Product Details\uff1a<\/span><\/h2>\n <\/p>\n
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\u00a0 You can fill up to1kg of wood pellets at a time\u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 High-silica borosilicate glass tubing<\/span><\/p>\n\u00a0 \u00a0 \u00a0 and let them burn for up to 60 minutes\u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 durable and long-lasting<\/span><\/p>\n <\/p>\n
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\u00a0 \u00a0The pellet hopper features automatic feeding,\u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0Equipped with screws and securely welded at the base for reliable use<\/span><\/p>\n\u00a0 \u00a0eliminating the need for frequent fuel replenishment\u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 \u00a0 Please ensure use on level surfaces <\/span><\/p>\n\u00a0 \u00a0Manual adjustment of the damper allows for pausing operations<\/span><\/p>\nProduct definition and working principle\uff1a<\/span><\/h2>\nDie Outdoor Burning Stove<\/span> working principle is based on gravity discharge and the chimney effect: After ignition, the particles burn at high temperatures in the combustion chamber, and the generated heat is mainly dissipated in the form of infrared radiation and convection. The glass tube serves as a guide for the smoke and provides isolation and protection: it seals the combustion zone, forming an upward channel (chimney effect), enhancing air flow, making the combustion more complete, and transmitting visible light and infrared thermal radiation to the surroundings through the glass surface. The glass tube is typically made of high borosilicate heat-resistant glass with a thickness of \u2265 3mm to withstand the combustion temperature (up to 800\u00b0C or above). The entire system does not require an external power source (most models are purely gravity-fed), and the structure is simple, as shown in the following flowchart:<\/p>\n
<\/h2>\nPerformance and Security Assessment\uff1a<\/span><\/h2>\n\u2665\u00a0 Thermal efficiency: Due to heat dissipation from the atmosphere, outdoor pellet stoves generally have lower efficiency than indoor ones. According to the Department of Energy, EPA-certified pellet stoves have an efficiency of approximately 70% – 83%. In actual use, visible light and infrared radiation are the main heating methods. For example, another supplier claims a 55,000 BTU output, but the actual perceived heat depends on the radiation coverage area. To improve efficiency, it is necessary to ensure complete combustion (optional ventilation to assist combustion) and reduce heat loss (installing reflectors, windshields, etc.).<\/p>\n
\u2665\u00a0 Temperature distribution: The glass tube flame spreads upward in a column shape, with uniform distribution, and the surrounding perceived heat is relatively consistent (“head-to-toe” heating). However, in open spaces, heat is prone to spread, making it suitable for local gatherings rather than heating large areas.<\/p>\n
\u2665\u00a0 Breakage\/bursting risk: The glass tube is subject to thermal expansion and contraction under high combustion temperatures or sudden cooling, and there is a risk of bursting. Although high borosilicate glass is resistant to thermal shock, it may develop cracks or even burst if subjected to rapid cooling (such as contact with water) or manufacturing defects. Therefore, it is necessary to avoid spraying water or subjecting it to violent impact while it is still hot.<\/p>\n
\u2665\u00a0 Leakage and emissions: Burning coal particles produces smoke and carbon monoxide. Although the risk is lower when used outdoors, precautions against CO accumulation should still be taken in crowded and windless environments. Most products have an exhaust outlet pointing upwards and are open, requiring no chimney, and avoiding indoor use or ensuring good ventilation. Pellet stoves burn relatively cleanly, but there are still issues with PM2.5 and carbon monoxide emissions. Using dry, high-quality hardwood pellets can reduce smoke. Models meeting CE or EPA standards have emission guarantees.<\/p>\n
\u2665\u00a0 Overheating protection: Such equipment usually does not have electronic overheat protection and relies on mechanical cooling. During use, fuel supply should be kept uniform (to avoid excessive accumulation causing an overly vigorous flame) and the equipment temperature should be monitored to prevent overheating of the base or tube, which could lead to safety hazards. If abnormal sounds or deformation of the glass tube occur, the stove should be shut down immediately for inspection.<\/p>\n
Key design elements and materials\uff1a<\/span><\/h2>\n\u2665\u00a0 Specifications and materials of the glass tube: The glass tube is usually made of high borosilicate heat-resistant glass (with an extremely low coefficient of linear expansion), and its thickness is generally 3\u20134 mm. The Kewei factory labels it as “borosilicate glass” tube. High borosilicate glass can withstand temperatures above 800\u00b0C and has good thermal shock stability. The patent states that by forming the glass into multi-sided particles (with a thickness of \u2264 10 mm), internal stress can be reduced and cracks can be prevented during rapid cooling and heating. The actual product adopts a single tube structure, but it still needs to avoid extreme cold and hot shocks (such as suddenly pouring cold water).<\/p>\n
\u2665\u00a0 Sealing and support structure: The bottom of the glass tube is embedded in the top of the combustion chamber, usually fixed with metal clamps and sealed with high-temperature resistant silicone gaskets to prevent gas leakage. There may be metal snap rings or cover tops on the upper part to stabilize the tube. As per Kewei’s description, a clamping clamp and fastening screws are installed at the tube opening. Durability depends on the material and assembly accuracy. Long-term high temperatures can cause thermal expansion, so sufficient thermal expansion allowance should be reserved.<\/p>\n
\u2665\u00a0 Main material: The main boiler body of the Outdoor Burning Stove can be made of carbon steel or stainless steel. Carbon steel has a lower cost but slightly poorer corrosion resistance, and it is suitable for outdoor use and requires rust prevention treatment; stainless steel has a higher cost but good weather resistance. High-temperature spraying or painting can increase corrosion resistance and appearance (the Masoto surface treatment can withstand 600\u00b0C).<\/p>\n
\u2665\u00a0 Structural stability: The base is mostly in a tripod or square welded structure, which needs to be sufficiently stable to prevent tipping. Some products have “design” or self-weight bases. Using a heavy-duty chassis or legs can improve stability, but it will increase weight and cost. Portability design (such as wheels or detachable components) is also a consideration.<\/p>\n
\u2665\u00a0 Heat dissipation and protection: Some Courtyard Style Particle Heater models add a heat dissipation cover or reflection cover on the top of the tube to guide the heat downward (as shown in the top reflection plate of the image). When designing, the material of the protective cover (commonly metal mesh or reflection plate) should be considered to prevent accidental contact and improve the downward radiation effect.<\/p>\n
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The advantages and disadvantages of key design choices\uff1a<\/span><\/h2>\n\n\n\nDesign elements <\/strong><\/td>\nAdvantages<\/strong><\/td>\nDisadvantages<\/strong><\/td>\n<\/tr>\n\nGlass material<\/strong> (thick borosilicate)<\/td>\n| High heat resistance, resistant to thermal shock, transparent and beautiful<\/td>\n | High cost; gravitational force causes stress concentration, thus fracture prevention is necessary.<\/td>\n<\/tr>\n | \nMain material:<\/strong> Carbon steel<\/td>\n| Low cost, easy to manufacture<\/td>\n | Prone to rust and requires maintenance; not resistant to seaside conditions<\/td>\n<\/tr>\n | \nMain material:<\/strong> Stainless steel<\/td>\n| Resistant to corrosion and good in weather resistance.<\/td>\n | High cost; thermal conductivity is slightly inferior to that of carbon steel<\/td>\n<\/tr>\n | \nFeed method:<\/strong> Gravity feeding<\/td>\n| Simple structure, no need for power supply<\/td>\n | The combustion rate is difficult to be precisely controlled; materials need to be added at regular intervals.<\/td>\n<\/tr>\n | \nFeed method:<\/strong> Automatic \/ Fan<\/td>\n| More complete combustion and better controllability<\/td>\n | The system is complex and requires power supply; the cost is high.<\/td>\n<\/tr>\n | \nBase design:<\/strong> tripod<\/td>\n| Low center of gravity, good stability<\/td>\n | Small in size; not suitable for soft ground<\/td>\n<\/tr>\n | \nBase design:<\/strong> Flat plate \/ Box type<\/td>\n| High space utilization rate, capable of accommodating components<\/td>\n | Heavy in weight; difficult to move<\/td>\n<\/tr>\n | \nReflector hood:<\/strong> Yes<\/td>\n| The heat can be reflected downward to enhance radiation.<\/td>\n | Increase the obstruction (increase of wind load); Cost<\/td>\n<\/tr>\n | \nReflector hood:<\/strong> None<\/td>\n| Simple and lightweight<\/td>\n | Simple and lightweight<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n | | | | | | | | | | | | |