Henkel 9000 Specifications, Utilities Required, Amount of product dispensed per stroke, Weight

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13Specifications, cont.

Utilities Required:

Compressed air:

60 psig to 90 psig, filtered to 5 microns, dry (no condensing moisture). Lubricated air not required.

Dimensions:

See Fig. 4 on page 13.

Product Viscosity Range: 100 cp - 100,000 cp

Cycle Rate:

Two Cycle per second maximum.

Amount of product dispensed per stroke:

Minimum = 0.02 cc.

Maximum = 0.40 cc.

Weight:

1.7 lbs.

Calculated Pressure Ratio for Loctite Part No. 983330 Series 9000 Rotospray Pump:

 

Calculated Pressure Ratios

 

Item

Air cylinder diameter

Device diameter

Ratio

Pump

1.125 inch

0.45 inch

5.0 : 1

w/ double 0.50 inch rod (pump piston)

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Contents Equipment Table of Contents Retain this Manual for Future Reference Introduction Connecting Air and Product Lines InstallationInspection Before Installation InstallationView of the Pump with Component Labeled Installation,Rotospray Pump Operating Sequence Theory of OperationPriming the Pump first time use Adjusting Pump Dispense VolumeAdjusting the Amount Dispensed OperationMaintenance RoutineIdle Time To Assemble Maintenance,Replacing The Pump Or Actuator Module To DisassembleTroubleshooting Guide Problem Cause Solution TroubleshootingReplacement Parts and Assemblies Series 9000 Pump Rebuilding Program Dimensions SpecificationsProduct Viscosity Range 100 cp 100,000 cp Cycle Rate Specifications,Weight Utilities RequiredEquipment Warranty Loctite Americas

9000 specifications

Henkel 9000 is a high-performance adhesive that has earned a reputation in various industries for its exceptional bonding capabilities and versatility. This product is part of Henkel’s expansive line of adhesives, designed to meet the varying needs of manufacturers, engineers, and designers alike.

One of the primary features of Henkel 9000 is its rapid curing time. This allows for quick assembly of components, which is crucial in fast-paced production environments. The adhesive utilizes advanced chemistry to achieve strong bonds in a short period, improving overall productivity. Its short setting time also minimizes downtime, making it a preferred choice for assembly lines.

Henkel 9000 showcases remarkable adhesion to a wide variety of substrates, including metals, plastics, and composites. This versatility makes it suitable for applications across different sectors, such as automotive, aerospace, electronics, and consumer goods. The ability to bond dissimilar materials efficiently opens up possibilities for innovative designs and applications.

The adhesive technology behind Henkel 9000 includes a unique formulation that provides high shear strength and toughness. This durability ensures that the bonds can withstand mechanical stresses and environmental exposure, making it an ideal choice for applications where reliability is paramount. Additionally, it exhibits excellent resistance to chemicals and moisture, further extending its usability in challenging environments.

Another noteworthy characteristic is its ease of application. Henkel 9000 can be dispensed through various methods, including manual application or automated machines, allowing for seamless integration into production processes. Its user-friendly nature reduces the likelihood of errors during application, enhancing overall efficiency.

Furthermore, Henkel places a strong emphasis on sustainability. The 9000 series includes formulations that are designed to minimize environmental impact while maintaining high performance. This focus on eco-friendly solutions aligns with industry demands for greener processes and materials.

In summary, Henkel 9000 stands out for its fast curing, strong adhesion to diverse materials, exceptional durability, ease of application, and commitment to sustainability. Its innovative features and technologies make it an essential product for industries aiming to enhance their production processes and product quality. Whether it’s in automotive assembly, electronics manufacturing, or consumer product design, Henkel 9000 continues to revolutionize the way materials are bonded together.