Wednesday, February 8, 2023

Cannabis Trichomes and Resin Glands

 Today's Knowledge Share:


Do you know about Cannabis Trichomes and Resin Glands?


Cannabis trichomes appear as sticky translucent whitish to amber resin on ripening cannabis flowers, leaves, and branches.

Trichomes may be made of hairs, glandular hairs, scales, and papillae. They grow on the appendages of plants, such as cannabis, as well as algae and lichens.





The production of trichomes can be observed in many species of plants throughout nature, taking on various physical forms as well as serving many different purposes. For example, trichomes found on some carnivorous plants aid in helping to catch prey.


In cannabis, trichomes function as a defense mechanism. When female cannabis plants begin to produce flowers in the wild, they often become vulnerable to various insects and animals as well as non-living environmental variables such as potentially harmful UV rays. Trichomes serve as a deterrent for animals because their bitter taste and strong aromas render cannabis flowers unpalatable. At the same time, they also serve a dual function in protecting their plants from damaging winds and even some varieties of fungal growth.

The majority of cannabinoids, including THC and CBD, are found in the resin glands with a spherical head on top of a short post or column.


Trichomes exist in many shapes and sizes, but there are three that appear most often on cannabis plants.

1)Bulbous trichomes ( 10-15 micrometers)

2)Capitate sessile trichomes (slightly larger and contain both a head and a stalk)

3)Capitate-stalked trichomes ( between 50-100 micrometers wide)


All three types of trichomes produce cannabinoids, though it is the capitate-stalked trichomes that will appear in abundance in and around the calyxes of budding flowers, producing the highest concentration of essential oils due to their size.


Typically, the more intense the density of capitate-stalked resin glands will yield more THC and CBD. The cannabinoid-rich resin can be consumed as dried and cured flowers, or separated from the plant and made into concentrates, including rosin, dry-sieve hash, BHO, shatter, etc.



Friday, February 3, 2023

TYPE 4 COMPOSITE CNG/H2 CYLINDER Project report

 TYPE 4 COMPOSITE CNG/H2 CYLINDER Project report is available on a competitive pricing-Moving Toward a user friendly and a safer environment.


This report has covered the following topics:

■An overview landscape of the market
■Global Natural Gas Vehicles (NGVs) market
■ Latest technological advancements in Type 3/4 COMPOSITE CNG Cylinder market
■ Merger & Acquisition 
■ Major players share
■ Investment structure
■ Standards
■ costing and certification
■ Automotive Type 4 CNG/H2 Composite cylinder market in India and the rest of the world
■ Bulk transportation Type 4 CNG Composite cylinder market in India and the rest of the world
■ Swot analysis
■ The durability of the Type 4 Composite CNG cylinder
■ Initial Project cost to set up CNG/H2 manufacturing line
■ Strategic Model followed by the KEY PLAYERS
■ Economic efficiency & safety, 
■ The Future Trends in Composite CNG/HYDROGEN Cylinder market

Interested companies/Professionals do write to me at rosaram211@gmail.com to get more information on the PRICING of the report.

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Monday, January 30, 2023

Failure analysis on a safety clip

 Today's Knowledge Share:


I completed a failure analysis on a safety clip, which had failed an impact test at -30 °C. The parts are specified to be able to withstand the cold temperature impact test, and the failures were of serious concern due to potential safety issues. The parts were injection molded from an unfilled, impact modified nylon 6/6 resin.





The fractographic examination indicated that the cracking was initiated through a brittle fracture mechanism, characterized by a relatively high crack propagation rate, and a significant amount of driving energy. In particular, this was characterized by the presence of stepwise-cracking associated with crack bifurcation, as well as secondary cracking. Additionally, the fracture surface within the origin zone showed a very smooth morphology, without micro ductility. The observed features were indicative of a high level of energy within the fracture as it propagated from the origin. The fracture surface characteristics were consistent with the application of a high strain rate impact load, in agreement with the described testing that precipitated the cracking. Specifically, the observed features were indicative of brittle fracture associated with stresses that exceeded the short-term strength of the material through a high strain rate impact mechanism. 


Remote to the crack initiation zone, the fracture surface morphology was significantly different. Outside the crack origin, hackle marks and river markings were evident, indicative of rapid crack extension. With increasing distance from the crack origin, a relative increase in the level of micro ductility was apparent in the form of an overlapping morphology and stretching and deformation. This was important, as it indicated that the material was not inherently brittle.


This fracture surface presented classic features, illustrating how the crack features can change as the crack propagates.


Source:Jeffrey A Jansen

Visit MY BLOG http://polymerguru.blogspot.com


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Sunday, January 29, 2023

BUSINESS BRANDING

  EXPAND / GROW / ACCELERATE / LAUNCH – are you interested in any (or all) of these???





#Market development: Attract Prospects/Branding/Build Engagements/Turn Opportunities into Clients


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Contact Gruntech Polymer Consultants for all your product needs in India, China, and the Asia Pacific regions.


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Today's KNOWLEDGE Share : Understanding Draft Angles in Injection Molding

Today's KNOWLEDGE Share 💡 Understanding Draft Angles in Injection Molding — Small Detail, Big Impact When designing plastic parts, dra...