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TMRミキサーブレード

追加情報

その他の名称

飼料 Tmr ミキサー ブレード、耐久性のある農場 Tmr ミキサー ブレード、水平 Tmr ミキサー ワコン ナイフ、TMR 飼料混合ナイフ、飼料ミキサー ブレード

原産地

中国

用途

飼料ミキサー

材料

9CrSi、Cr12MoV、超硬合金 W6Mo5Cr4V2、W18Cr4V

モデル番号

FD-TM

OEMサービス

利用可能

支払い条件

L/C、T/T、ウェスタンユニオン

包装

段ボール箱, 木製ケース

納期

7-20日

シェア先:

What do TMR Mixer Blades Mean?

TMR mixer blades, also known as total mixed ration mixer blades or feed mixer knives, are robust cutting and mixing tools used in Total Mixed Ration (TMR) mixer wagons or feed mixers. These machines are essential in modern livestock farming for preparing a nutritionally balanced feed mix for animals, typically cattle. TMR mixer blades are designed to chop and blend various feed ingredients, such as silage, hay, grains, and supplements, into a homogenous ration. The term “TMR mixer blades” emphasizes their specific application in machines that create a total mixed ration.

Uses and Applications of TMR Mixer Blades

TMR mixer blades are critical for efficient and effective feed preparation in livestock operations. Their primary applications include:

  • Chopping Forage: Reducing the particle size of silage, hay, and other roughages to improve mix consistency and animal digestion.
  • Mixing Ingredients: Blending different feed components thoroughly to create a uniform and nutritionally balanced ration.
  • Preventing Sorting: Properly processed TMR with the correct particle size distribution discourages animals from selectively eating palatable ingredients and rejecting others, ensuring consistent nutrient intake.
  • Improving Feed Efficiency: A well-mixed TMR can enhance feed utilization and animal performance.
  • Processing Round Bales: Some TMR mixer blades are designed to handle and break down whole round or square bales of hay and silage.
  • Reducing Feed Waste: Uniform mixing and appropriate particle size can minimize feed wastage.

Common Materials for Feed Mixer Knives

The materials used for TMR mixer blades must be highly durable and wear-resistant to withstand the abrasive nature of feed ingredients, including soil contamination, and the continuous operation within the mixer. Common materials include:

  • 炭素鋼: Often used for its strength and ability to be hardened to provide a good cutting edge. May require coatings or special treatments to enhance wear and corrosion resistance.
  • Alloy Steel (e.g., Boron Steel): Offers increased hardness and wear resistance compared to standard carbon steel, extending blade life in demanding applications. Boron steel is particularly known for its abrasion resistance.
  • Hardened Steel Alloys: Specialized steel alloys that undergo specific heat treatments to achieve high levels of hardness and wear resistance, providing longer service life.
  • Tungsten Carbide Coating or Inserts: For extremely abrasive feed materials or extended service life requirements, blades may feature tungsten carbide coatings or replaceable carbide inserts at the cutting edges. Carbide offers exceptional wear resistance.

The blades are typically hardened to achieve a balance between wear resistance and toughness to prevent breakage under load. The design and thickness of the blade also contribute to its strength and durability.

Common TMR Mixer Blade Shapes

TMR mixer blades come in various shapes and configurations depending on the design of the mixer wagon (e.g., vertical, horizontal, reel-type) and the specific functions they need to perform:

  • ストレートブレード: Simple, linear blades often with a bevelled and sharpened edge for chopping and cutting.
  • 湾曲したブレード: Designed to create specific flow patterns within the mixer for better blending and movement of feed.
  • 鋸歯状ブレード: Feature a toothed edge to improve the cutting of fibrous materials like hay and straw.
  • Knives with Angled or Offset Designs: These shapes help to lift and mix the feed as well as cut.
  • Wear Plates or Paddles with Cutting Edges: In some mixers, the mixing elements also incorporate hardened edges for cutting and processing feed.
  • Bolt-On or Weld-On Designs: Blades are typically designed for easy replacement, either bolted or welded onto the mixing augers or paddles.

The working principle of TMR mixer blades involves a combination of cutting and mixing actions. As the augers or mixing elements rotate, the sharp edges of the blades chop and reduce the size of forage materials. The shape and arrangement of the blades also create a flow pattern that lifts, tumbles, and blends the different feed ingredients together into a homogenous mixture. The speed of rotation, the number and configuration of the blades, and the design of the mixer all contribute to the efficiency and effectiveness of the TMR preparation process.


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