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1x set of mounting screws for our blade plates

Maximum mulching, perfect cut, the upgrade for your dream lawn.

  • A cutting pattern like a green carpet
  • Turns clippings into natural fertilizer
  • Clean cuts instead of frayed tips
  • Installed in 5 minutes
  • 30-Day 100% Money-Back Guarantee

3,39€

incl. VAT & free shipping EU €80 / Int. €120

Mounting accessories:

3 Artikel
Daily capacity almost reached – order now.
Ready to ship - Delivered in 3-5 business days

97.1% of our customers keep their order. Thanks to our quality, every 8th customer buys again.

30-Day Money-Back Guarantee
Free shipping EU €80 / Int. €120
Father & Son Team from Bavaria

Secure Mounting for Single-Disc Mowers: The 3-Piece Fastening Set
Rely on maximum safety when mounting your performance blade disc. This set contains exactly 3 high-strength socket head cap screws of Class 12.9 – the perfect quantity for robot mowers with a single mower deck.

Your benefits at a glance:

  • Exact Quantity: The set contains 3 screws, perfectly matching the motor mount of most standard robot mowers (single-disc systems).
  • Maximum Strength: Made from alloyed high-performance steel of Class 12.9 – significantly more durable and break-resistant than many standard screws.
  • Vibration Protection: Equipped with a spring washer and flat washer to effectively prevent loosening caused by the high vibrations of the mowing deck.
  • Original Dimensions: With M4 x 12 mm, this set matches the dimensions of the original mounting screws (standard length).

⚠️ Safety Note:
Check the screws regularly for tightness. These screws are intended for the direct mounting of the disc to the motor (without adapters).

GreenGears3D Upgrade Parts:

  • Suitable for all our performance blade discs that are mounted to the motor with 3 screws.

⚠️ Important Note:

  • Length: M4 x 12 mm (Standard).
  • Not suitable for use with height-lowering adapters (these require longer screws).

Mounting Cutting Disc & Blades – How to do it in 5 minutes (with video guide)

Feature Details
Type Socket Head Cap Screw (Hex)
Dimensions M4 x 12 mm (Standard)
Material Strength Class 12.9 (High-Tensile)
Locking Mechanism Spring Washer & Flat Washer
Quantity in Set 3 Pieces

Shipping: Climate-friendly & insured via DHL (mostly within 24h).

🇩🇪 DE: €3.49 (free over €60)
🇪🇺 EU: €5.59 (free over €80)
🌍 World: €8.99 (free over €120)


Worry-free: Our parts are precision-fit. If a defect occurs, the exchange is free of charge for you. Ordered the wrong item? You have a 30-day return policy.
(Return on withdrawal: Corresponds to standard shipping costs for DE, EU & World)
More information incl. customs 👆

Our customers' satisfaction is our top priority. If for any reason you are not completely convinced, you can easily return our products to us within 30 days and we will refund the purchase price. You can test our products extensively, no ifs or buts.

This assumption is an overgeneralization. The robustness of 3D printing begins with the careful selection of the material. A cutting disc made from high-impact polymers like ASA can exhibit adequate impact resistance even under high loads, such as contact with solid objects. The rotational speed of nearly 3000 revolutions per minute leads to significant forces upon sudden obstacles, which are proportional to the mass of the rotating components, making material selection crucial to absorb these forces.
Impact resistance is a particularly important property for materials used outdoors in mower discs. ASA is known for its good impact resistance, even at low temperatures. Compared to other plastics like PLA, PETG, and ABS, ASA offers superior benefits regarding impact stress.
These properties make ASA a preferred material for applications requiring high impact strength, such as in the automotive industry, construction, or sports equipment exposed to frequent shocks and blows. ASA's ability to maintain its integrity and performance under these conditions makes it an excellent choice for outdoor use.
Innovative construction possibilities through 3D printing:
3D printing revolutionizes manufacturing technology through its ability to create complex structures not possible with traditional methods like injection molding. A significant advantage of this technology is the possibility to realize highly stable structures while saving material and weight through targeted design and the use of Finite Element Methods (FEM).
Material economy and structural integrity:
A vivid example of the principle of material economy is the comparison between an I-beam and a solid beam with a rectangular cross-section. The I-beam, known in the construction industry for its high bending stiffness and load-bearing capacity, uses material more efficiently by concentrating mass where it contributes most to load-bearing capacity – far from the neutral axis. This principle can be applied to 3D printing, where mechanical properties can be optimized by integrating hollow spaces and specific wall thicknesses.
FEM analysis for optimization:
FEM analysis supports this process by simulating the resilience and behavior of structures under load conditions to adjust the design accordingly. This results in components that offer high strength and stability at reduced weight. The ability to targetedly use hollow spaces allows for the creation of lightweight yet highly stable structures suitable for demanding applications.
Summary of benefits:
In summary, 3D printing offers the advantage over injection molding that it enables high structural stability with optimized material usage through the integration of hollow spaces and the application of FEM analyses. This leads to lightweight but extremely resilient components designed for demanding applications. 3D printing utilizes the principle of material economy, similar to an I-beam, to achieve higher load capacity with less material.

More blades improve the cutting pattern and mulching effect as they cut the grass more finely. The load is distributed across more blades, extending their lifespan. Physically speaking, arranging the blades at the edge of the mower disc increases the moment of inertia, leading to a more stable rotational movement and fewer disturbances. This results in smoother running and improved synchronization.
For dense lawns or deep cuts, a higher number of blades may be necessary to ensure an even cutting pattern.

Manufacturer & Responsible Person (EU):
Markus Blohberger - EvoSign
Nüchternbrunnweg 2
83627 Warngau, Germany
Email: support@greengears3d.com
Website: www.greengears3d.com


Intended Use:
Our products (mower discs, adapters, blades, screws) are designed exclusively for use in compatible robot mowers according to the information on this product page. Any other use is considered improper.

  1. Important Safety Warnings
    Risk of cuts: This product contains or is used with extremely sharp blades. Wearing protective gloves is mandatory during assembly and maintenance.
    Danger to children: Small parts (screws, adapters) can be swallowed (choking hazard). Sharp blades can cause severe injuries. Keep all components out of the reach of children.
    Regular inspection: Check all parts for cracks, wear, or damage before each use of the robot mower. Replace defective parts immediately.
  2. Assembly & Installation (Important!)
    Tighten hand-tight only: Use exclusively a manual screwdriver for all screws (blade and adapter mounting).
    ⛔ ATTENTION: The use of cordless screwdrivers or power tools is not permitted. Excessive torque will destroy the ASA material or the threads.
    Power off: Completely switch off the robot mower before any assembly work.
  3. Material-Specific Notes & Disposal
    ASA Material: Heat resistant up to approx. 80 °C.
    Field of application: Optimized for level lawns (no large stones/roots).
    Disposal: Dispose of blades securely packed. Please recycle packaging.

Community Feedback

Cut Quality
Standard Better Excellent
Fitment
Loose Perfect Fit Too Tight
Installation
Complicated Manageable Effortless

Increased cutting performance

Thanks to the higher number of blades, even very dense lawns can be cut precisely and effortlessly. The likelihood of grass tearing and resulting yellow tips is reduced, and the cutting pattern becomes more even.

Durable. Efficient. Reliable.

AFTER

BEFORE

Our titanium-coated blades are extremely robust, rustproof, and ideal for continuous outdoor use.

Thanks to the 2-hole design, you can turn and flip them, with each blade offering 4 sharp cutting edges.

This means: less frequent replacement, lower costs, and a consistently precise cut.

For secure installation, we supply screws with safety varnish for a firm hold even under high loads.

Precision for vibrant lawns.

AFTER

BEFORE

Less fungal infestation
Clean cuts reduce the risk of infection and protect the stalks.

Better water and nutrient absorption
Smooth cut edges promote recovery and photosynthesis.

Up to 22% less energy consumption
Sharp blades require less drive power, resulting in longer battery life.

SAFE & STABLE

Disturbance-free operation - even on wet lawns thanks to precise T-sleeves.

PRECISE CUT

To 9 blades for an even, perfect lawn cut.

LESS MAINTENANCE

Distributed load: less maintenance and fewer blade changes.

ROBUST & DURABLE

Weight-optimized design made of ASA - for long-lasting performance.

EFFICIENCY & SAVINGS

Optimized performance reduces costs and saves time.

FAQs

The decision to use an odd number of blades is based on engineering principles derived from aircraft and mechanical engineering in order to minimize resonance frequencies. Symmetrically opposed blades can induce resonance phenomena, while odd numbers help to distribute the resulting forces and vibrations more homogeneously. Furthermore, the probability of imbalance, which can be caused by adhesion of grass clippings, is reduced with an odd number of blades.

This assumption is an overgeneralization. The robustness of 3D printing starts with the careful selection of the material. A blade disc made of high-impact polymers such as ASA can also withstand high loads, such as contact with solid objects, and still exhibit adequate impact resistance. The rotational speed of approximately 3000 revolutions per minute leads to
sudden obstacles to significant forces that are proportional to the mass of the rotating components, so it is crucial to choose the right material to absorb these forces. In particular, impact strength is an important property for materials used in outdoor applications such as mower decks. ASA is known for its good impact resistance, even at low temperatures. Compared to other plastics such as PLA, PETG and ABS, ASA offers the following advantages in terms of

impact resistance:

These properties make ASA a preferred material for applications that require high impact resistance, such as in the automotive industry, in construction or sports equipment that is exposed to frequent knocks and bumps. ASA's ability to maintain its integrity and performance under these conditions makes it an excellent choice for outdoor use.

Innovative design possibilities through 3D printing:

3D printing is revolutionizing manufacturing technology through its ability to create complex structures
that would not be possible with traditional methods such as injection molding. A significant advantage of this technology is the possibility, through targeted design and the use of finite element methods (FEM), to realize highly stable structures while saving on materials and weight.

Material economy and structural integrity:

An illustrative example of the principle of material economy is the comparison between a I-beam and a solid rectangular beam. The I-beam, known in the construction industry for its high flexural rigidity and load-bearing capacity, uses the material more efficiently by concentrating the mass where it contributes most to the load-bearing capacity – far from
from the neutral fiber. This principle can be transferred to 3D printing, where the integration of cavities and specific wall thicknesses can optimize the mechanical properties.

FEM analysis for optimization:

FEM analysis supports this process by simulating the load-bearing capacity and behavior of the structures under load conditions in order to adapt the design accordingly.This results in components that offer high strength and stability at a reduced weight. The ability to use cavities in a targeted manner makes it possible to create lightweight yet highly stable structures that are suitable for demanding applications.

Summary of the advantages:

In summary, 3D printing offers the advantage over injection molding that it
integration of cavities and the application of FEM analyses, high structural stability with optimized material use. This leads to lightweight but extremely resilient components that are designed for demanding applications. 3D printing uses the principle of material economy, similar to an I-beam, to achieve higher resilience with less material.

Rigid blades pose risks, especially for low material thicknesses (under 0.5 mm). They can break on contact with solid objects and act as dangerous projectiles. The direct power transmission to the drive and bearing on impact can cause damage and increased wear, which shortens the lifespan of the mowing robot. In contrast, pivoting blades
reduce the impact forces and are better suited to most lawns.

Multiple blades improve the cutting pattern and mulching effect as they cut the lawn more finely. The load is distributed over more blades, which extends their service life. Physically, the arrangement of the blades at the edge of the mower disc increases the moment of inertia, resulting in a more stable rotational movement and less interference. For dense lawns or deep cuts, a higher number of blades may be necessary to ensure a uniform cutting pattern.

Let our customers convince you.

1x set of screws for mounting our tuning discs

1x set contains three cylinder head screws with hexagon socket:

  • M4x12mm, dimensions as for the original screws
  • Hexagon socket
  • High-strength alloy steel, strength class 12.9
  • Rolled washer and spring washer

Installation instructions: The installation is carried out in accordance with the robotic lawnmower manufacturer's instructions. Please observe the

Safety instructions: Always follow the safety instructions of the robotic lawnmower manufacturer.
Risk warning: Use these screws at your own risk due to individual intervention.

Warranty: Please note that replacing the blade disc with an accessory such as our tuning blade discs may limit or affect the robotic lawnmower's warranty.

Safety information:

  • Check the screws regularly for tightness and wear.
  • Only use screws in combination with the intended tuning blade discs.