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In 2003, we succeeded in manufacturing 30 types of K series program-controlled paper cutting machines by using the most advanced techniques in the world. Furthermore, in 2006, the computer-controlled, high-speed, high-accuracy paper cutting machine K-CD series was listed in the National Torch Project. GUOWANG's strategy had led the company to gain more than 10 years of continuous sales increase. In April 2009, we imported 7 sets of CNC pentahedron machining center which lead GUOWANG to be the leading manufacturer of Chinese paper cutting machine industry that owns the largest scale, most complete and advanced machining centers.

从2003年采用国际最先进切纸机生产技术实现生产K系列30种型号程控切纸机到2006年K-CD型电脑程控高精度高速全开切纸机被列入国家火炬项目,我们一直朝这一目标看齐、迈进。2009年4月份我公司又引进了7台进口CNC五面体加工中心生产设备,成为目前全国切纸机行业当中拥有加工中心最齐全,最庞大,最先进的生产商。

This milling machine has fixed cross-rail and column structure. The national patent technology "the new multiple guideway" and CNC universal milling head with AC axes(3axes +2axes) type are applied to it. It can realizes rotate index ±370o at AC axes. Equipped with domestic or imported CNC system and capability, the machine can realize pentahedron machining.

产品采用定梁定柱结构,刚性强;应用《新型复合导轨》国家专利技术和AC轴(3轴+2轴)型数控自动万能铣头核心技术,可实现AC轴±370o自动旋转分度;选配国产和进口数控系统,自动完成多种空间方向的加工,实现五面体加工功能。

Web preprint processing technology is the first paper business card printing and membership card production, in printed cards and membership cards making machines after the first-and-drop, as printed on the product remains the drum and corrugrted will be the processing of paper use.

卷筒纸预印加工技术是先进行面纸制卡和会员卡制作,在预印制卡和会员卡制作机上采用的是前放后收,印成品仍保持卷筒形式,并将作为加工瓦楞纸板的面纸使用。

Main and slave rails are chose with high strength material. Its top and sides are all manufactured in very good surface. The precise rack is at main rail.

导轨采用高强度热处理加工路轨制作,导轨的顶面和侧面都经过精密机械磨削加工,在导轨外侧面装置精密齿条。

The main research content is: Using the experimental of cutting force and roughness of high speed face milling cutter and high speed end milling cutter mill aluminium alloy and cast iron, analyze the rules of the high speed milling velocity, feed rate per tooth, milling depth and milling width to high speed processing. Use multiple linear regression method, set up surface roughness and the cutting force fluctuation models. Certify the regression model notability, and provide a reliable guarantee for the accuracy of function optimization. Based on the targets of productivity, manufacturing cost, surface roughness, cutting force fluctuation optimization model, according to research of the high speed milling parameters selecting restrict of work piece, machine, tool and safety, set up high speed milling parameters multi-object optimization system.

本文以已有的高速铣削机理及高速刀具技术研究成果为基础,结合高速铣削试验,进行了基于遗传算法的高速铣削参数优化研究与系统开发,主要的研究内容为:通过高速面铣刀和高速立铣刀加工铝合金和铸铁等材料的切削力和表面粗糙度试验,进行了铣削速度、每齿进给量、铣削深度和铣削宽度对高速铣削加工过程影响的研究;采用多元线形回归的方法,建立了切削力及其振幅和表面粗糙度模型,并对模型的显著性进行验证,为高速铣削参数优化模型的建立奠定了基础。

Generally planer machining datum and edges, in order to single-sided planer processing relative surface pressure and relative edges.

一般以平刨床加工基准面和边,在以单面压刨床加工相对面和相对边。

The off-axis reflection system composed of four aspheric mirrors was designed, but the system structure was not so simple and the performance can also be improved, besides, manufacture and test for large aspheric mirrors are difficult; and then the spherical Fresnel mirror which is easier to be manufactured and tested was used to replace the aspheric mirror, the spherical Fresnel mirror has low cost of replication, but this design also can\'t be used in projection lens because it was only feasible in narrow wavebands; Furthermore, the design making use of catadioptric projection lens was accomplished, this design is greatly applied in rear projector because it has merits of both refraction and reflection. But it had difficulties in color aberration correction and had complex structure.

设计了四片非球面组成的离轴式反射系统,然而,仅采用非球面设计系统结构不够精简,性能也有待进一步提高,且非球面面形较大时加工和检测都存在一定的困难;继而提出了用球面Fresnel反射镜代替非球面的设计方法,虽然Fresnel反射镜加工和检测更为简单,且复制成本低,但对波长具有选择性;进而,应用折反系统结合的方式设计了离轴式投影镜头,该方法因兼具折射和反射的优点,在大屏幕超薄背投系统的设计中广为应用,缺点是会产生难以校正的色差,且结构复杂。

Main business: CNC engraving machine Series: Applications: stainless steel, copper engraving Case insets processing; stainless steel, copper Case Shouban; spherical, Globoidal processing, text, sculpture ★ Case 5-axis double-headed insets engraving machine ★ Case 5-axis three insets engraving machine ★ Case 4-axis linkage double-headed insets engraving machine ★ Case 4-axis linkage three insets engraving machine ★ high triaxial strong double-headed die machine ★ high strength triaxial 3 Die machine ★ Case Drilling Machine, surface drilling machine ★ Case-meter pit, watches and clocks, glass-processing machine production testing of aircraft series:● test the waters Series: 10 automatic machine manually test the waters, six automatic Manual examination of water, really test the water leak-loaded needle ● Series: Semi-automatic assembly line of watches and clocks, watches and clocks, with three-pin CNC machines, semi-automatic machine ● single needle assembly Series: Semi-automatic cutting the core of machines, Case glass adhesive glue Machines, pneumatic pressure Digai ● strap-test: strap Rally torque testing machine, clasp switch testing machine, strap swing testing machine ● first test table: Table heading to the functional testing of aircraft, form the first vibration test machines, Table first parabolic dynamic testing machine has been with the German company Rexroth, Japan Yasukawa, Panasonic, Mitsubishi, and other well-known international companies have a long-term stability of technical cooperation, continue to study and absorb the advanced technology at home and abroad.

主营业务: CNC雕刻加工机系列:应用:不锈钢、铜表壳镶石雕刻加工;不锈钢、铜表壳手板;球面、弧面加工、文字雕刻★表壳五轴联动双头镶石雕刻机★表壳五轴联动三头镶石雕刻机★表壳四轴联动双头镶石雕刻机★表壳四轴联动三头镶石雕刻机★高强力三轴双头模具加工机★高强力三轴三头模具加工机★表壳钻孔机、表面钻孔机★表壳米坑位、玻璃位加工机钟表生产测试机系列:●试水系列:十头自动手动试水机、六头自动手动试水机、真水试漏机●装针系列:半自动钟表装配生产线、数控钟表装三针机、半自动单针机●装配系列:半自动切把芯上的机、表壳玻璃胶水粘接机、气动压底盖机●表带测试:表带拉力扭力测试机、表扣开关测试机、表带摇摆测试机●表头测试:表头按的功能测试机、表头震动测试机、表头抛动测试机一直以来,公司与德国Rexroth、日本安川、松下、三菱等国际知名企业有着长期稳定的技术合作,不断地学习和吸收国内外的先进技术。

For swarf cutting, the user selects the top and bottom curves to machine, and a check surface.

对于SWARF加工而言,使用者需要选择加工部位的顶部和底部曲线,并选择一个检查面。

For swarf cutting, the user selects the top and bottom cures to machine, and a check surface.

对于SWARF加工而言,使用者需要选择加工部位的顶部和底部曲线,并选择一个检查面。

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