{"id":55432,"date":"2025-03-06T14:00:12","date_gmt":"2025-03-06T06:00:12","guid":{"rendered":"http:\/\/www.newtopchem.com\/archives\/55432"},"modified":"2025-03-06T14:00:12","modified_gmt":"2025-03-06T06:00:12","slug":"the-practical-effect-of-dmaee-dimethylaminoethoxyethanol-to-improve-the-flexibility-and-wear-resistance-of-sole-materials","status":"publish","type":"post","link":"http:\/\/www.newtopchem.com\/archives\/55432","title":{"rendered":"The practical effect of DMAEE dimethylaminoethoxyethanol to improve the flexibility and wear resistance of sole materials","gt_translate_keys":[{"key":"rendered","format":"text"}]},"content":{"rendered":"
Sole materials are a crucial component in footwear products, and their performance directly affects the comfort, durability and functionality of the shoe. As consumers’ requirements for footwear products continue to increase, sole materials need to have higher flexibility, wear resistance and other comprehensive properties. To meet these needs, the chemical industry continues to develop new additives to improve the performance of sole materials. Among them, DMAEE (dimethylaminoethoxy) as a multifunctional additive has gradually attracted attention in recent years. This article will discuss in detail the practical effects of DMAEE in improving the flexibility and wear resistance of sole materials, and analyze them through experimental data and market cases. <\/p>\n
DMAEE (dimethylaminoethoxy) is an organic compound with a chemical structural formula of C6H15NO2. It consists of dimethylamino, ethoxy and groups and has the following properties: <\/p>\n
DMAEE is widely used in the following fields: <\/p>\n
Flexibility is one of the important properties of sole materials, which directly affects the comfort of wearing and the service life of the shoes. Soles with insufficient flexibility are prone to cracking or deforming, while excessive softness can lead to insufficient support. <\/p>\n
Abrasion resistance is a key indicator for measuring the durability of sole materials. The soles will frequently rub against the ground during daily use, and materials with poor wear resistance are prone to wear, shortening the service life of the shoes. <\/p>\n
In addition to flexibility and wear resistance, sole materials also need to have the following properties: <\/p>\n
DMAEE improves the flexibility of sole materials by: <\/p>\n
DMAEE improves the wear resistance of sole materials by: <\/p>\n
To evaluate the actual effect of DMAEE in sole materials, the following experiments were designed: <\/p>\n
Additional amount (%)<\/th>\n | Bending Strength (MPa)<\/th>\n | Elongation of Break (%)<\/th>\n<\/tr>\n | |||||||||||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
0<\/td>\n | 12.5<\/td>\n | 250<\/td>\n<\/tr>\n | |||||||||||||||||||||||||
0.5<\/td>\n | 11.8<\/td>\n | 280<\/td>\n<\/tr>\n | |||||||||||||||||||||||||
1<\/td>\n | 11.0<\/td>\n | 310<\/td>\n<\/tr>\n | |||||||||||||||||||||||||
1.5<\/td>\n | 10.5<\/td>\n | 330<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n It can be seen from the table that with the increase of DMAEE addition, the bending strength of the material slightly decreased, but the elongation of break is significantly improved, indicating that the flexibility has been significantly improved. <\/p>\n 5.3 Wear resistance test results<\/h3>\n
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