3M 10500 manual Maintenance, Blade Guard

Page 15

Maintenance

WARNING

To reduce the risk associated with shear, pinch, and entanglement hazards:

Turn air and electrical supplies off on associated equipment before performing any adjustments, maintenance, or servicing the taping heads

Never attempt to work on the taping head or load tape while the box drive system is running

To reduce the risk associated with sharp blade hazards:

Keep hands and fingers away from tape cutoff blades under orange blade guards. The blades are extremely sharp

The AccuGlide™ STD 2+ 2 Inch Taping Head has been designed for long, trouble free service. The taping head will perform best when it receives routine maintenance and cleaning. Taping head components that fail or wear excessively should be promptly repaired or replaced to prevent damage to other portions of the head or to the product.

Blade Replacement, Upper and Lower Taping Heads – Figure 4-1

WARNING

To reduce the risk associated with sharp blade hazards:

Keep hands and fingers away from tape cutoff blade edge. The knives are extremely sharp

1.Loosen, but do not remove, the blade screws

(A). Remove and discard old blade.

2.Mount the new blade (B) with the beveled side away from the blade holder.

3.Bottom the blade slots against the screws. (This will position the blade at the correct angle.) Tighten the blade screws to secure the blade.

Note – Check the blade position to insure proper clearance between blade and guard by slowly pivoting the blade guard back.

Blade Guard

The blade guard covers the blade whenever a box is not being taped. Periodically check to be sure the blade guard is functioning properly and returning to cover the blade. Replace any defective parts.

Blade Oiler Pad

WARNING

To reduce the risk associated with sharp blade hazards:

Keep hands and fingers away from tape cutoff blade edge. The knives are extremely sharp

The taping heads are equipped with a felt oiler pad that has been pre-lubricated at the factory to provide a film of oil on the cutting edge of the blade to reduce adhesive build-up. Apply SAE #30 non- detergent oil as needed. Saturate felt oiler pad.

Should tape adhesive build-up occur on blade, carefully wipe clean with an oily cloth.

Figure 4-1 – Blade Replacement

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Contents 3M Industrial Adhesives and Tapes AccuGlideTM 2+To Our Customers Replacement Parts and Additional ManualsTo Our Customers Table of Contents Taping Head Contents AccuGlide 2+ STD 2 Inch Upper Taping Head, Type Intended UseTo reduce the risk associated with impact hazards Important SafeguardsTo reduce the risk associated with sharp blade hazards To reduce the risk associated with muscle strainReplacement Labels/3M Part Numbers Specifications Dimensional Drawing Receiving And Handling InstallationInstallation Guidelines Tape Width AdjustmentOperation Tape Loading Upper Taping Head Tape Loading Lower Taping HeadTape Loading/Threading Blade Guard MaintenanceApplying/Buffing Roller Replacement CleaningAdjustments Tape Latch Alignment FigureTape Drum Friction Brake Figure One-Way Tension Roller Applying Mechanism SpringLeading Tape Leg Length Troubleshooting Guide Problem Cause Correction TroubleshootingTroubleshooting AccuGlide 2+ STD 2 Inch Lower Taping Head Spare Parts/Service InformationReplacement Parts and Service Recommended Spare PartsReplacement Parts Illustrations and Parts Lists Taping Head Assemblies AccuGlide 2+ STD 2 Inch Upper Head Ref. No 3M Part No Description Upper and Lower Heads Upper and Lower Heads Upper Head Upper Head Upper and Lower Heads Upper and Lower Heads Upper and Lower Heads Upper and Lower Heads Upper and Lower Heads Latch Upper and Lower Heads Lower Head Lower Head Lower Head Lower Head
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10500 specifications

The 3M 10500 is a robust and versatile product, widely recognized in various industries for its reliability and performance. Primarily, this offering is utilized in applications requiring high-quality adhesive solutions, primarily due to its exceptional bonding capabilities. The 3M 10500 is designed to meet the demands of diverse manufacturing processes, making it an indispensable tool for professionals in fields such as automotive, electronics, and construction.

One of the standout features of the 3M 10500 is its strong adhesion properties. It is engineered to create lasting bonds between a variety of substrates, including metals, plastics, and composites. This versatility ensures that it can be employed in both simple and complex projects, offering flexibility to users. The high initial tack of the adhesive allows for quick assembly, which can significantly enhance productivity and efficiency on the production line.

In terms of technology, the 3M 10500 incorporates advanced formulations that promote excellent performance under testing conditions. The adhesive exhibits outstanding temperature resistance, allowing it to function effectively in environments that subject materials to high heat or variable temperatures. This characteristic is especially critical for applications where thermal stability is paramount.

Moreover, the 3M 10500 is designed to be user-friendly, with easy application processes. It can be dispensed through various systems, making it suitable for automated processes as well as manual applications. This adaptability allows companies to optimize their production workflows, reducing downtime and minimizing waste.

Another essential characteristic of the 3M 10500 is its long-lasting durability. Once cured, the adhesive provides a strong bond that withstands mechanical stress, ensuring that applications maintain their integrity even under challenging conditions. This durability is particularly relevant in industries such as automotive manufacturing, where components are often subjected to dynamic loads and vibrations.

Overall, the 3M 10500 stands out in the marketplace due to its unmatched bond strength, temperature resilience, and user-friendly applications. Its advanced technology and robust characteristics make it a preferred choice for those seeking a reliable adhesive solution that can meet and exceed the demands of modern manufacturing processes.