Aidite REF: MB3801M
Aidite AMM-580 Metal Milling Burs
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Metal Milling Burs for the Aidite AMM-580
Aidite AMM-580 metal milling burs are designed for compatible titanium and cobalt chrome dental CAD/CAM workflows. The range includes ball-end mills, drill bits, flat-end mills, and V-notch cutters in multiple diameters and cutting lengths.
How to Read an Aidite AMM-580 Bur Package Code
The package code identifies the material category, cutting diameter, effective cutting length, and bur geometry.
M-1.5-10-R,
M identifies a metal-milling bur,
1.5 identifies the 1.5 mm cutting diameter,
10 identifies the 10 mm effective cutting length, and
R identifies a round or ball-style cutting geometry.
| Code component | Meaning |
|---|---|
M |
Metal-milling bur |
| First number | Cutting diameter in millimeters |
| Second number | Effective cutting length in millimeters |
R |
Round or ball-end bur |
D |
Drill-style bur |
F |
Flat-end bur |
CT |
Aidite specialty cutting geometry. Confirm the exact tool assignment in the AMM-580 CAM configuration. |
Aidite AMM-580 Bur Selection Guide
Compare 14 Aidite AMM-580 metal bur SKUs by bur type, general application, cutting diameter, and active cutting length. Every bur shown below has a 6 mm shank diameter and a 50 mm overall length.
Complete Aidite AMM-580 Metal Bur Specifications
Use the matrix to compare each Aidite SKU, understand the general purpose of its bur geometry, and confirm the physical dimensions required by the AMM-580 CAM tool configuration.
| Aidite SKU | Bur type | Best suited for | Cutting diameter | Active cutting length | Shank diameter | Overall length |
|---|---|---|---|---|---|---|
| MB3801M | Ball-End Mill | Broad curved surfaces, three-dimensional contours, rounded internal geometry, and larger-area contouring passes. | 3.0 mm | 16 mm | 6 mm | 50 mm |
| MB3802M | Ball-End Mill | Curved surfaces, anatomical contours, rounded internal geometry, and intermediate contouring or finishing passes. | 2.0 mm | 12 mm | 6 mm | 50 mm |
| MB3803M | Ball-End Mill | Smaller curved features, tighter internal contours, detailed three-dimensional surfaces, and finer finishing operations. | 1.5 mm | 10 mm | 6 mm | 50 mm |
| MB3804M | Ball-End Mill | Fine details, narrow curved areas, tight internal geometry, and detailed contour-finishing passes. | 1.0 mm | 12 mm | 6 mm | 50 mm |
| MB3805M | Drill Bit | Axial drilling operations, defined openings, channels, and features requiring tip-first material removal. | 2.1 mm | 18 mm | 6 mm | 50 mm |
| MB3806M | Drill Bit | Smaller axial openings, narrower channels, and drilling operations requiring a reduced cutting diameter. | 1.5 mm | 14 mm | 6 mm | 50 mm |
| MB3807M | Flat-End Mill | Flat surfaces, pockets, shoulders, straight walls, level floors, and features requiring a defined flat-bottomed cut. | 2.0 mm | 6 mm | 6 mm | 50 mm |
| MB3808M | V-Notch Cutter | Specialized grooves, notches, angled contour transitions, and CAM-assigned features requiring a concentrated cutting profile. | 1.5 mm | 18 mm | 6 mm | 50 mm |
| MB3809M | V-Notch Cutter | Shorter localized grooves, notches, angled transitions, and specialized features requiring a shorter active cutting length. | 1.5 mm | 7 mm | 6 mm | 50 mm |
| MB3810M | Flat-End Mill | Smaller flat surfaces, narrow pockets, fine shoulders, defined edges, and compact flat-bottomed features. | 1.0 mm | 6 mm | 6 mm | 50 mm |
| MB3811M | V-Notch Cutter | Wider specialized grooves, notches, angled contour transitions, and CAM-assigned features requiring a 2.0 mm cutting diameter. | 2.0 mm | 18 mm | 6 mm | 50 mm |
| MB3812M | V-Notch Cutter | Specialized grooves, notches, angled contour transitions, and CAM-assigned features requiring a 1.5 mm V-notch geometry. | 1.5 mm | 18 mm | 6 mm | 50 mm |
| MB3813M | Ball-End Mill | Curved surfaces, rounded internal geometry, anatomical contours, and CAM-assigned contouring or finishing operations. | 2.0 mm | 12 mm | 6 mm | 50 mm |
| MB3814M | V-Notch Cutter | Specialized grooves, notches, angled transitions, and CAM-assigned features requiring a 2.0 mm diameter with a shorter active cutting length. | 2.0 mm | 12 mm | 6 mm | 50 mm |
Product Questions
Frequently Asked Questions
Helpful information about Aidite AMM-580 Metal Milling Burs, its intended use, and the recommended workflow.
01 What machines are these milling burs compatible with?
These metal milling burs are intended for the Aidite AMM-580 dental milling machine. Select each bur according to the tool assignment specified in the AMM-580 CAM configuration.
02 What materials can the Aidite AMM-580 metal burs mill?
These burs are offered for compatible titanium and cobalt chrome, or CoCr, dental CAD/CAM milling workflows on the Aidite AMM-580.
03 How do I select the correct replacement bur?
Match the replacement bur using the Aidite SKU, package code, tool position, bur geometry, cutting diameter, and active cutting length shown in the AMM-580 CAM tool configuration. Do not select a replacement based only on diameter or overall appearance.
04 What do the codes printed on the bur package mean?
The package code identifies the bur category, cutting diameter, effective cutting length, and cutting geometry. For example, in M-1.5-10-R, M identifies a metal-milling bur, 1.5 identifies the cutting diameter in millimeters, 10 identifies the effective cutting length in millimeters, and R identifies a round or ball-end geometry.
05 What do the geometry letters R, D, F, and CT mean?
R identifies a round or ball-end bur, D identifies a drill-style bur, and F identifies a flat-end bur. CT identifies an Aidite specialty cutting geometry. Confirm the exact function of a CT bur through the AMM-580 CAM tool assignment.
06 When is a ball-end mill generally used?
Ball-end mills are generally suited for curved surfaces, three-dimensional contours, rounded internal geometry, anatomical forms, and contouring or finishing passes. Larger diameters cover broader areas, while smaller diameters can reach tighter curves and finer details.
07 When is a drill bit generally used?
Drill-style burs are generally used for axial drilling operations, defined openings, channels, and features that require tip-first material removal. Use the drill bur assigned by the validated AMM-580 CAM strategy.
08 When is a flat-end mill generally used?
Flat-end mills are generally suited for flat surfaces, pockets, shoulders, straight walls, level floors, defined edges, and flat-bottomed features.
09 When is a V-notch or CT cutter generally used?
V-notch or CT cutters are specialty tools associated with grooves, notches, angled contour transitions, and other CAM-assigned features that require a concentrated cutting profile. Use the specific SKU assigned in the AMM-580 CAM configuration.
10 What are the shank diameter and overall length of these burs?
All 14 burs shown in this AMM-580 selection have a 6 mm shank diameter and a 50 mm overall length. Cutting diameter and active cutting length vary by SKU.
11 Can two burs with the same dimensions be used interchangeably?
Not necessarily. Some Aidite burs share the same visible dimensions but have different SKUs or tool positions. For example, MB3802M and MB3813M have the same listed dimensions, while MB3808M and MB3812M also have the same listed dimensions. Always use the exact CAM-assigned SKU.
12 How many AMM-580 metal bur options are available in this listing?
The listing includes 14 Aidite AMM-580 metal bur SKUs covering ball-end mills, drill bits, flat-end mills, and specialty CT or V-notch cutters.
13 Should I choose the bur manually based on the restoration?
The geometry descriptions explain the general purpose of each tool, but they do not replace the Aidite CAM strategy. Final bur selection should follow the SKU and tool position assigned by the validated AMM-580 CAM configuration.