免林㈣水頭⑴向外溢出造成地板表面潮濕達到乾爽 效果,猎輯決傳統清洗拖把用的水桶,在傾倒污水時,必須 由地面抬〶至水槽’導致操作者運動傷害所造成的困擾。 2. 第二實施縣的清洗拖㈣排水桶,其排水桶⑴底 部-端至少設置-個可調整高低度的調整螺⑴,而排水孔 (12)設置在排水桶⑴的另端,當調整螺⑶高度調升後, 能使排水桶的-端升高,另端降低,使污水自動由高處往低處 流動,再由低處的排水孔(12)快速排出,達到省時省力的效 ^ ;又所述排水孔⑼結合錐套⑵後能以其錐形開口覆 蓋在地板落水頭(5)上’使污水透過轉⑵輯入落水頭 (5)内’如此-來,能避免污水由落水頭⑸向外溢出造成 地板表面義,達倒乾纽果;藉此解決傳統清洗拖把用的水 桶,在傾倒污水時,必須由地面抬高至水槽,導致操作者運動 傷害所造成的因擾。 3. 根據上述二種清洗拖把用的排水桶,其優點在於:所述 錐套(2)是以螺接方式與排水孔(12)固定結合,能便於使 用者快速組裝或拆卸,同時排水孔(12)與錐套(2)之銜接 位置藉由螺牙鎖緊’使排水桶接口能達到密封止漏並方便實施 的功效。 4. 根據上述二種清洗拖把用的排水桶,其優點在於:所述 錐套(2)與排水孔(12)之間能藉由延長管路(4)來銜接, 當實施場所無地板落水頭(5)可排放時,仍能藉由銜接延長 管路(4),將污水排放至較遠處路落水頭(5)及排水溝。 【實施方式】 以下依據圖面所示的實施例詳細說明如後,本新型共有二 M408336 個較佳實施型態’分別如下: 第一實施型態: 如圖1所示為本新型排水桶第—種實施鶴立體圖,圖2 所不為圖1之排水桶的全斷面,圖3所示為圖1之排水桶排 放污水時之示意圖。 上圖揭示出-種清洗拖把用的排水桶⑴,該排水桶⑴ 的底面具有排放水的排水孔(12 ),其·在於所述排水桶⑴ 的地面還具有斜面⑻,而上述排水孔(12)是設置在斜面 (11)的最低位置;及所述排水孔(12)能結合一錐形開口並 能覆蓋在地板漏水頭上的轉⑵,使污水自動由高處往低處 流動’再由低處的排水孔(12)快速排出,達到省時省效 果。 及所述排樣(12)並結合-錐獅〃並能在地板落 水頭⑸上的錐套⑵,使污水透過錐套⑵而排入落水頭 ⑸内’能避免污水岭水頭⑸向外溢出造成地板表面潮 濕,達到乾爽效果。 第二實施型態: 如圖4所示為本新型排水桶第二種實施型態局部斷面 圖;圖5所示為圖4之排水桶的全斷面圖;圖6所示為圖4之 排水桶排放污水時之示意圖。 上圖揭示出一種清洗拖把用的排水桶(1),該排水桶 的底面一端至少設置一個可調整高低度的調整螺(3),而排水 孔(12)設置在排水桶(1)的另端,當調整螺(3)高度調升 後’能使排水桶的一端升高,另端降低,使污水自動由高處往 低處流動,再由低處的排水孔(12)快速排出,達到省時省力 的效果。 U408336 及所述排水孔(12)並結合一錐形開口並能覆蓋在地板落 水頭⑸上的錐套⑵,使污水透過錐套⑵而排入落水頭 (5)内’能避免污水由落水頭⑸向外溢出造成地板表面潮 濕,達到乾爽效果。 如圖4至6所示,錐套⑵是以螺接方式與排水孔(12) 固定結合’如此一來,能便於使用者快速組裝或拆卸,達到密 封止漏及方便實施的效果。 —再如圖7所示,上述中,錐套(2)與排水孔(12)之間 能藉由延長管路(4)來銜接,如此一來’即使排水桶⑴近 處沒有放置在落水頭⑸時,也能藉由延長管路⑷使錐套 ⑵能覆蓋在遠處落水頭⑸及排水溝上,故不虞擔心排水 桶⑴遠雜水頭⑸的問題。藉由上述能易於將水自動 引導至排水孔(12)排出;解決清洗人員在傾倒污水時,必須 由地面抬高至水槽,導致操作者嚴重運動傷害的困擾。、 ,以上依據圖式所示的實施例詳細說明了本新型的構造特 徵及作用效果,由於符合新穎及進步性要件,遂纽法提出新 型專利申請;惟以上所述僅為本創作之較佳實施例,但本創作 不以圖面所示限定實施範圍’因此舉凡與本創作意旨相符的修 飾性變化’只要在解範_都應涵屬於本卿專概圍内。 7 M408336 【圖式簡單說明】 圖1 :本新型排水桶第一種實施型態立體圖。 圖2:為圖1之排水桶的全斷面圖。 圖3:為圖1之排水桶排放污水時之示意圖。 圖4:本新型排水桶第二種實施型態局部斷面圖。 圖5 :為圖4之排水桶的全斷面圖。 圖6:為圖4之排水桶排放污水時之示意圖。 圖7 :本新型排水桶銜接延長管路實施示意圖。 【主要元件符號說明】 1 排水桶 11 斜面 12 排水孔 13 軟塞 2 錐套 3 調整螺 4 延長管路 5 落水頭Free forest (4) Water head (1) The outer surface overflows to make the surface of the floor moist to achieve a dry effect. The bucket used for traditional cleaning of the mop must be lifted from the ground to the sink when dumping the sewage, causing the operator's sports injuries. 2. The cleaning drum of the second implementation county (four) drainage bucket, the bottom of the drainage bucket (1) is provided with at least one adjustable height screw (1), and the drainage hole (12) is set at the other end of the drainage bucket (1) when adjusting After the height of the screw (3) is raised, the end of the drain bucket can be raised and the other end can be lowered, so that the sewage can automatically flow from a high place to a low place, and then quickly drained from the lower drain hole (12), saving time and labor. The drainage hole (9) combined with the taper sleeve (2) can be covered with the taper opening on the floor drop head (5) to make the sewage pass through the turn (2) into the drop head (5). The sewage overflows from the falling head (5) to cause the surface of the floor to be inverted, and the dried fruit is removed; thereby solving the bucket for the traditional cleaning mop, when dumping the sewage, it must be raised from the ground to the sink, causing the operator to cause sports injuries. Due to disturbance. 3. According to the above two kinds of drainage buckets for cleaning the mop, the sleeve (2) is fixedly coupled with the drainage hole (12) by screwing, which can be quickly assembled or disassembled by the user, and the drainage hole is provided. (12) The connection position with the taper sleeve (2) can be sealed and leakproof by the screwing of the screw to make it easy to implement. 4. According to the above two kinds of drainage buckets for cleaning the mop, the advantage is that the taper sleeve (2) and the drainage hole (12) can be connected by the extension pipeline (4), and there is no floor water falling in the implementation place. When the head (5) can be discharged, the sewage can be discharged to the road head (5) and the drainage ditch at a far distance by connecting the extension pipe (4). [Embodiment] The following is a detailed description of the embodiments shown in the drawings. As shown in the following, the present invention has two M408336 preferred embodiments as follows: The first embodiment: as shown in FIG. - A perspective view of the implementation of the crane, Figure 2 is not a full section of the drainage bucket of Figure 1, Figure 3 is a schematic diagram of the drainage of the drainage bucket of Figure 1. The above figure discloses a drain bucket (1) for cleaning a mop, the bottom surface of which has a drain hole (12) for discharging water, wherein the floor of the drain bucket (1) further has a slope (8), and the drain hole ( 12) is disposed at the lowest position of the inclined surface (11); and the drainage hole (12) can be combined with a tapered opening and can cover the turn (2) on the floor leakage head, so that the sewage automatically flows from a high place to a low place. It is quickly discharged from the lower drainage hole (12), saving time and economy. And the layout (12) combined with the taper lion and the taper sleeve (2) on the floor drop head (5), so that the sewage is discharged into the drop head (5) through the taper sleeve (2) to avoid overflowing the sewage ridge head (5) Causes the surface of the floor to be wet and achieve a dry effect. The second embodiment: FIG. 4 is a partial cross-sectional view showing a second embodiment of the drainage bucket; FIG. 5 is a full sectional view of the drainage bucket of FIG. 4; Schematic diagram of the discharge of sewage from the drain. The figure above discloses a drain bucket (1) for cleaning the mop, at least one adjustable height screw (3) is provided at one end of the bottom surface of the drain bucket, and the drain hole (12) is disposed in the drain bucket (1) At the end, when the height of the adjusting screw (3) is raised, the end of the drain can be raised, and the other end is lowered, so that the sewage automatically flows from a high place to a low place, and then quickly discharged from the lower drain hole (12). Save time and effort. U408336 and the drainage hole (12) combined with a tapered opening and covering the taper sleeve (2) on the floor water drop head (5), so that the sewage is discharged into the falling head (5) through the taper sleeve (2) to prevent the sewage from falling into the water The overflow of the head (5) causes the surface of the floor to be wet and achieves a dry effect. As shown in Figures 4 to 6, the taper sleeve (2) is fixedly coupled to the drain hole (12) by screwing. Thus, the user can be quickly assembled or disassembled for sealing and leakage prevention and convenient implementation. - As shown in Fig. 7, in the above, the taper sleeve (2) and the drain hole (12) can be joined by the extension pipe (4), so that even if the drain bucket (1) is not placed near the water In the case of the head (5), the taper sleeve (2) can also be covered on the distant head (5) and the drain by extending the pipe (4), so that the problem of the drain bucket (1) far from the water head (5) is not worried. By the above, the water can be easily guided to the drain hole (12) for discharge; the cleaning personnel must be lifted from the ground to the sink when dumping the sewage, causing serious operator sports injuries. According to the embodiment shown in the drawings, the structural features and effects of the present invention are described in detail. Since the novelty and the progressive requirements are met, the New Zealand patent application is filed; however, the above description is only preferred for the present invention. The examples, but the present invention does not limit the scope of implementation as shown in the figure's. Therefore, any modificational changes that are consistent with the purpose of this creation should be included in the general outline of the essay. 7 M408336 [Simple description of the diagram] Figure 1: The first embodiment of the new type of drainage bucket is a perspective view. Figure 2 is a full cross-sectional view of the drain bucket of Figure 1. Figure 3: Schematic diagram of the discharge of sewage from the drain tank of Figure 1. Figure 4: A partial cross-sectional view of the second embodiment of the new drain bucket. Figure 5 is a full cross-sectional view of the drain bucket of Figure 4. Figure 6: Schematic diagram of the discharge of sewage from the drain tank of Figure 4. Figure 7: Schematic diagram of the implementation of the new drain bucket connection extension pipe. [Main component symbol description] 1 Drain bucket 11 Bevel 12 Drain hole 13 Soft plug 2 Cone sleeve 3 Adjustment screw 4 Extension pipe 5 Water head