Key points
- Scale accuracy and mixer homogeneity should be verified, not assumed.
- Micro-ingredients carry the greatest homogeneity risk.
- Particle size and density differences drive segregation after mixing.
Weighing accuracy
Scales must be calibrated across the range actually used, including small micro-ingredient weights. A scale accurate at full range can be materially inaccurate at the low weights used for additives.
Mixing homogeneity
Homogeneity is verified by a mixer test using a tracer and a defined coefficient of variation target. Mixing time, fill level, wear and sequence all affect the result, and performance degrades over time without periodic re-testing.
Segregation after mixing
A homogeneous mix can separate during conveying, storage and loadout when particle sizes and densities differ. Controlling incoming particle size and limiting free-flowing fines reduces this.
What to verify
- Scale calibration covering micro-ingredient weight ranges
- Documented mixer homogeneity test with a CV target
- Particle-size consistency specified for major ingredients
Risks to manage
- Additive under-dosing invisible in finished-feed nutrient analysis
- Mixer performance drifting between tests as blades wear
- Segregation during transfer undoing correct mixing
Common mistakes
- Testing homogeneity once at installation and never again
- Ignoring particle-size specification for ingredients
- Extending or shortening mix time without re-validation
Frequently asked questions
How often should mixer homogeneity be tested?
On a defined periodic cycle and after any change to mixer configuration, mix time, fill level or formulation structure.
What CV is acceptable?
Targets differ by feed type and regulatory context; the important discipline is having a documented target, a defined test method and evidence of periodic testing.
Related reading
Technical references
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