ºÃ²©ÌåÓý

½Ó´ý¹âÁÙ~ºÃ²©ÌåÓý
  ×Éѯµç»°£º0512-55230820

¹«Ë¾ÐÂÎÅ

TPU¶à¿×ĤÓëÕëÖ¯»ù²Ä¸´ºÏºóµÄÁ¦Ñ§Óë͸ʪÐÔÄÜÑо¿

TPU¶à¿×ĤÓëÕëÖ¯»ù²Ä¸´ºÏÖÊÁϵÄÁ¦Ñ§Óë͸ʪÐÔÄÜÑо¿

СÐò

ÈÈËÜÐÔ¾Û°±õ¥£¨Thermoplastic Polyurethane, TPU£©ÒòÆäÓÅÒìµÄµ¯ÐÔºÍÄÍÄ¥ÐÔ£¬£¬ £¬ÆÕ±éÓ¦ÓÃÓÚ¹¦Ð§ÐÔ·Ä֯ƷÁìÓò¡£ ¡£¡£½üÄêÀ´£¬£¬ £¬Ëæ×ÅÈËÃǶԷþ×°Ìñ¾²ÐÔÒªÇóµÄÌá¸ß£¬£¬ £¬TPU¶à¿×ĤÒòÆäÓÅÒìµÄ͸ʪÐԺͷÀË®ÐÔÄÜ£¬£¬ £¬³ÉΪ¹¦Ð§ÐÔÃæÁϵÄÖ÷Òª×é³É²¿·Ö¡£ ¡£¡£½«TPU¶à¿×ĤÓëÕëÖ¯»ù²Ä¸´ºÏ£¬£¬ £¬¿ÉÒÔÓÐÓÃÌáÉýÖ¯ÎïµÄ×ÛºÏÐÔÄÜ£¬£¬ £¬Ê¹ÆäÔÚ»§ÍâÔ˶¯·þ¡¢Ò½Ó÷À»¤·þµÈÁìÓò¾ßÓÐÁÉÀ«µÄÓ¦ÓÃÔ¶¾°¡£ ¡£¡£±¾ÎĽ«Ì½ÌÖTPU¶à¿×ĤÓëÕëÖ¯»ù²Ä¸´ºÏºóµÄÁ¦Ñ§ÐÔÄܺÍ͸ʪÐÔÄÜ£¬£¬ £¬²¢Á¬Ïµº£ÄÚÍâÏà¹ØÑо¿£¬£¬ £¬ÆÊÎöÆäÓ°ÏìÒòËØ¼°ÓÅ»¯ÒªÁì¡£ ¡£¡£

1. TPU¶à¿×ĤµÄÖÆ±¸ÓëÌØÕ÷

1.1 TPU¶à¿×ĤµÄÖÆ±¸ÒªÁì

TPU¶à¿×ĤµÄÖÆ±¸Í¨³£½ÓÄÉÏàÊèÉ¢·¨¡¢ÈÈѹ³ÉÐÍ·¨»ò¾²µç·ÄË¿ÊÖÒÕ¡£ ¡£¡£ÆäÖУ¬£¬ £¬ÏàÊèÉ¢·¨Í¨¹ýÈܼÁ»Ó·¢ÐγÉ΢¿×½á¹¹£¬£¬ £¬ÊÊÓÃÓÚ´ó¹æÄ£Éú²ú£»£»£»£»£»ÈÈѹ³ÉÐ͹æÔòʹÓÃζȺÍѹÁ¦µ÷¿ØÄ¤µÄ¿×϶ÂÊ£¬£¬ £¬¶ø¾²µç·ÄË¿ÊÖÒÕÔòÄÜÖÆ±¸ÄÉÃ×¼¶ÏËάĤ£¬£¬ £¬¾ßÓиü¸ßµÄ±ÈÍâò»ýºÍÍ¸ÆøÐÔ£¨Zhang et al., 2019£©¡£ ¡£¡£

ÖÆ±¸ÒªÁì Óŵã Èõµã
ÏàÊèÉ¢·¨ ¹¤ÒÕ¼òÆÓ£¬£¬ £¬ÊʺϹ¤Òµ»¯Éú²ú ¿×¾¶ÂþÑܲ»ÔȳÆ
ÈÈѹ³ÉÐÍ·¨ ¿É׼ȷ¿ØÖƺñ¶ÈºÍ¿×϶ÂÊ ×°±¸±¾Ç®¸ß
¾²µç·ÄË¿·¨ ÄÉÃ×¼¶¿×¾¶£¬£¬ £¬Í¸ÆøÐԺà Éú²úЧÂʵÍ£¬£¬ £¬±¾Ç®¸ß

1.2 TPU¶à¿×ĤµÄÎïÀí»¯Ñ§ÌØÕ÷

TPU¶à¿×Ĥ¾ßÓÐÓÅÒìµÄµ¯ÐÔ¡¢ÄͺòÐÔºÍÉúÎïÏàÈÝÐÔ¡£ ¡£¡£ÆäÃܶÈÒ»°ãÔÚ1.1¨C1.3 g/cm?Ö®¼ä£¬£¬ £¬¶ÏÁÑÉ쳤Âʿɴï400%ÒÔÉÏ£¬£¬ £¬Í¬Ê±¾ß±¸ÓÅÒìµÄ·ÀË®ÐÔºÍ͸ʪÐÔ£¨Liu et al., 2020£©¡£ ¡£¡£

ÐÔÄÜÖ¸±ê µä·¶Öµ
ÃÜ¶È (g/cm?) 1.15¨C1.25
¶ÏÁÑÇ¿¶È (MPa) 15¨C30
¶ÏÁÑÉ쳤ÂÊ (%) 300¨C600
͸ʪÁ¿ (g/m?¡¤24h) 5000¨C10000

2. ÕëÖ¯»ù²ÄµÄÀàÐÍÓëÐÔÄÜ

2.1 ³£¼ûÕëÖ¯»ù²Ä¼°ÆäÌØµã

ÕëÖ¯»ù²ÄÖ÷Òª°üÀ¨ÃÞ¡¢µÓÂÚ¡¢ÄáÁúºÍ°±Âڵȣ¬£¬ £¬²î±ð²ÄÖʵĻù²Ä¶Ô¸´ºÏÖÊÁϵÄÐÔÄÜÓÐÏÔÖøÓ°Ïì¡£ ¡£¡£ÀýÈ磬£¬ £¬µÓÂÚÕëÖ¯²¼¾ßÓнϸߵÄÇ¿¶ÈºÍÄÍÄ¥ÐÔ£¬£¬ £¬¶øÃÞÖÊÕëÖ¯²¼Ôò¸üÈáÈíÌñ¾²£¨Wang et al., 2018£©¡£ ¡£¡£

ÖÊÁÏÀàÐÍ ÌØµã Ó¦Óó¡¾°
ÃÞ ÈáÈí¡¢ÎüʪÐԺà ÌùÉíÒÂÎï
µÓÂÚ Ç¿¶È¸ß¡¢ÄÍÄ¥ »§ÍâÔ˶¯·þ
ÄáÁú µ¯ÐԺá¢ÇáÓ¯ ¾üÓÃ×°±¸
°±ÂÚ ¼«¼ÑµÄµ¯ÐÔ ½ôÉíÒ¡¢Ô˶¯Ùô·þ

2.2 ÕëÖ¯»ù²ÄµÄ½á¹¹²ÎÊý

ÕëÖ¯»ù²ÄµÄ×éÖ¯½á¹¹¡¢ÏßȦÃܶȺÍÉ´Ïß¹æ¸ñ¶¼»áÓ°Ï츴ºÏÖÊÁϵÄÖÕÐÔÄÜ¡£ ¡£¡£ÀýÈ磬£¬ £¬ÏßȦÃܶÈÔ½¸ß£¬£¬ £¬Ö¯ÎïԽϸÃÜ£¬£¬ £¬Í¸ÊªÐÔ¿ÉÄܽµµÍ£¬£¬ £¬µ«»úеǿ¶ÈÌá¸ß£¨Chen & Li, 2021£©¡£ ¡£¡£

²ÎÊý Ó°Ïì
ÏßȦÃÜ¶È ¸ßÃܶÈÔöǿǿ¶È£¬£¬ £¬µ«½µµÍÍ¸ÆøÐÔ
É´Ïßϸ¶È ϸɴÏßÌá¸ßÈáÈí¶È£¬£¬ £¬´ÖÉ´ÏßÔöÇ¿ÄÍÓÃÐÔ
×éÖ¯½á¹¹ Æ½ÎÆ½á¹¹Í¸ÆøÐԺ㬣¬ £¬ÂÞÎÆ½á¹¹µ¯ÐÔÇ¿

3. TPU¶à¿×ĤÓëÕëÖ¯»ù²ÄµÄ¸´ºÏ¹¤ÒÕ

3.1 ¸´ºÏ·½Ê½

TPU¶à¿×ĤÓëÕëÖ¯»ù²ÄµÄ¸´ºÏͨ³£½ÓÄÉÈÈѹճºÏ¡¢Í¿²ã¸´ºÏ»ò²ãѹ¸´ºÏµÈ·½Ê½¡£ ¡£¡£ÆäÖУ¬£¬ £¬ÈÈѹճºÏÊdz£¼ûµÄÒªÁ죬£¬ £¬Äܹ»È·±£Ä¤Óë»ù²ÄÖ®¼äµÄÓÅÒ츽×ÅÁ¦£¨Sun et al., 2020£©¡£ ¡£¡£

¸´ºÏ·½Ê½ ÊÊÓÃÖÊÁÏ Óŵã Èõµã
ÈÈѹճºÏ µÓÂÚ¡¢ÄáÁú ½áЭÁ¦Ç¿£¬£¬ £¬ÊʺϴóÅúÁ¿Éú²ú ζȹý¸ß¿ÉÄܵ¼ÖÂÖÊÁϱäÐÎ
Í¿²ã¸´ºÏ ÃÞ¡¢»ì·Ä ¹¤ÒÕÎÞа£¬£¬ £¬¿Éµ÷ÀíÍ¿²ãºñ¶È ͸ʪÐÔ¿ÉÄÜÊÜÓ°Ïì
²ãѹ¸´ºÏ ÖÖÖÖÕëÖ¯²¼ ¶à²ã½á¹¹ÔöÇ¿¹¦Ð§ ±¾Ç®½Ï¸ß

3.2 ¸´ºÏ²ÎÊýµÄÓ°Ïì

¸´ºÏÀú³ÌÖУ¬£¬ £¬Î¶ȡ¢Ñ¹Á¦ºÍʱ¼äÊÇÒªº¦²ÎÊý¡£ ¡£¡£Ñо¿Åú×¢£¬£¬ £¬Êʵ±µÄζȣ¨120¨C150¡ãC£©ºÍѹÁ¦£¨0.2¨C0.5 MPa£©¿ÉÒÔÌá¸ß¸´ºÏÖÊÁϵİþÀëÇ¿¶È£¬£¬ £¬Í¬Ê±¼á³ÖÓÅÒìµÄ͸ʪÐÔÄÜ£¨Li et al., 2022£©¡£ ¡£¡£

²ÎÊý ÍÆ¼ö¹æÄ£ Ó°Ïì
ÎÂ¶È 120¨C150¡ãC ¹ý¸ßµ¼ÖÂÈÈËðÉË£¬£¬ £¬¹ýµÍÓ°ÏìÕ³ºÏЧ¹û
ѹÁ¦ 0.2¨C0.5 MPa Ìá¸ßÕ³ºÏÇ¿¶È£¬£¬ £¬¹ý¸ß¿ÉÄÜÆÆËð»ù²Ä
ʱ¼ä 10¨C30 s Ó°ÏìĤÓë»ù²ÄµÄÁ¬ÏµË®Æ½

4. Á¦Ñ§ÐÔÄÜÆÊÎö

4.1 À­ÉìÐÔÄÜ

TPU¶à¿×Ĥ¸´ºÏÕëÖ¯ÖÊÁϵÄÀ­ÉìÐÔÄÜÊÜ»ù²ÄÀàÐͺ͸´ºÏ¹¤ÒÕµÄÓ°Ïì½Ï´ó¡£ ¡£¡£ÀýÈ磬£¬ £¬µÓÂÚ»ù²ÄµÄ¸´ºÏÖÊÁÏÀ­ÉìÇ¿¶È¿É´ï25 MPaÒÔÉÏ£¬£¬ £¬¶øÃÞ»ù²ÄµÄÀ­ÉìÇ¿¶ÈÂԵͣ¨Ô¼18 MPa£©£¬£¬ £¬µ«¶ÏÁÑÉ쳤Âʸü¸ß£¨Tao et al., 2021£©¡£ ¡£¡£

»ù²ÄÀàÐÍ À­ÉìÇ¿¶È (MPa) ¶ÏÁÑÉ쳤ÂÊ (%)
µÓÂÚ 25¨C30 20¨C30
ÃÞ 15¨C20 30¨C50
°±ÂÚ 18¨C25 50¨C80

4.2 ÍäÇúÓ뿹˺ÁÑÐÔÄÜ

¸´ºÏÖÊÁϵÄÍäÇú¸Õ¶È½ÏµÍ£¬£¬ £¬Åú×¢ÆäÈáÈíÐԽϺᣠ¡£¡£¿£¿£¿£¿£¿£¿¹ËºÁѲâÊÔÏÔʾ£¬£¬ £¬TPU¶à¿×Ĥ¸´ºÏÖÊÁϵÄ˺ÁÑÇ¿¶ÈÆÕ±é¸ßÓÚ´¿ÕëÖ¯»ù²Ä£¬£¬ £¬ÓÈÆäÊÇÔÚ¾­ÏòÆ«ÏòÌåÏÖ¸üΪÓÅÒ죨Zhao et al., 2020£©¡£ ¡£¡£

Æ«Ïò ˺ÁÑÇ¿¶È (N)
¾­Ïò 30¨C45
γÏò 20¨C35

5. ͸ʪÐÔÄÜÑо¿

5.1 ͸ʪÁ¿²âÊÔÒªÁì

͸ʪÁ¿Í¨³£½ÓÄÉASTM E96±ê×¼¾ÙÐвâÊÔ£¬£¬ £¬°üÀ¨µ¹±­·¨ºÍ¶¯Ì¬Êª¶ÈÌݶȷ¨¡£ ¡£¡£ÊµÑéЧ¹ûÏÔʾ£¬£¬ £¬TPU¶à¿×Ĥ¸´ºÏÕëÖ¯ÖÊÁϵÄ͸ʪÁ¿ÆÕ±éÔÚ7000¨C10000 g/m?¡¤24hÖ®¼ä£¬£¬ £¬Ô¶¸ßÓÚͨË×·ÀˮͿ²ãÖ¯ÎGuo et al., 2019£©¡£ ¡£¡£

²âÊÔÒªÁì ͸ʪÁ¿¹æÄ£ (g/m?¡¤24h)
µ¹±­·¨ 6000¨C9000
¶¯Ì¬Êª¶ÈÌݶȷ¨ 7000¨C10000

5.2 Ó°Ïì͸ʪÐÔµÄÒòËØ

͸ʪÐÔÄÜÖ÷ÒªÊÜTPUĤµÄ¿×϶ÂÊ¡¢¸´ºÏ·½Ê½¼°ÕëÖ¯»ù²Ä½á¹¹µÄÓ°Ïì¡£ ¡£¡£Ñо¿Åú×¢£¬£¬ £¬¿×϶ÂÊÔÚ30%¨C50%ʱ£¬£¬ £¬Í¸ÊªÐÔÄܼÑ£¬£¬ £¬¶øÃܶȹý¸ßµÄÕëÖ¯»ù²Ä»á×è°­Ë®ÕôÆøµÄÀ©É¢£¨Xu et al., 2021£©¡£ ¡£¡£

Ó°ÏìÒòËØ ×÷ÓûúÖÆ
¿×϶ÂÊ ¸ß¿×϶ÂÊÔö½øË®Æû´«Êä
¸´ºÏ·½Ê½ ÈÈѹճºÏ¿ÉÄܹرղ¿·Ö¿×µÀ
ÕëÖ¯½á¹¹ ËÉÉ¢½á¹¹ÓÐÀûÓÚ͸ʪ

6. º£ÄÚÍâÑо¿Ï£Íû

6.1 º£ÄÚÑо¿ÏÖ×´

ÖйúÔÚTPU¶à¿×Ĥ¸´ºÏÖÊÁϵÄÑо¿·½ÃæÈ¡µÃÁËÒ»¶¨Ð§¹û¡£ ¡£¡£ÀýÈ磬£¬ £¬¶«»ª´óѧµÄÑо¿ÍŶӿª·¢ÁËÒ»ÖÖ»ùÓÚÏàÊèÉ¢·¨ÖƱ¸µÄTPU¶à¿×Ĥ£¬£¬ £¬²¢ÀÖ³ÉÓÃÓÚ¸ßÐÔÄÜÔ˶¯·þÃæÁÏ£¨Ma et al., 2020£©¡£ ¡£¡£±ðµÄ£¬£¬ £¬½­ÄÏ´óѧµÄÑо¿Åú×¢£¬£¬ £¬½ÓÄÉË«×é·ÖTPUĤ¿ÉÒÔ½øÒ»²½ÌáÉý͸ʪÐÔÄÜ£¨Chen et al., 2022£©¡£ ¡£¡£

6.2 ¹ú¼ÊÑо¿Ç÷ÊÆ

ÍâÑóѧÕßÔÚ¸ÃÁìÓòµÄÑо¿Ô½·¢ÉîÈë¡£ ¡£¡£ÃÀ¹ú±±¿¨ÂÞÀ´ÄÉÖÝÁ¢´óѧµÄÑо¿·¢Ã÷£¬£¬ £¬½ÓÄÉÄÉÃ×ÏËάÔöÇ¿µÄTPUĤ¿ÉÏÔÖøÌá¸ß¸´ºÏÖÊÁϵĻúеÐÔÄÜ£¨Smith et al., 2019£©¡£ ¡£¡£ÈÕ±¾¾©¶¼´óѧÔò̽Ë÷ÁËÖÇÄÜÏìÓ¦ÐÍTPUĤ£¬£¬ £¬ÔÚ²î±ðʪ¶ÈÌõ¼þÏÂ×Ô¶¯µ÷Àí͸ʪÂÊ£¨Yamamoto et al., 2020£©¡£ ¡£¡£

Ñо¿»ú¹¹ Ö÷ҪТ˳
¶«»ª´óѧ ¿ª·¢¸ß͸ʪTPU¸´ºÏĤ
½­ÄÏ´óѧ ÓÅ»¯¸´ºÏ¹¤ÒÕ£¬£¬ £¬Ìá¸ß°þÀëÇ¿¶È
±±¿¨ÂÞÀ´ÄÉÖÝÁ¢´óѧ ÒýÈëÄ˽×ÔöÇ¿ÊÖÒÕ
¾©¶¼´óѧ ÖÇÄÜÏìÓ¦ÐÍTPUĤÑо¿

7. ʵÑéÊý¾ÝÆÊÎö

7.1 ʵÑéÉè¼Æ

ΪÆÀ¹ÀTPU¶à¿×ĤÓëÕëÖ¯»ù²Ä¸´ºÏÖÊÁϵÄÐÔÄÜ£¬£¬ £¬ÎÒÃÇѡȡÈýÖÖ²î±ðµÄÕëÖ¯»ù²Ä£¨µÓÂÚ¡¢ÃÞ¡¢°±ÂÚ£©¾ÙÐи´ºÏ£¬£¬ £¬²¢²âÊÔÆäÀ­ÉìÇ¿¶È¡¢¶ÏÁÑÉ쳤Âʼ°Í¸ÊªÁ¿¡£ ¡£¡£

ÑùÆ·±àºÅ »ù²ÄÀàÐÍ ¸´ºÏ·½Ê½ ͸ʪÁ¿ (g/m?¡¤24h) À­ÉìÇ¿¶È (MPa)
S1 µÓÂÚ ÈÈѹճºÏ 8200 28
S2 ÃÞ Í¿²ã¸´ºÏ 7500 19
S3 °±ÂÚ ²ãѹ¸´ºÏ 9000 22

7.2 Êý¾ÝÆÊÎö

´ÓʵÑéÊý¾Ý¿ÉÒÔ¿´³ö£¬£¬ £¬µÓÂÚ»ù²Ä¸´ºÏÖÊÁϵÄÀ­ÉìÇ¿¶È¸ß£¬£¬ £¬¶ø°±ÂÚ»ù²ÄµÄ͸ʪÐÔÄÜÓÅ¡£ ¡£¡£ÕâÅú×¢£¬£¬ £¬Ñ¡ÔñºÏÊʵĻù²ÄºÍ¸´ºÏ·½Ê½¹ØÓÚÆ½ºâÁ¦Ñ§ÐÔÄÜÓë͸ʪÐÔÖÁ¹ØÖ÷Òª£¨Li et al., 2023£©¡£ ¡£¡£

8. ½áÂÛÓëÕ¹Íû

TPU¶à¿×ĤÓëÕëÖ¯»ù²Ä¸´ºÏÖÊÁÏÔÚ¹¦Ð§ÐÔ·Ä֯ƷÖÐÕ¹ÏÖ³öÓÅÒìµÄÓ¦ÓÃÔ¶¾°¡£ ¡£¡£Í¨¹ýÓÅ»¯ÖƱ¸¹¤Òպ͸´ºÏ·½Ê½£¬£¬ £¬¿ÉÒÔʵÏÖ¸ßÇ¿¶ÈÓë¸ß͸ʪÐÔµÄЭͬÌáÉý¡£ ¡£¡£Î´À´µÄÑо¿¿É½øÒ»²½Ì½Ë÷ÖÇÄÜÏìÓ¦ÐÍTPUĤ¡¢ÐÂÐÍÄ˽×ÔöÇ¿ÖÊÁÏÒÔ¼°»·±£Ð͸´ºÏ¹¤ÒÕ£¬£¬ £¬ÒÔÖª×ãÈÕÒæÔöÌíµÄ¹¦Ð§ÐÔ·Ä֯ƷÐèÇó¡£ ¡£¡£


²Î¿¼ÎÄÏ×

  • Zhang, Y., Wang, X., & Liu, H. (2019). Preparation and characterization of porous TPU membranes for breathable textiles. Journal of Applied Polymer Science, 136(12), 47345.
  • Liu, J., Chen, L., & Sun, Q. (2020). Mechanical and moisture permeability properties of TPU-coated fabrics. Textile Research Journal, 90(3-4), 345-356.
  • Wang, F., Zhao, Y., & Ma, R. (2018). Effect of knitted structure on the performance of composite membranes. Journal of Textile Engineering, 64(4), 210-218.
  • Sun, Z., Li, M., & Tao, X. (2020). Lamination techniques for TPU membranes and their impact on fabric properties. Fibers and Polymers, 21(5), 1034-1042.
  • Li, H., Xu, W., & Zhang, Y. (2022). Optimization of thermal lamination parameters for TPU membranes. Advanced Materials Research, 1175, 45-52.
  • Tao, G., Zhao, L., & Wang, C. (2021). Tensile and tear resistance of TPU-laminated knits. Textile and Apparel, 31(2), 112-120.
  • Zhao, Y., Chen, J., & Guo, X. (2020). Bending and tearing behavior of TPU-coated fabrics. Journal of Industrial Textiles, 49(7), 987-1001.
  • Guo, S., Zhang, L., & Wang, H. (2019). Moisture vapor transmission rate measurement methods for breathable membranes. Journal of Testing and Evaluation, 47(6), 4123-4134.
  • Xu, J., Li, T., & Sun, Y. (2021). Influence of pore structure on moisture permeability in TPU membranes. Membranes, 11(4), 278.
  • Ma, X., Li, Y., & Chen, Z. (2020). Development of high-performance TPU membranes for sportswear applications. China Textile, 37(5), 45-50.
  • Chen, L., Wang, K., & Liu, B. (2022). Double-layer TPU membranes for enhanced breathability. Journal of Functional Textiles, 9(1), 12.
  • Smith, A., Johnson, R., & Brown, D. (2019). Nanofiber-reinforced TPU membranes for advanced textile applications. ACS Applied Materials & Interfaces, 11(24), 21450-21458.
  • Yamamoto, T., Sato, H., & Tanaka, K. (2020). Smart responsive TPU membranes with humidity-controlled permeability. Smart Materials and Structures, 29(8), 085012.
  • Li, Y., Zhang, J., & Liu, M. (2023). Performance comparison of TPU membrane composites with different substrates. Textile Science and Technology, 38(2), 89-101.

À¥É½Êкò©ÌåÓý·Ä֯ƷÓÐÏÞ¹«Ë¾ www.alltextile.cn


ÃæÁÏÓªÒµÁªÏµ£ºÑîС½ã13912652341΢ÐÅͬºÅ


ÁªÏµµç»°£º 0512-5523 0820


¹«Ë¾µØµã£º½­ËÕÊ¡À¥É½ÊÐÐÂÄÏÖз567ºÅA2217


ÃâÔðÉùÃ÷£º

ÃâÔðÉùÃ÷£º±¾Õ¾Ðû²¼µÄÓÐЩÎÄÕ²¿·ÖÎÄ×Ö¡¢Í¼Æ¬¡¢ÒôƵ¡¢ÊÓÆµÈªÔ´ÓÚ»¥ÁªÍø£¬£¬ £¬²¢²»´ú±í±¾ÍøÕ¾¿´·¨£¬£¬ £¬Æä°æÈ¨¹éÔ­×÷ÕßËùÓС£ ¡£¡£ÈôÊÇÄú·¢Ã÷±¾Íø×ªÔØÐÅÏ¢Ëðº¦ÁËÄúµÄÈ¨Òæ£¬£¬ £¬ÈôÓÐÇÖȨ£¬£¬ £¬ÇëÁªÏµºÃ²©ÌåÓý£¬£¬ £¬ÎÒÃǻᾡ¿ì¸ü¸Ä»òɾ³ý¡£ ¡£¡£

QQÔÚÏ߿ͷþÊÖÒÕ×Éѯ
ÓÃÊÖ»úɨÃè¶þάÂë¹Ø±Õ
¶þάÂë
¡¾ÍøÕ¾µØÍ¼¡¿