TWM310797U - Force saving pruning clipper - Google Patents

Force saving pruning clipper Download PDF

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Publication number
TWM310797U
TWM310797U TW95220656U TW95220656U TWM310797U TW M310797 U TWM310797 U TW M310797U TW 95220656 U TW95220656 U TW 95220656U TW 95220656 U TW95220656 U TW 95220656U TW M310797 U TWM310797 U TW M310797U
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Taiwan
Prior art keywords
hole
arm
main
pivot hole
force
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TW95220656U
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Chinese (zh)
Inventor
Yao-Chung Huang
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Ho Cheng Garden Tools Co Ltd
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Priority to TW95220656U priority Critical patent/TWM310797U/en
Publication of TWM310797U publication Critical patent/TWM310797U/en

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M310797 八、新型說明: 【新型所屬之技術領域】 本創作係有關-種用以剪切斷或剪切開物品使用之 構」,尤指其省力㈣作之連動_,能更順_ = 之使用功效更佳者。 今’細刀 【先前技術】 •居家環境或公司、公園中為了美化環境、增加綠意,多會種植許 種之花草縣甚錄大黯木,贼善整個生活魏如之氣氛,而 花草灌樹木隨著種植時間,枝葉會隨意滋長並散開來,這時必須做適 時的修剪,以增加其美觀,與防止老化的樹枝掉落砸傷人,然而部份 雛粗硬’不容祕剪,必須具省力功效之園藝剪逕行修剪工作, 以能快速又輕鬆的將粗硬樹枝剪斷,而目前常見之園藝剪結構多如第 8圖至12圖之結構所示,其具有一主刀體〇〇)、一副刀體⑽)及一施 馨力臂(30)並配合若干螺絲、螺帽鎖設組成,其中,主刀體(1〇)下方左 侧延伸有一握柄桿(11),中段中央設有一中心樞孔(12),而於中心樞 孔(12)下方偏右設有一偏心樞孔(13),另上方右邊則延伸出有刀石占 04) ’副刀體(2〇)之中段設有一中心樞孔(21),下方設有調整長孔 (22) ’上方偏左則設有刀刃(23),施力臂(30)下段設有握柄桿(31), 中段偏左設有一連動樞孔(32),上則曲折一段後設有一結合樞孔(33)。 其結構之組合,主刀體(10)與副刀體(20)係先對疊後,利用螺絲、 螺帽穿過彼此之中心樞孔(12)(21),使二者結合,同時刀砧(14)與刀 M310797 刃(23)疋為相對合,施力臂(3〇)是以結合樞孔⑽利用螺絲、螺帽樞 -σ又於主刀體(10)之偏心樞孔⑽處,而下方之連動減⑽係柩設於 副刀體(20)之調整長孔(22)中,並能配合主刀體⑽與副刀體(2〇)之 張開程度於調整長孔(22)中位移變化。 其主刀體(10)與施力臂(3〇)閉合上時,刀♦⑷與刀刃(23)是對 合的,而副刀體(20)之中心樞孔(21)與施力臂(3〇)之結合樞孔⑽, 其具距離較近’因此連動樞孔(32)是位於調整長孔(22)之上方,該主 #要可由第10圖觀之,而當主刀體(1〇)與施力臂(3〇)張開時,副刀體(2〇) 之下段並會被連動樞孔(32)由調整長孔(22)拉開,使刀砧(14)與刀刃 (23)張開-角度,因副刀體⑽與施力臂⑽)非在同—中心枢結點 上,因此會產生偏移之情形,該時連動樞孔(32)則由調整長孔(22)上 方逐漸往下鷄,以此俾可達不同々之連動_,然_種結構設計, 在中心樞孔(21)(12)與結合樞孔(33)及連動樞孔(32)間成一直線時, 距離為最大,如要再張開連動樞孔(32)會由調整長孔(22)往下回復移 春動,故可知: ()其該種之結構設計行程短,無法使刀站(14)與刀刃(23)之 開口張更大,能剪切之樹枝粗度有限。 (二)當中心樞孔(21)(12)與結合樞孔(33)及連動樞孔(32)間成 直線後,刀站(14)與刀刃(23)之開口如要再加大,該直線連結關係 之中心樞孔(21)(12)與結合樞孔(33)及連動樞孔(32)會產生大於18〇 度之撐張,進而發生翹角之情形,如第n圖與第12圖之間變化,造 成使用之不順手,同時該在大於18〇度之角度時施力不順暢,無法有 M310797 效以力臂原理省力使用者。 (三)其調整長孔(22)之設置作肖,僅是為提供中讀孔⑵)⑽ 與結合樞孔⑽及連動樞孔⑽距離變化時偏移之用,—個開啟 合上之整個行程為來回往復二次之動作,且動作行程短,該種所產生 之省力效果有限,無法隨刀如4)與刀刀⑽之開口加大而增加省 力之效果,因通常開口越大所必須剪切之力道要更大。 本創作人有鑑於此,乃思及創作的意念,遂以多年的經驗加以設 计’經多方探討並試作樣品試驗,及多次修正改良,乃推出本創作。 【新型内容】 欲解決之技術問題點·· 1知省力剪結構,其結構之設計造成刀砧與刀刃之開口張無法更 大,且連動之中心樞孔與結合樞孔及連動樞孔間成一直線後,會發生 麵角之情形,造成使用之不順手,與連賴係所產生之省力效果有限, Φ此乃欲解決之技術問題點者。 解決問題之技術特點·· 本創作係提供一種省力剪結構,其係由一主刀體、一副刀體及二 對合之施力臂配合若干獅、螺帽鎖結减,其中,主刀體之下方左 侧延伸出有一握柄桿,中段中央位置設有一主樞孔,而於主樞孔下方 偏左則設有一偏心樞孔,另上方右邊則結合設有工具端,該可為刀砧 或刀刃,副刀體之中段設有_主樞孔,下段延伸出設有長條狀之臂力 M310797 •調整孔,而在於主樞孔與臂力調整孔間之外侧並設有一限制槽,另上 -段偏左則设有工具端,該可為刀砧或刀刃,施力臂是呈似—形狀下 段設有握柄桿,上段偏左彎曲處並為往兩侧突出之曲折段,該曲折段 下方設有連動樞孔’上相設有偏心樞孔,藉由上述結構,俾可結合 成一省力剪者。 對照先前技術之功效: (-)本創作乃倾供省力剪結構,其本創作之結構設計該於 相同之行程中’開啟之工具端其開口可_更大,細於剪切更粗型 悲之樹枝者。 (二)本創作乃係提供省力剪結構,其構件主刀體、副刀體及施 力臂間’主樞孔、偏心樞孔與連動樞孔是呈現可方便施力之三角形狀, 該無論是·或合上均_,使財向均是符合力學之方向能令剪 切之使用動作更順手與順暢者。 ㈢本㈣乃係提供省力剪結構,其連動關係點之主樞孔、, 心樞孔與連_關是狀便施力之三角微呈現对峨枝細 ^時雖然越而要更大之力道’但其連動插孔亦會於臂力調整孔中彩 動’以同時魏增加與主樞孔之距離方式,增加力臂之長度,使賴 應用之槓桿力量增加,因此在最難剪切時,所產生之剪力最大,使用 更省力’更方便剪切者。 【實施方式】 M310797 為使貴審查委員對本創作之目的、特徵及功效能夠有更進一步 之瞭解與認識,以下茲請配合【圖式簡單說明】詳述如后: 首先,先請由第卜2圖所示觀之,其係由一主刀體⑽)、一副刀 體(50)及二對合之施力臂(60)(600)配合若干螺絲、螺帽鎖結而成。 其中,主刀體(40)之下方左側延伸出有一握柄桿(41),中段中央 位置設有一主樞孔(42),而於主樞孔(42)下方偏左則設有一偏心樞孔 (43),另上方右邊則結合設有工具端(44),該可為刀石占或刀刃,副刀 _體(50)之中段設有一主樞孔(51),下段延伸出設有長條狀之臂力調整 孔(52),而在於主樞孔(51)與臂力調整孔(52)間之外侧並設有一限制 槽(53),另上段偏左則設有工具端(54),該可為刀石占或刀刃,施力臂 (60)(600)是呈似4形狀,下段設有握柄桿(61),上段偏左彎曲處並為 在兩侧突出之曲折段,該曲折段下方設有連動樞孔(62),上方則設有 偏心樞孔(63)。 其結構之組合’如第3、4圖所示,副刀體(50)是利用主樞孔(51) 鲁樞設於主刀體(40)—邊之主樞孔(42)處,二施力臂(60)(600)是以對合 方式由主刀體(40)兩侧,並包覆副刀體(50)方式,以偏心樞孔(63)樞 設於主刀體(40)之偏心樞孔(43)處,而這時之副刀體(50)下段是位於 偏心樞孔(43)(63)之右侧邊,並以限制槽(53)供偏心樞孔(43)(63)處 之螺絲配合,而該處之螺絲鎖設時,可使用一圓形環套(55)之穿設, 使該圓形環套(55)正於限制槽(53)處,以減少使用之摩擦,施力臂 (60)(600)中段之連動樞孔(62)則是以螺絲螺帽配合,穿設於副刀體 (50)之臂力調整孔(52)處滑移樞設,而該處之螺絲穿設時,可使用一 'M310797 凸形環套(64)之穿設,使該凸形環套(64)正於臂力調整孔(52)處,以 ^ 減少使用之摩擦。 其主刀體(40)與施力臂(60)(600)閉合上時,主刀體(4〇)與副刀體 (50)二相對之工具端(44)(54)是相對閉合,副刀體(5〇)下段是被施力 臂(60)(600)以連動樞孔(62)處被往主刀體(4〇)相切,其並利用限制槽 (53)擋於偏心樞孔(43)(63)處限位,這時之連動樞孔(62)是位於臂力 調整孔(52)之最下方,如第3圖所示;當以主刀體(4〇)及施力臂 春(60)(600)之握柄桿(41)(61)開啟時,共軸心之偏心樞孔(43)(63)位置 不變,連動樞孔(62)位置則順著往外畫,當施力臂(6〇)(6〇〇)越往外晝 時,連動樞孔(62)越接近主刀體(4〇)與副刀體(5〇)共軸心之主柩孔 (42)(51),因此連動樞孔(62)會由臂力調整孔(52)最下方逐漸往上 移,如第5圖所示,以使工具端(44)(54)張開;該用於修剪樹枝時, 該先由第5圖配合第6圖觀之,當工具端(44)(54)張開到最大,連動 樞孔(62)是位於臂力調整孔(52)最上方,以槓桿之力臂方式,省力將 籲副刀體(50)切向主刀體(40),這時主樞孔(51)(42)與連動樞孔(62)之 距離短,因此副刀體(5〇)與主刀體(40)可快速相切,但當切角越小時, 主樞孔(51)(42)與連動樞孔(62)之距離越大,所產生之槓桿力量越 大,使用越省力,其因當工具端(44)(54)張開到最大時,通常是較粗 之樹枝,而初剪切時,工具端(44)(54)之刀刃切入樹枝部分較少,因 此不需要太大之力道,但當刀刃深切入樹枝後,刀刃與樹枝間之干涉 加大,同時剪切厚度增加,因此需要更大之力道,而這時連動樞孔(62) 往臂力調整孔(52)後移動,可加長力臂,以同樣之力道施力時,能產 M310797 生更大之剪切力,以更輕鬆剪斷粗枝之樹枝者。 • 其第6圖與第7圖是本創作之園藝剪裝設握柄,與二種不同型離 之工具端(44)(54)型態,其第1至6圖為一砧板、一刀刃之型態,第 7圖為二刀刃相切之型態。 如上所述之結構,其使用具有下述之優點: ()其本創作之結構設計,該於相同之行程中,開啟之工具端 (44X54)錢π可張的更大,能驗㈣更粗型態之樹枝者。 • (二)其構件主刀體(40)、副刀體(5〇)及施力臂(60)(600)間,主 樞孔(42)(51)、偏心樞孔(43)⑽鱗動樞孔⑽是呈現可方便施力 之三角形狀,該無論是開啟或合上均綱,使財向均是符合力學之 方向,能令剪切之使用動作更順手與順暢者。 (-)其連糊伽之主樞孔(42)(51)、偏心樞孔(43)(63)與連 動樞孔(62)間是以方便施力之三角形狀呈現,且剪切樹枝越深入時, 雖然越需要更大之力道,但其連雜孔⑽)亦會於臂力機孔⑽中 •移動,以同時逐漸增加與主樞孔(42)(51)之距離方式,增加力臂之長 度’使所能應用之槓桿力量增加,因此在最難剪切時,所產生之努力 最大,使用更省力,更方便剪切者。 2上所述,本卿対已達突破性之結構設計,而具有改良之創 作内谷’同時又_達舰業上之_性與進步性,且本創作未見於 任何刊物’亦具新穎性,當符合專利法相關法條之規定,爰依法提出 新里專利申睛’懇請釣局審查委員授予合法專利權,至為感禱。 唯以上所述者,僅為本創作之—較佳實施_已,當不能以之限 M310797 定本創作實施之範圍;即大凡依本創作申請專利範圍所作之均等變化 與修飾,皆應仍屬本創作專利涵蓋之範圍内。M310797 VIII. New description: [New technical field] This creation is related to the use of shearing or shearing open items, especially the labor saving (4) linkage, which can be more _ = Use better efficiencies. Today's fine knife [previous technology] • In order to beautify the environment and increase the greenery in the home environment or in the company and the park, the planting counties of the species will be planted in the Huacao County, which will record the atmosphere of Wei Ru, and the flowers and trees will be During the planting time, the foliage will grow and spread freely. At this time, it is necessary to make timely pruning to increase its beauty, and prevent the aging branches from falling and hurting people. However, some of the young chicks are hard to cut, and must be labor-saving. The gardening shearing line is trimmed to cut the hard and hard branches quickly and easily. The common gardening shear structure is more like the structure shown in Figures 8 to 12, which has a main body. The auxiliary cutter body (10) and a singly force arm (30) are combined with a plurality of screws and nut locks, wherein a grip bar (11) extends from the left side of the main cutter body (1 〇), and a central pivot hole is arranged at the center of the middle section. (12), and an eccentric pivot hole (13) is arranged on the right side below the central pivot hole (12), and a knife-shaped stone is formed on the upper right side of the 04). The middle section of the sub-knife body (2〇) is provided with a central pivot. Hole (21) with adjustable long hole below ( 22) 'The upper left side is provided with a blade edge (23), the lower part of the force applying arm (30) is provided with a grip bar (31), the middle section is provided with a linkage pivot hole (32) on the left side, and the upper part is provided with a combination after the zigzag section Pivot hole (33). The combination of the structure, the main cutter body (10) and the auxiliary cutter body (20) are firstly folded, and the center pivot hole (12) (21) is passed through the screws and the nut to make the two combined, and the anvil is simultaneously (14) is opposite to the knife M310797 blade (23) ,, the urging arm (3 〇) is a joint pivot hole (10) with a screw, a nut pivot - σ and the eccentric pivot hole (10) of the main body (10), The lower linkage minus (10) is disposed in the adjustment slot (22) of the secondary cutter body (20), and can be adjusted to the length of the main cutter body (10) and the secondary cutter body (2). Medium displacement changes. When the main cutter body (10) and the urging arm (3 〇) are closed, the cutter ♦ (4) and the cutting edge (23) are engaged, and the center pivot hole (21) of the auxiliary cutter body (20) and the urging arm ( 3〇) The combination of the pivot hole (10), which has a relatively close distance 'so the interlocking pivot hole (32) is located above the adjustment long hole (22), which can be viewed from the 10th figure, and the main body (1) 〇) When the arm (3〇) is opened, the lower part of the secondary body (2〇) will be pulled by the adjustment hole (22) by the adjustment hole (22), so that the anvil (14) and the blade (23) ) Opening-angle, because the secondary cutter body (10) and the force-applying arm (10) are not at the same-center pivot point, so there is a situation of offset, and the interlocking pivot hole (32) is adjusted by the long hole (22). ) The chicken gradually goes down, so that the 々 々 , 然 然 然 然 然 然 然 然 然 种 种 种 种 种 种 种 种 种 种 结构 结构 结构 种 种 种 种 种 种 种 种 种 种 结构 结构 结构 结构 结构 结构 结构 结构 结构 结构In the case of a straight line, the distance is the largest. If the interlocking pivot hole (32) is to be opened again, the adjustment long hole (22) will be moved back and down. Therefore, it can be known that: () the structure of the kind is short, and the knife cannot be made. The opening of the station (14) and the blade (23) is larger and can cut the tree. Limited roughness. (2) When the central pivot hole (21) (12) is in line with the joint pivot hole (33) and the interlocking pivot hole (32), the opening of the knife station (14) and the blade edge (23) is further increased. The central pivot hole (21) (12) and the joint pivot hole (33) and the interlocking pivot hole (32) of the linear connection relationship generate struts of more than 18 degrees, and then warp angle occurs, as shown in the nth figure. The change between the 12th figure causes the use to be unsatisfactory. At the same time, the force is not smooth at an angle greater than 18 degrees, and the M310797 cannot be used to save the force. (3) The setting of the adjustment long hole (22) is only for the purpose of providing the intermediate reading hole (2)) (10) and the coupling of the pivot hole (10) and the interlocking pivot hole (10) when the distance is changed, the opening and closing of the whole The stroke is a reciprocating motion, and the stroke is short. The labor saving effect of this kind is limited, and it is impossible to increase the labor saving effect with the knife such as 4) and the opening of the knife (10), because the opening is usually necessary. The force of cutting is bigger. In view of this, the creator has developed the idea of thinking and creation, and has designed it with many years of experience. After many discussions and trials of sample tests, and many revisions and improvements, this creation was launched. [New content] Technical problems to be solved. 1 Knowing the labor-saving shear structure, the design of the structure causes the opening of the anvil and the blade to be larger, and the central pivot hole of the linkage and the joint pivot hole and the interlocking pivot hole After a straight line, the face angle will occur, causing the use of the hand, and the labor-saving effect produced by the connected system is limited. Φ This is the technical problem to be solved. Technical Features of Solving Problems·· This creation department provides a labor-saving shearing structure, which consists of a main knife body, a pair of knife bodies and two pairs of force-applying arms with a number of lions and nut locks. Among them, the main body A handle bar is extended on the lower left side, a main pivot hole is disposed at a central position of the middle portion, and an eccentric pivot hole is disposed at a left side of the main pivot hole, and a tool end is disposed on the upper right side, which may be an anvil or The cutting edge, the middle section of the auxiliary cutter body is provided with a main pivot hole, and the lower section extends with an elongated arm force M310797. The adjusting hole is located on the outer side between the main pivot hole and the arm force adjusting hole and is provided with a limiting groove, and the other is - The left side of the section is provided with a tool end, which may be an anvil or a knife edge, and the force applying arm is like a shape-shaped lower section provided with a grip bar, the upper section is bent to the left and is a meandering section protruding to the both sides, the meandering section The upper part is provided with interlocking pivot holes. The upper phase is provided with an eccentric pivot hole. With the above structure, the crucible can be combined into a labor-saving cutter. Compared with the effects of the prior art: (-) The creation is for the labor-saving shear structure, and the structure design of the creation should be in the same stroke. The opening of the tool can be _ larger, thinner than the cut. The branches of the branches. (2) The creation is to provide a labor-saving shearing structure, the main pivoting body, the secondary cutter body and the force-applying arm between the main body, the eccentric pivot hole and the interlocking pivot hole are presented in a triangular shape which can be easily applied, which is · Or close the average _, so that the financial direction is in line with the direction of mechanics can make the use of the cut more smooth and smooth. (3) This (4) is to provide a labor-saving shear structure, the main pivot hole of the linkage point, the heart pivot hole and the connection _ off is the triangle of the force applied to the lychee, although the more powerful 'But its interlocking jack will also be colored in the arm adjustment hole' to increase the distance from the main pivot hole at the same time, increase the length of the arm, and increase the leverage of the application, so it is produced when it is most difficult to cut. The shear force is the largest, and the use of more labor-saving is more convenient for the cutter. [Embodiment] M310797 In order to enable your review committee to have a better understanding and understanding of the purpose, features and effects of this creation, please refer to the following [Simplified description of the drawings] as follows: First, please firstly As shown in the figure, it is formed by a main cutter body (10), a pair of cutter bodies (50) and two pairs of force applying arms (60) (600) which are locked with a plurality of screws and nuts. Wherein, a handle bar (41) extends from a lower left side of the main cutter body (40), a main pivot hole (42) is disposed at a central portion of the middle portion, and an eccentric pivot hole is disposed at a left side of the main pivot hole (42). 43), the upper right side is combined with a tool end (44), which may be a knife stone or a blade, a middle pivot hole (51) is provided in the middle of the sub knife body (50), and a long strip is extended in the lower section. The arm force adjusting hole (52) is disposed on the outer side between the main pivot hole (51) and the arm force adjusting hole (52) and is provided with a restricting groove (53), and the upper left side is provided with a tool end (54). It can be a knife or a blade. The force arm (60) (600) is in the shape of 4, the lower section is provided with a grip bar (61), and the upper section is bent to the left and is a meandering section protruding on both sides. There is a linkage pivot hole (62) below the segment and an eccentric pivot hole (63) at the top. The combination of the structures is as shown in Figures 3 and 4. The secondary cutter body (50) is pivotally disposed at the main pivot hole (42) of the main cutter body (40) by the main pivot hole (51). The force arm (60) (600) is eccentrically disposed on both sides of the main cutter body (40) in a matching manner, and is covered by the auxiliary cutter body (50), and the eccentric pivot hole (63) is pivoted on the eccentricity of the main cutter body (40). At the pivot hole (43), the lower portion of the secondary cutter body (50) is located at the right side of the eccentric pivot hole (43) (63), and the eccentric pivot hole (43) (63) is defined by the restricting groove (53). The screw fits, and when the screw is locked, a circular ring sleeve (55) can be used to make the circular ring sleeve (55) be at the restricting groove (53) to reduce the use. Friction, the interlocking arm hole (62) of the middle section of the urging arm (60) (600) is matched by a screw nut, and is slidably pivoted at the arm force adjusting hole (52) of the auxiliary knife body (50). When the screw of this place is worn, a 'M310797 convex ring sleeve (64) can be used to make the convex ring sleeve (64) be at the arm force adjustment hole (52) to reduce the friction of use. When the main cutter body (40) and the urging arm (60) (600) are closed, the tool end (44) (54) opposite to the main cutter body (4 〇) and the auxiliary cutter body (50) is relatively closed, and the secondary cutter The lower part of the body (5〇) is the tangential arm (60) (600) is tangent to the main body (4〇) at the interlocking pivot hole (62), and is blocked by the eccentric pivot hole by the limiting groove (53) ( 43) (63) at the limit position, at this time, the linkage pivot hole (62) is located at the bottom of the arm force adjustment hole (52), as shown in Fig. 3; when the main body (4〇) and the force arm spring ( 60) When the grip rod (41) (61) of (600) is opened, the position of the eccentric pivot hole (43) (63) of the coaxial center is unchanged, and the position of the interlocking pivot hole (62) is drawn along the outward direction. When the arm (6〇) (6〇〇) is turned outward, the closer the pivot hole (62) is to the main bore (42) of the coaxial body (4〇) and the secondary body (5〇). Therefore, the interlocking pivot hole (62) is gradually moved upward from the bottom of the arm force adjusting hole (52), as shown in Fig. 5, so that the tool end (44) (54) is opened; The first figure is matched with the sixth figure. When the tool end (44) (54) is opened to the maximum, the interlocking pivot hole (62) is located at the uppermost position of the arm force adjusting hole (52). The force arm method of the rod saves the auxiliary cutter body (50) to the main cutter body (40). At this time, the distance between the main pivot hole (51) (42) and the linkage pivot hole (62) is short, so the secondary cutter body (5) 〇) can be quickly tangent to the main body (40), but the smaller the angle of cut, the greater the distance between the main pivot hole (51) (42) and the interlocking pivot hole (62), the greater the leverage generated, the use The more labor-saving, because when the tool end (44) (54) is opened to the maximum, it is usually a thicker branch, and when the initial shearing, the edge of the tool end (44) (54) cuts into the branches less, so It doesn't need much force, but when the blade is deeply cut into the branches, the interference between the blade and the branches increases, and the thickness of the shear increases. Therefore, a greater force is required, and at this time, the pivot hole (62) is moved toward the arm adjustment hole ( 52) After the movement, the arm can be lengthened. When the force is applied by the same force, the M310797 can produce a larger shear force, so that it is easier to cut the branches of the thick branches. • Figures 6 and 7 are the gardening shears handles of this creation, and the two different types of tool end (44) (54). The first to sixth figures are a cutting board and a blade. The type, the seventh figure is the tangent of the two-blade. The structure as described above has the following advantages: () The structural design of the present creation, in the same stroke, the open tool end (44X54) is more π, and can be tested (four) thicker The branch of the type. • (2) Between the main tool body (40), the sub-tool body (5〇) and the force-applying arm (60) (600), the main pivot hole (42) (51) and the eccentric pivot hole (43) (10) The pivot hole (10) is a triangular shape that can be easily applied. Whether it is open or closed, the financial direction is in line with the direction of mechanics, and the use of the cutting action is smoother and smoother. (-) The main pivot hole (42) (51), the eccentric pivot hole (43) (63) and the interlocking pivot hole (62) are presented in a triangular shape with a convenient force, and the more the cut branches are When going deeper, although the more force is needed, the connecting hole (10) will also move in the arm hole (10) to gradually increase the distance from the main pivot hole (42) (51), and increase the force arm. The length 'increased the leverage that can be applied, so when it is most difficult to cut, the effort is the biggest, the use is more labor-saving, and the cutter is more convenient. As mentioned above, Ben Qing has achieved a breakthrough structural design, and has improved the inner valley of the creation. At the same time, it has been _ sexual and progressive in the ship industry, and this creation has not been seen in any publications. When complying with the provisions of the relevant laws and regulations of the Patent Law, 提出 提出 新 新 新 新 新 新 新 新 新 新 新 新 新 新 新 新 新 新 新 新 新 新 新 新 新Only the above-mentioned ones are only for the purpose of this creation - the preferred implementation has been limited to the extent of the implementation of the M310797; that is, the equal changes and modifications made by Dafan in accordance with the scope of patent application for this creation should remain The scope of the creation of the patent is covered.

12 M310797 【圖式簡單說明】 '第1圖:係本創作之立體組合圖。 第2圖:係本創作之立體分解圖。 第3圖·係本創作組合前視圖,此為合上狀態。 第4圖·係本創作組合侧視圖。 第5圖·係本創作組合前視圖,為開啟狀態。 第6圖:係本創作之一種實施例之使用狀態示意圖。 籲第7圖··係本創作之另一種實施例之使用狀態示意圖。 第8圖:係習式之立體組合圖。 第9圖:係習式之立體分解圖。 第10圖:係習式組合前視圖,此為合上狀態。 第11圖:係習式之半開啟狀態示意圖。 第12圖:係習式之全開啟狀態示意圖。 φ 【主要元件符號說明】 習式部份: 握柄桿----(11) 偏心框孔 (13) 中心樞孔---(21) 刀刃-----(23) 握柄桿 (31) 主刀體 (10) 中心柩孔---(12) 刀石占-----(14) 副刀體----(20) 調整長孔---(22) 施力臂 (30) 13 M310797 連動柩孔---(32) 結合極孔---(33) 本創作部份: 握柄桿--- 偏心極孔-- 主極孑L--- 限制槽--- 圓形環套一一 握柄桿--- 偏心極孔-- -(41) -(43) -(51) -(53) -(55) -(61) -(63) 主刀體----(40) 主枢孔----(42) 工具端----(44) 副刀體----(50) 臂力調整孔一一(52) 工具端----(54) 施力臂----(60)(600) 連動框孔---(62) 凸形環套---(64)12 M310797 [Simple description of the diagram] 'The first picture: is the three-dimensional combination of the creation. Figure 2: This is a three-dimensional exploded view of the creation. Figure 3 is the front view of this creative combination, this is the closed state. Figure 4 is a side view of the creative combination. Figure 5 is the front view of the creative combination, which is open. Figure 6 is a schematic diagram showing the state of use of an embodiment of the present creation. 7 is a schematic diagram showing the state of use of another embodiment of the present creation. Figure 8: A three-dimensional combination of the habits. Figure 9: An exploded view of the system. Figure 10: The front view of the system combination, this is the closed state. Figure 11: Schematic diagram of the half-open state of the system. Figure 12: Schematic diagram of the full open state of the system. Φ [Main component symbol description] Part of the formula: Grip lever----(11) Eccentric frame hole (13) Center pivot hole---(21) Blade-----(23) Grip lever ( 31) Main body (10) Center boring---(12) Shield stone-----(14) Sub-knife body----(20) Adjusting the long hole---(22) Applying arm ( 30) 13 M310797 Linking the boring hole---(32) Combining the pole hole---(33) This part of the creation: Grip lever--- Eccentric pole hole--Main pole 孑L--- Limiting groove--- Round ring sleeve - one handle bar --- eccentric pole hole --- (41) -(43) -(51) -(53) -(55) -(61) -(63) main body --- -(40) Main pivot hole----(42) Tool end----(44) Sub-tool body----(50) Arm force adjustment hole one-to-one (52) Tool end----(54) Force arm----(60)(600) linkage frame hole---(62) convex ring sleeve---(64)

Claims (1)

v M310797 九、申請專利範圍: 1種省力剪結構’其係由一主刀體、一副刀體及二對合之施 力臂配合若干職、螺帽舰喊,其特徵在於: 主刀體之下方左侧延伸出有—握柄桿,中段中央位置設有一主框 孔,而於主樞孔下方偏左則設有一偏心樞孔,另上方右邊則結合設有 工具端,副刀體之中段設有__主樞孔,下段延伸岐有長條狀之臂力 調整孔’另上段偏左則設有工具端,施力臂是呈糾形狀,下段設有 春握柄上段偏左料處並為往兩侧突出之崎段,該輯段下方設 有連動樞孔,上方則設有偏心樞孔; 藉由上述結構’副刀體是利用主樞孔樞設於主刀體一邊之主柩孔 處’二施力臂是對合於主刀體兩侧’並包覆副刀體,以偏心框孔柩設 於主刀體之偏心樞孔處,施力臂中段之連動插孔則是以螺絲螺帽配 合’穿設於副刀體之臂力調整孔處樞設。 2、 根據申請專利範圍第工項所述之省力剪結構,其中,副刀體 ❿之主樞孔與臂力調整孔間外侧設有一限制槽。 3、 根據申請專利範圍第χ項所述之省力剪結構,其中,主刀體 與施力臂之偏心樞孔處以螺絲、螺帽鎖設時,使用有一_環套之穿 設,位於副刀體外侧處。 4、 根據申4專利範圍第1項所述之省力剪結構,其中,施力臂 之連動樞孔以螺絲、_配合穿設過副題之臂力孔時,使用有 一凸形環套之穿設,位於臂力調整孔處。 15v M310797 IX. Patent application scope: 1 labor-saving shear structure's system consists of a main knife body, a pair of knife bodies and two pairs of force-applying arms with several positions and nut-caps. The characteristics are: below the main knife body There is a grip bar on the left side, a main frame hole is arranged at the center of the middle section, and an eccentric pivot hole is arranged to the left of the main pivot hole, and a tool end is arranged on the upper right side, and the middle part of the sub-knife body is provided. There is __ main pivot hole, the lower section extends with a long strip of arm force adjustment hole. The upper part is left with the tool end, the force arm is shaped, and the lower part is provided with the upper part of the spring grip and the left material is The Kawasaki section protruding to the sides, the interlocking hole is arranged below the section, and the eccentric pivot hole is arranged above; the structure of the sub-knife is pivoted on the main hole of the main body by the main pivot hole 'The second force arm is opposite to the two sides of the main cutter body' and covers the auxiliary cutter body, and the eccentric frame hole is disposed at the eccentric pivot hole of the main cutter body, and the linkage jack of the middle section of the force application arm is a screw nut It is erected with the arm force adjustment hole of the sub-knife. 2. The labor-saving shearing structure according to the work item of the patent application scope, wherein a restricting groove is arranged outside the main pivot hole and the arm force adjusting hole of the auxiliary knife body. 3. The labor-saving shearing structure according to the scope of the patent application scope, wherein when the eccentric pivot hole of the main knife body and the force applying arm is locked by a screw or a nut, a _ring sleeve is used, which is located in the secondary cutter body. Outside. 4. The labor-saving shearing structure according to the first item of claim 4, wherein the pivoting hole of the force-applying arm is provided with a convex ring sleeve when the arm hole of the auxiliary arm is screwed and _ fits. Located at the arm adjustment hole. 15
TW95220656U 2006-11-23 2006-11-23 Force saving pruning clipper TWM310797U (en)

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