Decagonal Mixer Tub Design: What the 10 Sides Actually Do
A decagonal mixer tub isn't just a design quirk. Here's the fluid-dynamics reasoning behind the 10-sided shape and why it matters for TMR quality.
A decagonal mixer tub isn't just a design quirk. Here's the fluid-dynamics reasoning behind the 10-sided shape and why it matters for TMR quality.
Understanding PTO power 7008 VT requirements across haylage, round bales, and concentrates. A field-ready breakdown for South African and US operators.
Running the wrong bolt-on kicker size costs you time and fuel. Here's how to match kicker aggressiveness to your ration and why it matters.
El Niño affects producers across South Africa with drought and feed shortages. Here is how adding a TMR mixer protects your dairy herd through the uncertainty.
Auger design is the variable most operators never audit. These five engineering features cut mixing time, lower fuel draw, and improve TMR uniformity.
A decagonal tub TMR design forces feed back toward the auger on every pass. Here's why that geometry matters more than most operators realize.
Choosing between stainless steel and painted hoppers is a ten-year cost decision. Here's the corrosion chemistry that makes the difference visible within seasons.
ISOBUS does more than connect machines. Here's what it actually changes when you manage TMR ration accuracy at the mixer on a working morning.
Get vertical TMR mixer sizing wrong and you pay for it every feed cycle. Here's how to match capacity to herd size, ration density, and real-world loads.
Stainless steel hoppers cost more upfront. Over ten years, that gap nearly disappears. Here's how to run the numbers for your own operation.