讲义塑胶产品与模具设计.ppt
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1、讲义塑胶塑胶产品与模品与模具具设计澆注系統設計澆注系統設計Filling System Design徐昌煜Charles Hsu模具設計的優先順序模具設計的優先順序Priorities of Mold Design澆注系統設計(Filling System Design)排氣系統設計(Venting System Design)冷卻系統設計(Cooling System Design)脫模系統設計(Ejecting System Design)澆注系統設計的優先順序澆注系統設計的優先順序Priorities of Filling System Design產品設計(Part Design)型腔
2、設計(Cavity Design)澆口設計(Gate Design)流道設計(Runner Design)豎澆道設計(Sprue Design)噴嘴設計(Nozzle Design)豎澆道Sprue主流道Main Runner成品Part澆口Gate冷料井Cold Slug Well支流道Branch Runner典型的澆注系統典型的澆注系統Typical Filling System壁厚不均是注塑成形中最大的麻煩製造者。這對薄壁零件尤然。這些麻煩包括了遲滯現象、短射、凹陷、發赤、噴流、翹曲及長冷卻時間等;目前都可用CAE以直接或間接的方式預測。Non-uniform wall thickne
3、ss is the biggest trouble maker in plastic injection molding.This is especially true to thin-wall part.The troubles,including hesitation,short shot,sink mark,blush,jetting,warpage and long cooling time etc.,can be predicted,directly or indirectly,by using CAE.壁厚不均壁厚不均Non-uniform Wall Thickness壁厚設計壁厚
4、設計Wall Thickness Design差 Poor較好 Better最好 Best掏空設計掏空設計(1 1)Coring Out Design(1)改進設計 Improved原設計 Original差 Poor改進 Improved掏空設計掏空設計(2 2)Coring Out Design(2)氣泡或氣泡或/和凹陷的形成和凹陷的形成Void or/and Sink Mark Forming氣泡氣泡(Void)凹陷凹陷(Sink Mark)肋厚和內圓角半徑的影響肋厚和內圓角半徑的影響The Effect of Rib Thickness&Fillet Radius肋的底部厚度肋的底部厚
5、度Bottom Thickness of RibW0.5W2.5WW1.2WD1.5WD(A)(B)肋的設計肋的設計(一一)Rib Design(1)t=wall thichnessB=0.5tC=3 tAAD=2 BE=0.13 mm(radius)F=1.5-2 deg假如需要更大的強度假如需要更大的強度,可增加肋的數目可增加肋的數目If more strength is required,add additional ribs.FBDECt 肋的設計肋的設計(二二)Rib Design(2)肋的設計肋的設計(三三)Rib Design(3)與側壁相連之凸轂與側壁相連之凸轂(熱塑性塑膠熱塑
6、性塑膠)Boss at Wall(Thermoplastics)A=凸轂附著處壁厚凸轂附著處壁厚 wall thicknessB=凸轂外環直徑凸轂外環直徑 dia.of boss over radiiC=0.5 AD=2 BE=1 2 degF=0.13 mm(radius)G=DH=0.8 AI=A/4J=2 BK=0.3 1 JL=0.5 A LHAAKEIGJDAFCBSection A-A遠離側壁之凸轂遠離側壁之凸轂(熱塑性塑膠熱塑性塑膠)Boss Away From Wall(Thermoplastics)A A=凸轂附著處壁厚凸轂附著處壁厚 wall thickness wall
7、thicknessB B=凸轂外環直徑凸轂外環直徑 (含底部修整圓弧半徑含底部修整圓弧半徑)dia.of boss over dia.of boss over radiiradiiC=0.5 AC=0.5 AD=2 BD=2 BE=1-2 degE=1-2 degF=0.13 mm(radius)F=0.13 mm(radius)G=0.95 DG=0.95 DH=0.3 G min.to G max.H=0.3 G min.to G max.I=0.5 AI=0.5 AHEFDFGCBAI外側凸轂外側凸轂Outside Boss AAA(DIA)BB=AB=2A(max.)Section A
8、-AWhere 1/r:樑的曲率 curvature of the beamM:彎曲力矩 bending momentE :彈性模數 modulus of elasticityI :斷面積對中立軸的慣性矩 moment of inertia of the cross-sectional area with respect to the neutral axisEI :撓曲剛性 flexural rigidity撓曲剛性撓曲剛性Flexural RigidityNeutral Axis?10.8平板和肋板的比較平板和肋板的比較Comparison between Plain&Ribbed Pla
9、tes和平板比,若基於相同的慣性矩(剛性),肋板需料少了43%,I/A卻增加了1.79倍。肋板的最大厚度減為平板的1/4,使得冷卻時間驟降15/16(94%)。Based on the same moment of inertia(stiffness),ribbed plate needs 43%less material but boost I/A by 1.79 times comparing with plane plate.The maximum thickness of ribbed plate is only 1/4 of plain plates;showing a dramat
10、ic cooling time reduction of 94%(15/16).平板和肋板的比較平板和肋板的比較Comparison between Plain&Ribbed PlatesA variety of molded-ininterlocks can add stiffness to thin-wall housing designs.各種一體成形的內鎖件能增加薄殼的剛性。結構設計是薄殼成形零件的基礎。Structural design is the base of thin-wall molding parts.薄殼成形零件不僅僅是一趨勢,而且也是降低成本和提高競爭力的有效途徑。T
11、hin-wall molding part is not only a trend but also an effective way to achieve cost reduction and competitiveness increase.結構設計和薄殼成形零件Structural Design&Thin-wall Molding Parts每增加一個澆口,至少增加一條熔接線,同時增加一個澆口痕跡、增加流道的體積以及增加較多的積風。Every time one gate is added,one weld line,at least,one gate mark,more runner v
12、olume and more air traps will be added.在型腔能夠完滿充填的前提下,澆口數目是愈少愈好。As long as the cavity is able to be filled appropriately,gates are the less the better.為了減少澆口數目,每一澆口應就塑流力所能及的流長/壁厚比之內,找出可以涵蓋最大零件面積的進澆位置。In order to reduce the number of gates,each gate shall be located at where the melt is able to cover
13、maximum part area based on the largest melt flow length/thickness ratio.澆口數目The Number of Gates 熔膠波前推進熔膠波前推進Melt-Front AdvancementMelt-Front Advancement充填模式,積風和熔接線Filling Patterns,Air-Traps and Weld Lines Location熔接線熔接線Weld LinesWeld Lines材料 Material:PC-GF50原設計 Original更改設計 Revised更改澆口位置以重新定位熔接線更改澆口
14、位置以重新定位熔接線Weld Lines Can Be Relocated Weld Lines Can Be Relocated By Changing Gate LocationBy Changing Gate Location典型對頭熔接線伸張強度保留值典型對頭熔接線伸張強度保留值Typical Butt Weld Tensile Strength Retention ValuesTypical Butt Weld Tensile Strength Retention Values熔接線冷料井熔接線冷料井Weld Slug WellWeld Slug Well對頭熔接線 Butt wel
15、d熔接線冷料井Weld slug well積風積風Air TrapsAir Traps排氣排氣VentVent大部份熱塑性塑膠Most ThermoplasticsA 0.08 mmB 3.18 mmC 12.7 mmD 0.25 mm耐隆和聚縮醛(POM)Nylon and Acetal(POM)A 0.04 mmB 3.18 mmC 12.7 mmD 0.25 mm進料流道Feed Runner塑膠成品Plastic PartAD排氣孔VentBSEC.A-ACAA充填均衡Flow Balance熔膠波前於同一時間抵達型腔各末端。Melt front reaches the ends of
16、 cavity at the same time.原始設計Original Design十二澆口設計十二澆口設計12 Gate Design電子零件置物箱材料 Material:ABS四澆口設計四澆口設計4 Gate Design修正設計Revised Design電子零件置物箱材料 Material:ABS電子零件置物箱四澆口電子零件置物箱四澆口和十二澆口設計比較表和十二澆口設計比較表剪切速率剪切速率Shear Rate剪剪 切切 應應 力力shear Stress黏黏 度度viscosity剪剪 切切 速速 率率shear rate剪切應力剪切應力Shear Stress澆口種類澆口種類G
17、ate Types針點澆口Pin Gate扇型澆口Fan Gate潛伏澆口Submarine Gate邊緣(薄膜)澆口Edge(Film)Gate凸片澆口Tab Gate閥澆口Valve Gate環狀澆口Ring Gate導致平直零件的澆口設計導致平直零件的澆口設計Gate Design for Flat Part中心澆口Center Gate扇形澆口Fan Gate最壞的Worst壞的Worse較好的Better最好的Best側澆口Edge Gate薄模澆口Film Gate澆口設計澆口設計(減少滯流效應減少滯流效應)Gate Design to Avoid Hesitation澆口gate
18、薄thin厚thick差的設計Poor好的設計Good薄thin厚thick澆口gate澆口設計澆口設計(避免凹陷和氣泡避免凹陷和氣泡)Gate Design to Avoid Sink Mark&Void澆口gate澆口gate差的Poor好的Good使用重疊澆口以避免噴流使用重疊澆口以避免噴流Avoid Jetting by Using Overlap Gate差的Poor好的Good正確的澆口位置以避免噴流正確的澆口位置以避免噴流Avoid Jetting by Locating Gate Correctly差的Poor好的Good使用凸片澆口以避免噴流使用凸片澆口以避免噴流Avoid
19、Jetting by Using Tab Gate使用適當的澆口形狀以避免噴流使用適當的澆口形狀以避免噴流Avoid Jetting by Profiling Gate Properly差的Poor好的Good幫浦零件(Part,Pump)塑料(Polymer):POM進澆處(Polymer entrance):澆口厚(Gate thickness)1.2mm,模穴厚(Cavity thickness)3.2mm問題(Problem):噴流(Jetting)Poor Design Causing JettingGatePart :Handle,RefrigeratorMaterial:ABSP
20、roblem:Jetting Mark Gas Pin氣輔成型冰箱把手氣輔成型冰箱把手澆口及氣針入口澆口太小,導致噴流痕產生厚度差異過大,導致二次噴流痕產生R角過小,氣體通路接近把手內側,外側則因體積收縮造成凹陷痕跡閥澆口閥澆口Valve Gate1.閥澆口梢 Valve-Gate Pin2.加熱管 Heater3.O型環#610 0 Ring4.流道歧管模板 Manifold Plate5.軸封環 Seal Retainer6.套筒軸封 Sleeve Seal7.枕塊 Support Pillar8.油壓缸 Hydraulic Cylinder閥澆口閥澆口(一一)Valve Gate(1)全
21、部閥澆口同時打開時之充填狀況Mold filling with all the valve gates(shut-off gates)opened at the same time.閥澆口閥澆口(二二)Valve Gate(2)部份閥澆口延遲打開,改變充填模式Mold filling with delayed valve gate opening;filling pattern,weld lines and air traps are changed.多澆口設計多澆口設計 Multi-Gate Design閥式澆口閥式澆口Valve Gate矩形邊緣澆口設計矩形邊緣澆口設計Rectangula
22、r Edge Gate DesignL=0.5 0.75 mmW=澆口寬度(mm)gate width in mmA=型腔表面積(mm )surface area of cavity in mmn =材料常數 material constant 0.6 for PE,PS 0.7 for POM,PC,PP 0.8 for CA,PMMA,PA 0.9 for PVC22h=n th=澆口厚度(gate thick.in mm)t =零件壁厚(wall thick.in mm)WtLh扇形澆口設計扇形澆口設計Fan Gate DesignL=1.3mmW=w=澆口寬度 mm gate widt
23、h in mmA=型腔表面積 mm surface area of cavity in mmn=材料常數 material constant 0.6 for PE,PS 0.7 for POM,PC,PP 0.8 for CA,PMMA,PA 0.9 for PVC澆口厚度 gate thick.in mmt=零件壁厚 wall thick.in mm 2 2 h1 =n t h2=wh1/D重疊式澆口設計重疊式澆口設計Overlap Gate DesignW=w=澆口寬度 mm gate width in mmA=型腔表面積 mm surface area of cavity in mmn=
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