosity/improved flow, and reduced shrinkage and warpage. It also helps the 3M™ Glass Bubbles A20/10000 blend readily into compounds, and makes them adaptable to a variety of production processes, including spraying, casting and molding. In addition, they offer greater survivability under demanding processing conditions, such as injection molding, and also produce stable voids, which results in low thermal conductivity and a low dielectric constant. The chemically stable soda-lime-borosilicate glass composition of 3M™ Glass Bubbles A20/1000 provides excellent water resistance, to create more stable emulsions. They are also non-combustible and non-porous, so they do not absorb resin. And, their low alkalinity gives 3M™ Glass Bubbles A20/1000 compatibility with most resins, stable viscosity and long shelf life.
3M™ Glass Bubbles D32/4500 banner
Palmer Holland, Inc. company logo
Palmer Holland, Inc.3M™ Glass Bubbles D32/4500
  • Principal:3M Advanced Materials
  • Functions:Filler, Filler
  • Chemical Family:Borosilicates
  • Processing Methods:Casting, Injection Molding, Molding, Spraying
  • End Uses:Aerospace Syntactic Foam, Hydrospace Syntactic Foam, Printed Wire Boards, Radomes
  • Features:Cost Effective, High Filler Loading, Improved Flow, Light Weight, Long Shelf Life, Low Alkalinity, Low Thermal Conductivity, Low Viscosity, Low Warpage, Minimize Shrinkage, Viscosity Stability, Water Resistance
3M™ Glass Bubbles D32/4500 is engineered hollow glass microspheres that are alternatives to conventional fillers and additives such as silicas, calcium carbonate, tale, clay, etc., for many demanding applications. These low-density particles are used in a wide range of industries to reduce part weight, lower costs and enhance product properties. The spherical shape of 3M glass bubbles offers a number of important benefits, including: higher filler loading, lower viscosity/improved flow, and reduced shrinkage and warpage. It also helps the 3M glass bubbles blend readily into compounds, and makes them adaptable to a variety of production processes, including spraying, casting and molding. In addition, they offer greater survivability under demanding processing conditions, such as injection molding, and also produce stable voids, which results in low thermal conductivity and a low dielectric constant. The chemically stable soda-lime-borosilicate glass composition of 3M glass bubbles provides excellent water resistance, to create more stable emulsions. They are also non-combustible and non-porous, so they do not absorb resin. And, their low alkalinity gives 3M glass bubbles compatibility with most resins, stable viscosity and long shelf life. 3M™ Glass Bubbles D32/4500 offer the same combination of strength and light weight as standard 3M glass bubbles, with an added surface treatment of special coupling agents, for use in high- tech applications such as aerospace and hydrospace syntactic foam, radomes and printed wire boards. They are available in a variety of sizes and grades for various product and processing requirements.

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