GMG Reaches Major Milestones in THERMAL-XR(R) Test Work
GMG Reaches Major Milestones in THERMAL-XR(R) Test Work
Brisbane, Queensland, Australia--(Newsfile Corp. - October 23, 2024) - Graphene Manufacturing Group Ltd. (TSXV: GMG) ("GMG" or the "Company") is pleased to provide a technical update on the commercialisation progress of THERMAL-XR Powered by GMG Graphene.
澳大利亚昆士兰州布里斯班-- (Newsfile corp。-2024年10月23日)--石墨烯制造集团有限公司(TSXV: GMG)(" GMG "或" 公司 ")很高兴就由GMG石墨烯提供的THERMAL-XR商业化进展进行技术更新。
PRODUCT TECHNICAL UPDATE
THERMAL-XR has now successfully passed 15,000 hours for corrosion protection under a salt sea spray industry standard test (ASTM B117) in a third-party laboratory in the US as seen in Figure 1. The Company believes that THERMAL-XR is one of the longest lasting corrosion protection coatings available on the market. The testing will continue, and further reports will be updated by the Company.
产品技术更新
THERMAL-XR现已成功通过第三方美国实验室中的盐雾行业标准测试(ASTM B117),累计达到15,000小时的防腐蚀保护,如图1所示。公司认为,THERMAL-XR是市场上持久性最长的防腐蚀保护涂料之一。测试将继续进行,并公司将更新进一步的报告。
Figure 1: THERMAL-XR Coating Corrosion Test Results After 15,000 Salt Sea Spray Hours (ATM B117)
图1:THERMAL-XR涂层在15,000小时盐雾喷洒后的防腐蚀测试结果(ASTM B117)
GMG can now accurately model and calculate the heat transfer rate expected from THERMAL-XR, as compared to bare (uncoated) Aluminium, within 1% of actual results. This was reviewed and verified by the University of Queensland.
GMG 现在可以准确模拟和计算预期从THERMAL-XR获得的热传导速率,与裸铝相比,结果准确率在1%之内。这已由昆士兰大学审核和验证。
Figure 2 shows the simulation model used to calculate the heat transfer coefficients of bare aluminium, versus THERMAL-XR coated aluminium, on the test rig that GMG built and operated to obtain the experimental data. The test was conducted at a temperature of approximately 100 degree Celsius.
图2显示了用于计算裸铝与THERMAL-XR涂覆铝的热传导系数的模拟模型,该模型是使用GMG建造和操作的实验台所进行的实验数据。测试在温度约100摄氏度下进行。
Figure 2: Estimation of Heat Transfer of THERMAL-XR coated aluminium versus bare aluminium
图2:THERMAL-XR涂覆铝与裸铝的传热估算
Through this work, as shown in Figure 3, the Company has demonstrated that THERMAL-XR provides approximately 8.6 times more radiative heat transfer than bare aluminium, due to its thermal radiation (passing of heat in wave forms) capabilities. THERMAL-XR has been calculated to provide 8.15 W/m2K (Watts per metre squared Kelvin degrees), or approximately 1.44 Btu/hr ft2 F (British thermal units per hour foot squared Fahrenheit degrees), of heat transfer when applied properly on top of bare aluminium, as compared to 0.95 W/m2K or 0.17 Btu/hr ft2 for bare aluminium.
通过这项工作,正如图3所示,公司已经证明THERMAL-XR提供比裸铝大约多8.6倍的热辐射传递,这是由于其热辐射(以波形形式传热)的能力。据计算,当正确施加在裸铝上时,THERMAL-XR被计算为提供每平方米约8.15瓦特/米0.2万(每平方米开尔文度的焦耳),或者大约1.44英国热单位/小时平方英尺华氏度的传热,相比之下,裸铝的数值为0.95瓦特/米0.2万或0.17英国热单位/小时平方英尺。
Figure 3: Thermal Radiation calculations of THERMAL-XR coated aluminium versus bare aluminium
图3:THERMAL-XR涂层铝与裸铝的热辐射计算
Figure 4 shows THERMAL-XR increases the overall heat transfer coefficient by 2.2 times more than bare aluminium, from 6.0 W/m2K up to 13.2 W/m2K because of the increase in the thermal radiation from the THERMAL-XR coating. This was conducted at a temperature of approximately 100 degree Celsius for a 100mm diameter flat plate.
图4显示,THERMAL-XR使整体传热系数比裸铝提高了2.2倍,从6.0 W/m0.2万增加到13.2 W/m0.2万,原因是THERMAL-XR涂层的热辐射增加。这是在大约100摄氏度的温度下进行的,对于直径为100毫米的平板。
Thermal Coefficient (W/m2K) | Bare Aluminium | THERMAL-XR Coated Aluminium |
Thermal Radiation | 0.95 | 8.15 |
Natural Convection (Air Cooling) | 5.08 | 5.08 |
Total Heat Transfer | 6.0 |
13.2 (2.2 Times) |
热系数(W/m2K) | 裸铝 | THERMAL-XR涂层铝 |
热辐射 | 0.95 | 8.15 |
自然对流(空气冷却) | 5.08 | 5.08 |
总热传递 | 6.0 |
13.2 (2.2倍) |
Figure 4: NATURAL Convection Overall Thermal Coefficient of THERMAL-XR versus bare aluminium
图4:THERMAL-XR 的自然对流整体热系数与裸铝相比
Figure 5 shows that THERMAL-XR provides approximately 27% more heat transfer when including FORCED convection (fan air cooling) over bare aluminium from 26.6 W/m2K up to 33.8 W/m2K because of the increase in the thermal radiation from the THERMAL-XR coating. This was conducted at a temperature of approximately 100 degree Celsius and with modelling of the air speed at an approximate 5 metres/second.
图5显示,THERMAL-XR在包含强制对流(风冷)时,与裸铝相比提供了约27%更高的传热,从26.6 W/m0.2万增加到33.8 W/m0.2万,这是因为THERMAL-XR涂层产生的热辐射增加。此试验在大约100摄氏度的温度下进行,并对空气速度进行了建模,速度约为每秒5米。
Thermal Coefficient (W/m2K) | Bare Aluminium | THERMAL-XR Coated Aluminium |
Thermal Radiation | 0.95 | 8.15 |
Forced Convection (Fan Air Cooling) | 25.71 | 25.71 |
Total Heat Transfer | 26.6 |
33.8 (27% Increase) |
热系数(W/m2K) | 裸铝 | THERMAL-XR涂层铝 |
热辐射 | 0.95 | 8.15 |
强制对流(风冷) | 25.71 | 25.71 |
总热传递 | 26.6 |
33.8 (增加27%) |
Figure 5: FORCED Convection Cooling Overall Thermal Coefficient of THERMAL-XR versus bare aluminium
图5:强制对流冷却热传导-XR与裸铝整体热系数
GMG's Managing Director and CEO, Craig Nicol, commented: "GMG continues to make good progress in testing THERMAL-XR for corrosion protection and heat transfer - our increased understanding of the heat rejection rate of the product allows us to better recognise how it can be of potential value for various types of products in various applications and markets."
GMG的董事总经理兼首席执行官Craig Nicol评论道:“GMG在测试THERMAL-XR用于防腐蚀和热传递方面取得良好进展-我们对产品的散热率有了更深入的了解,这让我们更好地认识到它在各种类型的产品、各种应用和市场上可能具有的潜在价值。”
GMG's Chairman and Director, Jack Perkowski, commented: "THERMAL-XR testing in corrosion protection and heat transfer is highly translatable into so many industries - so it is great to see the progress."
GMG的董事长兼董事Jack Perkowski评论说:“在腐蚀保护和传热方面,THERMAL-XR测试在许多行业中具有很高的可转换性,因此看到进展真是太棒了。”
About THERMAL-XR powered by GMG Graphene:
关于由GMG石墨烯提供动力的THERMAL-XR:
THERMAL-XR COATING SYSTEM is a unique method of improving the heat conductivity of corroded heat exchange surfaces and improving and maintaining the performance of new units at peak levels. The process coats and protects heat exchange surfaces increasing service life, while improving and rebuilding the lost corroded thermal conductivity and increasing the heat transfer rate by leveraging the physics of GMG Graphene, resulting in an efficiency improvement and a potential power reduction.
THERMAL-XR涂层系统是一种独特的方法,可以改善腐蚀的热交换表面的导热性能,提高和保持新装置的性能达到峰值。该过程涂覆并保护热交换表面,延长使用寿命,同时通过利用GMG石墨烯的物理特性来改善和重建丢失的腐蚀导热性,并提高传热速率,从而提高效率并潜在降低功耗。
THERMAL-XR RESTORE is powered by GMG Graphene. PATENT PENDING
THERMAL-XR RESTORE由GMG石墨烯提供动力。专利申请中
About GMG
关于GMG
GMG is a clean-technology company which seeks to offer energy saving and energy storage solutions, enabled by graphene, including that manufactured in-house via a proprietary production process. GMG has developed a proprietary production process to decompose natural gas (i.e. methane) into its elements, carbon (as graphene), hydrogen and some residual hydrocarbon gases. This process produces high quality, low cost, scalable, 'tuneable' and low/no contaminant graphene suitable for use in clean-technology and other applications.
GMG是一家清洁科技公司,旨在提供由石墨烯实现的节能和储能解决方案,包括通过专有生产工艺在内部制造的石墨烯。 GMG已经开发了一种专有生产工艺,将天然气(即甲烷)分解为碳(作为石墨烯)、氢和一些残余的碳氢化合物气体。 这个过程产生高质量、低成本、可扩展、可调节、无或低污染物的石墨烯,适用于清洁科技和其他应用。
The Company's present focus is to de-risk and develop commercial scale-up capabilities, and secure market applications. In the energy savings segment, GMG has focused on graphene enhanced heating, ventilation and air conditioning ("HVAC-R") coating (or energy-saving coating), lubricants and fluids.
公司目前的重点是降低风险,并发展商业规模化能力,并确保市场应用。 在节能领域,GMG专注于石墨烯增强的暖通空调("HVAC-R")涂层(或节能涂层)、润滑剂和流体。
In the energy storage segment, GMG and the University of Queensland are working collaboratively with financial support from the Australian Government to progress R&D and commercialization of graphene aluminium-ion batteries ("G+AI Batteries").
在储能领域,GMG与昆士兰大学正在与澳大利亚政府的财政支持下合作进行石墨石墨烯铝离子电池("G+AI 电池")的研发和商业化。
GMG's 4 critical business objectives are:
GMG的4个关键业务目标是:
- Produce Graphene and improve/scale cell production processes
- Build Revenue from Energy Savings Products
- Develop Next-Generation Battery
- Develop Supply Chain, Partners & Project Execution Capability
- 生产石墨烯和改进/扩大电池生产流程
- 从节能产品中建立营业收入
- 开发下一代电池
- 开发供应链、合作伙伴关系和项目执行能力
For further information please contact:
要了解更多信息,请联系:
- Craig Nicol, Chief Executive Officer & Managing Director of the Company at craig.nicol@graphenemg.com, +61 415 445 223
- Leo Karabelas at Focus Communications Investor Relations, leo@fcir.ca, +1 647 689 6041
- 公司首席执行官兼董事总经理Craig Nicol,电子邮件: craig.nicol@graphenemg.com,电话:+61415445223
- Focus Communications投资者关系Leo Karabelas,电子邮件:leo@fcir.ca,电话:+1 647 689 6041
Neither the TSX Venture Exchange nor its Regulation Services Provider (as that term is defined in the policies of the TSX Venture Exchange) accept responsibility for the adequacy or accuracy of this news release.
TSX Venture Exchange及其监管服务提供商(如TSX Venture Exchange的政策所定义)对本新闻稿的充分性或准确性不负责任。
Cautionary Note Regarding Forward-Looking Statements
关于前瞻性声明的警示
This news release includes certain statements and information that may constitute forward-looking information within the meaning of applicable Canadian securities laws. Forward-looking statements relate to future events or future performance and reflect the expectations or beliefs of management of the Company regarding future events. Generally, forward-looking statements and information can be identified by the use of forward-looking terminology such as "intends", "expects" or "anticipates", or variations of such words and phrases or statements that certain actions, events or results "may", "could", "should", "would" or will "potentially" or "likely" occur. This information and these statements, referred to herein as "forward‐looking statements", are not historical facts, are made as of the date of this news release and include without limitation, that the Company will continue testing THERMAL-XR and provide further updates, that increased understanding of THERMAL-XR will allow the Company to better recognize how it can add value in various types of products in various applications and markets, and that THERMAL-XR testing in corrosion protection and heat transfer is highly translatable into many industries.
本新闻稿包含可能构成适用加拿大证券法意义下前瞻性信息的某些声明和信息。前瞻性声明涉及未来事件或未来业绩,并反映了公司管理层对未来事件的期望或信念。一般而言,前瞻性声明和信息可通过使用诸如“打算”、“预计”或“预测”之类的前瞻性术语来识别,或者是某些行动、事件或结果“可能”、“可能”、“应该”、“将”“有可能”或“可能”发生的陈述。本信息和这些声明,以下简称为“前瞻性声明”,不构成历史事实,截至本新闻发布日期制作,包括但不限于,公司将继续测试THERMAL-XR并提供进一步更新,加深对THERMAL-XR的了解将使公司更好地认识到如何能够在各种类型产品以及各种应用和市场中增加价值,以及THERMAL-XR在腐蚀保护和换热方面的测试在许多行业中具有高度的可转化性。
Such forward-looking statements are based on a number of assumptions of management, including, without limitation, that the Company will continue to test THERMAL-XR and provide updates, that an increased understanding of THERMAL-XR will enable the Company to better identify how THERMAL-XR can add value for various products in various applications and markets, and that THERMAL-XR testing in corrosion protection and heat transfer is highly translatable into many industries. Additionally, forward-looking information involves a variety of known and unknown risks, uncertainties and other factors which may cause the actual plans, intentions, activities, results, performance or achievements of GMG to be materially different from any future plans, intentions, activities, results, performance or achievements expressed or implied by such forward-looking statements. Such risks include, without limitation: that the Company will not continue testing THERMAL-XR, that the Company will not provide further updates regarding THERMAL-XR, that a better understanding of THERMAL-XR will not allow the Company to better recognize how it can add value in various types of products in various applications and markets, that THERMAL-XR testing in corrosion protection and heat transfer will not be highly translatable into many industries, risks relating to the extent and duration of the conflict in Eastern Europe and its impact on global markets, the volatility of global capital markets, political instability, the failure of the Company to obtain regulatory approvals, attract and retain skilled personnel, unexpected development and production challenges, unanticipated costs and the risk factors set out under the heading "Risk Factors" in the Company's annual information form dated October 3, 2024 available for review on the Company's profile at .
这些前瞻性声明基于管理层的多项假设,包括但不限于,公司将继续测试THERMAL-XR并提供更新,对THERMAL-XR有更深入的了解将使公司更好地确定THERMAL-XR如何能够为各种产品在各种应用和市场中增加价值,以及THERMAL-XR在腐蚀保护和换热方面的测试在许多行业中具有高度的可转化性。此外,前瞻性信息涉及各种已知和未知的风险、不确定性和其他因素,可能导致GMG的实际计划、意图、活动、结果、表现或成就与此类前瞻性声明所表达或暗示的任何未来计划、意图、活动、结果、表现或成就明显不同。此类风险包括但不限于:公司将不继续测试THERMAL-XR,公司将不会进一步更新有关THERMAL-XR的信息,对THERMAL-XR有更好了解将不会使公司更好地认识到如何能够在各种类型产品以及各种应用和市场中增加价值,THERMAL-XR在腐蚀保护和换热方面的测试将不具备在许多行业中具有高度的可转化性的风险,涉及东欧冲突规模和持续时间及其对全球市场的影响的风险、全球资本市场的波动性、政治不稳定性、公司未能获得监管批准、吸引和留住人才、意外发展和生产挑战、未预料的成本,以及公司2024年10月3日的年度信息表格中列明的风险因素,可在公司档案中查阅。
Although management of the Company has attempted to identify important factors that could cause actual results to differ materially from those contained in forward-looking statements or forward-looking information, there may be other factors that cause results not to be as anticipated, estimated or intended. There can be no assurance that such statements will prove to be accurate, as actual results and future events could differ materially from those anticipated in such statements. Accordingly, readers should not place undue reliance on forward-looking statements and forward-looking information. Readers are cautioned that reliance on such information may not be appropriate for other purposes. The Company does not undertake to update any forward-looking statement, forward-looking information or financial out-look that are incorporated by reference herein, except in accordance with applicable securities laws. We seek safe harbor.
尽管公司管理层试图确认可能导致实际结果与前瞻性声明或前瞻性信息不同的重要因素,或意图,或预估,但可能还存在导致结果不如预期、估计或预期的其他因素。因此,读者不应就前瞻性声明和前瞻性信息做出过多的依赖。读者应被告知,依赖这种信息可能不适合其他用途。该公司不承诺更新任何已被纳入其中的前瞻性声明、前瞻性信息或财务展望,除非按照适用的证券法规。我们寻求安全港。