3D model and faceting diagram · 85 facets · 8.15 x 8.15 mm
BL-M5 is a round brilliant drawn for moissanite, on a twelve-fold plan rather than the classic eight. Twenty-four crown mains and twelve stars ring the table, and a single tier of twenty-four pavilion mains runs from the girdle to a pointed culet.
BL-M5 is a round brilliant drawn for moissanite, on a twelve-fold plan rather than the classic eight. Twenty-four crown mains and twelve stars ring the table, and a single tier of twenty-four pavilion mains runs from the girdle to a pointed culet.
There are no upper or lower halves, and the whole pavilion is cut at one angle. For a moissanite round on the classic eight-fold plan, see BL-Anteros.
BL-M5 Cut specifications
Measured from the delivered model, not quoted from a standard.
CategoryHouse cuts
Facets85 planar facets (61 + 24 girdles = 85)
OutlineLength to width 1.000
Total depth60.6% of width
Crown angle (main)32.0°
Pavilion angle (main)41.5°
Reference size8.15 x 8.15 x 4.94 mm at 2.00 ct in diamond
Volume110.09 mm³
Cutting file accuracyEvery crown and pavilion facet within 0.004° of the 3D model (average 0.003°)
Face-up: the crown facets, drawn from the model's own edges.Profile: 60.6% total depth.
Light Return map of the BL-M5 Cut in moissanite. A computed render of the model's geometry, not a photograph.
The BL-M5 Cut in seven gemstones
The same geometry behaves differently in every material. Light that meets a pavilion facet at less than the
stone's critical angle passes straight out of the back instead of reflecting, which shows face-up as a window.
For each stone we measured how much of this model's pavilion, as seen face-down, is steeper than that angle, and
what the model weighs at its reference size. The pavilion mains of this design sit at 41.5°. As a rule of thumb a round design needs about 43.5° in amethyst for head-on light to reflect twice before it leaves the crown, so the mains are worth steepening for emerald, amethyst.
Head-on light, first reflection. The full Light Return, traced in each of these gemstones,
is in the 3D Gemstone Simulator.
Grade the BL-M5 Cut in 3D
Open it in the 3D Gemstone Simulator: set its carat, colour, clarity and cut grade in any of seven
gemstones, turn it under ten kinds of light, and watch its 3D gemstone report change as you go. Free, in your
browser.
Six formats: STEP (the exact faceted solid for CAD), 3DM for Rhino, STL and OBJ meshes, FBX for Blender, 3ds Max, Maya, Cinema 4D, Unity and Unreal, and GLB for the web and AR. All are in millimetres at real-world scale, with 85 planar facets.
Is there a faceting diagram for the BL-M5 Cut?
Yes. The cutting files contain a GemCad .asc design (61 + 24 girdles = 85 facets, 96 index, 12-fold mirror-image symmetry), a tier table with angles, indices and cutting order in CSV, and a printable faceting diagram.
Does the BL-M5 Cut work in sapphire, emerald or amethyst?
We measured the pavilion of this model against the critical angle of each stone. In Diamond, Moissanite, Cubic Zirconia, Ruby, Sapphire, Emerald, Amethyst, the whole pavilion reflects head-on light. The pavilion mains of this design sit at 41.5°. As a rule of thumb a round design needs about 43.5° in amethyst for head-on light to reflect twice before it leaves the crown, so the mains are worth steepening for emerald, amethyst.
How accurate is the BL-M5 Cut cutting file?
We check it facet by facet against the 3D model it was written from. Every crown and pavilion facet within 0.004° of the 3D model (average 0.003°). The angles are the ones you set on the machine; the 3D model is the same stone you render or set.
How big is the BL-M5 Cut model, and what does it weigh?
The model measures 8.15 x 8.15 x 4.94 mm, which is 2.00 ct in diamond. The same size weighs 1.77 ct in moissanite, 3.19 ct in cubic zirconia, 2.20 ct in ruby, 2.20 ct in sapphire, 1.50 ct in emerald, 1.46 ct in amethyst. Scale it uniformly to any size: weight follows the cube of the size.
Can I 3D print or cast the BL-M5 Cut model?
Yes. The mesh is watertight and manifold, with outward normals and no duplicate vertices, so it prints and casts without repair. Use the STEP file when you need the exact faceted solid in CAD.