Diamondium Grade B Terp Pillars 4.8x20mm

CAD$124.12

1PC/Pack
Why choose our Diamondium Grade B Terp Pillars (Moissanite)?
1, Excellent Performance: Diamondium Grade B Terp Pillars are crafted using advanced moissanite, delivering outstanding performance and texture.
2, Even Heating: Their unique design ensures uniform heating, providing a more consistent distillation experience.
3, High-Temperature Resistance: Moissanite exhibits excellent resistance to high temperatures, making it suitable for various high-temperature applications, ensuring prolonged and durable use.
4, Easy to Clean: The smooth surface of Diamondium Grade B Terp Pillars makes them easy to clean, offering a convenient user experience.
5, Quality Assurance: We rigorously control the quality of Jcvap Diamondium Grade B Terp Pillars to ensure customers receive high-quality products.
6, Diverse Selection: We offer a variety of specifications and styles to meet the diverse needs and preferences of different users.
We recommend the slurper style banger when using the 4.8*20mm one.

3 in stock

Description

Low specific heat capacity coupled with high conductivity yields fastest heating of any vaporization surface (Thermal Diffusivity). This new substance will bring a completely new experience and unparalleled flavor to your dabbing.

Diamondium pillars(Grade B)are actually made of Moissanite .It is Single Crystal Silicon Carbide.
In nature, there are primarily three types of SiC, that is 3C-SiC, 4H-SiC and 6H-SiC
The crystal structure of Moissanite consists of a hexagonal lattice formed by silicon and carbon atoms(6H-SiC), with each unit cell containing six silicon atoms and six carbon atoms. This structure gives Moissanite its hardness and fire similar to that of diamonds. These three structures have different thermal conductivities.

That means the thermal conductivity of Moissanite is more than twice that of ALN(Aluminum nitride). All the above data and information come from the following references:

1.Harris, G.L. 1995 Thermal conductivity of SiC, 5-6.
2. Goldberg Yu., Levinshtein M.E., Rumyantsev S.L.2001 Properties of Advanced Semiconductor Materials GaN, AlN, SiC, BN, SiC, SiGe, 93-148.

3. Amirthan G, Udaya A, Balasubramanian M. 2011 Thermal conductivity studies on Si / SiCceramic composites. 09 003.
4. M.S. Aziz, Z. Mohammed, R.I. Alip. 2018. Faculty of Electrical Engineering. The Effect of SiC Polytypes on the HeatDistribution Efficiency of a Phase Change Memory.

Additional information

Weight 10 g

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