| Definition | Instrument function | A laboratory device that repeatedly rubs a printed surface against a specified contact material under controlled pressure and motion. | It provides a repeatable way to evaluate whether printed ink will resist scuffing, smearing, transfer, or visible surface damage. |
| Primary Output | Rub resistance | The amount of ink transfer, color change, gloss loss, surface damage, or print-through observed after a defined number of rub cycles. | The result helps compare ink systems, coatings, substrates, curing conditions, and production batches. |
| Sample | Printed substrate | Paper, paperboard, film, labels, folding cartons, flexible packaging, or other printed materials. | Testing the actual production substrate is important because surface energy, porosity, coating, and texture affect ink adhesion and durability. |
| Contact Material | Rubbing medium | A standardized dry paper, coated paper, cloth, or other specified material selected for the test method. | Using the same rubbing medium improves consistency between samples and reduces variation caused by different surface textures. |
| Mechanical Load | Applied pressure | Common laboratory configurations use interchangeable loads such as approximately 1 lb, 2 lb, or 4 lb, depending on the method and application. | Higher pressure generally creates more severe contact and can reveal weak ink adhesion or incomplete curing more quickly. |
| Motion | Reciprocating stroke | A controlled back-and-forth movement over a defined stroke length, commonly around 4 inches on Sutherland-type rub testers. | A controlled stroke ensures that each specimen receives comparable mechanical abrasion. |
| Test Severity | Number of rub cycles | Typical evaluation levels include 10, 20, 50, 100, or 200 cycles; the selected level should match the product specification. | Multiple cycle levels can show whether the print fails early or maintains performance during extended handling. |
| Test Speed | Rubbing speed | The speed should remain constant throughout the test and follow the applicable method or laboratory procedure. | Speed affects frictional energy and heat, so inconsistent speed can make results difficult to compare. |
| Conditioning | Temperature and relative humidity | A commonly used paper-testing conditioning environment is 23 ± 1 °C and 50 ± 2% relative humidity, unless the applicable specification states otherwise. | Paper and some coatings absorb moisture and change mechanically with humidity, which can influence rub resistance. |
| Evaluation | Visual inspection | Inspect the rubbed print and the contact material for smearing, ink transfer, scratches, whitening, gloss change, or exposed substrate. | Visual assessment is useful for identifying failure modes that may not be captured by a single numerical measurement. |
| Evaluation | Instrumental measurement | Optional measurements may include color difference, optical density, gloss, reflectance, or image-analysis values before and after rubbing. | Instrumental data can reduce subjectivity and support defined acceptance limits for quality control. |
| Standardization | Relevant test practice | ASTM D5264 describes abrasion resistance testing of printed materials using a reciprocating rub tester. | Following a recognized test practice improves repeatability and makes results easier to communicate between suppliers, printers, and customers. |
| Quality Control | Production comparison | Compare approved reference samples with current production samples using the same load, rubbing medium, cycle count, and evaluation method. | Routine comparisons can identify changes in ink formulation, drying or curing, substrate quality, coating, or press conditions. |
| Applications | Typical printed products | Packaging, labels, cartons, commercial print, direct mail, product inserts, and printed films. | These products may experience friction during stacking, converting, transportation, filling, retail handling, and consumer use. |
| Interpretation | Pass or fail criterion | Acceptance limits should be established by the product owner or applicable specification; there is no universal pass/fail value for every ink and substrate. | A defined limit prevents subjective decisions and ensures that the test severity reflects the product’s actual service conditions. |