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(三)利用英文综合参考数据库——《美国工程索引(Ei)》进行文献信息检索示例

1、检索课题名称:用电化学法处理不锈钢表面的研究

2、课题分析:

中文关键词:电化学法处理不锈钢表面英文主题词:Electrochemistry treatment of stainless steel surface

3、选择检索工具:《美国工程索引》(Ei village2)

4、构建检索策略:Electrochemistry* stainless steel surface treatment

5、简述检索过程:

选择快速检索,输入检索词:第一、Electrochemistry;第二、stainless steel surface treatment检索结果 453篇

6、根据检索结果选择 3 条记录

根据检索结果,浏览题录可以确定该文献的收藏单位(图书馆或情报所、信息中心等),从而

可以进一步确定是否索取或借阅、复制原文。

Search Results:453 records in Compendex for 1969-2010

(((Electrochemistry) WN All fields) AND ((stainless steel surface treatment ) WN All fields))

1. Local electrochemical studies after heat treatment of stainless steel: Role

of induced metallurgical and surface modifications on pitting triggering Krawiec, H. (Department of Foundry, AGH Univ. of Science and Technology, 30-059 Kracow, Poland); Vignal, V.; Finot, E.; Heintz, O.; Oltra, R.; Olive, J.M. Source:Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, v 35 A, n 11, p 3515-3521, November 2004

Database: Compendex

Abstract - Detailed - Cited by in Scopus (9)

2. Laser surface treatment for enhancing intergranular corrosion resistance of

AISI type 304 stainless steel

Kaul, R. (Laser Materials Processing Division, Raja Ramanna Centre for Advanced Technology, Indore 452013, India); Mahajan, S.; Kain, V.; Ganesh, P.; Chandra, K.; Nath, A.K.; Prasad, R.C. Source:Corrosion, v 64, n 10, p 755-763, October 2008

Database: Compendex

Abstract - Detailed - Cited by in Scopus (3)

3. Influence of surface treatment methods on the corrosion behavior of coated

austenitic stainless steel

Yun, Jun Tae (Daewoo Shipbuilding and Marine Engineering Co., Ltd., 1,

Aju-dong, Geoje-si, Gyeongsangnam-do, 656-714, Korea, Republic of); Kwon, Taek Kyu; Kang, Tae Sung; Kim, Kyung Rae; Han, Jong Man Source:NACE - International Corrosion Conference Series, p 060161-0601611, 2006, Corrosion 2006

Database: Compendex

Abstract - Detailed

阅读文摘:

1 – 3 of 3 selected records from Compendex for:

1. Local electrochemical studies after heat treatment of stainless steel: Role of induced metallurgical and surface modifications on pitting triggering

Krawiec, H.1; Vignal, V.2; Finot, E.3; Heintz, O.2; Oltra, R.2; Olive, J.M.4 Source: Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, v 35 A, n 11, p 3515-3521, November 2004

ISSN: 10735623 CODEN: MMTAEB

Publisher: Minerals, Metals and Materials Society

Author affiliation:

1 Department of Foundry, AGH Univ. of Science and Technology, 30-059 Kracow, Poland

2 LRSS-Université de Bourgogne, 21078 Dijon, Cedex, France

3 LPUB-Université de Bourgogne, Bourgogne, France

4 LMP-Université Bourdeaux I, 3340

5 Talence, C edex, France

Abstract: The morphology, the chemical composition, and the pitting corrosion resistance of a resulfurized stainless steel heated at 1000 °C for 2 hours were investigated at the microscale using ex-situ (field-emission-scanning electron microscope/electron dispersion spectrometer (FE-SEM/EDS) and secondary ion mass spectroscopy (SIMS)) and in-situ (electrochemical microcell technique and in-situ atomic force microscope (AFM) techniques. Although microcracks, which may have a deleterious effect, exist, the formation of a compound (Cr,Mn)2(O,S)3 instead of MnS is responsible for the better pitting corrosion resistance of sites containing an inclusion. Local electrochemical measurements indicate that no pitting was detected on these sites below 800 mV/SCE (saturated calomel electrode), whereas stable pitting was observed ar around 350 mV/SCE before heating. Micropores were detected on the highly oxidized grains in which the ionic activity was found to be more marked than on the remaining surface (determined using in-situ AFM). Local electrochemical measurements revealed that the presence of such defects reduces significantly the corrosion resistance of the metallic alloy in NaCl-based media.

(22 refs.)

Controlled terms: Composition - Corrosion resistance - Electrochemical corrosion - Heat treatment - Inclusions - Microcracks - Morphology - Pitting - Scanning electron microscopy - Secondary ion mass spectrometry - Steel metallurgy - Surface treatment

Uncontrolled terms: Local electrochemical measurement - Pitting triggering - Resulfurized stainless steel

Classification Code: 531.1 Metallurgy - 537.1 Heat Treatment Processes - 539.1 Metals Corrosion - 545.3 Steel - 741.1 Light/Optics - 931.2 Physical Properties of Gases, Liquids and Solids

Database: Compendex

Abstract - Detailed

Record 2 from Compendex for: ((Electrochemical treatment of stainless steel surface) WN All fields), 1969-2010

Check record to add to Selected Records

2. Laser surface treatment for enhancing intergranular corrosion resistance of AISI type 304 stainless steel

Kaul, R.1; Mahajan, S.2; Kain, V.3; Ganesh, P.1; Chandra, K.3; Nath, A.K.4; Prasad, R.C.2 Source: Corrosion, v 64, n 10, p 755-763, October 2008

ISSN: 00109312 CODEN: CORRAK

Publisher: National Assoc. of Corrosion Engineers International

Author affiliation:

1 Laser Materials Processing Division, Raja Ramanna Centre for Advanced Technology, Indore 452013, India

2 Department of Metallurgical Engineering and Material Science, IIT Bombay, Powai, Mumbai 400076, India

3 Material Science Division, Bhabha Atomic Research Centre, Mumbai 400085, India

4 Department of Mechanical Engineering, IIT, Kharagpur 721 302, India

Abstract: A novel laser surface modification approach to suppress sensitization in AISI 304 (UNS S30400) austenitic stainless steel is described. Surface modification of austenitic stainless steel was carried out with a 10-kW carbon dioxide (CO2) laser in both continuous wave and pulse-modulated modes. After laser surface modification, the material was subjected to a sensitization heat treatment at 923 K for 9 h. Me degree of sensitization was determined by electrochemical potentiokinetic reactivation test while the susceptibility to intergranular corrosion was

determined using the ASTM A262, practice B test. The results of the study demonstrated that the laser-melted surface exhibited significantly higher resistance against sensitization and intergranular corrosion than the base metal. The laser-melted surface, even after being subjected to severe sensitization heat treatment, developed comparable or even a lower degree of sensitization than the base metal in the as-received condition. Enhanced immunity against sensitization of the laser-treated surface is attributed to its duplex microstructure and higher fraction of low-angle grain boundaries. The highlight of the investigation was that a laser surface melting treatment of unstabilized austenitic stainless steel brings about signficant reduction in its susceptibility to sensitization during subsequent exposure to a susceptible temperature region and to intergranular corrosion during service. ? 2008, NACE International. (38 refs.)

Controlled terms: Austenite - Austenitic stainless steel - Austenitic steel - Carbon dioxide - Corrosion - Corrosion resistance - Corrosion resistant alloys - Crystal growth - Grain boundaries - Heat treating furnaces - Heat treatment - Inert gas welding - Lasers - Metal analysis - Pulsed laser applications - Smelting - Steel - Steel corrosion - Steel metallurgy - Surface treatment - Surfaces

Uncontrolled terms: 304 stainless steels - AISI 304 - Base metals - Continuous waves - Degree of sensitizations - Duplex microstructures - Electrochemical potentiokinetic reactivation tests - Intergranular corrosion - Intergranular corrosions - Laser surface melting - Laser surface modifications - Laser surface treatment - Laser surface treatments - Melted surfaces - Sensitization - Surface modifications - Temperature regions

Classification Code: 744.1 Lasers, General - 744.9 Laser Applications - 801 Chemistry - 801.4 Physical Chemistry - 802 Chemical Apparatus and Plants; Unit Operations; Unit Processes - 802.2 Chemical Reactions - 804.2 Inorganic Compounds - 931 Classical Physics; Quantum Theory; Relativity - 933.1 Crystalline Solids - 933.1.2 Crystal Growth - 951 Materials Science - 644.2 Refrigerants - 531 Metallurgy and Metallography - 531.1 Metallurgy - 531.2 Metallography - 532.4 Heat Treating Furnaces - 533.2 Metal Refining - 537.1 Heat Treatment Processes - 538.2.1 Welding Processes - 539 Metals Corrosion and Protection; Metal Plating - 539.1 Metals Corrosion - 545.3 Steel - 604.2 Machining Operations

Database: Compendex

3. Influence of surface treatment methods on the corrosion behavior of coated austenitic stainless steel

Yun, Jun Tae1; Kwon, Taek Kyu1; Kang, Tae Sung1; Kim, Kyung Rae1; Han, Jong Man1 Source: NACE - International Corrosion Conference Series, p 060161-0601611, 2006, Corrosion 2006

ISSN: 03614409

Conference: Corrosion 2006, September 10, 2006 - September 14, 2006

Publisher: National Assoc. of Corrosion Engineers International

Author affiliation:

1 Daewoo Shipbuilding and Marine Engineering Co., Ltd., 1, Aju-dong, Geoje-si, Gyeongsangnam-do, 656-714, Korea, Republic of

Abstract: Austenitic stainless steels have been extensively used as piping and fitting materials in special ship constructions such as FPSO/LNG carriers to increase their expected life expectancy in corrosive environments. However, in the presence of chloride ions, contaminants and mechanical damages, stainless steel can lose its passivity and could cause pitting corrosion. An alternative method for protecting stainless steels from localized corrosion can be the use of coatings. The effects of a coating application on the anticorrosive performance of the stainless steel substrate are not well established. The present study evaluates the corrosive behavior of coated stainless steel using the following surface treatment method'- pickling, solvent cleaning, and non-metallic blasting (garnet blasting). The results suggest a beneficial role for commercially modified epoxy-polyurethane topcoat application, which is confirmed by cyclic corrosion test of painted stainless steel samples. Artificial thermal shock using liquid nitrogen, pull off strength and electrochemical test results indicate that pickling and degreasing (solvent cleaning) as well as garnet blasting can be applied as surface treatment methods to maintain effective coating properties between the modified epoxy primer-polyurethane topcoat system and the stainless steel interface. Based on these results, applying coating system on stainless steel surface can be more effective in terms of corrosion resistance than only passivation treatment during continuously exposed in marine atmospheric environment. ?2006 by NACE International. (7 refs.)

Controlled terms: Austenite - Austenitic stainless steel - Blasting - Canning - Chlorine compounds - Coatings - Corrosion resistance - Corrosion resistant alloys - Electrochemical properties - Garnets - Liquid nitrogen - Passivation - Pickling - Pitting - Silicate minerals - Solvents - Steel - Steel corrosion - Surface treatment

Uncontrolled terms: Alternative methods - Anticorrosive performance - Atmospheric environment - Chloride ions - Coating application - Coating properties - Coating system - Corrosion behavior - Corrosive environment - Cyclic corrosion tests - De-greasing - Electrochemical test - Expected life - Localized corrosion - Mechanical damages - Modified epoxy - Non-metallic - Passivation treatment - Pitting corrosion - Pull-off - Solvent cleaning - Special ships - Stainless steel substrates - Stainless steel surface

Classification Code: 931 Classical Physics; Quantum Theory; Relativity -

801.4.1 Electrochemistry - 802 Chemical Apparatus and Plants; Unit Operations; Unit Processes - 802.2 Chemical Reactions - 802.3 Chemical Operations - 803 Chemical Agents and Basic Industrial Chemicals - 804.1 Organic Compounds - 804.2 Inorganic Compounds - 813.1 Coating Techniques - 813.2 Coating Materials - 822.2 Food Processing Operations - 606.1 Abrasive Materials - 405.2 Construction Methods - 482.2 Minerals - 502.1 Mine and Quarry Operations - 531 Metallurgy and Metallography - 604.2 Machining Operations - 531.2 Metallography - 539.1 Metals Corrosion - 539.2.1 Protection Methods - 545.3 Steel - 539 Metals Corrosion and Protection; Metal Plating

Database: Compendex

7、标示原文线索:用中文标示各检索结果的著录事项

第一篇文献:

一、篇名:Local electrochemical studies after heat treatment of stainless steel: Role of induced metallurgical and surface modifications on pitting triggering

二、第一责任者:Krawiec, H.

三、第一责任者单位:Department of Foundry, AGH Univ. of Science and Technology, 30-059 Kracow, Poland

四、文献来源:Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, v 35 A, n 11, p 3515-3521, November 2004

第二篇文献:

一、篇名:Laser surface treatment for enhancing intergranular corrosion resistance of AISI type 304 stainless steel

二、第一责任者:Kaul, R.

三、第一责任者单位:Laser Materials Processing Division, Raja Ramanna Centre for Advanced Technology, Indore 452013, India

四、资料来源:Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, v 35 A, n 11, p 3515-3521, November 2004

第三篇文献:

一、篇名:Influence of surface treatment methods on the corrosion behavior of coated austenitic stainless steel

二、第一责任者:Yun, Jun Tae

三、第一责任者单位:Daewoo Shipbuilding and Marine Engineering Co., Ltd., 1, Aju-dong, Geoje-si, Gyeongsangnam-do, 656-714, Korea, Republic of

四、资料来源:NACE - International Corrosion Conference Series, p 060161-0601611, 2006, Corrosion 2006

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国家自然科学基金名称英文标准翻译 作者: tfyihit(站内联系TA)发布: 2009-09-15 1 国家杰出青年科学基金(批准号: )资助的课题. Project supported by the National Science Foundation for Distinguished Young Scholars of China (Grant No. ). 2 国家自然科学基金香港、澳门青年学者合作研究基金(批准号: )资助的课题. Project supported by the National Science Foundation for Hong Kong and Macao Young Scholars of China (Grant No. ). 3 国家自然科学基金(批准号: )资助的课题. Project supported by the National Natural Science Foundation of China (Grant No. ). 4 国家自然科学基金重大项目(批准号: )资助的课题. Project supported by the Major Program of the National Natural Science Foundation of China (Grant No. ). 5 国家自然科学基金重大研究计划(批准号: )资助的课题. Project supported by the Major Research plan of the National Natural Science Foundation of China(Grant No. ) 6 国家自然科学基金重点项目(批准号: )资助的课题. Project supported by the State Key Program of National Natural Science of China(Grant No. ). 7 国家自然科学基金海外青年学者合作研究基金(批准号: )资助的课题. Project supported by the Joint Research Fund for Overseas Natural Science of China(Grant No. ). 8 国家自然科学基金创新研究群体科学基金(批准号:)资助的课题. Project supported by the Foundation for Innovative Research Groups of the National Natural Science Foundation of China (Grant No. ). 9 国家自然科学基金国家基础科学人才培养基金(批准号:)资助的课题. Project supported by the National Science Foundation for Fostering Talents in Basic Research of the National Natural Science Foundation of China (Grant No. ). 10 国家自然科学基金联合基金项目(批准号:)资助的课题. Project supported by the Joint Funds of the National Natural Science Foundation of China (Grant No. ). 11 国家自然科学基金国际(地区)合作与交流(批准号:)资助的课题. Project supported by the Funds for International Cooperation and Exchange of the National Natural Science Foundation of China (Grant No. ). 12 国家自然科学基金专项类项目(批准号:)资助的课题. Project supported by the Special Funds of the National Natural Science Foundation of China (Grant No. ).

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DFM常用中英文对照 1、这个红色面在前模方向/后模方向/行位方向有倒扣。 This red surface is undercut at cavity side / core side / slider side. 2、这些红色面在前模方向/后模方向/行位方向有倒扣。 These red surfaces are undercut at cavity side / core side / slider side. 3、产品的这个位置太小,导致模具在前模方向/后模方向/行位方向有薄钢位。 This position is too small and it will bring the thin steel at cavity side / core side / slider side. 4、这些红色线是前后模/镶件/行位/斜顶分型线。 These red lines are the parting line of cavity and core / insert / slider / lifter. 5、此产品使用推板/推块顶出。 Use the stripper plate / ejector block to eject this part. 6、前模/后模斜内行位。 Inner angle slider at cavity / core side. 7、为了简化模具结构建议改变此处出模方向。 Suggest to change the draft direction of this position to make the mold structure simply. 8、最终的进胶位置根据模流分析。 Finally gate position according the mold flow analysis. 9、斜顶与后面的柱位空间太小,斜顶在运动时会干涉到柱子,请考虑移动这个柱子的位置。 This lifter intervene with the pole during ejection, please consider changing the position of the pole. 10、此处有薄钢位,强度不足而且不容易冷却。 The strength of this area is too weak and it is hard to cool because the thin steel. 11、此处有尖角,填充困难。 It is hard to fill for this area because the sharp feature. 12、此处料位太厚,会有缩水,建议减胶改善。 We suggest to reduce some wall thickness to avoid the sink mark for this position. 13、此处的行位夹线在外观面上,请确认是否接受? Please confirm whether it is acceptable to have a slider line on the visible surface? 14、建议加大拔模角,以便脱模顺利。 We suggest to enlarge the draft angle to help release the tool. 15、如果分型面此处,模具上会有尖角和刀口,对模具寿命有影响。 There are sharp edges if we set the parting line here, it will reduce the tool life. 16、此处料厚段差很大,成品表面会有应力痕,建议修改如图示。 The thickness is not equal and it will bring the stress lines on the surface, suggest to improve the part as the picture shown. 17、此大行位上有小行位,开模时小行位需先退,大行位做延时,合模时则相反。 The small slider is inside the big slider, when the mold open, the small slider need to recede first and the big slider have to postpone. When the mold close, it is contrary. 18、此处需做强顶。 This position need to force ejection. 19、由于此处没有足够空间下热咀,所以需做一个柱子进胶。 This position need to make a pole for gating because there have no enough space for hot sprue. 20、沾模, stick

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aquatics(水上运动) swimming 游泳 freestyle 自由泳 backstroke 仰泳 *stroke 蛙泳 butterfly 蝶泳 individual medley 个人混合泳 freestyle relay 自由泳接力 medley relay 混合泳接力 water polo 水球 diving 跳水 10m platform event 十米跳台 3m springboard event 三米跳板synchronised diving from 10 m platform 双人十米跳台 synchronised diving from 3 m springboard 双人三米跳板 synchronised swimming 花样游泳 archery(射箭) individual events 个人赛 team events 团体赛 athletics(田径) track 径赛 100 m, 200 m, 400 m 100米,200米,400米800 m, 1,500 m, 5,000 m, 10,000 m 800米,1500米,5,000米,10,000米 110 m hurdles, 400 m hurdles 110米栏,400米栏 3,000 m steeplechase 3000米障碍赛 4 x 100 m relay, 4 x 400 m relay 4×100米接力,4×400米接力 jumping 跳跃 high jump 跳高 pole vault 撑杆跳高 long jump 跳远 triple jump 三级跳远 throwing 投掷 shot put 推铅球 discus 掷铁饼 hammer 掷链球 javelin 标枪 decathlon 男子十项全能 heptathlon 女子七项全能 road events 公路赛 marathon 马拉松 walk 竞走 ball games(球类运动) badminton 羽毛球 men's singles 男子单打 women's singles 女子单打men's doubles 男子双打 women's doubles 女子双打 mixed doubles 混合双打 baseball 棒球 basketball 篮球 football 足球 handball 手球 hockey / field hockey 曲棍球 softball 垒球 table tennis 乒乓球 tennis 网球 volleyball 排球 beach volleyball 沙滩排球 cycling(自行车) road cycling 公路自行车赛 track cycling 场地自行车赛 sprint 追逐赛 time trial 计时赛 points race 计分赛 pursuit 争先赛 mountain bike 山地自行车赛 equestrian(马术) jumping 障碍赛 dressage 盛装舞步 eventing 三日赛 fencing(击剑) foil 花剑 epee 重剑 sabre 佩剑 gymnastics(体操) artistic gymnastics 竞技体操 floor exercises 自由体操 pommel horse 鞍马 rings 吊环 vault 跳马 parallel bars 双杠 horizontal bar 单杠 uneven bars 高低杠 balance beam 平衡木 rhythmic gymnastics 艺术体操 gymnastics trampoline 蹦床 modern pentathlon(现代五项) shooting 射击 fencing 击剑 swimming 游泳 riding 马术 cross-country running 越野跑 sailing(帆船) windsurfer men / women - mistral one design 男子/女子帆板米氏级 single-handed dinghy women - europe 女子帆

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?外文数据库检索 1.查找Christiane Siemer1992年发表的文献,写出第一篇文 献的基本信息; Activation of nonselective cation channels in the basolateral membrane of rat distal colon crypt cells by prostaglandin E2 Ion channels in the basolateral membrane of colonic crypts were investigated with the patch-clamp technique during stimulation of secretion. Intact crypts were isolated from rat distal colon and the cell poten... Christiane Siemer, Heinz G?gelein in Pflügers Archiv (1992) ?2。查找题名为"Recruiting and developing female managers for international assignments"的文章,并根据题录填写下列著录信息: ?Title: Recruiting and developing female managers for international assignments ?Authors : Liehan,Margareg;Walsh,James S ?Source: Journal of Management Development ?3。查找药物治疗(drug therapy)心血管疾病(cardiovascular disease)方面的文献。

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32边司/ 导套bush in g/guide bush ing 33顶针板ejector retainer plate 34托板support plate 35螺丝screw 36管钉dowel pin 37开模槽ply bar score 38内模管位core/cavity inter-lock 39顶针ejector pin 40司筒ejector sleeve 41司筒针ejector pin 42推板stripper plate 43缩呵movable core 44扣机(尼龙拉勾)n yl on latch lock 45斜顶lifter 46模胚(架)mold base 47母模cavity in sert 48公模core insert 49行位(滑块)slide 50 镶件in sert 51压座/斜鸡wedge 52耐磨板/ 油板wedge wear plate 53压条plate 54撑头support pillar 55唧嘴sprue bushing 56挡板stop plate 57定位圈locating ring 58锁扣latch 模具名词中英文对照表 序号中文名英文名 59扣鸡parti ng lock set 60推杆push bar 61栓打螺丝S.H.S.B 62顶板ejector plate 63活动臂lever arm

模具英语翻译大全

1. The undercut area where interfere with slide block need to be filled material to help the slide can move smoothly.(和滑塊干涉的倒勾請加料填平至滑塊可以順利滑動) 2. The thickening added too thick.(加肉太多) 3. The thickening area is too wide.(加肉面積太大) 4. Gate position is moved.(GATE位置移位) 5. The split line of slide block or the area of slide.(滑塊拆的位置) 6. This area is hard to be filled due to the sharp feature(此處有尖角,填充困難) 7. The strength of this area is too weak and isn’t easy to get c old due to the steel too thin. 8. ( 此處鋼材太薄,強度不足而且不容易冷卻) 9. .The semicircle of cylinder avoids designing on slide block lest it will be pulled apart or cause drag mark. 10. ( 圓柱特徵要有一半圓不可以拆在滑塊上,以免粘滑塊造成拉白,拉斷.) 11. The part will be damaged if we make lifter in this area. 12. ( 此處做斜銷在作動時會削到成品肉厚) 13. This is critical surface where is not allow to add material. 14. ( 這個面是裝配面,不能加料) 15. This thick wall area might because sink mark,Please reduce some wall thickness to improve it.) 16. ( 此處料位太厚,會有縮水,建議減料改善) 17. Please confirm whether it is critical surface or not. Please confirm whether it is acceptable to has Slide split line if we have slide in this area. 18. (此面是不是外觀面,此處做滑塊的話會有結合線,是否可以接受) 19. Please confirm whether we can reduce material to the area where have undercut as indicated to have shut off on core and cavity side. No slide block and lifter to be made. 20. (此處有倒勾,能否減料,使公母模靠破,不做滑塊和斜銷) 21. Please confirm the issues of Parting line, Gate position...Etc otherwise the lead-time will be extended. 22. (請盡快確認這種拆模方式和結構,否則會影響模期) 23. The trim mark of the gate is not visual after open the top case if the gate position is design ed like it 24. (GATE做在此處的話.蓋子打開後看不到GATE的修剪部位) 25. We would suggest to enlarging draft to help tool released.) 26. 加大拔模角,以便脫模順利) 27. There are sharp edges if set the parting line at here, It will reduce the tool life 28. (P.L面開在此處,模具上會有尖角和刀口,對模具壽命有影響) 29. If you insist that the gate position have to be as original design then we would

英文数据库,全文检索 文档

四)利用英文全文数据库——Elsevier,Springer,EBSCO(BSP/ASP) 1、检索课题名称:探析公益广告中的商业元素 2、课题分析: 中文关键词为:公益广告,商业元素 英文关键词为:PSAs Commercial elements Business Elements 3、选择检索工具:Elsevier 数据库,Springer数据库,EBSCO(BSP/ASP)数据库。 4、构建检索策略:Commercial elements and the public service ads 5、简述检索过程: ①,选定在Elsevier 中期刊、图书、文摘数据库等全部文献资源中检索2000 年以后的关于公益广告中的商业元素的文献 利用确定的检索策略(Commercial elements and the public service ads ),文献全文(含文献题目、摘要、关键词)中检索,检到184 篇相关文献。 ②,选定在Springer 中期刊、图书、文摘数据库等全部文献资源中检索2000 年以后的关于公益广告中的商业元素的文献 利用确定的检索策略(Commercial elements and the public service ads ),文献全文(含文献题目、摘要、关键词)中检索,检到64篇相关文献。③,选定在EBSCO(BSP/ASP)中期刊、图书、文摘数据库等全部文献资源中检索2000 年以后的关于公益广告中的商业元素的文献 利用确定的检索策略(Commercial elements and the public service ads ),文献全文(含文献题目、摘要、关键词)中检索,检到381篇相关文献。 6、整理检索结果: 从以上文献中选择出3 条切题文献 ①、Constructing female identities through feminine hygiene TV commercials M a Milagros Del Saz-Rubio a, , and Barry Pennock-Speck b, [Author vitae] a Universidad Politécnica de Valencia, Camino de Vera s/n 46022, Valencia, Spain b Universitat de València, Avenida Blasco Ibá?ez 32, 46010, València, Spain Received 9 July 2008; revised 10 January 2009; accepted 18 April 2009. Available online 3 June 2009. In this paper we report the results of a qualitative multimodal analysis of a corpus of Spanish and British TV ads featuring female hygiene products such as tampons, liners and sanitary towels/pads. We contend that advertisers of menstruation-related products employ a wide range of strategies to convey both overt information about the products advertised, as well as to –and more importantly –indirectly transmit stereotypical beliefs of women which inevitably helps reproduce and sometimes perpetuate a gender-biased type of discourse (Holmes and Marra, 2005). Crook's (2004) distinction between the product-claim and the reward dimension in ads has been taken as the starting point for our analysis. Within the product-claim dimension we have focused on what information is transmitted through the application of some of Brown and Levinson's (1987) generic positive and off-record politeness strategies. On the other hand, within the reward dimension attention is shifted to how information surfaces the language in an indirect fashion through attention to different format types, visual imagery, voices and music. Results indicate that ads either tend

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