M323001 八、新型說明: 【新型所屬之技術領域】 本創作係關於一種葉輪,尤指一種藉扇葉的直接成型 而降低其生產製造成本及花費時間的泵浦之葉輪組。 【先前技術】 請參看第五及六圖所示,現有技術泵浦中的葉輪組係 包括有一副蓋(40)、一主蓋(50)及複數扇葉(6〇), 其中: 該副蓋(40)係呈圓盤狀,且中央穿透形成有一吸入 孔(41 ); 該主蓋(50 )係呈與副蓋(40 )相對應之圓盤狀,且 中央相對該副i (40)之吸入孔(41)突出形成有一凸部 (51) ,該凸冑(51)中央穿透形成有呈六角狀之結合孔 (52) ; …w ,次一滞r ?田 之 < 知’其曲率由該扇葉(60)前端往尾端逐漸變大,且 沿各扇葉(60)的邊緣突出成型有肋片(61),· 該複數扇葉uo)係環繞於該主蓋(5〇)之凸部(51), ::旋狀方式設置於副蓋(4〇)及主蓋(5〇)之間;其中, 各扇葉(60 )的肋片(61 )卢 主 處係利料接等方式固定於 (6U之門、、’且各相鄰扇f (60)的相對側部肋片 (61)之間分別形成有容室空間。 前述結合孔(52)可供接合至 藉以令該葉輪組受馬達帶動 "未不), 動方疋轉,使用時’該葉輪組旋轉 M323001 軸的其中一側係供流體進入各扇葉(6〇)之間的容室空間 之中’然後隨馬達帶動旋轉’藉由扇t (6〇)的推動而將 流體由該葉輪組旋轉軸的另_側甩出而沿預設的管路移 動’達到流體的汲取及輸送之目的。 然而,該現有技術葉輪組中的扇葉(6〇),在成型上 及排列組裝上均非常不便,得花費大量時間、成本來完成, 此對於泵浦的製造生產速度’無疑係形成了迫切需要改善 的阻礙。 【新型内容】 本創作之目的係在於提供一泵浦之葉輪組,其不僅構 造較為簡I ’且製造上更為快速、方便,可以有利於栗浦 的生產。 凡爲達前述目的,本創作之泵浦之葉輪組所運用之技術 =衩,乃係於相對形狀的一副蓋或一主蓋上,利用沖壓成 段來直接突出成型環繞的複數扇葉;如此,則該副 、^、忒主盍相互貼合後,各相鄰扇葉的相對側壁面之間即 分別形成有容室空間供流體容入。 由此可知,本創作之泵浦之葉輪組,無須逐一地進行 士羽葉的成型及排列組裝,而可藉由簡單的加&,快速的 疋成各扇葉的成型及佈設,因此,降低了生產製造的成本, 且有效的加速了泵浦的生產製造速度。 【實施方式】 請參看笛一 _ _ ^ 一及二圖所示’本創作之泵浦之葉輪組 係包括有~副蓋(20)及-主蓋(10),其中: M323001 該副蓋(20 )係呈圓盤狀,中央穿透形成有一吸入孔 (21),且一側表面沿著該吸入孔(21)内緣垂直環繞突 出有引導片(22 )供與外在管體相互密合; 该主蓋(1 0 )係呈與副蓋(20 )相對應之圓盤狀,且 中央相對該副蓋(20)之吸入孔(21)突出形成:一凸部 (11)’該凸部(11)中央穿透形成有呈非圓形(例如: 六角狀)之結合孔(12);該主蓋(1〇)上利用沖塵成型 方式直接突出成型有複數扇t(13),該複數扇葉(13) 繞於該主蓋(1°)之凸部(⑴,以螺旋狀方式成型 ;:主盖(10)相對於副蓋(20)的表面上;其中,各扇 I曲!3)係呈彎弧狀’其具有一前端,及-漸細之後端, 、'由5亥扇葉(13 )前端往尾端逐漸變大; 前^副蓋以吸入孔(21)相對於該結合孔 其中,方式盖合於主蓋(10)上,與主蓋(10)相互固接,· 且各相鄰扇葉(1 3 )的相對側邻辟 有容室空間。 ㈣4壁面之間分別形成 π參看第四圖所示,一馬達(圖中未示),立且有一 非二0),該軸桿(3°)截面係對應於結合孔⑻呈 如:六角狀)’且係穿入結合孔(⑴之中’ 々Μ葉輪受馬達帶動旋轉。 桿看第三圖所示’使用時,該葉輪組相對於軸 的容室空門“ 视體進入各扇葉(13)之間 的推動而: 馬達帶動旋轉,藉由扇葉(⑴ 將&體由該葉輪組旋轉轴的另—側甩出,從而沿 M323001 預設的管路(由土 一、 * I S中未不)私動,達到流體的汲取及輸送之 目的。 由上可知,本創作之泵浦之葉輪組,無須逐一地進行 各扇葉(13 )的成型及排列組裝,而可藉由簡單的加工, 、t的冲反來元成各扇葉(13 )的成型及佈設,因此,降 低了生產製造的成本’ 1有效的加速了泵浦的生產製造速 度。 【圖式簡單說明】 第一圖係本創作之分解立體圖。 第一圖係本創作之外觀立體圖。 弟二圖係本創作之另一外觀立體圖。 =四圖係本創作之側面剖視圖。 第五圖係現有技術葉輪組之分解立體圖。 第圖係現有技術葉輪組之側面剖視圖。 【主要元件符號說明】 (10)主 (12 )結合孔 (20)副 (22)引 (40 )副 (50)主 (52) Μ 蓋 蓋 導片 蓋 蓋 合孔 (11)凸部 (13)扇葉 (21 )吸入孔 (30)軸桿 (41 )吸入孔 (51 )凸部 (60)扇葉M323001 VIII. New Description: [New Technology Field] This paper is about an impeller, especially a pump impeller group that reduces the manufacturing cost and time by direct molding of the fan blade. [Prior Art] Referring to Figures 5 and 6, the impeller assembly in the prior art pump includes a sub-cover (40), a main cover (50) and a plurality of blades (6 〇), wherein: the pair The cover (40) has a disk shape, and a central portion penetrates to form a suction hole (41); the main cover (50) has a disk shape corresponding to the sub cover (40), and the center is opposite to the pair i ( 40) The suction hole (41) is protruded to form a convex portion (51), and the central portion of the convex cymbal (51) is formed with a hexagonal joint hole (52); ...w, the second stagnation of the field is < It is known that the curvature thereof gradually increases from the front end to the rear end of the blade (60), and a rib (61) is protruded along the edge of each blade (60), and the plurality of blades uo) surround the main The convex portion (51) of the cover (5〇), :: is arranged in a spiral manner between the sub-cover (4〇) and the main cover (5〇); wherein, the ribs of each of the blades (60) (61) The main part is fixed to the (6U door, 'and the opposing side ribs (61) of the adjacent fans f (60) respectively form a chamber space. The aforementioned coupling hole (52) Can be joined to the impeller group to be motored Move " No, the mover twirling, when used, 'The impeller group rotates one side of the M323001 shaft for fluid to enter the space between the blades (6〇)' and then rotates with the motor 'The movement of the fan t (6〇) pushes the fluid from the other side of the rotating shaft of the impeller group and moves along the preset pipe to achieve the purpose of fluid extraction and transportation. However, the blade (6〇) in the prior art impeller group is very inconvenient in forming and arranging assembly, and it takes a lot of time and cost to complete, which is undoubtedly an urgent need for the manufacturing speed of the pump. Need to improve the obstacles. [New content] The purpose of this creation is to provide a pump impeller group, which is not only simpler in construction but also faster and more convenient to manufacture, which can be beneficial to the production of Lipu. For the above purposes, the technique used by the pump impeller group of this creation is 衩, which is attached to a pair of covers or a main cover of a relative shape, and is formed by punching into segments to directly form and form a plurality of surrounding blades; In this way, after the pair of primary and secondary members are attached to each other, a space is formed between the opposite side wall surfaces of the adjacent adjacent blades to accommodate the fluid. It can be seen that the impeller group of the pump of this creation does not need to be formed and arranged one by one, but can be quickly formed into and arranged by the simple addition and & The cost of manufacturing is reduced, and the manufacturing speed of the pump is effectively accelerated. [Embodiment] Please refer to the flute _ _ ^ 1 and 2 as shown in the figure. 'The pump impeller group of this creation includes ~ sub cover (20) and - main cover (10), where: M323001 20) is in the shape of a disk, and has a suction hole (21) formed in the center, and a side surface is vertically surrounded by a guide piece (22) along the inner edge of the suction hole (21) for mutual adhesion with the external pipe body. The main cover (10) is in the shape of a disk corresponding to the sub-cover (20), and the center is formed to protrude from the suction hole (21) of the sub-cover (20): a convex portion (11)' The central portion of the convex portion (11) is formed with a non-circular (for example, hexagonal) coupling hole (12); the main cover (1) is directly formed by a dust forming method to form a plurality of fans (13) The plurality of blades (13) are wound around the convex portion of the main cover (1°) ((1), formed in a spiral manner; the main cover (10) is opposite to the surface of the sub-cover (20); wherein each fan I Qu! 3) is curved and curved - it has a front end, and - the tapered end, 'from the front end of the 5th fan blade (13) gradually becomes larger; the front ^ sub cover with suction holes (21 Relative to the bonding hole Way is covered on the main cover (10), with a main cover (10) fixedly connected to each other, - and the respective adjacent blades (13) have opposing flanking provision chamber space. (4) Forming π between the four walls respectively. Referring to the fourth figure, a motor (not shown) has a non-two zero, and the shaft (3°) section corresponds to the joint hole (8) as follows: hexagonal shape ) 'and penetrate into the joint hole ((1)' 々Μ the impeller is rotated by the motor. When the rod is seen in the third figure, the impeller group is opposite to the shaft of the chamber. The sight enters each leaf ( 13) The push between: The motor drives the rotation, by the fan blade ((1) the & body is pulled out from the other side of the rotating shaft of the impeller group, so that the pipeline along M323001 is preset (by the soil, * IS In the middle of the movement, the purpose of fluid extraction and transportation is achieved. It can be seen from the above that the impeller group of the pump of this creation does not need to form and arrange the blades (13) one by one, but by simple The processing, the reversal of t, and the formation and layout of the various blades (13), thus reducing the cost of manufacturing '1 effectively accelerates the production speed of the pump. [Simplified illustration] A picture is an exploded perspective view of the creation. The first picture is the appearance of the creation. Fig. 2 is a perspective view of another appearance of the creation. = Four drawings are side sectional views of the present invention. The fifth figure is an exploded perspective view of the prior art impeller group. The figure is a side sectional view of the prior art impeller group. Explanation of Symbols] (10) Main (12) Joint Hole (20) Sub (22) Lead (40) Sub (50) Main (52) 盖 Cover Cover Cover Cover Hole (11) Projection (13) Fan Blade (21) suction hole (30) shaft (41) suction hole (51) convex portion (60) fan blade