Can the difference between stroke shoes and sneakers can be used as sports shoes?
1. The difference between streaming shoes and sports shoes
1. Different appearance
Xiushu shoes are generally low -top styles. There are usually many raised rubber blocks and drainage holes on the soles. This can effectively enhance the friction and non -slip of the shoes, so that the wearers can walk in slippery rocks and water. More stable.sports shoes often pay more attention to comfort and streamlined appearance design. The protruding and drainage holes on the soles will relatively less.
2. Material difference
The material of the stream shoes is usually fast -drying. This material has good breathability and waterproofing, which can effectively prevent water from entering the shoes, and at the same time to keep the feet dry.And sneakers often use more mesh materials. The breathability of this material is very good, but relatively speaking, the protection ability of water will be weaker.
3. Different effects
The shoe traces are generally used for slippery and rugged terrain. Therefore, its soles are generally harder, and the upper is also more abrasion, which can deal with these complex terrain.sports shoes are more suitable for gentle road conditions. Its soles are generally relatively soft, and are more suitable for long -distance walking and Running.
2. Can I be a sports shoes on the stream shoes?
Step Shoes can be used as sports shoes.Because the sweatability and breathability of the stroke shoes are very good, you can quickly remove the moisture inside the shoes and keep the inside of the shoe dry. The stream shoes are mainly used to wear when climbing and crossing the stream. The filtering effect is very soft at the same time, and there is no problem for Running.When Running or jogging, you can choose high -top stream shoes, which can play a certain protective role in ankle.However, if you are a long -distance walking or Running enthusiast, it is recommended to choose a professional sports shoes to give you better comfort and shock absorption effect.