TAPPI T815 PDF

TAPPI T815 PDF

Name:
TAPPI T815 PDF

Published Date:
11/15/2001

Status:
Active

Description:

Coefficient of Static Friction (Slide Angle) of Packaging and Packaging Materials (Including Shipping Sack Papers, Corrugated and Solid Fiberboard) (Inclined Plane Method)

Publisher:
Technical Association of the Pulp and Paper Industry

Document status:
Active

Format:
Electronic (PDF)

Delivery time:
10 minutes

Delivery time (for Russian version):
200 business days

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This method determines the coefficient of static friction of most packaging materials by measuring the angle at which one test surface begins to slide against another inclined surface as the incline is increased at a constant and prescribed rate. The test is frequently referred to as slide angle. The coefficient of friction is numerically equivalent to the tangent of that angle. A method for determining the coefficient on a horizontal plane for corrugated and solid fiberboard is described in TAPPI T 816 "Coefficient of Static Friction of Corrugated and Solid Fiberboard (Horizontal Plane Method)." Both methods give results essentially equivalent to this method. TAPPI T 548 and TAPPI T 549 describe nearly identical methods for determining the coefficient of static friction but are intended for application to printing and writing papers and the procedures are somewhat different.
Number of Pages : 6
Published : 11/15/2001

History

TAPPI T 815 om-24
Published Date: 2024
Coefficient of Static Friction (Slide Angle) of Packaging and Packaging Materials (Including Shipping Sack Papers, Corrugated and Solid Fiberboard) (Inclined Plane Method)
$14.7
TAPPI T 815 om-18
Published Date: 2012
Coefficient of Static Friction (Slide Angle) of Packaging and Packaging Materials (Including Shipping Sack Papers, Corrugated and Solid Fiberboard) (Inclined Plane Method)
$14.7
TAPPI T815
Published Date: 11/15/2001
Coefficient of Static Friction (Slide Angle) of Packaging and Packaging Materials (Including Shipping Sack Papers, Corrugated and Solid Fiberboard) (Inclined Plane Method)

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