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1. (WO2018076657) BUFFER AND SHOCK-ABSORPTION MOULDED CUP AND MANUFACTURING METHOD THEREFOR, AND SPORTS BRA HAVING SAME

Pub. No.:    WO/2018/076657    International Application No.:    PCT/CN2017/083238
Publication Date: Fri May 04 01:59:59 CEST 2018 International Filing Date: Sat May 06 01:59:59 CEST 2017
IPC: A41C 3/00
A41C 3/12
Applicants: SUZHOU MEISHANZI GARMENTS CO., LTD.
苏州美山子制衣有限公司
Inventors: ZANG, Zhijun
臧志俊
Title: BUFFER AND SHOCK-ABSORPTION MOULDED CUP AND MANUFACTURING METHOD THEREFOR, AND SPORTS BRA HAVING SAME
Abstract:
Disclosed are a buffer and shock-absorption moulded cup and a manufacturing method therefor, and a sports bra having same. The buffer and shock-absorption moulded cup comprises a moulded cup surface layer (1) and a moulded cup bottom layer (2) which are combined together. The moulded cup surface layer (1) comprises a surface cloth (11) and an outer shock-absorption layer (12) combined on the surface cloth (11). The outer shock-absorption layer (12) has a plurality of outer buffer posts (121) protruding inward. Outer buffer gaps (122) are provided between adjacent outer buffer posts (121). The moulded cup bottom layer (2) comprises a bottom cloth (21) and an inner shock-absorption layer (21) combined on the bottom cloth (21). The inner shock-absorption layer (22) has a plurality of inner buffer posts (221) protruding outward. Inner buffer gaps (222) are provided between adjacent inner buffer posts (221). The inner buffer posts (221) are provided in one-to-one correspondence with the outer buffer posts (121), and a top face of the corresponding inner buffer posts (221) and a top face of the outer buffer posts (121) contact each other. The outer buffer gaps (122) and the inner buffer gaps (222) form a buffer cavity (3). The buffer and shock-absorption moulded cup plays a supportive role via the inner and outer buffer posts in the moulded cup, and uses the buffer cavity formed by the outer buffer gaps and the inner buffer gaps to play a buffering role, thereby significantly improving the buffer and shock-absorption effect.