公告版位
碧威股份有限公司
www.tool-tool.com
Bewise Inc.
轉述:
- 張修哲 顧問 -
情緒確實影響至巨,我談EQ時,常常以春秋時代(西元前五九八年),一件造成個人、國家極大不幸的歷史悲劇為例:

件起源於楚莊王派遣特使送禮給鄭國,禮物中,除了珠寶之外,還有一項非常珍奇的『南海大鱉』,據說食用後,可以滋補強身。鄭靈公接到這份大禮,心裡非常高興。他不想一個人獨享,因此,就要廚師立刻烹煮『南海大鱉』,準備賞賜大臣共嚐。
這天,剛好鄭國兩位貴族子弟結伴進宮來,一位是「歸生」,一位是「子公剛」。子公剛一踏入宮,食指就不斷地跳動。子公剛就告訴歸生說:「我們最近一定有好東西吃,可大快朵頤。」歸生問他為什麼。
子公剛說:「從前我在晉國吃合歡橘,在楚國吃天鵝肉的時候,我的食指也都是這樣不斷地跳動。」
兩人四處查詢,終於獲知明天果然有『南海大鱉』這等稀世寶物可吃,歸生對子公剛「食指大動」特異功能,感到既驚訝又欽佩。當他們見到鄭靈公時,歸生就對鄭靈公讚嘆子公剛的食指:「進宮時子公食指大動,果然就聽說有南海大鱉可吃,子公的食指可真靈呢!」
鄭靈公萬萬沒想到自己寬懷大量的賞賜,竟然只落得歸生對子公剛食指的讚嘆,心裡老大不高興冷冷地說:「靈不靈那可不一定,你們別把話說得太早…」
第二天,群臣進宮。鄭靈公故意少裝一碗,還將歸生與子公剛安排於最後。分到只剩一碗時,鄭靈公就滿臉不懷好意地對子公剛說:「真巧,剛好少一碗,那就給歸生,你就只好別吃囉。」最後還加一句:「看來你的食指並不是每次都靈…」
群臣聽了哄堂大笑。這下子公剛更是氣極,EQ立刻降到極點,一個箭步,上前就搶了靈公碗內的『南海大鱉』肉,往口裡一塞,還一面吃,一面說:「誰說我食指不靈?…」
鄭靈公大怒,EQ也降到極點,竟當著四周安慰他的臣子說:「太無禮了!他以為我不敢殺他?…」
這下事態當然嚴重了,雙方都在氣頭上,有人就去勸子公剛:「大王這次非常生氣,您就快去賠罪吧…」
子公剛非常忿恨不平:「是他先戲弄我,我又何必賠不是?…」
「他是君,你是臣,再怎麼說,您也都該低頭賠罪呀…」
子公剛熬不過眾人勸說,才心裡萬分不情願、非常勉強地,去向鄭靈公當面道歉;內心的想法自然會流露在態度上,鄭靈公看了非常不滿意地對旁邊的人說:「你看,他那有悔過之意?…」
子公剛認為自己這麼委曲求全地道歉,竟然還不能被接受,越想越氣,也越想越覺得危險,於是「先下手為強」殺了鄭靈公。後來鄭靈公的弟弟逃到楚國求救,再殺了子公剛報仇。
整個事件中,充滿了EQ的問題,如果在這方面能提升一些EQ能力,對鄭靈公、對子公剛、對死難者、對鄭鄭國…,不知將有多大的幫助?

看似贏了,但卻輸了
看似贏了,但卻輸了
一對年輕的夫婦正在所租的小套房裡為著添購新家具的事情而鬧彆扭,女的口才犀利,男的剛毅木納,過沒多久作老公的就已處於挨轟的態勢。
不一會兒,兩個人都嚷得精疲力盡,說不出話來,這時前幾分鐘一直被迫採低姿態的先生忽然開口了,他感慨地對他所愛的老婆說:「老婆,就算妳講得全都對,但為了辯贏我而毀掉一整個晚上的氣氛,值得嗎?」
「為了辯贏我而毀掉一整個晚上的氣氛,值得嗎?」雖是短短的幾個字,卻多麼值得我們這些講求「贏」為目的的現代人省思啊!
我很喜歡一句名言:「有時候您贏了,但其實您輸了!」
可不是嗎?有時候您贏了面子,但其實您輸了感情;有時候您贏了口舌,但其實您輸了形象;有時候您贏了好處,但其實您輸了友誼....,總之,有時候您看似贏了,實際上您卻輸了!
待人處事固然應該「據理」,但卻不一定要臉紅脖子粗地在那兒「力爭」
理直氣「和」的態度絕對比理直氣「壯」更易為人所接受。

我覺得這一篇文章
讓我學到了很多的東西啦


 



BW碧威股份有限公司針對客戶端改善切削方式、提供專業切削CNC數控刀具專業能力、製造客戶需求如:Cutting tool、切削刀具、HSS Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolCarbide end millAerospace cutting toolCarbide drillHigh speed steelMilling cutterCore drill、鎢鋼銑刀、航太刀具、鎢鋼鑽頭、高速剛、鉸刀、中心鑽頭、Taperd end mills、斜度銑刀、


Metric end mills、公制銑刀、Miniature end mills、微小徑銑刀、鎢鋼切削刀具、Pilot reamer、領先鉸刀、Electronics cutter、電子用切削刀具、Step drill、階梯鑽頭、Metal cutting saw、金屬圓鋸片、Double margin drill、領先階梯鑽頭、Gun barrelAngle milling cutter、角度銑刀、Carbide burrs、滾磨刀、Carbide tipped cutter、銲刃刀具、Chamfering tool、倒角銑刀、IC card engraving cutterIC晶片卡刀、Side cutter、側銑刀、NAS toolDIN tool、德國規範切削刀具、Special tool、特殊刀具、Metal slitting sawsShell end mills、滾筒銑刀、Side and face milling cuttersSide chip clearance saws、交叉齒側銑刀、Long end mills、長刃銑刀、Stub roughing end mills、粗齒銑刀、Dovetail milling cutters、鳩尾刀具、Carbide slot drillsCarbide torus cutters、鎢鋼圓鼻銑刀、Angeled carbide end mills、角度鎢鋼銑刀、Carbide torus cutters、短刃平銑刀、Carbide ball-noseed slot drills、鎢鋼球頭銑刀、Mould cutter、模具用刀具、BW微型渦流管槍、Tool manufacturer、刀具製造商等相關切削刀具、以服務客戶改善工廠加工條件、增加競爭力。


歡迎尋購~~~


碧威股份有限公司


www.tool-tool.com

beeway 發表在 痞客邦 留言(0) 人氣()

傾聽身體的16點
碧威股份有限公司
www.tool-tool.com
Bewise Inc.
轉述:
眼瞅著,這生活越來越便利,科技越來越花了人的眼,
各種各樣的享樂與誘惑撲面而來。
這一切的同時,現代人在醫療上的預算,也與日俱增。
我們一路辛苦得來的今天,只要一場大病,便幾乎整個兒摧毀了去。
若不是晚期,那麼癌症完全有可能治愈。
若你及時地發現了那病魔的萌芽,那麼連根拔除它的機會就很大。
傾聽你的身體說話,它們會告訴你,你很少意識到的病兆。


☆1.視力減退的幕後黑手
最近的工作忙到想吐,你整夜整夜地在電腦前加班,視力明顯下降。
你要當心了!眼睛經常發花、眼角乾澀、看不清東西,
這可是肝臟功能衰弱的先兆。

如果按一按肝臟的四周,會有發脹的感覺,就十有八九是肝臟出了問題。
這時除了及時就醫外,還要注意用眼衛生,不要讓眼睛太過疲勞,
用眼不當會影響到肝臟。

☆2.腳有些腫?不可輕視
最近腳有些腫,還伴隨著痛癢……這個看似尋常的癥狀,可不能小瞧。
它很有可能是在對你說「你的靜脈出了問題!」
腳腫了,往往是由於靜脈栓塞而引起的,及時看醫生的話就沒什麼事,
不然很可能導致下肢浮腫,甚至會引發肺栓塞,影響到你的生命安危。

靜脈中的一些小血管被堵塞住了,血液就回流不暢,才會出現腳腫的癥狀。
所以你可不能掉以輕心。如果你的腳腫,通過按摩不僅無法退下去,
反而越來越嚴重的話,就要引起高度重視了。

☆3.睡覺流口水,不僅僅是可愛
你會為你睡覺時流口水而不好意思嗎?這可不是可愛或不衛生那麼簡單。
它可能是由於你的神經調節障礙而引起的。

唾液分泌的調節,完全是神經反射性的。常說的「望梅止渴」,
就是日常生活中,條件反射性唾液分泌的一個例子。
除此之外,口腔內的衛生沒有打掃好,也會出現流口水的現象。
口腔裡的溫度和濕度最適合細菌的繁殖,炎癥、睡覺流口水,
也是在提醒你,小心牙周病,要去看牙醫了!

☆4.斑痕變化,不良的癥兆
如果你身上的一些慢性皮膚病,如燒傷或外傷後的斑痕疙瘩,
或慢性皮炎等,最近忽然發生了一些莫名其妙的變化,
你可一定要提高警惕了。

若經過治療,這些 病變反而增大,或者破潰、變硬、變厚、色素加深、
角化過度甚至出血,這時,應該警惕有皮膚癌的可能。
並且,如果皮膚上出現了一些硬硬的隆起的小腫塊,還老是下不去的話,
就必須要到專科醫院檢查了。

☆5.小心你下垂的眼瞼
剛到了三十歲,成熟性感的年齡,怎麼眼皮卻越來越厚重,
還忽然有些下垂呢?你可要擔心了,不能只想到去美容院,
它是許多疾病的早期癥狀。

「重症肌無力」這種病的先兆就是緩慢發生的眼瞼下垂。
先是一只眼,後是另一只眼,早晨輕,晚上重,
一天之內有明顯的波動性。比較嚴重可怕的還有顱內動脈瘤。
如果你的 眼瞼下垂是一側性、突然的,瞳孔散大,
應立即到神經科搶救。聽起來實在是有些駭人。

☆6.彩圈--失明的先兆
你在看燈光時,發現燈光周圍出現彩圈?別覺得新奇,
這可不是你的特異功能。它預示著你,可能患上了閉角型青光眼。
閉角型青光眼是一種常見的、可以導致失明的眼病,早期癥狀是出現虹視,
就是這種看見彩圈的現象。
彩圈近看較小,遠看較大,紫色在內,紅色在外。

☆7.「吃貨」的隱患
近一個月來突然胃口大開,但體重卻隨著進食的增多而減輕了,
排尿量也隨著喝水次數的增加而明顯增多。去醫院一檢查,
發現「食欲大增」的背後竟然 隱藏著糖尿病。
如果經常吃了飯沒多久就又嚷著「肚子餓」,但人卻明顯消瘦。
醫生檢查後發現,竟是「甲狀腺機能亢進症」。

此外, 皮質醇增多癥、肥胖性生殖無能症等,
也可以讓你出現胃口大開、食量猛增的現象。
因此,如果你最近食欲好得有些不尋常,還是早早去醫院全面檢查的好。

☆8.胃痛,還是心臟病?
你患過胃病,所以這次,竟把心臟病的先兆當成了胃疼!
要知道,這可是一個重要的報警。與一般的胃病不同,
心臟病引起的胃痛很少會出現絞痛和劇痛,壓痛也不常有,
只是有一種憋悶、脹滿的感覺,有時還伴有鈍痛、
火辣辣的灼熱感及噁心欲吐感。

☆9.悄悄變化的美人痣
我們的身體在發生變化時,總是會有各種各樣的癥兆,
只要你懂得愛惜自己。在痣發生惡變,成為惡性黑色素瘤時,
有這樣一些報警︰
1.痣在近時期內迅速增大;
2.痣表面出現糜爛甚至發生破潰且有瘙癢感;
3.痣周圍原先平坦無異,新近出現小黑點、衛星結節狀組織,
或附近淋巴結腫大且伴黑色。

☆10.別讓汗濕了你的手心
手心出汗,可不是在說你身體好,特別是年輕人。
女性手心會發熱,還很有可能得了慢性腎盂腎炎。
前期一般有持續性或間歇性手心發熱、出汗,或伴有全身發熱。

☆11.不自覺地保持著同一個姿勢
若你經常由於不得已,而採取了一些姿勢,這通常是疾病的癥兆。
1)機械式端坐︰
  坐下時,只有兩手扶在膝蓋上,或扶持床邊才感到舒服,
心臟在告訴你,你是不是太疲倦了?
2)閉眼站立時身體搖晃︰
  兩腳併攏直立閉眼, 身體就大幅度晃動。
這是提示你小腦或脊髓功能可能出現了異常。
3)坐臥不安︰
  體位變化頻繁輾轉反側,坐也不是臥也不是,
可能有膽石癥、腸絞痛等隱患。

☆12.肚臍在說話
1)向上形︰
  肚臍向上延長,幾乎成為一個頂端向上的三角形。
那你得多留意胃、膽囊胰臟的健康狀況。
2)向下形︰
  應注意預防胃下垂、便秘、慢性腸胃疾病 及婦科疾病。
3)肚臍偏右︰
  肝炎、十二指腸潰瘍在向你敲警鐘!
4)肚臍凸出︰
  當腹部有大量積水或卵巢囊腫時,肚臍就會向外突出。

☆13.走路姿勢的疾病密語
1)無論是站著還是坐著,經常不斷變換姿勢,
這是脊背部疾病信號,例如骨質增生或椎間有骨刺等。
2)腰彎不下去,需要彎腰時只能挺直身子,把整 個身軀向前傾,
這是脊椎軟骨組織受損的病癥。
3)步態猶豫不決,總像在尋找某個支撐點似的,
很有可能是由高血壓導致頭暈而引起的。
4)頭部有不易察覺的顫抖,說明你的腦血管或神經系統也在發抖。
手部顫動,則是毛細血管的問題。
5)走路時身體向一側傾斜,是腎或膀胱。

☆14.重視疾病的徵兆
反復低熱,別來糾纏我。小林最近每天晚上幾乎都出現低熱,
但又從不超過38℃,到第二天早晨又消退了。
去醫院驗血檢查出是心臟瓣膜受到了細菌感染,幸虧發現得及時。
其實,出現低熱,還有可能是消化道疾病的信號,包括淋巴肉芽腫病等等。

☆15.視力的突然叫停
阿明在會議上講話時,突然左眼什麼也看不見,
講話也變得結結巴巴,但很快又恢復正常。
他沒有忽視,趕緊去看了醫生。
檢驗結果他得了種「一過性缺血性發作」的病癥,
是由於短時間血未能供到大腦的一個特殊區域所致。

☆16.心臟在咳嗽
通常一次頑固性咳嗽,不是一種威脅生命疾病的癥兆。
但很可能是充血性心臟病或肺癌的信號。
如果咳嗽兩周以上,又找不出病因,就要趕緊去大醫院檢查,
別擔心,發現得早是好事。


 



BW碧威股份有限公司針對客戶端改善切削方式、提供專業切削CNC數控刀具專業能力、製造客戶需求如:Cutting tool、切削刀具、HSS Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolCarbide end millAerospace cutting toolCarbide drillHigh speed steelMilling cutterCore drill、鎢鋼銑刀、航太刀具、鎢鋼鑽頭、高速剛、鉸刀、中心鑽頭、Taperd end mills、斜度銑刀、


Metric end mills、公制銑刀、Miniature end mills、微小徑銑刀、鎢鋼切削刀具、Pilot reamer、領先鉸刀、Electronics cutter、電子用切削刀具、Step drill、階梯鑽頭、Metal cutting saw、金屬圓鋸片、Double margin drill、領先階梯鑽頭、Gun barrelAngle milling cutter、角度銑刀、Carbide burrs、滾磨刀、Carbide tipped cutter、銲刃刀具、Chamfering tool、倒角銑刀、IC card engraving cutterIC晶片卡刀、Side cutter、側銑刀、NAS toolDIN tool、德國規範切削刀具、Special tool、特殊刀具、Metal slitting sawsShell end mills、滾筒銑刀、Side and face milling cuttersSide chip clearance saws、交叉齒側銑刀、Long end mills、長刃銑刀、Stub roughing end mills、粗齒銑刀、Dovetail milling cutters、鳩尾刀具、Carbide slot drillsCarbide torus cutters、鎢鋼圓鼻銑刀、Angeled carbide end mills、角度鎢鋼銑刀、Carbide torus cutters、短刃平銑刀、Carbide ball-noseed slot drills、鎢鋼球頭銑刀、Mould cutter、模具用刀具、BW微型渦流管槍、Tool manufacturer、刀具製造商等相關切削刀具、以服務客戶改善工廠加工條件、增加競爭力。


歡迎尋購~~~


碧威股份有限公司


www.tool-tool.com

beeway 發表在 痞客邦 留言(0) 人氣()

我不是你爸爸
碧威股份有限公司
www.tool-tool.com
Bewise Inc.
轉述:
有一個少女到婦產科去做檢查,醫生幫她檢查以後,就告訴小姐:
「小姐 恭喜妳,妳要當媽媽了,妳已經懷有五個月的身孕。」 少
女一想:『天哪!我都還沒結婚,而且我現在還在念高中!』於是
跟醫生說:「醫生啊!我想要把孩子拿掉。」醫生想了一想,說道
:「其實以妳現在這個情形,拿掉會非常的危險。不然這樣子好了
,我給妳一個建議,其實醫院裡面每天都會有人來生產,到妳生產
的那一天,如果有人生一個,我就把妳的小孩抱給她,就說她生雙
胞胎。若有人生雙胞胎,我就跟她講說她生三胞胎。這樣子妳就沒
有什麼煩惱了。少女想一想,好像也滿對的,就接受醫生的建議。
到了少女生產的那一天,卻很不巧剛好都沒有人要來生小孩。等到
下午了,好不容易有一個神父要來割盲腸。沒有辦法,孩子已經生
下來了,於是醫生就硬著頭皮跑去跟神父說:「神父啊!其實你這
個不是盲腸炎喔!你這個叫陣痛啦!你這個是上帝賜給你一個孩子
。」

神父一聽非常地高興,既然有神蹟發生在他的身上,於是很高興的
把小孩子帶回去扶養。18年過去了,神父也很老了,躺在病床上,
就把他的兒子叫到床前來:「兒子啊!我要告訴你,我並不是你的
爸爸。」 兒子:「什麼!你不是我的爸爸?那你是誰?」 神父:
「孩子!我不是你的爸爸,我是你的媽媽。」兒子一頭霧水:「那
你不是我的爸爸,誰是我的爸爸?」神父嘆了一口氣,眼睛看著窗
外很遠的地方說:「孩子,我不是你爸爸,其實你爸爸是對面營區的憲兵隊隊長。」


 



BW碧威股份有限公司針對客戶端改善切削方式、提供專業切削CNC數控刀具專業能力、製造客戶需求如:Cutting tool、切削刀具、HSS Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolCarbide end millAerospace cutting toolCarbide drillHigh speed steelMilling cutterCore drill、鎢鋼銑刀、航太刀具、鎢鋼鑽頭、高速剛、鉸刀、中心鑽頭、Taperd end mills、斜度銑刀、


Metric end mills、公制銑刀、Miniature end mills、微小徑銑刀、鎢鋼切削刀具、Pilot reamer、領先鉸刀、Electronics cutter、電子用切削刀具、Step drill、階梯鑽頭、Metal cutting saw、金屬圓鋸片、Double margin drill、領先階梯鑽頭、Gun barrelAngle milling cutter、角度銑刀、Carbide burrs、滾磨刀、Carbide tipped cutter、銲刃刀具、Chamfering tool、倒角銑刀、IC card engraving cutterIC晶片卡刀、Side cutter、側銑刀、NAS toolDIN tool、德國規範切削刀具、Special tool、特殊刀具、Metal slitting sawsShell end mills、滾筒銑刀、Side and face milling cuttersSide chip clearance saws、交叉齒側銑刀、Long end mills、長刃銑刀、Stub roughing end mills、粗齒銑刀、Dovetail milling cutters、鳩尾刀具、Carbide slot drillsCarbide torus cutters、鎢鋼圓鼻銑刀、Angeled carbide end mills、角度鎢鋼銑刀、Carbide torus cutters、短刃平銑刀、Carbide ball-noseed slot drills、鎢鋼球頭銑刀、Mould cutter、模具用刀具、BW微型渦流管槍、Tool manufacturer、刀具製造商等相關切削刀具、以服務客戶改善工廠加工條件、增加競爭力。


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Advances in Metals: Expanding Capabilities 電化學應用
碧威股份有限公司
www.tool-tool.com
Bewise Inc.
轉述:

分類:PEM 精密電化學加工技術
Medical manufacturers are benefiting from the latest generations of materials and metalworking processes.
From implantable devices to sharps products, surgical tools to x-ray equipment, metal continues to be a mainstay of the medical industry. Despite significant growth in the use of polymers as an effective replacement material, metal remains a key factor in medical advances.
Advances in metallurgy and metalworking are critical to development of many advanced devices. Development of titanium alloys and high-carbon, cast cobalt chrome have enabled the manufacture of successful implantable devices because their properties are well suited for these demanding uses. For example, in addition to durability, other properties that make titanium a good choice for aerospace applications also make it quite suitable for surgical implants—principally that it is chemically inert and does not react with various bodily fluids.

Looking at the projected growth in the market for biocompatible materials, the metals segment is expected to increase from $162,500,000 in 2003 to $212,800,000 by 2008, according to Business Communications Company, Inc.
Not surprisingly, medical advances have been closely linked to progress in metalworking processes. High-performance machining and molding methods have enabled the development of improved surgical instruments and other diagnostic and therapeutic devices.
Machining
Electrochemical Machining Means Greater Precision


 


Bewise Inc.

 


Electrochemical machining is used to sharpen coils or electrodes for applications such as fetal scalp monitoring.
Electrochemical machining technology has benefited the semiconductor and biotechnology industries for several years. Just recently, medical device manufacturers also have discovered that electrochemical machining can offer advantages that CNC machines and other mechanical grinding technologies cannot.
"A trend in the medical device industry is toward smaller and smaller devices, which coincides very well with electrochemical etching, pointing, and polishing technology," says John O'Brien, vice president of Point Technologies (Boulder, CO).
The technology is used to etch small-diameter wire or tubing composed of tungsten-rhenium, nitinol, titanium, stainless steel, and numerous other metals common to the medical manufacturing industry. During this process, small amounts of metal are removed electrochemically in a controlled, precise way.
The process delivers maximum precision and tolerances of ±1 µm to treated materials, O'Brien notes. Tube and wire diameters can be reduced to 0.0005 in. or less. The surface of the material is smoothed, removing grind marks and burrs, which can act as stress concentrators.
Parabolic-taper guidewires, with convex or concave taper rates, can be made in lengths ranging from 0.025 to 12.0 in. The company can produce wires of any length, with diameters of 0.001 in. to 0.100 in.
"We also can reduce solid wire points to submicron sharpness," O'Brien explains. Electrochemical machining is thus used to sharpen coils and electrodes like those used in fetal scalp monitoring and cardiac rhythm management. The highly polished tips allow for low eschar buildup and ease cleaning, while the precise sharpness ensures pinpoint accuracy for penetrating single cells.
"As devices continue to get smaller, they are more and more difficult to produce mechanically. Technologies like electrochemical machining can help take devices to the next level," O'Brien concludes.
Catheter Tubing
New Design Combines Best of Traditional Tubes


Bewise Inc.


Electrochemical machining is used to sharpen coils or electrodes for applications such as fetal scalp monitoring.
For years medical device manufacturers have struggled with various materials challenges when making catheter tubes. Tube structure plays an essential role in catheter and guidewire devices. But typically, manufacturers have used plastic nonbraid or braid tubing material, or metal hypo tubing. The problem is none of these tubes encompass all of the qualities a designer might desire.
Plastic nonbraid tube offers excellent flexibility, but its torqueability and pushability aren't strong. Plastic braid tube provides good flexibility but little torqueability and pushability. Metal hypo tubes have excellent pushability and good torque but little flexibility and kink resistance.
In June, Asahi Intecc Co. Ltd. (Newport Beach, CA) introduced ACTONE, a stainless steel, cable-like tube containing several fine wires. The tubing combines the best qualities of the three types of catheter tubes previously available. ACTONE offers excellent flexibility, kink resistance, and torqueability as well as good pushability, a higher break load, and lower elongation.
"ACTONE stainless steel cable is a very unique product. It was developed to meet manufacturer requirements for pushability, flexibility, torqueability, and other qualities that metal hypo tube and conventional plastic tube could not," says Yoshi Terai, director of marketing for Asahi Intecc. "The ACTONE NiTi is much more flexible than NiTi hypo tube. It allows us to insert tortuous vessels where flexibility is very important. It also allows for memory shaping."
The number of filar used determines how stiff a tube is. Therefore, Asahi Intecc varies the number of filar used from 8 to 18 to meet manufacturers' specifications. A larger number of filar provides for a softer tube. Fewer filar create a stiffer one without changing the inside or outside diameter of ACTONE.
Tubing Materials
Increasing Alloy Choices, Properties for Designers
A nontraditional metal-forming reduction technique, formerly used for hard-to-draw alloys specified for nuclear applications, is now giving medical device designers a wider choice of alloys and properties.
In the past, more exotic alloys like titanium, cobalt-based metals, rhenium, tungsten, tantalum, and iridium weren't specified for implantable devices. That's because such alloys were difficult and costly to manufacture through traditional tube-drawing techniques. "This new approach for high-end medical tubing enables designers to use the specific properties of these harder-to-work alloys to provide final attributes like thinner walls, smaller OD (outside diameter) sizes, improved radiopassivity, and superior fatigue resistance," says Jeff Warden, vice president of marketing for Superior Tube (Collegeville, PA). "It also significantly reduces the number of steps required in the process, which may provide a higher material yield and cost advantages."
Warden cited an example of a manufacturer that previously received 20 feet of material for a certain price using traditional tube-drawing technology. Superior Tube, using its nontraditional technique, was able to provide 150 feet of material for the same cost.
"Most people think of metal tubing as being drawn through a die and getting smaller and thinner," Warden says. "We use a different technology. We start and finish with a tube, but what happens in between is an innovative, proprietary process."
That process also expands the range of properties medical designers can specify. "We can dial in required properties like tensile and yield strengths, elongation, grain size, and surface finishes more cost effectively and easily than can be done with traditional tube-making processes," Warden notes.
Surface finishes below 10 Ra, dimensional tolerances of 0.0005 in. or better for both the OD and wall, mechanical properties, and fatigue resistance can all be specified with great detail, he adds. Superior Tube can work with tubing as small as 0.030-in. OD and smaller, and with wall thicknesses well below 0.010 in. Superior Tube says its new technology is most applicable to any permanent implantable device that uses tubing, including stents, spinal implants, trauma nails, and orthopedic screws.
Metalworking
New Tools for Metal Fabrication


 


Bewise Inc.

 


 


Bewise Inc.

 


 


Bewise Inc.

 


Well-suited to medical manufacturing applications, the Met-Split technology can create a broad range of geometric shapes that were not previously possible.
Medical manufacturing has quite often benefited from developments that were initiated within other industries—advanced materials and electronics concepts from space and military research programs, for example. Now an Ohio firm has a novel metalworking method that may provide new capabilities for medical manufacturers.
The technology, from Superb Industries Inc. (Sugarcreek, OH), is essentially a method for precisely splitting thin sections of metal material. Says Superb president John Miller, "Splitting, I think, accurately describes it. It's a mechanical process that was developed for the telecommunications industry, which allows us to actually split a sheet of material into two either equal or disproportional members. For example, we've taken material down to 0.008 in. thick and split it into two sections that are 0.004 in. thick." He adds that the method can be applied to a number of different types of metal, including stainless steel, titanium brass, and aluminum. He speculates that the method might also be applied successfully to plastics.
Miller suggests that there are no techniques available that are comparable with the firm's Met-Split process. He says, "I'm not aware of any existing technologies, actually. And we've got four patents on it, and part of the patent search is to make sure that there's not another process." Miller adds, however, that "there is another process called skiving that fuses material but does not actually split it."
Although the Met-Split technology was originally developed for telecommunications to make connectors of different sorts and sizes, medical uses are now being explored. Miller says that interest has been expressed from a number of sectors, including stent manufacturers who believe there are potential applications. "We really feel that in medical there will be a lot of different uses," adds Miller.
He speculates that other promising applications could include use in catheters, endoscopy, and minimally invasive surgery (MIS), emphasizing the potential for creating microtools for MIS. "We could do some things there," he says. "We're really in the initial stages of exploring what applications we may find in the medical end of things."
Characterizing the potential benefits of Met-Split, Miller says, "The advantage really is that you can take one piece of metal and, instead of trying to take pieces to form a two-part construction, you can take one piece and split a portion of it. This means that you have better structural integrity. For example, if you're talking about a tweezer at the of an endoscopic tool, instead of making two pieces that are held together with a pin, we could make it out of one piece. And hence you don't have the danger of the thing coming apart."
Miller concludes by saying that the firm is currently working on new capabilities for the Met-Split system. He explains, "We have another patent pending currently that will allow us to not just split it in two, but split it into quadrants of four."
Ceramic to Metal
Ancient Solutions for Modern Challenges


 


Combining ceramic and metal materials has led to development of new classes of device components.
Use of ceramics can be traced back for more than 10,000 years. But many advanced medical devices have been developed by combining these ancient materials with modern metals. Combining metal and ceramic materials has enabled manufacturers to develop new classes of innovative devices and components. Morgan Advanced Ceramics (MAC; New Bedford, MA) has developed ceramic and ceramic-to-metal products for medical applications, including feedthroughs for cochlear, pacemaker, and other implants; surgical instruments; x-ray tube components; and hip joints.
According to Keith Ferguson, MAC medical marketing manager, "Ceramic-to-metal brazing allows a robust, hermetic seal. Other sealing technologies such as glass seals, glue, or mechanical fastening cannot provide the same level of assurance in a harsh environment such as in the body."
Ferguson explains that pacemakers, defibrillators, and cochlear implants are among the devices that can benefit from the use of ceramic-to-metal materials. He adds that the technology can benefit "any device that needs to be implanted in the body and requires a biocompatible leak-tight seal that will last for years. High-power vacuum tubes for x-ray equipment also require a sturdy seal that will last for many scans; the medical x-ray market is moving toward higher power and away from glass."
The ceramic-to-metal sealing technology compares favorably with conventional techniques, such as glass-to-metal sealing. Says Ferguson, "Glass is less expensive to process, but typically less robust. Many advances have been made in recent years to make ceramic-to-metal components cost competitive with glass. Still, most ceramic assemblies are used where the cost of failure is prohibitive."
Ferguson says that among the new areas of development at the company is "a new sealing technology involving Active Braze Alloy (ABA), developed at our sister site, Wesgo Metals in Hayward, California. It has allowed us to take out cost and processing steps for our customers." The ABA alloys provide a breakthrough single-step approach for joining ceramics to metals by eliminating the need for prior metallization of the ceramic surface, according to the firm. A typical use is the production of hermetic joints for vacuum brazing applications.
Copyright ©2003 Medical Device & Diagnostic Industry

BW碧威股份有限公司針對客戶端改善切削方式、提供專業切削CNC數控刀具專業能力、製造客戶需求如:Cutting tool、切削刀具、HSS Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolCarbide end millAerospace cutting toolCarbide drillHigh speed steelMilling cutterCore drill、鎢鋼銑刀、航太刀具、鎢鋼鑽頭、高速剛、鉸刀、中心鑽頭、Taperd end mills、斜度銑刀、


Metric end mills、公制銑刀、Miniature end mills、微小徑銑刀、鎢鋼切削刀具、Pilot reamer、領先鉸刀、Electronics cutter、電子用切削刀具、Step drill、階梯鑽頭、Metal cutting saw、金屬圓鋸片、Double margin drill、領先階梯鑽頭、Gun barrelAngle milling cutter、角度銑刀、Carbide burrs、滾磨刀、Carbide tipped cutter、銲刃刀具、Chamfering tool、倒角銑刀、IC card engraving cutterIC晶片卡刀、Side cutter、側銑刀、NAS toolDIN tool、德國規範切削刀具、Special tool、特殊刀具、Metal slitting sawsShell end mills、滾筒銑刀、Side and face milling cuttersSide chip clearance saws、交叉齒側銑刀、Long end mills、長刃銑刀、Stub roughing end mills、粗齒銑刀、Dovetail milling cutters、鳩尾刀具、Carbide slot drillsCarbide torus cutters、鎢鋼圓鼻銑刀、Angeled carbide end mills、角度鎢鋼銑刀、Carbide torus cutters、短刃平銑刀、Carbide ball-noseed slot drills、鎢鋼球頭銑刀、Mould cutter、模具用刀具、BW微型渦流管槍、Tool manufacturer、刀具製造商等相關切削刀具、以服務客戶改善工廠加工條件、增加競爭力。


歡迎尋購~~~


碧威股份有限公司


www.tool-tool.com


 

beeway 發表在 痞客邦 留言(0) 人氣()

碧威股份有限公司
www.tool-tool.com
轉述:
分類:科學新知
2006/08/15 08:47
電化學切削技術概論
分類:PEM 精密電化學加工技術
2006/08/14 18:57

 
ECM電化學加工(電解加工)
 
 
電 化學加工是一種特殊的加工技術。這種技術可以運用在超硬金屬,及在傳統機械加工中非常困難加工的材料之製造方法。但此種加工技術只可以使用在導電性材料。 電化學加工可以切削很小或奇怪形狀的角度,複雜輪廓或是盲孔超硬金屬和特殊金屬像是鈦,鎳基合金,科瓦鐵鎳鈷合金,鉻鎳鐵合金,和碳化物。
 
 

電 化學切削是和放電加工非常類似的概念,在工件和電極間藉由電解液通過高電流。電化學切削工具被引導到想要加工的路徑,非常靠近工件但是沒有接觸。不像放電 加工,電極和加工物形成短路會形成火花放電。然而電化學加工沒有火花放電產生。加工物件會被腐蝕是一種反電鍍的操作(陽極融解現象)。電化學加工是很有可 能達到非常高的金屬移除率,而且沒有熱或機械應力會殘留在工件上,鏡面拋光處理也是有可能的。
 
 
時間回到1929年,電化學加 工技術是由W.Gussef 所開發,儘管這個技術直到1959年才商業化。很多的的研究和開發都在1960年代和1970年代完成,尤其是燃氣渦輪機工業。儘管許多的研究開發是在檯 面下進行的,但在西方同一時期放電加工技術大量的興起,許多電化學加工技術因此而停頓。最初電化學加工技術的問題是在尺寸精度和環保廢水的排放,儘管此種 技術是一種利基,發展卻因而緩步。有名的飛利浦電動刮鬍刀(Philishave)的環型刀網製造,就是利用電化學切削技術所製造的。
 
 
總而言之,對於難加工的材料,電化學加工技術可以被廣泛的運用在製造複雜的形體和良好的表面品質,像是渦輪葉片。這種技術也可以用來去毛邊和導角。
引用:http://tw.myblog.yahoo.com/jw!EOUWG0WRGBKHrRDl8JmGBC4-/article?mid=945


 



BW碧威股份有限公司針對客戶端改善切削方式、提供專業切削CNC數控刀具專業能力、製造客戶需求如:Cutting tool、切削刀具、HSS Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolCarbide end millAerospace cutting toolCarbide drillHigh speed steelMilling cutterCore drill、鎢鋼銑刀、航太刀具、鎢鋼鑽頭、高速剛、鉸刀、中心鑽頭、Taperd end mills、斜度銑刀、


Metric end mills、公制銑刀、Miniature end mills、微小徑銑刀、鎢鋼切削刀具、Pilot reamer、領先鉸刀、Electronics cutter、電子用切削刀具、Step drill、階梯鑽頭、Metal cutting saw、金屬圓鋸片、Double margin drill、領先階梯鑽頭、Gun barrelAngle milling cutter、角度銑刀、Carbide burrs、滾磨刀、Carbide tipped cutter、銲刃刀具、Chamfering tool、倒角銑刀、IC card engraving cutterIC晶片卡刀、Side cutter、側銑刀、NAS toolDIN tool、德國規範切削刀具、Special tool、特殊刀具、Metal slitting sawsShell end mills、滾筒銑刀、Side and face milling cuttersSide chip clearance saws、交叉齒側銑刀、Long end mills、長刃銑刀、Stub roughing end mills、粗齒銑刀、Dovetail milling cutters、鳩尾刀具、Carbide slot drillsCarbide torus cutters、鎢鋼圓鼻銑刀、Angeled carbide end mills、角度鎢鋼銑刀、Carbide torus cutters、短刃平銑刀、Carbide ball-noseed slot drills、鎢鋼球頭銑刀、Mould cutter、模具用刀具、BW微型渦流管槍、Tool manufacturer、刀具製造商等相關切削刀具、以服務客戶改善工廠加工條件、增加競爭力。


歡迎尋購~~~


碧威股份有限公司


www.tool-tool.com

beeway 發表在 痞客邦 留言(0) 人氣()

碧威股份有限公司
www.tool-tool.com
轉述:
分類:科學新知
2006/08/15 08:46
放電加工之技術概論
分類:PEM 精密電化學加工技術
2006/08/14 18:56

 
放電加工原理,簡單而言是利用電能轉換成工件熱能,使工件急速融熔的一種熱性加工方法。換言之,放電加工時,液體在電極與工件極細微的間隙中,產生過渡電 弧放電現象,進而對工件產生熱作用,同時在加工中,液體由於受到放電壓力及熱作用產生氣化爆發現象,此時工件融熔的部份,將隨液體氣化現象熔入加工液體 中,工件因放電的作用產生放電痕,這個動作反覆進行,那麼我們所要求的規格及形狀便可以在此原理中完成。由此可知放電加工與工件的硬度無關,只要是可以通 電的材料均能加工。基本上放電加工可分為:彫模放電加工和線放電加工(俗稱線切割)。
 
 

放電彫模中,電極的消耗是一個極為棘手的問題。比起切屑加工,電極工具的消耗率(量)是相當可觀的,解決電極工具的消耗問題,不管是從電極材料的研發,放電電路的改良,如何降低消耗或零消耗,是目前從事放電加工研究重要的課題。
 
 
線放電加工(俗稱線切割)是利用線材(通常指黃銅線)與工作物之間放電,此時線材就像是線鋸一般,然後藉著XY軸方向,NC控制程式便可切割出我們所須的 輪廓形狀。像齒輪、沖模等,其它比較複雜的形狀也可利用這種方法做切割加工。目前大部份的線放電加工機都使用純水為加工液,有少部份的線放電加工機使用燈 油當加工液。使用純水為加工液時加工速度快,但容易發生電解現象,所以一般的線放電加工機,通常都有一套純水循環系統。相對的,如果使用燈油為加工液時, 可做高精度的切割加工,但是相對的加工時間較長,這也是極須改進的地方。
 
 
雖然線放電加工機已經是相當普遍的工作母機之一,但是仍然面臨以下幾個問題:(1)斷線問題。(2)切割直角時產生圓弧的問題(在切割直角時,雖然線放電 加工機XY軸可控制行走90°的轉角,但是在放電過程中,特別是轉角處通常都會產生圓弧的現象)。(3)超細微線切割加工(以鎢線做細微切割加工,該種線 材極為昂貴,非附加價值高的加工,較少使用)。(4)高厚度的線切割加工: 線切割加工時,工件的厚度愈厚,線的振動程度愈大,就愈容易斷線。
引用:http://tw.myblog.yahoo.com/jw!EOUWG0WRGBKHrRDl8JmGBC4-/article?mid=944


 



BW碧威股份有限公司針對客戶端改善切削方式、提供專業切削CNC數控刀具專業能力、製造客戶需求如:Cutting tool、切削刀具、HSS Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolCarbide end millAerospace cutting toolCarbide drillHigh speed steelMilling cutterCore drill、鎢鋼銑刀、航太刀具、鎢鋼鑽頭、高速剛、鉸刀、中心鑽頭、Taperd end mills、斜度銑刀、


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轉述:
分類:科學新知
2006/08/15 08:44
金屬加工歷史與分別
分類:PEM 精密電化學加工技術
2006/08/14 18:55

近年來,由於科學上及工程上的進步,增加了許多金屬加工方面的特殊需求。
 
1.發展較高的強度對重量比之金屬。
 
2.發展出新的金屬切削與成形技術。
 
 
以更好、更快的製造方法來降低成本,並解決新開發材料所帶來的難加工問題。非傳統加工法廣泛地應用了機械式、電氣式、熱能式、以及化學式的材料切除技術。 這些技術是在第二次世界大戰之後,為因應加工條件的改變才出現。因為工程師設計了複雜的零件,以承受接近極限強度的應力;而冶金工程師也開發了太空合金, 以改善材料之耐腐蝕、耐沖蝕和耐高溫的能力。
 
 

非傳統加工以切除材料所使用的能量形式來分類。機械能、電能、熱能和化學能。但必須強調的是,這樣的分類有時會顯得過度簡化,因為大部份的加工方法不可能 只使用一種能量。例如:電化學加工,其所應用的電能和化學能相等重要。高功率消耗和低材料切除率是非傳統加工,不同於傳統加工的特性。雖然非傳統加工的生 產率較低,但因具有特殊的加工能力,所以經常被選為特殊物件的生產方式,例如製造複雜的零件以及加工特殊的材料。表面效應是另一個不同於傳統加工的特性, 非傳統加工通常製造出較令人滿意的表面粗糙度、熱影響區、硬度變化、裂縫和殘留應力。
 
 
機械能
使用機械能的加工技術有 兩種形式:1.剪斷2.沖蝕(erosion)來切除材料。剪斷是以切削刀具,做物理性接觸的簡單切削,這包含於所有的傳統切削技術中。然而,當材料是由 沖蝕來切削時,則此切削方法須使用非傳統切削技術,諸如:磨料噴射、超音波、磨料流(abrasive now)、動液壓(hydrodynamic)。磨料噴射削(AJM)用於切削薄且硬的材料,及在大片材料上切削複雜的孔形。
 
 
電能和化學能
使 用電化學能加工的非傳統加工技術,稱之為電化學加工(ECM)。這種加工技係基於反電鍍原理,材料由陰極工具與陽極工件間高速流動的電解液來切除。熱能使 用熱能將材料蒸發或熔解的加工技術。例如在硬直強韌的材料上加工高精度的孔,使用放電加工(EDM)方法;這方法是利用高頻的放電火花來蒸發切除金屬。 ECM技術是以高電流的方式切除塊狀離子微粒。ECM技術可應用於的基本形狀有孔形、貫穿孔形、凹穴、曲面、貫穿切削及特殊應用。尤其ECM有較大之切除 率。


 



BW碧威股份有限公司針對客戶端改善切削方式、提供專業切削CNC數控刀具專業能力、製造客戶需求如:Cutting tool、切削刀具、HSS Cutting toolCarbide end millsCarbide cutting toolNAS Cutting toolCarbide end millAerospace cutting toolCarbide drillHigh speed steelMilling cutterCore drill、鎢鋼銑刀、航太刀具、鎢鋼鑽頭、高速剛、鉸刀、中心鑽頭、Taperd end mills、斜度銑刀、


Metric end mills、公制銑刀、Miniature end mills、微小徑銑刀、鎢鋼切削刀具、Pilot reamer、領先鉸刀、Electronics cutter、電子用切削刀具、Step drill、階梯鑽頭、Metal cutting saw、金屬圓鋸片、Double margin drill、領先階梯鑽頭、Gun barrelAngle milling cutter、角度銑刀、Carbide burrs、滾磨刀、Carbide tipped cutter、銲刃刀具、Chamfering tool、倒角銑刀、IC card engraving cutterIC晶片卡刀、Side cutter、側銑刀、NAS toolDIN tool、德國規範切削刀具、Special tool、特殊刀具、Metal slitting sawsShell end mills、滾筒銑刀、Side and face milling cuttersSide chip clearance saws、交叉齒側銑刀、Long end mills、長刃銑刀、Stub roughing end mills、粗齒銑刀、Dovetail milling cutters、鳩尾刀具、Carbide slot drillsCarbide torus cutters、鎢鋼圓鼻銑刀、Angeled carbide end mills、角度鎢鋼銑刀、Carbide torus cutters、短刃平銑刀、Carbide ball-noseed slot drills、鎢鋼球頭銑刀、Mould cutter、模具用刀具、BW微型渦流管槍、Tool manufacturer、刀具製造商等相關切削刀具、以服務客戶改善工廠加工條件、增加競爭力。


歡迎尋購~~~


碧威股份有限公司


www.tool-tool.com

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