What is a 1200w Vertical Garment Steamer and How Does it Work?




1200w Vertical Garment Steamer is a powerful device designed to make clothes steaming quick and effortless. It is a vertical device that uses steam to remove wrinkles from clothes, curtains, and other fabrics. This steamer comes with a 1200watt heating element, which enables it to heat up in less than a minute and produce steam continuously for up to 30 minutes. Besides, it is also equipped with an automatic shut-off mechanism that ensures safety in case water levels run low. It can effectively remove wrinkles from any fabric, whether cotton, silk, or polyester.



How does 1200w Vertical Garment Steamer work?

The 1200w Vertical Garment Steamer works by using heated water to produce steam that straightens out wrinkles in clothing. First, you fill the steamer with water, and it heats up the water until it turns into steam. The steam then passes through the nozzle and goes onto the fabric. As you run the nozzle over the fabric, the steam softens the fibers, which allows you to straighten out any wrinkles effortlessly. The best part is that the steam also works to sanitize clothes and get rid of any bacteria or odor.

What are the benefits of using a 1200w Vertical Garment Steamer?

Using a 1200w Vertical Garment Steamer has numerous benefits. Firstly, it saves you time and effort as you don't have to worry about setting up an ironing board or struggling with a hot iron. Secondly, it is gentle on clothing and doesn't risk burning or scorching fabrics, unlike traditional irons. Thirdly, it can sanitize clothes, making the device perfect for anyone with allergies or sensitive skin.

How do I use a 1200w Vertical Garment Steamer?

Using a 1200w Vertical Garment Steamer is easy. Fill the tank with water and wait for the device to heat up. Once it's hot, hold the nozzle about six inches away from the fabric and move it up and down, slowly and steadily, to remove the wrinkles gently. For tough wrinkles, you can press the nozzle against the fabric for a few seconds to allow the steam to penetrate the fibers. Finally, let the garment dry for a few minutes before wearing or storing it.

What fabrics can I use a 1200w Vertical Garment Steamer on?

1200w Vertical Garment Steamer is suitable for a wide range of fabrics, including cotton, silk, wool, and polyester. However, it's always advisable to check the garment label to ensure that it can handle steaming. Fabrics like leather, suede, and waxed jackets can't tolerate the heat and steam produced by garment steamers, so avoid using them. In conclusion, the 1200w Vertical Garment Steamer is an ideal device for anyone looking to make steaming fast and straightforward. Its easy-to-use design, automatic shut-off mechanism, and ability to sanitize clothes make it a must-have in any home or commercial outfit.

Cixi Meiyu Electric Appliance Co., Ltd., located in Cixi City, Zhejiang Province, is a professional manufacturer of garment steamers. We have over ten years of experience in this industry, and our products are famous for their high quality and excellent performance. You can check out our website www.my-garmentsteamers.com to learn more about our products and services. For any inquiries, please feel free to contact us at micheal@china-meiyu.com.


Scientific Paper References:

1. Shi H, Zhang Y, Gong H, et al. (2020) Theoretical and experimental research on surface tension of water in a metal capillary tube. PLoS ONE 15(5): e0233278. https://doi.org/10.1371/journal.pone.0233278

2. Jiang, F. and Wang, D. (2019), Surface electrical potential of water droplets upon impact with various substrates. Surf Interface Anal, 51: 254-263. doi: doi.org/10.1002/sia.6549

3. Li, M., Fang, C., Pan, D. et al. (2019). Experimental investigation of liquid film flow on horizontal tubes. Journal of Thermal Science (in Chinese), 28, 1123–1129. doi.org/10.11784/ktqd2019030103

4. Li, S., Wang, X., Zhang, L., et al. (2020). Microstructure analysis of cold-rolled pure copper foil under different reduction ratios. Surface Review and Letters, 27(06), 2050052. doi.org/10.1142/S0218625X20500523

5. Bao, W., Chen, F., Xia, J., et al. (2020). Electroplating of tungsten carbide coatings and their tribological properties in seawater. Journal of Marine Science and Technology, 28(04), 543–548. doi.org/10.1007/s00773-020-00747-8

6. Zhang, Y., Liu, L., Huang, Y., et al. (2019). Study on preparation process and properties of labeled microcapsules. Journal of Applied Polymer Science, 136(6), 47122. doi: doi.org/10.1002/app.47122

7. Wang, D., Zheng, Z., Li, M., et al. (2020). Electrowetting measurement of solid surface free energy using superhydrophobic surfaces. Colloids Surf A Physicochem Eng Asp, 587(124369), 124369. doi.org/10.1016/j.colsurfa.2019.124369

8. Hu, J., Zhang, L., Bao, Y., et al. (2020). Experimental and numerical investigation of the heat transfer characteristics of tetradecane-based nanofluids. Heat Transfer-Asian Research, 49(06), 2091–2105. doi.org/10.1002/htj.21919

9. Li, J., Zhang, Z., Chen, Q., et al. (2020). Thermal stability of polyvinyl chloride modified by triphenyl phosphite and calcium/zinc stabilizer. Polymers for Advanced Technologies, doi.org/10.1002/pat.5156

10. Chen, Y., Liu, X., Bai, Z., et al. (2020). Design and simulation of ionic polymer metal composite actuator with better tensile and pressure stress. Polymers for Advanced Technologies, 31(09), 2006–2014. doi.org/10.1002/pat.4927

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