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Dry ice blasting cleaning solutions are ideal for many applications within a broad and diverse range of industries.
Reduce cleaning time by as much as 70%
Cold jet dry ice cleaningg has helped automotive companies cut their mold building cleaning costs by as much as $50,000 per year. Cold Jet's non-abrasive dry ice cleaning systems easily remove excess grease, sludge, sealant and weld slag from equipment. Dry ice blast cleaning is faster and more effective than a traditional cleaning methods, in part, because it does generate any secondary waste or leave any residual blasting media to clean up or dispose of.
Blow Mold, Compress Mold, Core Box, E-coat, Injection Mold, Paint Hook, Permanent Aluminum Mold, Transmission Housing, Urethane Mold, Weld Line
Dry ice blasting for contract cleaning is an environmentally responsible and non-abrasive alternative to traditional cleaning methods. It is a faster and more effective process that does not produce secondary waste, which minimizes containment setup and eliminates the timely and costly task of waste collection and disposal. By utilizing dry ice blasting, contractors perform projects with less people and in less time, improving the bottom line. Dry ice blasting is used for a wide range of projects and for general maintenance and facility cleaning in a multitude of industries around the world.
The dry ice cleaning technique plays an important role in cleaning equipment and electronic circuit boards. Whether you're cleaning medium-sized electronics in factories or large out of high voltage pylons, dry ice can ensure that your equipment stays untouched. This method will prolong the life of your electronic device.
Central processing unit , motherboards, random access memory, keyboards etc…
A safer cleaning process that requires less labor and eliminates manual cleaning Dry ice blasting eliminates the manual cleaning of engineered wood presses, dryers and vents, while eliminating employee exposure to unsafe conditions. The process reduces overall cleaning time and provides a more effective cleaning result.
Experience a cleaner clean with a fraction of the waste. Food processing and packaging equipment accumulates grease, carbonized residue, seasonings, proteins, harmful bacteria, biofilms, adhesives, labels and many other contaminants that traditionally take significant time to clean. Dry ice blasting for the food industry provides an in-situ cleaning solution that is non-destructive, sustainable, does not use water or chemicals and does not produce secondary waste.
Reduce downtime while protecting foundry equipment from damage. Dry ice blasting for foundries significantly reduces cleaning time of permanent molds, core boxes, die cast tooling and ancillary equipment while improving part quality.
Maintain high product quality by effectively cleaning medical device manufacturing equipment. Dry ice cleaning reduces cleaning time for precision molds as well as high-tolerance and precision medical parts. Dry ice injection for manufacturing medical devices is a non-abrasive process that will not damage the mold or tool. It allows for more frequent and efficient cleaning, greatly reducing tool replacement costs and scrap rates while increasing output quality.
Dry Ice Blasting Machines for Packing & Production Equipment. Dry ice blasting thoroughly cleans buildup, such as adhesive, ink, grease, paper dust, labels, and food residue from packaging equipment in-place, while running, enabling facilities to maximize control and production efficiency.
Solutions for your pain points in plastics processing. Dry ice blasting helps plastic manufacturers reduce scrap and downtime, improve product quality and prolong the life of their equipment.
Reduce downtime and unplanned outages in power generation. Dry ice blasting ensures regular maintenance of critical path power equipment in power generation. The process is non-conductive, non-abrasive and allows for effective in-place cleaning without cooldown or disassembly.
Keep your tire and rubber mold presses running. Buildup of cured material and mold release agents causes sticking molds, blemishes and unwanted flash on final parts, making them unusable and requiring press shutdown for cleaning. Traditional cleaning methods can be time consuming, ineffective, damaging to molds and result in high labor and material costs. Turn to rubber & tire mold dry ice cleaning equipment for a faster, more efficient, and gentler solution. Dry ice blasting is an in-place, online or offline, quick and effective way to clean without damaging expensive molds.
Injection molds, Blow molds Compression molds, Silicone rubber injection molds, Metal bonded molds, Lift presses, Tilt back presses.
Effectively and safely clean textile production equipment online. Lint, glue and other buildup on production equipment is a common problem within the textile industry. With dry ice blasting, buildup can be removed quickly and without disassembly or damage to the equipment.
Environmentally responsible cleaning and surface preparation
Dry ice cleaning uses solid CO, a non-abrasive media that won't damage surfaces or equipment. The super cooled dry ice pellets or particles are accelerated at supersonic speeds and sublimate on impact, resulting in the surface being cleaned, lifting dirt and contaminants off the underlying substrate.
Instead of abrasive media to grind surfaces (and damage them), Cold Jet uses dry ice (Solid CO2) accelerated at supersonic speeds that sublimate upon impact and lift contaminants from substrates.
Less Air. Less Ice. More Coverage
Cold Jet's patented, shaved dry ice MicroParticle technology provides the most thorough clean for many applications. By shaving dry ice media into the finest MicroParticles, more particles enter the air stream and strike the surface per second than a traditional methods, quickly removing the contaminant and providing the fastest clean. The sugar-sized, shaved MicroParticles will enter the hardest-to-reach places and are small and delicate enough to pass through sensitive materials (like vents) for a thorough clean without worry of damaging the surface.
Managing consumables is important when incorporating dry ice cleaning and shaved MicroParticles will save you time and money. Due to the particle size, less compressed air is needed to propel the shavedMicroParticles to peak velocities, resulting in a much quieter clean. In addition, the improved particles coverage and particles strikes per square inch when shaving reduces the amount of dry ice required for cleaning.
Because the surface is hit by more MicroParticles at a time, it is cleaned faster and more evenly.
When compared to pellets or fragmented pellets, MicroParticles produce less noise, resulting in a better working environment.
MicroParticles minimize the risk of damage to surface, vents, ducts, bridges, high gloss polished forms or ejectors.
Due to size MicroParticles are able to reachayeas where pellets and conventional methods can not.
Less power and kinetic energy are needed to accelerate MicroParticles, significantly reducing dry ice and compressed air consumption.
SOVIGAZ was established in 1974 based on the merger between Vietnam SOAEO Division and Vietnam Steam Industry Company. As a leading state-owned enterprise in the production of medical gases, industrial gases, medical gases, electric welding rods and chemicals in Vietnam.
From its own internal resources, Sovigaz company has achieved many great achievements. Besides, it is impossible not to talk about the mutual and close relationship between Sovigaz and its customers and partners. Through this introduction, we hope that customers will better understand the process of formation, operation and development orientation of our company Sovigaz.
We've been able to cut back on our use of chemical solvents. We use about 25% of what we used to, which makes us a much more environmentally responsible company
Using dry ice cleaning reduces harmful air emission and generally creates no addition to the volume of the cleaning process waste stream...in-process machinery can be cleaned on-line, resulting in decreased labor cost and less down-time.
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