TWM555285U - Highly productive injection molding machine with two clamps and two pressurizers - Google Patents

Highly productive injection molding machine with two clamps and two pressurizers Download PDF

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Publication number
TWM555285U
TWM555285U TW106211320U TW106211320U TWM555285U TW M555285 U TWM555285 U TW M555285U TW 106211320 U TW106211320 U TW 106211320U TW 106211320 U TW106211320 U TW 106211320U TW M555285 U TWM555285 U TW M555285U
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Taiwan
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pressure
double
molding machine
injection molding
locking
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TW106211320U
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Chinese (zh)
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Wing Kin Kevin Tong
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Tat Ming Eng Dongguan Ltd
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Priority to TW106211320U priority Critical patent/TWM555285U/en
Publication of TWM555285U publication Critical patent/TWM555285U/en

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  • Injection Moulding Of Plastics Or The Like (AREA)

Description

高效能產出之雙鎖模、雙保壓射出成型機 High-performance output double-locking, double-pressure injection molding machine

本創作係有關於一種高效能產出之雙鎖模、雙保壓射出成型機,尤指一種利用雙鎖模與雙保壓相互交換作動,來達到可連續製造並具節能、降低成本之高效能產出之雙鎖模、雙保壓射出成型機為其創作應用者。 This creation is about a high-performance double-locking, double-pressure injection molding machine, especially one that uses double-locking and double-pressure exchange to achieve continuous manufacturing and energy saving and cost reduction. The double-mode-locking and double-pressure injection molding machine that can produce the same is the author of the application.

按,於先前所用之一般的射出成形機中,向加熱缸內送入作為原料之粒狀熱可塑性樹脂,藉由設置於加熱缸內之可進退之螺桿一面使樹脂熔融一面將該樹脂送出至螺桿前端之噴嘴側,自設置於螺桿前端側之噴嘴將熔融樹脂射出至模具裝置之模穴內,於模穴內使熔融樹脂冷卻而固化後,打開模具裝置,藉由頂出銷等將貼附於模具之成形物移至模具外,由此使成形體成形。 According to the conventional injection molding machine used in the prior art, the granular thermoplastic resin as a raw material is fed into the heating cylinder, and the resin is melted while the resin is placed on the retractable screw provided in the heating cylinder. On the nozzle side of the screw front end, the molten resin is ejected from the nozzle provided on the tip end side of the screw into the cavity of the mold device, and the molten resin is cooled and solidified in the cavity, and then the mold device is opened, and the ejector pin or the like is attached. The molded article attached to the mold is moved outside the mold, thereby forming the formed body.

對於上述單模式之射出成形機的詳細動作原理,請參第九~十圖所示,為於機台(9)上一開始驅動鎖模壓缸(91),推動活動模板(92)以讓公、母模密合,續經馬達驅動旋轉送料螺旋桿(93)將塑料從加熱的料管(94)中轉變成流動狀態,而向料管(94)方向流動的料液,於導送流動時產生反作用力,讓送料螺旋桿(93)往後退至所設定的儲料位置。之後,再經由射出油壓缸(95)之活塞桿推動送料螺旋桿(93),將料筒(94)內所儲備的流動態塑料經料管頭並通過噴嘴(941)填料擠入模穴中,於射料完成後,經保壓與冷卻製程,再驅動鎖模壓缸(91)將活動模板反向退後,形成開模並將模內已固化成型的製品頂出。 For the detailed operation principle of the above single-mode injection molding machine, please refer to the ninth to tenth drawings, in order to drive the clamping cylinder (91) on the machine (9), push the movable template (92) to let the public The mother mold is tightly closed, and the motor-driven rotary feed screw (93) is used to convert the plastic from the heated material tube (94) into a flowing state, and the liquid flowing in the direction of the material tube (94) is guided to flow. The reaction force is generated to cause the feed auger (93) to retreat to the set storage position. Then, the feed screw (93) is pushed by the piston rod of the injection hydraulic cylinder (95), and the flow dynamic plastic material stored in the cylinder (94) is pushed into the cavity through the nozzle (941) packing. After the completion of the shot, after the pressure maintaining and cooling process, the mold clamping cylinder (91) is driven to reverse the movable template to form an open mold and eject the molded product in the mold.

然而,塑膠射出成型機在射出過程,粒狀塑料由料斗經送料螺桿旋轉推送,並經料管(94)外部電熱片加熱而轉變成流動態塑料,而流動態塑料是有熱膨脹現象,因此當流動態塑料注射填滿模穴時須再繼續補填,以防止成品冷卻收縮後產生蹋陷變形不飽和的型狀,而此補填動作即為所謂的『保壓』。 However, in the injection molding process of the plastic injection molding machine, the granular plastic is pushed by the hopper through the feeding screw, and is heated by the external heating piece of the material pipe (94) to be converted into a flow dynamic plastic, and the flow dynamic plastic has thermal expansion phenomenon, so when When the flow dynamic plastic injection fills the cavity, the filling must be continued to prevent the shape of the collapse deformation from being unsaturated after the cooling and shrinking of the finished product, and the filling operation is the so-called "holding pressure".

經由上述可知,現有技術之單模式之射出成形機所製作之製品的壁厚越大,其保壓與冷卻的時間就越長;相對地,製品的生產速度就會越慢,產能降低,並提高製造成本,而不符合經濟效益,實有待改善。 According to the above, the larger the wall thickness of the product produced by the single-mode injection molding machine of the prior art, the longer the pressure holding and cooling time; in contrast, the slower the production speed of the product, the lower the productivity, and Increasing manufacturing costs, but not in line with economic benefits, needs to be improved.

緣是,創作人有鑑於此,秉持多年該相關行業之豐富設計開發及實際製作經驗,針對現有之結構及缺失予以研究改良,提供一種高效能產出之雙鎖模、雙保壓射出成型機,以期達到更佳實用價值性之目的者。 The reason is that the creators have made a lot of research and development and practical production experience in the relevant industries for many years, and have researched and improved the existing structures and defects to provide a double-mode-locking and double-pressure injection molding machine with high efficiency. In order to achieve better practical value for the purpose.

本創作之主要目的在於提供一種高效能產出之雙鎖模、雙保壓射出成型機,尤其是指一種利用雙鎖模機構及具有保壓、阻流、通流功能的雙保壓裝置來進行相互交換的射出製程,達到可連續製造並具節能、降低成本之高效能產出之雙鎖模、雙保壓射出成型機為其目的。 The main purpose of this creation is to provide a double-mode-locking and double-pressure injection molding machine with high efficiency, especially a double-locking mechanism and a double pressure-preserving device with pressure maintaining, blocking and flow-passing functions. The exchange process of exchanging each other achieves the purpose of a double-locking and double-pressure injection molding machine capable of continuously manufacturing and energy-saving and cost-reducing high-efficiency output.

本創作高效能產出之雙鎖模、雙保壓射出成型機之主要目的與功效,係由以下具體技術手段所達成:其主要於機台上設有前、後固定模板,於該前、後固定模板間設有左右相鄰的二活動模板,該活動模板分別連結組設鎖模機構,再於機台上該前固定模板另一側設有注射機構,該注射機構對應二活動模板處分別設有射料噴嘴,於該二射料噴嘴後段分別設有保壓裝置,且該二射料噴嘴之間設有一分 流料管,該分流料管連結主料管頭與射出料管;利用單一射出料管經分流至其一射料噴嘴而儲料填充於其一活動模板鎖模後的模具,且於同時間另一射料噴嘴與另一活動模板鎖上的模具進行保壓、冷卻動作;藉此,以雙鎖模、雙保壓相互交換的循環原理,使其連續製造達到節能、降低成本之高效能產出的功效。 The main purpose and effect of the double-mode-locking and double-pressure injection molding machine for high-performance production of this creation are achieved by the following specific technical means: it is mainly provided with front and rear fixed templates on the machine table. The rear fixed template is provided with two movable templates adjacent to each other, and the movable template is respectively connected with the set locking mechanism, and then the injection mechanism is disposed on the other side of the front fixed template on the machine table, and the injection mechanism is corresponding to the second active template. There is no injection nozzle, and a pressure maintaining device is respectively arranged at the rear of the two injection nozzles, and a point is provided between the two injection nozzles. a flow tube connecting the main material tube head and the injection material tube; using a single injection material tube to be shunted to one of the injection nozzles and the material is filled in a mold after the movable template is clamped, and at the same time The other injection nozzle and the mold of the other movable template lock perform the pressure maintaining and cooling operations; thereby, the cycle principle of double clamping mode and double pressure maintaining mutual exchange enables the continuous manufacture to achieve high efficiency of energy saving and cost reduction. The efficacy of the output.

本創作高效能產出之雙鎖模、雙保壓射出成型機的較佳實施例,其中所述第一、第二射料噴嘴內部分別設有第一、第二出料道,所述分流料管內部設有分流道,所述分流道兩端分別對應連通所述第一、第二出料道。 A preferred embodiment of the double-mode-locking and double-pressure injection molding machine capable of producing high efficiency, wherein the first and second shot nozzles are respectively provided with first and second discharge channels, and the shunt A splitter is disposed inside the material pipe, and the two ends of the splitter channel respectively communicate with the first and second discharge channels.

本創作高效能產出之雙鎖模、雙保壓射出成型機的較佳實施例,其中所述第一、第二保壓裝置包含有第一、第二保壓缸及第一、第二作動頂銷,所述第一、第二保壓缸之出力軸段對應結合所述第一、第二作動頂銷,所述第一、第二作動頂銷分別對應嵌入於所述第一、第二出料道處,能經第一、第二保壓缸驅動而於所述第一、第二出料道與所述分流道銜接處活動位移,以形成一端止擋入料、一端導通出料。 The preferred embodiment of the double-mode-locking and double-pressure injection molding machine capable of producing high efficiency, wherein the first and second pressure holding devices comprise first and second pressure maintaining cylinders, and first and second Actuating the top pin, the output shaft segments of the first and second pressure maintaining cylinders are correspondingly coupled to the first and second actuating pin pins, and the first and second actuating pin pins are respectively embedded in the first The second discharge channel can be driven by the first and second pressure maintaining cylinders to be displaced at the junction between the first and second discharge channels and the branching passage to form one end stop feed and one end conductive Discharge.

本創作高效能產出之雙鎖模、雙保壓射出成型機的較佳實施例,其中所述第一、第二保壓缸之出力軸段對應與所述第一、第二作動頂銷結合的方式可採用扣環結合。 A preferred embodiment of the double-mode-locking and double-pressure injection molding machine capable of producing the high-performance output, wherein the output shaft segments of the first and second pressure holding cylinders correspond to the first and second actuating pins The way of bonding can be combined with a buckle.

藉由以上所述,本創作結構之組成與使用實施說明可知,本創作與現有結構相較之下,具有下列優點: By the above, the composition and use description of the authoring structure can be seen that this creation has the following advantages compared with the existing structure:

1.本創作高效能產出之雙鎖模、雙保壓射出成型機,藉以運用保壓與冷卻時間,繼續進行另一組鎖模機構之注射填料製程,以達到省時並提升產製效率、降低生產設備成本等功效。 1. This high-performance double-mode-locking and double-preserving injection molding machine can continue to carry out the injection molding process of another set of clamping mechanism by using the pressure keeping and cooling time to save time and improve production efficiency. Reduce the cost of production equipment and other effects.

2.本創作高效能產出之雙鎖模、雙保壓射出成型機,藉以把儲料、注射充填製程中所需之動力採用主動力源控制,而保壓與冷卻之慢速特長時間的製程則採用小動力源控制,如此,減少主動力源負荷時間,達到大量節省能源之功效。 2. The high-performance double-locking and double-preserving injection molding machine is designed to control the power required for the storage and injection filling process by the main power source, while the pressure and cooling are slow and long-term. The process is controlled by a small power source, thus reducing the load time of the main power source and achieving a large amount of energy saving.

本創作: This creation:

(1)‧‧‧機台 (1)‧‧‧ Machines

(11)‧‧‧前固定模板 (11) ‧ ‧ front fixed template

(111)‧‧‧射料孔 (111)‧‧‧ shot hole

(12)‧‧‧後固定模板 (12) ‧ ‧ post fixed template

(13)‧‧‧第一活動模板 (13) ‧‧‧ first activity template

(14)‧‧‧第二活動模板 (14) ‧‧‧Second activity template

(2)‧‧‧注射機構 (2) ‧ ‧ injection institutions

(21)‧‧‧第一射料噴嘴 (21)‧‧‧First shot nozzle

(211)‧‧‧第一出料道 (211)‧‧‧First discharge channel

(22)‧‧‧第二射料噴嘴 (22) ‧‧‧second shot nozzle

(221)‧‧‧第二出料道 (221)‧‧‧Second discharge channel

(23)‧‧‧分流料管 (23) ‧ ‧ diverting tube

(231)‧‧‧分流道 (231) ‧ ‧ tributary runner

(24)‧‧‧主料管頭 (24) ‧‧‧Main tube head

(25)‧‧‧射出料管 (25)‧‧‧ shot tube

(3)‧‧‧第一鎖模機構 (3) ‧‧‧First clamping mechanism

(4)‧‧‧第二鎖模機構 (4) ‧‧‧Second clamping mechanism

(5)‧‧‧第一保壓裝置 (5) ‧‧‧First pressure holding device

(51)‧‧‧第一作動頂銷 (51) ‧‧‧First actuating

(52)‧‧‧第一保壓缸 (52) ‧‧‧First holding cylinder

(6)‧‧‧第二保壓裝置 (6) ‧‧‧Second pressure maintaining device

(61)‧‧‧第二作動頂銷 (61) ‧‧‧Second action

(62)‧‧‧第二保壓缸 (62) ‧‧‧Second holding cylinder

(7)‧‧‧扣環 (7) ‧‧‧ buckle

現有: existing:

(9)‧‧‧機台 (9)‧‧‧ Machines

(91)‧‧‧鎖模壓缸 (91)‧‧‧Locking cylinder

(92)‧‧‧活動模板 (92) ‧‧‧ activity template

(93)‧‧‧料螺旋桿 (93)‧‧‧

(94)‧‧‧料管 (94) ‧‧‧ material management

(941)‧‧‧噴嘴 (941)‧‧‧Nozzles

(95)‧‧‧射出油壓缸 (95)‧‧‧Injection hydraulic cylinder

第一圖:本創作整體外觀示意圖。 The first picture: the overall appearance of the creation.

第二圖:本創作之側視示意圖。 Second picture: a side view of the creation.

第三圖:本創作之鎖模機構俯視示意圖。 The third picture: a schematic view of the clamping mechanism of the present creation.

第四圖:本創作之注射機構立體分解示意圖。 The fourth picture: a schematic exploded view of the injection mechanism of the present creation.

第五圖:本創作之注射機構組合外觀示意圖。 Figure 5: Schematic diagram of the combination of the injection mechanism of this creation.

第六圖:本創作之動作剖視示意圖一。 Figure 6: Schematic diagram of the action of this creation.

第七圖:本創作之動作剖視示意圖二。 Figure 7: Schematic diagram of the action of this creation.

第八圖:本創作雙模射出週期示意圖。 Figure 8: Schematic diagram of the two-mode injection cycle of the creation.

第九圖:現有技術立體外觀示意圖。 Ninth view: Schematic diagram of the stereoscopic appearance of the prior art.

第十圖:現有技術側視示意圖。 Figure 10: Schematic view of the prior art.

為令本創作所運用之技術內容、創作目的及其達成之功效有更完整且清楚的揭露,茲於下詳細說明之,並請一併參閱所揭之圖式及圖號:首先,本創作實際運用技術與手段,請參閱第一~三圖所示,為本創作高效能產出之雙鎖模、雙保壓射出成型機整體外觀、側視及俯視示意圖,主要於射出成型機之機台(1)上設有前、後固定模板(11)、(12),再於所述前固定模板(11)另一側設有注射機構(2),其中: 所述前、後固定模板(11)、(12)之間設有相鄰設置且可平行相對活動位移的第一、第二活動模板(13)、(14),所述第一、第二活動模板(13)、(14)分別連結組設有第一、第二鎖模機構(3)、(4),所述第一、第二鎖模機構(3)、(4)為驅使所述第一、第二活動模板(13)、(14)相對所述前固定模板(11)鎖模或開模;而所述注射機構(2)對應所述第一、第二活動模板(13)、(14)位置處分別設有第一、第二射料噴嘴(21)、(22),於所述第一、第二射料噴嘴(21)、(22)之間設有一分流料管(23),所述分流料管(23)連結一主料管頭(24),所述主料管頭(24)與一導入塑料的射出料管(25)連結;而所述第一、第二射料噴嘴(21)、(22)後段分別設有第一、第二保壓裝置(5)、(6),所述第一、第二保壓裝置(5)、(6)中分別設有第一、第二作動頂銷(51)、(61),所述第一、第二作動頂銷(51)、(61)用以於射出後頂出封閉所述分流料管(23)連通所述第一、第二射料噴嘴(21)、(22)的阻流、保壓動作者。 In order to make the technical content, creative purpose and the effect achieved by this creation more complete and clear, please elaborate below, and please refer to the drawings and drawings: First, this creation For practical application of technology and means, please refer to the first to third figures, which is a schematic diagram of the overall appearance, side view and top view of the double-mode-locking and double-pressure injection molding machine for high-performance production, mainly for the injection molding machine. The front and rear fixed templates (11) and (12) are arranged on the table (1), and the injection mechanism (2) is arranged on the other side of the front fixed template (11), wherein: Between the front and rear fixed templates (11), (12), first and second movable templates (13), (14) disposed adjacent to each other and capable of parallel relative movable displacement, the first and second The movable templates (13) and (14) are respectively connected to the first and second clamping mechanisms (3) and (4), and the first and second clamping mechanisms (3) and (4) are driving devices. The first and second activity templates (13), (14) are clamped or opened relative to the front fixed template (11); and the injection mechanism (2) corresponds to the first and second activity templates (13) And (14) are respectively provided with first and second shot nozzles (21) and (22), and a split material is arranged between the first and second shot nozzles (21) and (22). a pipe (23), the split pipe (23) is coupled to a main pipe head (24), and the main pipe head (24) is coupled to a plastic injection pipe (25); and the first And the second and second pressure holding devices (5) and (6) are respectively disposed in the rear portions of the second shot nozzles (21) and (22), and the first and second pressure holding devices (5) and (6) The first and second actuating pin pins (51) and (61) are respectively disposed in the middle, and the first and second actuating pin pins (51) and (61) are used for ejecting and closing the door after the injection. Shunt tube (23) communicating said first, second sprue nozzles (21), (22) a baffle, dwell actor.

請參閱第一~七圖所示,本創作之雙鎖模、雙保壓與雙射料噴嘴的技術特徵主要運用於射出成形機,能令所述射出成型機在產製時提高生產效率,而所述射出成形機之機種包含立式射出成形機或臥式射出成形機,其立式與臥式機種使用時,其差別在於模具端的設置方向與鎖模方向,一者為直立式模具設置,並以上、下移動的鎖模、開模動作,而另一者為橫臥式模具設置,並以前、後位移的鎖模、開模動作;故本創作技術能充分運用於立式射出成形機與臥式射出成形機。然而,本創作於實施說明與圖式表示均採用臥式射出成 形機作為解釋說明,但並不影響其技術特徵運用於立式射出成形機,以下詳細說明之。 Please refer to the first to seventh figures. The technical characteristics of the double-locking, double-pressure and double-shot nozzles of this creation are mainly applied to the injection molding machine, which can improve the production efficiency of the injection molding machine during production. The model of the injection molding machine includes a vertical injection molding machine or a horizontal injection molding machine. When the vertical type and the horizontal type are used, the difference is the setting direction of the mold end and the direction of the mold clamping, and the one is the vertical mold setting. , and the above and below moving mold clamping, mold opening action, and the other is the horizontal horizontal mold setting, and the previous and the rear displacement of the clamping, mold opening action; therefore, the creative technology can be fully applied to vertical injection molding Machine and horizontal injection molding machine. However, this creation uses horizontal injection in both the implementation instructions and the schema representation. The machine is explained as an explanation, but does not affect its technical characteristics applied to the vertical injection molding machine, which will be described in detail below.

本創作之射出成形機可採用立式機台或臥式機台,主要於機台(1)上設有前、後固定模板(11)、(12),再於所述前固定模板(11)另一側設有注射機構(2),而本創作之特徵技術係於所述前固定模板(11)與後固定模板(12)之間設有第一、第二活動模板(13)、(14),而所述第一、第二活動模板(13)、(14)係採相鄰設置〔如第三圖所示〕,而所述前固定模板(11)與第一、第二活動模板(13)、(14)之間設有模具〔包含公、母模〕,以讓第一、第二活動模板(13)、(14)上分別組設有公模,而所述第一、第二活動模板(13)、(14)後方分別連結組設有第一、第二鎖模機構(3)、(4),所述第一、第二鎖模機構(3)、(4)主要分別能驅使所述第一、第二活動模板(13)、(14)相對所述前固定模板(11)鎖模或開模。 The injection molding machine of the present invention can adopt a vertical machine or a horizontal machine, and is mainly provided with front and rear fixed templates (11) and (12) on the machine table (1), and then the front fixed template (11). The other side is provided with an injection mechanism (2), and the feature of the present invention is that the first and second movable templates (13) are disposed between the front fixed template (11) and the rear fixed template (12). (14), wherein the first and second activity templates (13), (14) are adjacently disposed (as shown in the third figure), and the front fixed template (11) is first and second A mold (including a male and female mold) is disposed between the movable templates (13) and (14), so that the first and second movable templates (13) and (14) are respectively provided with a male mold, and the first 1. The second movable template (13) and (14) are respectively connected to the first and second clamping mechanisms (3) and (4), and the first and second clamping mechanisms (3), 4) Mainly respectively, the first and second movable templates (13), (14) can be driven to mold or open the mold relative to the front fixed template (11).

而位於前固定模板(11)另一端之注射機構(2),所述注射機構(2)具有一射出料管(25),所述射出料管(25)經由入料端導入塑料並加熱導送,而所述射出料管(25)前端設有一主料管頭(24),而所述主料管頭(24)與一分流料管(23)連結,所述分流料管(23)內部設有分流道(231),並於兩側方別組設第一、第二射料噴嘴(21)、(22),而所述第一、第二射料噴嘴(21)、(22)內部分別設有第一、第二出料道(211)、(221),並讓所述分流道(231)兩端對應連通所述第一、第二出料道(211)、(221);而所述第一、第二射料噴嘴(21)、(22)係分別對應所述前固定模板(11)之射料孔(111), 以讓所述第一、第二射料噴嘴(21)、(22)分別對應所述第一、第二活動模板(13)、(14),能讓塑料分別注射所述第一、第二活動模板(13)、(14)與所述前固定模板(11)間的模具。接續,在所述第一、第二射料噴嘴(21)、(22)後段分別設有第一、第二保壓裝置(5)、(6),所述第一、第二保壓裝置(5)、(6)包含有第一、第二保壓缸(52)、(62)及第一、第二作動頂銷(51)、(61),所述第一、第二保壓缸(52)、(62)之出力軸段對應結合所述第一、第二作動頂銷(51)、(61)〔其結合方式進一步可採用扣環(7)結合〕,所述第一、第二作動頂銷(51)、(61)分別對應嵌入於所述第一、第二出料道(211)、(221)處,能經第一、第二保壓缸(52)、(62)驅動而於所述第一、第二出料道(211)、(221)與所述分流道(231)銜接處活動位移,以形成一端止擋入料、一端導通出料;因此可知,所述第一、第二作動頂銷(51)、(61)用以於射出後頂出封閉所述分流料管(23)連通所述第一、第二射料噴嘴(21)、(22)的阻流、保壓動作,或內縮導流塑料的功效。 And an injection mechanism (2) located at the other end of the front fixed template (11), the injection mechanism (2) has an injection tube (25), the injection tube (25) is introduced into the plastic via the feeding end and heated to guide And a main material pipe head (24) is disposed at a front end of the injection pipe (25), and the main material pipe head (24) is coupled with a diverting pipe (23), and the diverting material pipe (23) A splitter passage (231) is disposed inside, and first and second shot nozzles (21) and (22) are disposed on both sides, and the first and second shot nozzles (21), (22) The first and second discharge channels (211) and (221) are respectively disposed inside, and the two ends of the distribution channel (231) are connected to the first and second discharge channels (211), (221). And the first and second shot nozzles (21), (22) respectively correspond to the shot holes (111) of the front fixed template (11), So that the first and second shot nozzles (21), (22) respectively correspond to the first and second movable templates (13), (14), respectively, allowing the plastic to respectively inject the first and second A mold between the movable template (13), (14) and the front fixed template (11). Subsequently, first and second pressure holding devices (5) and (6) are respectively disposed at the rear portions of the first and second shot nozzles (21) and (22), and the first and second pressure holding devices are respectively arranged. (5), (6) including first and second pressure maintaining cylinders (52), (62) and first and second actuating pin pins (51), (61), said first and second holding pressure The output shaft segments of the cylinders (52) and (62) are combined with the first and second actuating pin pins (51) and (61) (the combination manner thereof may further adopt a buckle (7) combination), the first The second actuating pin pins (51) and (61) are respectively embedded in the first and second discharge channels (211) and (221), and can pass through the first and second pressure maintaining cylinders (52). (62) driving and moving at the junction of the first and second discharge channels (211), (221) and the branching channel (231) to form a one-end stop feed and one end to discharge the feed; It can be seen that the first and second actuating pin pins (51) and (61) are configured to eject and close the diverting material pipe (23) to communicate with the first and second projecting nozzles (21) after being ejected. (22) The flow resistance, pressure holding action, or the effect of shrinking the flow-through plastic.

請一併參閱第六~七圖所示,於實際操作時,首先,所述注射機構(2)經由動力驅動而讓所述第一、第二射料噴嘴(21)、(22)分別對應嵌入所述前固定模板(11)之射料孔(111)內;再讓所述第一活動模板(13)經由第一鎖模機構(3)驅動而對應與所述前固定模板(11)鎖模,而此時,所述第一保壓裝置(5)之第一作動頂銷(51)係內縮,使其所述分流道(231)與所述第一射料噴嘴(21)之第一出料道(211)保持通流狀態,而另一側的第二射料噴嘴(22)之第二出料道(221)係被頂出的第二作動頂銷(61)嵌塞而與所述分流道(231)呈現封閉狀態。 Referring to the sixth to seventh diagrams together, in actual operation, first, the injection mechanism (2) causes the first and second shot nozzles (21) and (22) to correspond to each other via power driving. Embedding into the injection hole (111) of the front fixed template (11); and then driving the first movable template (13) to be driven by the first clamping mechanism (3) corresponding to the front fixed template (11) Mode locking, and at this time, the first actuating pin (51) of the first pressure holding device (5) is retracted to make the branching channel (231) and the first projecting nozzle (21) The first discharge passage (211) maintains the through flow state, and the second discharge passage (221) of the second injection nozzle (22) on the other side is embedded by the second driven top pin (61). The plug and the shunt (231) are in a closed state.

接續,讓所述射出料管(25)經儲料、加熱而將塑料經所述主料管頭(24)注射所述分流料管(23),以經分流道(231)導流至第一出料道(211)而注射所述前固定模板(11)與第一活動模板(13)間的模具;於射料完成後,所述第一保壓裝置(5)的第一作動頂銷(51)於此時頂出封閉分流道(231)與第一出料道(211),一方面為阻流,另一方面進行保壓動作;而在第一組射出物進行保壓的過程,係同時啟動第二鎖模機構(4)驅動第二活動模板(14)對應與所述前固定模板(11)鎖模,而第二保壓裝置(6)的第二作動頂銷(61)內縮,使其所述分流道(231)與所述第二射料噴嘴(22)之第二出料道(221)保持通流狀態,同時也一併讓所述射出料管(25)儲料、加熱塑料。當第一組射出物保壓後冷卻時,令所述射出料管(25)將塑料經所述主料管頭(24)注射所述分流料管(23),以經分流道(231)導流至第二出料道(221)而注射所述前固定模板(11)與第二活動模板(14)間的模具內。 Continuing, the injection pipe (25) is injected and heated to inject the plastic through the main pipe head (24) into the split pipe (23) to be diverted through the branch passage (231). a mold (211) for injecting a mold between the front fixed template (11) and the first movable template (13); after the shot is completed, the first operating top of the first pressure holding device (5) The pin (51) at this time ejects the closed split runner (231) and the first discharge passage (211), on the one hand, the flow blocking, on the other hand, the pressure holding action; and in the first group of the injection, the pressure is maintained. The process is to simultaneously activate the second clamping mechanism (4) to drive the second movable template (14) corresponding to the front fixed template (11) to mold clamping, and the second pressure holding device (6) to the second actuating pin ( 61) retracting to maintain the flow path of the splitter passage (231) and the second discharge passage (221) of the second shot nozzle (22) while also allowing the shot discharge pipe ( 25) Storage and heating of plastic. When the first group of shots is cooled and maintained, the shot tube (25) is caused to inject the plastic through the main tube head (24) into the split tube (23) to pass through the branch (231). The flow is directed to the second discharge channel (221) to inject into the mold between the front fixed template (11) and the second movable template (14).

接上述,於射料完成後,所述第二保壓裝置(6)的第二作動頂銷(61)於此時頂出封閉分流道(231)與第二出料道(221),一方面為阻流,另一方面進行保壓動作;當第二組射出物進行保壓與冷卻的過程時,其所述射出料管(25)持續儲料塑化,而第一組射出物進行冷卻、開模並鎖模,如此,依據上述的流程動作持續相互交換循環製作,讓雙活動模板、雙鎖模機構、雙射料噴嘴及雙保壓裝置連續輪流交換射出製程,達到節能、降低成本之高效能產出的功效。 After the completion of the shot, the second actuating pin (61) of the second pressure holding device (6) at this time ejects the closed shunt (231) and the second chute (221), one The aspect is a flow blocking, and on the other hand, a pressure maintaining action; when the second group of injections is subjected to a process of holding and cooling, the injection material tube (25) continues to store and plasticize, and the first group of injections is performed. Cooling, mold opening and clamping, so that according to the above-mentioned process, the continuous exchange cycle is made, so that the double movable template, the double clamping mechanism, the double injection nozzle and the double pressure maintaining device can continuously exchange the injection process, thereby achieving energy saving and lowering. The efficiency of cost-effective output.

由以上可知,當保壓時間長的時候,利用雙活動模板〔模具〕、雙鎖模機構、雙射料噴嘴及雙保壓裝置,使其雙活動模板〔模具〕錯開週期的保壓時間會重疊,以下列舉一實際操作週期表,如第八圖所示,其中:A表示第一組射出物;B表示第二組射出物;注射表示射入塑料;機動表示開模、頂出、頂退、閉模的機械動作;塑化表示儲料、加熱時間;保壓表示射料後保壓時間;冷卻表示射料後冷卻時間;泵表示動力源。 It can be seen from the above that when the holding time is long, the double-action template [mold], the double-locking mechanism, the double-shot nozzle and the double pressure-preserving device are used to make the double-action template [mold] staggered during the holding period. Overlap, the following is an actual operation cycle table, as shown in the eighth figure, where: A represents the first group of shots; B represents the second group of shots; injection means injection of plastic; maneuver means mold opening, ejection, top The mechanical action of retreating and closing the mold; plasticizing means storage and heating time; holding pressure means holding time after shooting; cooling means cooling time after shooting; pump means power source.

從第八圖可知保壓A與保壓B有重疊部分,故設置有兩個保壓裝置可縮短製程時間;而需要兩組保壓裝置的條件是:保壓A>max(塑化B、機動B)+注射B;而能夠雙倍生產率的條件:保壓A+冷卻A+機動A>max(塑化B、機動B)+注射B+塑化A;從第八圖顯示可知,在雙倍生產率右手邊加上△,能將不等式變為等式。當泵2採用伺服電機驅動,可以拖慢塑化A與塑化B共△的時間,不影響週期,但達到節能的效果。 It can be seen from the eighth figure that there is overlap between the pressure holding A and the holding pressure B. Therefore, two pressure maintaining devices are provided to shorten the processing time; and the conditions for the two types of pressure maintaining devices are required: holding pressure A>max (plasticizing B, Maneuver B) + injection B; and the conditions for double productivity: pressure A + cooling A + maneuver A > max (plasticizing B, maneuver B) + injection B + plasticizing A; from the eighth figure shows that in double productivity Adding △ to the right hand side can change the inequality into an equation. When the pump 2 is driven by a servo motor, the time of plasticizing A and plasticizing B can be slowed down, and the cycle is not affected, but the energy saving effect is achieved.

然而前述之實施例或圖式並非限定本創作之產品態樣、結構或使用方式,任何所屬技術領域中具有通常知識者之適當變化或修飾,皆應視為不脫離本創作之專利範疇。 However, the above-described embodiments or drawings are not intended to limit the product, the structure, or the use of the present invention. Any changes or modifications of the ordinary skill in the art should be considered as not departing from the scope of the invention.

藉由以上所述,本創作結構之組成與使用實施說明可知,本創作與現有結構相較之下,具有下列優點: By the above, the composition and use description of the authoring structure can be seen that this creation has the following advantages compared with the existing structure:

1.本創作高效能產出之雙鎖模、雙保壓射出成型機,藉以運用保壓與冷卻時間,繼續進行另一組鎖模機構之注射填料製程,以達到省時並提升產製效率、降低生產設備成本等功效。 1. This high-performance double-mode-locking and double-preserving injection molding machine can continue to carry out the injection molding process of another set of clamping mechanism by using the pressure keeping and cooling time to save time and improve production efficiency. Reduce the cost of production equipment and other effects.

2.本創作高效能產出之雙鎖模、雙保壓射出成型機,藉以把儲料、注射充填製程中所需之動力採用主動力源控制,而保壓與冷卻之慢速特長時間的製程則採用小動力源控制,如此,減少主動力源負荷時間,達到大量節省能源之功效。 2. The high-performance double-locking and double-preserving injection molding machine is designed to control the power required for the storage and injection filling process by the main power source, while the pressure and cooling are slow and long-term. The process is controlled by a small power source, thus reducing the load time of the main power source and achieving a large amount of energy saving.

綜上所述,本創作實施例確能達到所預期之使用功效,又其所揭露之具體構造,不僅未曾見諸於同類產品中,亦未曾公開於申請前,誠已完全符合專利法之規定與要求,爰依法提出新型專利之申請,懇請惠予審查,並賜准專利,則實感德便。 In summary, the present embodiment can achieve the expected use efficiency, and the specific structure disclosed therein has not been seen in similar products, nor has it been disclosed before the application, and has fully complied with the provisions of the Patent Law. And the request, the application for a new type of patent in accordance with the law, please forgive the review, and grant the patent, it is really sensible.

(1)‧‧‧機台 (1)‧‧‧ Machines

(11)‧‧‧前固定模板 (11) ‧ ‧ front fixed template

(111)‧‧‧射料孔 (111)‧‧‧ shot hole

(12)‧‧‧後固定模板 (12) ‧ ‧ post fixed template

(13)‧‧‧第一活動模板 (13) ‧‧‧ first activity template

(14)‧‧‧第二活動模板 (14) ‧‧‧Second activity template

(2)‧‧‧注射機構 (2) ‧ ‧ injection institutions

(21)‧‧‧第一射料噴嘴 (21)‧‧‧First shot nozzle

(22)‧‧‧第二射料噴嘴 (22) ‧‧‧second shot nozzle

(23)‧‧‧分流料管 (23) ‧ ‧ diverting tube

(25)‧‧‧射出料管 (25)‧‧‧ shot tube

(3)‧‧‧第一鎖模機構 (3) ‧‧‧First clamping mechanism

(4)‧‧‧第二鎖模機構 (4) ‧‧‧Second clamping mechanism

(5)‧‧‧第一保壓裝置 (5) ‧‧‧First pressure holding device

(6)‧‧‧第二保壓裝置 (6) ‧‧‧Second pressure maintaining device

Claims (7)

一種高效能產出之雙鎖模、雙保壓射出成型機,主要於射出成型機之機台上設有前、後固定模板,再於所述前固定模板另一側設有注射機構,其中:所述前、後固定模板之間設有相鄰設置且可平行相對活動位移的第一、第二活動模板,所述第一、第二活動模板分別連結組設有第一、第二鎖模機構,所述第一、第二鎖模機構為驅使所述第一、第二活動模板相對所述前固定模板鎖模或開模;而所述注射機構對應所述第一、第二活動模板位置處分別設有第一、第二射料噴嘴,於所述第一、第二射料噴嘴之間設有一分流料管,所述分流料管連結一主料管頭,所述主料管頭與一導入塑料的射出料管連結;而所述第一、第二射料噴嘴後段分別設有第一、第二保壓裝置,所述第一、第二保壓裝置中分別設有第一、第二作動頂銷,所述第一、第二作動頂銷用以於射出後頂出封閉所述分流料管連通所述第一、第二射料噴嘴的阻流、保壓動作者。 A high-performance double-locking and double-pressure injection molding machine is mainly provided with a front and a rear fixed template on the machine of the injection molding machine, and an injection mechanism on the other side of the front fixed template, wherein The first and second movable templates are disposed adjacent to each other and can be parallel to the relative movable displacement, and the first and second movable templates are respectively connected to the first and second locks. a mold mechanism, the first and second clamping mechanisms are configured to drive the first and second movable templates to be mold-locked or opened relative to the front fixed template; and the injection mechanism corresponds to the first and second activities The first and second injection nozzles are respectively disposed at the template position, and a diverting tube is disposed between the first and second injection nozzles, and the diverting material tube is coupled to a main material tube head, the main material The first and second injection nozzles are respectively provided with first and second pressure holding devices, and the first and second pressure maintaining devices are respectively provided. First and second actuating pin pins, and the first and second actuating pin pins are for shooting After closing the top of the baffle shunt tube communicating said first, second sprue nozzle packing actor. 如申請專利範圍第1項所述之高效能產出之雙鎖模、雙保壓射出成型機,其中所述第一、第二射料噴嘴內部分別設有第一、第二出料道,所述分流料管內部設有分流道,所述分流道兩端分別對應連通所述第一、第二出料道。 The double-mode-locking and double-pressure injection molding machine of the high-performance output according to claim 1, wherein the first and second injection nozzles are respectively provided with first and second discharge channels. A splitter is disposed inside the splitter tube, and the two ends of the splitter channel respectively communicate with the first and second discharge channels. 如申請專利範圍第2項所述之高效能產出之雙鎖模、雙保壓射出成型機,其中所述第一保壓裝置包含有第一保壓缸及第一作動頂銷,所述第一保壓缸之出力軸段對應結合所述第一作動頂銷,所述第一作動頂銷分別對應嵌入於所述第一出料道處,能經第一保壓缸驅動而於所述第一出料道與所述分流道銜接處活動位移,形成導通射料或止擋入料及保壓動作者。 The high-performance double-locking and double-pressure injection molding machine according to the second aspect of the invention, wherein the first pressure holding device comprises a first pressure maintaining cylinder and a first operating top pin, The output shaft segment of the first pressure-holding cylinder is correspondingly coupled with the first actuating pin, and the first actuating pin is respectively embedded in the first discharge channel, and can be driven by the first pressure-preserving cylinder The movable displacement of the junction between the first discharge passage and the bypass passage is formed to form a conductive shot or a stop feed and a pressure maintaining actuator. 如申請專利範圍第2項所述之高效能產出之雙鎖模、雙保壓射出成型機,其中所述第二保壓裝置包含有第二保壓缸及第二作動頂銷,所述第二保壓缸之出力軸段對應結合所述第二作動頂銷,所述第二作動頂銷分別對應嵌入於所述第二出料道處,能經第二保壓缸驅動而於所述第二出料道與所述分流道銜接處活動位移,形成導通射料或止擋入料及保壓動作者。 The high-performance double-locking and double-pressure injection molding machine of claim 2, wherein the second pressure holding device comprises a second pressure maintaining cylinder and a second actuating pin, The output shaft of the second pressure-holding cylinder is correspondingly coupled with the second actuating pin, and the second actuating pin is respectively embedded in the second discharge channel, and can be driven by the second pressure-preserving cylinder. The movable displacement of the junction between the second discharge passage and the branch passage is formed to form a conductive shot or a stop feed and a pressure maintaining actuator. 如申請專利範圍第3項所述之高效能產出之雙鎖模、雙保壓射出成型機,其中所述第一保壓缸之出力軸段對應與所述第一作動頂銷結合的方式可採用扣環結合。 The double-mode-locking and double-pressure injection molding machine of the high-performance output according to claim 3, wherein the output shaft of the first pressure maintaining cylinder corresponds to the manner of combining the first actuating pin A buckle can be used in combination. 如申請專利範圍第4項所述之高效能產出之雙鎖模、雙保壓射出成型機,其中所述第二保壓缸之出力軸段對應與所述第二作動頂銷結合的方式可採用扣環結合。 The double-mode-locking and double-pressure injection molding machine of the high-performance output according to claim 4, wherein the output shaft segment of the second pressure maintaining cylinder corresponds to the manner of combining the second actuating pin A buckle can be used in combination. 如申請專利範圍第4項所述之高效能產出之雙鎖模、雙保壓射出成型機,其中所述射出成型機為採用立式射出成型機或臥式射出成型機。 A high-performance double-locking, double-pressure injection molding machine as described in claim 4, wherein the injection molding machine is a vertical injection molding machine or a horizontal injection molding machine.
TW106211320U 2017-08-01 2017-08-01 Highly productive injection molding machine with two clamps and two pressurizers TWM555285U (en)

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