TW201432147A - A pump rotor and manufacturing method thereof - Google Patents
A pump rotor and manufacturing method thereof Download PDFInfo
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- TW201432147A TW201432147A TW102106361A TW102106361A TW201432147A TW 201432147 A TW201432147 A TW 201432147A TW 102106361 A TW102106361 A TW 102106361A TW 102106361 A TW102106361 A TW 102106361A TW 201432147 A TW201432147 A TW 201432147A
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本發明係關於一種幫浦轉子及其製造方法,尤指一種用於正排氣幫浦的幫浦轉子,像是鼓風機轉子或是乾式真空泵轉子,係以擠出或是射出的方式成形。 The present invention relates to a pump rotor and a method of manufacturing the same, and more particularly to a pump rotor for a positive exhaust pump, such as a blower rotor or a dry vacuum pump rotor, which is formed by extrusion or injection.
在半導體代工製程中,時常需要沉積特定材料在半導體晶圓上或從半導體晶圓上移離特定材料,其中,這些製作半導體晶圓所使用之材料與半導體晶圓之電氣性質有關。為了沉積或移除這些特定材料,多種氣體會被用於衝擊半導體晶圓,例如,為了自半導體晶圓上去除污染物,處理氣體可用於接觸半導體晶圓,與其污染物反應,以達到去除的效果。特別的是,在此處理程序中,半導體晶圓需被置於一低壓環境內方可作業,因此,真空處理系統即用於在移除半導體晶圓的製程中產生一低壓環境。 In a semiconductor foundry process, it is often necessary to deposit specific materials on or from a semiconductor wafer, wherein the materials used to make the semiconductor wafer are related to the electrical properties of the semiconductor wafer. In order to deposit or remove these specific materials, a variety of gases can be used to impact the semiconductor wafer. For example, to remove contaminants from the semiconductor wafer, the processing gas can be used to contact the semiconductor wafer to react with its contaminants for removal. effect. In particular, in this process, the semiconductor wafer needs to be placed in a low-voltage environment to operate. Therefore, the vacuum processing system is used to generate a low-pressure environment in the process of removing the semiconductor wafer.
所謂的真空處理系統至少需要一個真空室與複數個真空泵,作業時,半導體晶圓先被放在真空室 內,接著,真空泵抽取真空室的氣體達到一預定標準,達到標準後,半導體晶圓即處於一低壓環境內,且隨後可進行進一步處理。 The so-called vacuum processing system requires at least one vacuum chamber and a plurality of vacuum pumps. During operation, the semiconductor wafer is first placed in a vacuum chamber. Then, the vacuum pump draws the gas in the vacuum chamber to a predetermined standard. After the standard is reached, the semiconductor wafer is in a low pressure environment and can be further processed.
由上可知,乾式真空泵可用於將真空室抽空至一低壓,大體上,以下五項變數會影響抽真空的成本:(1)欲抽空之氣體量;(2)載入真空室之內部表面積;(3)載入真空室內所需之低壓;(4)載入真空室之間管路與乾式真空泵內之阻力;及(5)用於在載入真空室內提供低壓時所需之時間。 As can be seen from the above, a dry vacuum pump can be used to evacuate the vacuum chamber to a low pressure. In general, the following five variables affect the cost of vacuuming: (1) the amount of gas to be evacuated; and (2) the internal surface area loaded into the vacuum chamber; (3) the low pressure required to be loaded into the vacuum chamber; (4) the resistance between the line between the vacuum chamber and the dry vacuum pump; and (5) the time required to supply the low pressure in the vacuum chamber.
乾式真空泵包括轉動葉片,藉由轉動葉片,並擠壓流體,以將流體帶出真空室;一般而言,轉動葉片的形成方式是利用鐵鑄法製成的,鐵鑄法所製成的轉動葉片強度夠,且易於量產,因此,大量被使用;然而,鐵鑄法所製成的轉動葉片,其實心結構造成重量過重,轉動慣量大,除了帶動轉動需要耗費大量的能量之外,轉動軸承及其他零配件也較易損壞,且其重量還造成組裝的困難度。 The dry vacuum pump includes a rotating blade that rotates the blade and squeezes the fluid to carry the fluid out of the vacuum chamber; in general, the rotating blade is formed by an iron casting method and rotated by an iron casting method. The blade has sufficient strength and is easy to mass-produce, so it is used in a large amount; however, the rotating blade made by the iron casting method is actually overweight and has a large moment of inertia, which requires a large amount of energy in addition to driving the rotation. Bearings and other parts are also more susceptible to damage, and their weight also makes assembly difficult.
為此,前人係進行改良,設計出重量較輕的轉動葉片,請參考第一圖,係美國專利號US616945中的一種真空泵,其中,該真空泵包括一轉動殼體A11,包括相連接之二轉動空間A111,該轉動空間A111各放置二轉動葉片A12,該轉動葉片A12係以鈑金彎曲,再經過焊 接而形成轉子外殼,再與轉軸A13連接完成組裝;美國專利號US616945所設計的轉動葉片雖然重量較輕,但是強度比過去鐵鑄法所製成的轉動葉片還要弱,轉動葉片容易在使用中扭曲變形,且製造過程繁複,需要經過彎鈑、裁鈑、定位、焊接修光、抽真空等等,相當耗費工時,品質也難以控制。 For this reason, the former has been modified to design a light-weight rotating blade. Please refer to the first figure, which is a vacuum pump of US Pat. No. 6,616,945, wherein the vacuum pump comprises a rotating housing A11, including two connected ones. Rotating space A111, each of which is placed with two rotating blades A12, which are bent by sheet metal and then welded Then, the rotor casing is formed and then connected to the rotating shaft A13 to complete the assembly; the rotating blade designed by US Pat. No. 616945 is lighter in weight, but the strength is weaker than that of the rotating blade made by the iron casting method in the past, and the rotating blade is easy to use. In the case of twisting and deformation, and the manufacturing process is complicated, it needs to be bent, cut, positioned, welded, vacuumed, vacuumed, etc., which is quite time-consuming and difficult to control.
因此,有鑑於上述習用真空泵,皆具有缺點與不足,故,本案之發明人係極力設計,終於設計出本發明之一種幫浦轉子及其製造方法。 Therefore, in view of the above-mentioned conventional vacuum pumps, which have disadvantages and disadvantages, the inventors of the present invention have designed the pump rotor and the manufacturing method thereof.
本發明之第一目的,在於提供一種幫浦轉子及其製造方法,可形成重量較輕的幫浦轉子,因此,在相同尺寸下,本發明之幫浦轉子具有較低的轉動慣量,運轉所需消耗的功率也比較低,同時,軸承不易損壞,降低組裝的困難度。 A first object of the present invention is to provide a pump rotor and a method of manufacturing the same that can form a light weight pump rotor, and therefore, the pump rotor of the present invention has a lower moment of inertia at the same size. The power to be consumed is also relatively low, and at the same time, the bearing is not easily damaged, and the difficulty of assembly is reduced.
本發明之第二目的,在於提供一種幫浦轉子及其製造方法,係以擠出或射出的方式成型轉子葉片,製作程序簡單,且所形成的幫浦轉子具有足夠的強度,可降低製造時間,製造品質也較易控制。 A second object of the present invention is to provide a pump rotor and a method of manufacturing the same, which are characterized in that the rotor blade is formed by extrusion or injection, and the manufacturing process is simple, and the formed pump rotor has sufficient strength to reduce manufacturing time. The manufacturing quality is also easier to control.
為了達成本發明之目的,本案發明人設計一種幫浦轉子,包含有:一葉片主體;複數個支撐肋,與該葉片主體一體成型,其中,該複數個支撐肋係在該葉片主 體內,並分別被複數個空間單元隔開;以及一轉軸,形成於該葉片主體的中央,並與該複數個支撐肋連接;其中,該轉軸轉動時,係可帶動該葉片主體及該複數個支撐肋轉動;在本發明中,該葉片主體及該複數個支撐肋係可以是鐵製、鋁製材料或其他塑性材料製成,其中,選擇鐵製或鋁製材料時,可以擠製成形本發明之幫浦轉子,選用可以熱塑或熱固成形之塑性材料時,則可以使用擠製或射出成型為本發明之幫浦轉子;另外,該轉軸係可以熱套配合、螺栓固鎖、插銷結合以及緊配合等任一種方式與該複數個支撐肋連接。 In order to achieve the object of the present invention, the inventor of the present invention designs a pump rotor comprising: a blade body; a plurality of support ribs integrally formed with the blade body, wherein the plurality of support ribs are attached to the blade master The body is separated by a plurality of space units; and a rotating shaft is formed in the center of the blade body and connected to the plurality of supporting ribs; wherein, when the rotating shaft rotates, the blade body and the plurality of blades are driven The support rib rotates; in the present invention, the blade body and the plurality of support ribs may be made of iron, aluminum or other plastic materials, wherein when the iron or aluminum material is selected, the shape may be extruded In the pump rotor of the invention, when a plastic material which can be thermoplastically or thermoformed is used, the pump rotor can be extruded or injection molded into the present invention; in addition, the shaft can be thermally sleeved, bolted, and latched. The plurality of support ribs are connected in any one of a combination and a tight fit.
為了達成本發明之目的,本案發明人提供一種幫浦轉子之製造步驟流程圖。為了達成上述目的,本發明提供一種幫浦轉子之製造方法,如第七圖所示,係包含下列步驟:(01)確認一葉片主體以及複數個空間單元之形狀;(02)製成該葉片主體,並在該葉片主體內部形成複數個支撐肋,且該數個支撐肋分別被該複數個空間單元隔開;(03)判斷是否在空間單元內填充塑性材料,若是,執行步驟(04),若否,執行步驟(05);(04)在該空間單元內填充塑性材料;(05)將一轉軸裝配於該葉片主體,並使得該轉軸轉動時,可帶動該葉片主體及該複數個支撐肋轉動:在步驟(01)中,該葉片主體係至少可為魯式以及爪式形狀;其中,在步驟(02)中,該空間單元係可 為三角形、方形、蜂巢形、橢圓形或是圓形;在步驟(05)中,該轉軸係可以熱套配合、螺栓固鎖、插銷結合、或是緊配合等方式來與該複數個支撐肋連接。 In order to achieve the object of the present invention, the inventors of the present invention provide a flow chart of the manufacturing steps of the pump rotor. In order to achieve the above object, the present invention provides a method for manufacturing a pump rotor, as shown in the seventh figure, comprising the steps of: (01) confirming the shape of a blade body and a plurality of space units; (02) forming the blade a body, and a plurality of support ribs are formed inside the blade body, and the plurality of support ribs are respectively separated by the plurality of space units; (03) determining whether the space unit is filled with plastic material, and if yes, performing step (04) If not, performing step (05); (04) filling the space unit with plastic material; (05) assembling a shaft to the blade body, and rotating the shaft to drive the blade body and the plurality of Supporting rib rotation: in step (01), the blade main system may be at least a Lu and a claw shape; wherein, in step (02), the space unit is It is triangular, square, honeycomb, elliptical or circular; in step (05), the shaft can be combined with the plurality of support ribs by a hot sleeve fit, a bolt lock, a bolt joint, or a tight fit. connection.
10‧‧‧幫浦轉子 10‧‧‧ pump rotor
11‧‧‧葉片主體 11‧‧‧ Blade body
12‧‧‧支撐肋 12‧‧‧Support ribs
13‧‧‧空間單元 13‧‧‧ Space unit
14‧‧‧轉軸 14‧‧‧ shaft
15‧‧‧塑膠材料 15‧‧‧Plastic materials
A11‧‧‧轉動殼體 A11‧‧‧Rotating housing
A111‧‧‧轉動空間 A111‧‧‧Rotating space
A12‧‧‧轉動葉片 A12‧‧‧Rotating blades
A13‧‧‧轉軸 A13‧‧‧ shaft
步驟(S01)至(S05)‧‧‧係本發明一種幫浦轉子之製造步驟流程 Steps (S01) to (S05) ‧‧‧ are a manufacturing step flow of a pump rotor of the present invention
步驟(S21)至(S023)‧‧‧係本發明一種幫浦轉子之製造流程步驟(S02)之細部步驟 Steps (S21) to (S023) ‧ ‧ are detailed steps of the manufacturing process step (S02) of a pump rotor of the present invention
第一圖係美國專利號US616945中的一種真空泵;第二A圖係本發明一種幫浦轉子之第一實施例之正視示意圖;第二B圖係本發明一種幫浦轉子之第一實施例之側視示意圖;第三A圖係本發明具三角形空間單元之幫浦轉子之示意圖;第三B圖係本發明具圓形空間單元之幫浦轉子之示意圖;第三C圖係本發明具方形空間單元之幫浦轉子之示意圖;第四圖係本發明一種幫浦轉子之第二實施例之正視示意圖;第五A圖係本發明葉片主體為爪式態樣之示意圖;第五B圖係本發明葉片主體為魯式態樣之示意圖;第六圖係本發明一種幫浦轉子之第三實施例之側視示意圖;第七圖係本發明一種幫浦轉子之製造步驟流程圖; 第八圖係本發明一種幫浦轉子之製造流程步驟(S02)之細部步驟。 The first figure is a vacuum pump of US Pat. No. 6,616,945; the second figure is a front view of a first embodiment of a pump rotor of the present invention; and the second B is a first embodiment of a pump rotor of the present invention. 3 is a schematic view of a pump rotor having a triangular space unit of the present invention; FIG. 3B is a schematic view of a pump rotor having a circular space unit of the present invention; A schematic diagram of a pump rotor of a space unit; a fourth diagram is a schematic view of a second embodiment of a pump rotor according to the present invention; and a fifth diagram is a schematic diagram of a blade body of the present invention; The blade body of the present invention is a schematic view of a Lu style; the sixth figure is a side view of a third embodiment of the pump rotor of the present invention; and the seventh figure is a flow chart of the manufacturing steps of the pump rotor of the present invention; The eighth figure is a detailed step of the manufacturing process step (S02) of the pump rotor of the present invention.
為了能夠更清楚地描述本發明所提出之一種幫浦轉子及其製造方法,以下將配合圖式,詳盡說明本發明之較佳實施例。 In order to more clearly describe a pump rotor and a method of manufacturing the same according to the present invention, a preferred embodiment of the present invention will be described in detail below with reference to the drawings.
首先,介紹本發明之主要元件,請參閱第二A圖及第二B圖,分別係本發明一種幫浦轉子之第一實施例之正視示意圖,以及本發明一種幫浦轉子之第一實施例之側視示意圖。如第二A圖及第二B圖所示,本發明係一種幫浦轉子10,包含有:一葉片主體11;複數個支撐肋12,與該葉片主體11一體成型,其中,該複數個支撐肋12係在該葉片主體11內,並分別被複數個空間單元13隔開;以及一轉軸14,形成於該葉片主體11的中央,並與該複數個支撐肋12連接;其中,該轉軸14轉動時,係可帶動該葉片主體11及該複數個支撐肋12轉動;在本發明中,該葉片主體11及該複數個支撐肋12係可以鐵製、鋁製材料及塑性材料製成,其中,選擇鐵製或鋁製材料時,可以擠製成型本發明之幫浦轉子10,而選擇塑性材料時,可以擠製或射出成型本發明之幫浦轉子10;另外,該轉軸14係可以熱套配合、螺栓固鎖、插銷結合以及緊配合等任一種方式與該複數個支撐肋12連 接。 First, the main components of the present invention will be described. Referring to FIG. 2A and FIG. 2B, respectively, a front view of a first embodiment of a pump rotor according to the present invention, and a first embodiment of a pump rotor according to the present invention. Side view of the schematic. As shown in FIG. 2A and FIG. 2B, the present invention is a pump rotor 10 including: a blade body 11; a plurality of support ribs 12 integrally formed with the blade body 11, wherein the plurality of supports The ribs 12 are embedded in the blade body 11 and are respectively separated by a plurality of space units 13; and a rotating shaft 14 is formed at the center of the blade body 11 and connected to the plurality of supporting ribs 12; wherein the rotating shaft 14 When rotating, the blade body 11 and the plurality of support ribs 12 can be rotated; in the present invention, the blade body 11 and the plurality of support ribs 12 can be made of iron, aluminum material and plastic material, wherein When the iron or aluminum material is selected, the pump rotor 10 of the present invention can be extruded, and when the plastic material is selected, the pump rotor 10 of the present invention can be extruded or injection molded; in addition, the rotating shaft 14 can be The plurality of support ribs 12 are connected in any manner, such as a heat sleeve fit, a bolt lock, a bolt combination, and a tight fit. Pick up.
在第二A圖中,該空間單元13的形狀為蜂巢形,其實,在本發明中,空間單元的形狀是可以多變的,請參考第三A圖至第三C圖,分別係本發明具三角形、圓形、及方形空間單元之幫浦轉子之示意圖。如第三A圖至第三C圖所示,在本發明中,該幫浦轉子10的空間單元13可以為三角形、圓形及方形,三角形和方形,其方向及形狀可依需求調整,在此並無設限,事實上,除了本發明所提供的形狀以外,空間單元也可以被製成其他多邊形,只要能夠符合擠製方法,或是射出成形方法即可。 In the second A diagram, the shape of the space unit 13 is a honeycomb shape. In fact, in the present invention, the shape of the space unit can be varied. Please refer to the third to third C diagrams, respectively. Schematic diagram of a pump rotor with triangular, circular, and square spatial elements. As shown in the third to third C, in the present invention, the space unit 13 of the pump rotor 10 can be triangular, circular and square, triangular and square, and its direction and shape can be adjusted according to requirements. There is no limitation to this. In fact, in addition to the shape provided by the present invention, the space unit can be made into other polygons as long as it can conform to the extrusion method or the injection molding method.
接下來請看第四圖,係本發明一種幫浦轉子之第二實施例之正視示意圖。如第四圖所示,本發明中,使用者依照需求,控制轉動慣量在預設值以下,適當地在該空間單元13內填入塑性材料15,該塑性材料為可以熱塑或熱固成形方式加熱成形,在本發明第二實施例中,該塑性材料15可為工業環氧膠(Epoxy),然而,此僅為本發明其中一實施例,並非用於限制本發明專利範圍;在填充適當地塑性材料15後,由於端面不互通,可提高抽氣效率,並減少漏氣疑慮,同時,由於塑性材料重量較輕,質量較小,因此,轉動慣量的變化不大。 Next, please refer to the fourth figure, which is a front view of a second embodiment of a pump rotor according to the present invention. As shown in the fourth figure, in the present invention, the user controls the moment of inertia below a predetermined value according to requirements, and appropriately fills the space unit 13 with a plastic material 15 which is thermoplastic or thermoformable. In the second embodiment of the present invention, the plastic material 15 may be an industrial epoxy (Epoxy). However, this is only one embodiment of the present invention, and is not intended to limit the scope of the present invention; After the plastic material 15 is properly disposed, since the end faces are not interconnected, the pumping efficiency can be improved, and the air leakage doubt can be reduced. At the same time, since the plastic material is light in weight and small in mass, the moment of inertia does not change much.
本發明的葉片主體係可應用在魯式鼓風機,也可 應用在爪式幫浦,請參考第五A圖及第五B圖,分別係本發明葉片主體為爪式態樣之示意圖,以及本發明葉片主體為魯式態樣之示意圖。如第五A圖及第五B圖所示,本發明之葉片主體11可以依照需求被製成爪式(Claw)態樣或是魯式(Roots)態樣,不會因為形狀不同,而影響製程步驟,或是幫浦轉子的強度;第五A圖中的葉片主體11係應用在爪式幫浦,其空間單元13係設計成蜂巢形狀,而在第五B圖中的葉片主體11則為三葉式,可應用在魯式鼓風機或是真空幫浦,其空間單元13同樣係設計成蜂巢形狀,當然,空間單元13係可設計成別種形狀,例如圓形、方形、橢圓形等等。另外,請參考第六圖,係本發明一種幫浦轉子之第三實施例之側視示意圖,該結構為多段轉子結構,可用於正排氣壓縮型幫浦。該轉子的製作方式可以有兩種,第一種為使用擠製成形或射出成形一轉子葉片,與轉軸結合後,再利用切削加工或是其他加工方法將轉子葉片加工成厚度不同的多段轉子;第二種為先利用擠製或射出製造出厚度不同的轉子葉片,利用熱套配合、螺栓固鎖、插銷結合、或是緊配合與轉軸進行結合,達到完成多段轉子的目的。 The main blade system of the invention can be applied to a Lu type blower, or For the application of the claw pump, please refer to the fifth diagram A and the fifth diagram B, respectively, which are schematic diagrams of the blade body of the invention in the form of a claw, and a schematic diagram of the blade body of the invention in a Lu style. As shown in FIG. 5A and FIG. 5B, the blade main body 11 of the present invention can be made into a claw type or a roots according to requirements, and does not affect the shape. The process step, or the strength of the pump rotor; the blade body 11 in the fifth A diagram is applied to the claw pump, the space unit 13 is designed in a honeycomb shape, and the blade body 11 in the fifth B diagram is It is a three-leaf type, which can be applied to a Lu type blower or a vacuum pump. The space unit 13 is also designed in a honeycomb shape. Of course, the space unit 13 can be designed into other shapes, such as a circle, a square, an ellipse, etc. . In addition, please refer to the sixth drawing, which is a side view of a third embodiment of the pump rotor of the present invention, which is a multi-stage rotor structure and can be used for a positive exhaust compression type pump. The rotor can be produced in two ways. The first one is to form a rotor blade by extrusion or injection molding, and after combining with the rotating shaft, the rotor blade is processed into a multi-stage rotor with different thickness by cutting or other processing methods; The second is to use the extrusion or injection to produce rotor blades with different thicknesses, and use the hot sleeve fit, the bolt lock, the bolt combination, or the tight fit to combine with the rotating shaft to achieve the purpose of completing the multi-stage rotor.
另外,依據轉子的使用環境及規格要求的不同,該轉子的外形可以不需加工,或是依據需求加工到規格精度,可滿足各種不同應用製程需求。 In addition, depending on the use environment and specifications of the rotor, the shape of the rotor can be processed without any processing, or processed according to requirements, to meet the requirements of various application processes.
請參考第七圖,係本發明一種幫浦轉子之製造步驟流程圖。為了達成上述目的,本發明提供一種幫浦轉子之製造方法,如第七圖所示,係包含下列步驟:(S01)確認一葉片主體以及複數個空間單元之形狀ok;(S02)製成該葉片主體,並在該葉片主體內部形成複數個支撐肋,且該數個支撐肋分別被該複數個空間單元隔開;(S03)判斷是否在空間單元內填充塑性材料,若是,執行步驟(S04),若否,執行步驟(S05);(S04)在該空間單元內填充塑性材料;(S05)將一轉軸裝配於該葉片主體,並使得該轉軸轉動時,可帶動該葉片主體及該複數個支撐肋轉動:在步驟(S01)中,該葉片主體係至少可為魯式(Roots)以及爪式(Claw);其中,在步驟(S02)中,該空間單元係可為三角形、方形、蜂巢形、橢圓形或是圓形;在步驟(S05)中,該轉軸係可以熱套配合、螺栓固鎖、插銷結合、或是緊配合等方式來與該複數個支撐肋連接。 Please refer to the seventh figure, which is a flow chart of the manufacturing steps of the pump rotor of the present invention. In order to achieve the above object, the present invention provides a method for manufacturing a pump rotor, as shown in the seventh figure, comprising the steps of: (S01) confirming the shape of a blade body and a plurality of space units; (S02) a blade body, and a plurality of support ribs are formed inside the blade body, and the plurality of support ribs are respectively separated by the plurality of space units; (S03) determining whether the space unit is filled with plastic material, and if so, performing the step (S04) And if not, performing the step (S05); (S04) filling the space unit with the plastic material; (S05) assembling a shaft to the blade body, and causing the blade body to rotate the blade body and the plurality Rotation of the supporting ribs: in the step (S01), the main system of the blade may be at least a Roots and a Claw; wherein, in the step (S02), the spatial unit may be a triangle, a square, Honeycomb, elliptical or circular; in step (S05), the shaft can be coupled to the plurality of support ribs by a thermal fit, a bolt lock, a bolt joint, or a tight fit.
在本發明步驟(S02)中,還可再細分以下步驟,請參考第八圖,係本發明一種幫浦轉子之製造流程步驟(S02)之細部步驟,其中,本發明一種幫浦轉子之製造流程步驟(S02)之細部步驟包括:(S21)選擇葉片主體及複數個支撐肋的材質;(S22)材質上若選用金屬材質則以擠製成形製造葉片主體及複數個支撐肋,若選用塑性材質則可以擠製或是射出成形方法製造葉片主體及複數個支撐 肋;(S23)形成複數個空間單元,且該數個支撐肋分別被該複數個空間單元隔開。 In the step (S02) of the present invention, the following steps may be further subdivided. Please refer to the eighth figure, which is a detailed step of the manufacturing process step (S02) of the pump rotor of the present invention, wherein the manufacturing of the pump rotor of the present invention The detailed steps of the process step (S02) include: (S21) selecting the material of the blade body and the plurality of support ribs; (S22) if the material is selected from the material, the blade body and the plurality of support ribs are formed by extrusion molding, if plasticity is selected The material can be extruded or shot forming to make the blade body and multiple supports a rib; (S23) forming a plurality of spatial units, and the plurality of support ribs are respectively separated by the plurality of spatial units.
上述已經完整且清楚地揭露本發明一種幫浦轉子及其製造方法,並且,由上述可知,相較於習用真空泵,可以發現本發明一種幫浦轉子及其製造方法,係具有以下優點: The above has fully and clearly disclosed a pump rotor and a method of manufacturing the same according to the present invention, and it can be seen from the above that a pump rotor and a method of manufacturing the same according to the conventional vacuum pump can be found to have the following advantages:
(1)本發明可使用輕質材料,像是鋁合金或是塑性材料,如此,本發明以擠製成形或是射出成形來製造,生產速度快,可以減少製程所需時間;且輕質材質的轉動慣量小,可降低轉動所需的能量,轉動軸承及其它零配件也較不易損壞,此外,還可降低組裝時的困難度。 (1) The present invention can use a lightweight material such as an aluminum alloy or a plastic material. Thus, the present invention is manufactured by extrusion molding or injection molding, and has a high production speed and can reduce the time required for the process; and a lightweight material. The small moment of inertia reduces the energy required for rotation, and the rotating bearings and other parts are less susceptible to damage. In addition, the difficulty in assembly can be reduced.
(2)本發明使用輕質材料,再搭配本發明之支撐肋,可增加本發明幫浦轉子的強度,能夠應用在正排氣幫浦,對於壓差的變化及運轉的負載皆不會產生結構變形。 (2) The present invention uses a lightweight material, and in combination with the support rib of the present invention, can increase the strength of the pump rotor of the present invention, can be applied to the positive exhaust pump, and does not generate a change in the differential pressure and the load of the operation. Structural deformation.
上述之詳細說明係針對本發明可行實施例之具體說明,惟該實施例並非用以限制本發明之專利範圍,凡未脫離本發明技藝精神所為之等效實施或變更,均應包含於本案之專利範圍中。 The detailed description of the present invention is intended to be illustrative of the preferred embodiments of the present invention, and is not intended to limit the scope of the invention. In the scope of patents.
10‧‧‧幫浦轉子 10‧‧‧ pump rotor
11‧‧‧葉片主體 11‧‧‧ Blade body
12‧‧‧支撐肋 12‧‧‧Support ribs
13‧‧‧空間單元 13‧‧‧ Space unit
14‧‧‧轉軸 14‧‧‧ shaft
Claims (15)
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CN201310049771.5A CN103982432B (en) | 2013-02-07 | 2013-02-07 | A kind of pump rotor and manufacture method thereof |
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TW201432147A true TW201432147A (en) | 2014-08-16 |
TWI496991B TWI496991B (en) | 2015-08-21 |
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TW102106361A TWI496991B (en) | 2013-02-07 | 2013-02-23 | A pump rotor and manufacturing method thereof |
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TW (1) | TWI496991B (en) |
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TW202037814A (en) * | 2019-04-10 | 2020-10-16 | 亞台富士精機股份有限公司 | Rotor and roots pump |
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JPS6466488A (en) * | 1987-09-05 | 1989-03-13 | Daihatsu Motor Co Ltd | Composite rotor for supercharger |
CN201007276Y (en) * | 2007-02-13 | 2008-01-16 | 聂如国 | Roter used for rotary type displacement pump |
CN100562665C (en) * | 2007-04-23 | 2009-11-25 | 马容 | Pawl-type dry vacuum pump rotor |
CN201196148Y (en) * | 2008-04-15 | 2009-02-18 | 聂如国 | Rotor used for cam type rotor pump |
CN101655089B (en) * | 2009-08-25 | 2011-08-24 | 山东理工大学 | Ceramic rotor of energy recovery pump and preparation method thereof |
CN202157958U (en) * | 2011-07-06 | 2012-03-07 | 宁波得利时泵业有限公司 | Rotors of bi-rotor pump |
CN202451426U (en) * | 2012-01-09 | 2012-09-26 | 山东长青金属表面工程有限公司 | Roots blower rotor with anti-corrosion spraying coating |
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2013
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CN103982432B (en) | 2016-09-28 |
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