TWI568537B - Vibration grinding machine structure - Google Patents

Vibration grinding machine structure Download PDF

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Publication number
TWI568537B
TWI568537B TW105129079A TW105129079A TWI568537B TW I568537 B TWI568537 B TW I568537B TW 105129079 A TW105129079 A TW 105129079A TW 105129079 A TW105129079 A TW 105129079A TW I568537 B TWI568537 B TW I568537B
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Taiwan
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frame
group
workpiece
assembly
seat
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TW105129079A
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Chinese (zh)
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TW201811503A (en
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Zhao Wei
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Description

振動研磨機結構 Vibration mill structure

本發明係關於一種振動研磨機結構,該振動研磨機結構係設有升高組,該升高組升高時,該第一架體組沿其隨該升高組而升高,該第一架體組並會同時帶動該複數第二架體組及複數工件組升高,該複數工件組升高後即凸露於該本體外,使用者即更易將每一工件組自每一第二架體組上取下。 The invention relates to a vibrating mill structure, wherein the vibrating mill structure is provided with a rising group, and when the elevated group is raised, the first frame group is raised along the rising group thereof, the first The frame body will simultaneously drive the plurality of second body groups and the plurality of workpiece groups to rise, and the plurality of workpiece groups are raised and protruded from the body, and the user is more likely to set each workpiece group from each second. Remove from the frame set.

按吾人先前所知,習用之振動研磨機結構,此係為發明人所申請之專利前案,如台灣專利案申請號:088215934,專利名稱:振動研磨機用治具,該專利案結構係在於:一種振動研磨機用治具,該治具包括:二固定板2,其具有一預定之形狀,該二固定板2之相對位置上分別設有一以上之固定孔21;一桿3,該桿3兩端分別設於該二固定板2之固定孔21,該桿3使該二固定板2保持一預定之距離,且該桿3於該二固定板2間形成一套合段32;多數之間隔塊4,其外徑大於該桿3,該間隔塊4具有一貫通孔41而可將其套設於該桿3之套合段32,且該間隔塊4之兩端面分別形成一頂面42,而供將工件5穿套於該桿3之套合段32,且相鄰間隔塊4之頂面42可分頂住工件5之一側。 As previously known by us, the structure of the vibrating mill used in the past is the patent application filed by the inventor, such as the Taiwan Patent Application No. 088215934, the patent name: the fixture for the vibrating mill, and the structure of the patent is A jig for a vibrating mill, comprising: two fixing plates 2 having a predetermined shape, wherein the two fixing plates 2 are respectively provided with one or more fixing holes 21 at opposite positions; a rod 3, the rod The two ends are respectively disposed on the fixing holes 21 of the two fixing plates 2, the rods 3 maintain the two fixing plates 2 at a predetermined distance, and the rods 3 form a set of sections 32 between the two fixing plates 2; The spacer block 4 has an outer diameter larger than the rod 3, and the spacer block 4 has a through hole 41 which can be sleeved on the sleeve portion 32 of the rod 3, and the top surfaces of the spacer block 4 respectively form a top portion The face 42 is for inserting the workpiece 5 over the sleeve section 32 of the rod 3, and the top surface 42 of the adjacent spacer block 4 can be placed against one side of the workpiece 5.

但此習用振動研磨機結構之缺失係在於: However, the missing structure of this conventional vibrating mill is:

1、請輔以第五圖所示,該治具裝設該工件5後即可與置入該研磨槽11中研磨,但當該工件5研磨完成後,使用者係需將該複數工件5及該複數治具一一從該研磨槽11中取出,且該複數工件5及該複數治具均可能於研磨時已部份沒入研磨顆粒內,取出之動作係較不便的,其係為該振動研磨機結構之缺點。 1. As shown in the fifth figure, the fixture can be ground and placed in the grinding tank 11 after the workpiece 5 is installed, but after the workpiece 5 is finished, the user needs to machine the plurality of workpieces 5 And the plurality of jigs are taken out from the grinding tank 11, and the plurality of workpieces 5 and the plurality of jigs may be partially immersed in the abrasive particles during the grinding, and the action of taking out is inconvenient, and the The shortcomings of the vibrating mill structure.

2、請輔以第五圖所示,基本上該研磨槽11內係要裝設有隔板,使該研磨槽11係分成複數槽,每一工件及每一治具係置設於每一槽內,每一工件及每一治具才不會於研磨時相互踫撞,該研磨槽11內係要裝設有隔板係較為複雜,且設有隔板後,該研磨槽11內之複數研磨石受限於隔板移動範圍即受限。 2. As shown in the fifth figure, basically, the grinding tank 11 is provided with a partition plate, so that the grinding tank 11 is divided into a plurality of grooves, and each workpiece and each fixture is disposed in each In the tank, each workpiece and each jig does not collide with each other during grinding. The grinding tank 11 is provided with a partition system which is complicated, and after the partition is provided, the grinding tank 11 is The plurality of grinding stones is limited by the range of movement of the partition.

有鑑於上述習用振動研磨機結構之缺失,本發明人藉多年從事相關行業之製造、設計及生產經驗,終於有一能解決習用弊端之振動研磨機結構之產品問世。 In view of the above-mentioned lack of the structure of the conventional vibrating mill, the inventors have been engaged in the manufacturing, design and production experience of related industries for many years, and finally have a product of a vibrating mill structure that can solve the drawbacks.

發明所欲解決之問題:習用結構中,該複數工件及該複數治具一一從該研磨槽中取出,本發明之振動研磨機結構係設有升高組,該升高組升高時,該第一架體組、該複數第二架體組及複數工件組係升高,該複數工件組即凸露於該本體外,更易將每一工件組自每一第二架體組上取下。 The problem to be solved by the invention is: in the conventional structure, the plurality of workpieces and the plurality of jigs are taken out from the grinding tank, and the vibration grinder structure of the present invention is provided with a raised group, and when the elevated group is raised, The first frame group, the plurality of second frame groups and the plurality of workpiece groups are raised, and the plurality of workpiece groups are exposed outside the body, and each workpiece group is more easily taken from each second frame group under.

解決問題之技術手段:本發明係關於一種振動研磨機結構,其係包括:一本體,該本體係設有一容槽,該容槽中央處係凸設有一容置 部;一升高組,該升高組係固設於該容置部處,該升高組係包括第一座體及第二座體,該第一座體係固設於該本體之該容置部處,該第二座體係可相對該第一座體升高或下降;一第一架體組,該第一架體組係與該升高組相組設,該第一架體組係隨該升高組之該第二座體上升或下降;複數第二架體組,該複數第二架體組係與該第一架體組相結合,該第一架體組受該升高組帶動而上升或下降時,該第一架體組亦會同時帶動該第二架體組同時上升或下降;複數工件組,每一工件組係容設於該本體之該容槽處,每一工件組係與每一第二架體組相組設,每一工件組係隨每一第二架體組上升或下降。 Technical Solution for Solving the Problem: The present invention relates to a vibrating mill structure, comprising: a body, the system is provided with a receiving groove, and a receiving portion is arranged at a center of the receiving groove a rising group, the elevated group is fixed at the accommodating portion, the elevated group includes a first seat body and a second seat body, and the first seat system is fixed to the body At a portion, the second system can be raised or lowered relative to the first body; a first frame group, the first frame group is combined with the elevated group, the first frame group And the second body of the elevated group rises or falls; the plurality of second body groups, the plurality of second body groups are combined with the first body group, and the first body group receives the When the high group is driven to rise or fall, the first body group also drives the second body group to simultaneously rise or fall; a plurality of workpiece groups, each workpiece group is accommodated in the cavity of the body, Each of the workpiece groups is assembled with each of the second frame groups, and each of the workpiece groups is raised or lowered with each of the second frame groups.

對照先前技術之功效:該升高組係具有升高功效,該第二座體係於該第一座體內升高或下降,該升高組之該第二座體相對於該第一座體上升或下降時,係會帶動該第一架體組、該複數第二架體組及該複數工件組隨其於該容槽之範圍內同時上升或下降,該升高組升高時,該第一架體組沿其隨該升高組而升高,該第一架體組並會同時帶動該複數第二架體組及複數工件組升高,該複數工件組升高後即凸露於該容槽外而更換每一工件組。 Controlling the efficacy of the prior art: the elevated group has an elevated efficacy, the second system is raised or lowered in the first seat, and the second seat of the elevated group is raised relative to the first seat Or when descending, the first body group, the plurality of second body groups, and the plurality of workpiece groups are simultaneously raised or lowered within the range of the container, and when the elevated group is raised, the first A body group is raised along the elevated group, and the first frame group simultaneously drives the plurality of second frame groups and the plurality of workpiece groups to rise, and the plurality of workpiece groups are raised and then protruded Each of the workpiece sets is replaced outside the tank.

為使 鈞局委員及熟習此項技藝人士對本發明之功效完全瞭解,茲配合圖式及圖號就本發明之結構、組成說明於後,惟以下所述者僅為用來解釋本發明之實施例,並非企圖據以對本發明做任何形式上之限制,是以凡是在本發明之精神下,所作的任何修飾變更皆仍應屬於本發明之保護範圍。 The structure and composition of the present invention are described in conjunction with the drawings and the drawings, and the following description is only for explaining the implementation of the present invention. For example, it is not intended to limit the invention in any way, and any modifications made by the present invention are still within the scope of the invention.

10‧‧‧本體 10‧‧‧ Ontology

11‧‧‧容槽 11‧‧‧ 容容

12‧‧‧容置部 12‧‧‧ 容部

20‧‧‧升高組 20‧‧‧height group

21‧‧‧第一座體 21‧‧‧First body

22‧‧‧第二座體 22‧‧‧Second body

30‧‧‧導柱 30‧‧‧ Guide column

40‧‧‧第一架體組 40‧‧‧First body group

41‧‧‧第一架體座 41‧‧‧First body seat

42‧‧‧第一架體 42‧‧‧First body

421‧‧‧第一結合部 421‧‧‧ First Joint Department

422‧‧‧第二結合部 422‧‧‧Second junction

423‧‧‧導板 423‧‧‧ Guide

4231‧‧‧穿槽 4231‧‧‧through slot

43‧‧‧第二架體座 43‧‧‧Second body

431‧‧‧第三結合部 431‧‧‧ Third Joint Department

432‧‧‧第四結合部 432‧‧‧ Fourth Joint Department

4321‧‧‧第一結合孔 4321‧‧‧First joint hole

50‧‧‧第二架體組 50‧‧‧Second body group

51‧‧‧第二架體 51‧‧‧Second body

511‧‧‧第二結合孔 511‧‧‧Second junction hole

512‧‧‧第三結合孔 512‧‧‧ third junction hole

52‧‧‧第三架體 52‧‧‧ Third body

521‧‧‧容置空間 521‧‧‧ accommodating space

522‧‧‧第四結合孔 522‧‧‧4th joint hole

523‧‧‧第一螺合部 523‧‧‧First screwing

53‧‧‧第四架體 53‧‧‧Fourth body

531‧‧‧第二螺合部 531‧‧‧Second screw joint

54‧‧‧螺合件 54‧‧‧ screw fittings

60‧‧‧工件組 60‧‧‧Workpieces

61‧‧‧工件 61‧‧‧Workpiece

611‧‧‧第一組設部 611‧‧‧The first group

62‧‧‧第一間隔塊 62‧‧‧First spacer block

621‧‧‧第二組設部 621‧‧‧The second group

63‧‧‧第一組設件 63‧‧‧First set of components

64‧‧‧第二組設件 64‧‧‧Second set of components

65‧‧‧第二間隔塊 65‧‧‧Second spacer

651‧‧‧第三組設部 651‧‧‧The third group

652‧‧‧穿孔 652‧‧‧Perforation

第一圖、係本發明振動研磨機結構之立體分解圖。 The first figure is an exploded perspective view of the structure of the vibrating mill of the present invention.

第二圖、係本發明振動研磨機結構第一架體組之立體分解圖。 The second figure is an exploded perspective view of the first body set of the vibrating mill structure of the present invention.

第三圖、係本發明振動研磨機結構第二架體組與工件組之立體分解圖。 The third figure is an exploded perspective view of the second body set and the workpiece set of the vibrating mill structure of the present invention.

第四圖、係本發明振動研磨機結構工件組之立體分解圖。 The fourth figure is an exploded perspective view of the workpiece set of the vibrating mill of the present invention.

第五圖、係本發明振動研磨機結構第二架體組與工件組之立體組合圖。 The fifth figure is a three-dimensional combination diagram of the second body set and the workpiece set of the vibrating mill structure of the present invention.

第六圖、係本發明振動研磨機結構部份元件之立體組合圖。 Figure 6 is a perspective assembled view of some of the components of the vibrating mill of the present invention.

第七圖、係本發明振動研磨機結構之立體組合圖。 The seventh figure is a three-dimensional combination diagram of the structure of the vibrating mill of the present invention.

第八圖、係本發明振動研磨機結構另一操作狀態之立體圖。 Figure 8 is a perspective view showing another operational state of the vibrating mill structure of the present invention.

第九圖、係本發明第二實施例第二架體組與工件組之立體分解圖。 The ninth drawing is an exploded perspective view of the second body set and the workpiece set of the second embodiment of the present invention.

第十圖、係本發明第三實施例工件組之立體分解圖。 Fig. 10 is an exploded perspective view showing a workpiece set of a third embodiment of the present invention.

第十一圖、係本發明第三實施例第二架體組與工件組之立體分解圖。 11 is an exploded perspective view showing a second body group and a workpiece group according to a third embodiment of the present invention.

第十二圖、係本發明第三實施例第二架體組與工件組之立體組合圖。 Figure 12 is a perspective assembled view of a second body set and a workpiece set of a third embodiment of the present invention.

首先請參閱第一圖至第六圖所示,第一圖係本發明振動研磨機結構之立體分解圖,第二圖係本發明振動研磨機結構第一架體組40之立體分解圖,第三圖係本發明振動研磨機結構第二架體組50與工件組60之立體分解圖,第四圖係本發明振動研磨機結構工件組60之立體分解圖,第五圖係本發明振動研磨機結構第二架體組50與工件組60之立體組合圖,第六圖係本發明振動研磨機結構部份元件之立體組合圖,本發明係關於一種振 動研磨機結構,其係包括:一本體10,該本體10係設有一容槽11,該容槽11之槽底係呈弧面狀,該容槽11中央處係凸設有一容置部12,該容置部12係呈圓柱體狀,該容置部12係呈圓座體狀;一升高組20,該升高組20係固設於該容置部12處,該升高組20係包括第一座體21及第二座體22,該第一座體21係固設於該本體10之該容置部12處,該第一座體21係與該第二座體22相組設,該第二座體22係容設於該第一座體21內,該第二座體22係可於該第一座體21內升高或下降,該第一座體21及該第二座體22係呈圓筒狀,該升高組20係可為一油壓缸結構;複數導柱30,該導柱30係呈圓柱體狀,該導柱30係固設於該容置部12上,該複數導柱30係以該升高組20為軸心呈環狀排列而係繞設該升高組20;一第一架體組40,請輔以第二圖所示,該第一架體組40係與該升高組20相組設,該第一架體組40係隨該升高組20之該第二座體22上升或下降,該第一架體組40係包括:第一架體座41、複數第一架體42及第二架體座43;該第一架體座41係固設於該升高組20之該第二座體22上,該第一架體座41係會隨該第二座體22升高或下降而同時作動,該第一架體座41係呈圓座體狀;該複數第一架體42係與該第一架體座41相固設,該複數第一架體42相對該升高組20之軸心及該第一架體座41係呈環狀排列,該第一架 體42一端係設有第一結合部421,該第一結合部421係與該第一架體座41相結合固設,該第一架體42另端係設有第二結合部422,該第二結合部422係與該第一結合部421相遠離,該第一架體42係凸設有導板423,每一導板423係與每一導柱30相對正,該導板423係設於近該第二結合部422處,該導板423端部處係設有穿槽4231,該穿槽4231係穿設於該導柱30上,使該複數第一架體42係套設於該複數導柱30上,該第一架體42之數量係配合該導柱30之數量;該第二架體座43係與該複數第一架體42相固設結合,該第二架體座43之每一角端處係設有第三結合部431,每一第三結合部431係與每一第一架體42之該第二結合部422相結合,該第二架體座43每一邊面係設有第四結合部432,每一第四結合部432之二端係設有複數穿槽狀之第一結合孔4321;該第一架體座41受該升高組20帶動而升高或下降時,與該第一架體座41相固設之該複數第一架體42係會受該第一架體座41帶動而於該複數導柱30處上升高或下降,而與該複數第一架體42相固設之該第二架體座43亦會受該複數第一架體42帶動而升高或下降,即當該升高組20之該第二座體22於該第一座體21內升高或下降時,係會帶動該第一架體組40隨其升高或下降;複數第二架體組50,請輔以第三圖所示,該複數第二架體組50係與該第一架體組40相結合,該第一架體組40受該升高組20帶動而上升或下降時,該第一架體組40亦會同時帶動該第二架體組50同時上升或下降,每一第二架體組50係結合於該第二架體組40之該第二架體座43之每一 第四結合部432處,該第二架體組50之數量係配合該第四結合部432之數量,每一第二架體組50係包括:二第二架體51、二第三架體52、二第四架體53及複數螺合件54;該第二架體51係結合於該第四結合部432之二端部處,該第二架體51係設有複數第二結合孔511,該第二結合孔511係與該第一結合孔4321相對正,該第二結合孔511之數量係配合該第一結合孔4321之數量,該第二架體51中央處係設有複數第三結合孔512,該第三結合孔512係呈圓穿槽狀;該第三架體52係與該第二架體51相結合,該第三架體52係設有容置空間521,該容置空間521係呈開放狀,該容置空間521一端部處係設有複數第四結合孔522,該第四結合孔522係與該第三結合孔512相對正,該第四結合孔522之數量係配合該第三結合孔512之數量,該第四結合孔522係呈圓穿槽狀,該容置空間521一側係設有複數第一螺合部523,該第三架體52斷面係略呈U形狀;該第四架體53係呈長方桿體狀,該第四架體53係容設於該第三架體52之該容置空間521處,該第四架體53上係設有複數第二螺合部531,該第二螺合部531係與該第一螺合部523相對正,該第二螺合部531係呈圓穿槽狀;該螺合件54係依序穿設於該第二螺合部531及該容置空間521處並與該第一螺合部523相螺合,該螺合件54係呈外螺紋狀;複數工件組60,請輔以第三圖及第四圖所示,每一工件組60係容設於該本體10之該容槽11處,每一工件組60係與每一第二架體組50相 組設,每一工件組60係隨每一第二架體組50上升或下降,該工件組60係包括:複數工件61、複數第一間隔塊62、二第一組設件63及二第二組設件64;該複數工件61係與該第三架體52相組設,該複數工件61相對對該第三架體52係呈直線排列,該工件61之二端部處係各設有一第一組設部611,該第一組設部611係呈圓穿槽狀,該工件61係可為自行車上之各架體;該複數第一間隔塊62係與該複數工件61相組設,該第一間隔塊62係組設於每二個工件61間之二端部處,該第一間隔塊62係設有第二組設部621,該第二組設部621係與該第一組設部611相對正,該第二組設部621係呈圓穿槽狀,該複數第一間隔塊62係容設於該容置空間521處,該第一間隔塊62係呈長方形塊體狀;該二第一組設件63係穿設於該複數工件61之該第一組設部611及該複數第一間隔塊62之該第二組設部621處,該第一組設件63係呈外螺紋狀;該二第二組設件64係穿設於該複數工件61之該第一組設部611及該複數第一間隔塊62之該第二組設部621處並與該二第一組設件63相組設,使該複數工件61及該複數第一間隔塊62相組設,該第二組設件64係呈內螺紋狀;該第二架體組50與該工件組60相組設後即如第五圖所示,該工件組60之該複數第一間隔塊62係容設於該第三架體52之該容置空間521處,該複數螺合件54係依序穿設於該第四架體53之該第二螺合部531及該容置空間521並與該第三架體52之該第一螺合部521相螺合,容設於該容置空 間521處之該複數第一間隔塊62係夾合於該第三架體52及該第四架體53之間;該導柱30之數目係為五個,該第一架體42之數目係為五個,該第二架體座43係呈五角形座體狀,該第二架體組50之數量係為五組,該工件組60之數目係為五個。 First, please refer to the first to sixth figures. The first figure is an exploded perspective view of the structure of the vibrating mill of the present invention, and the second figure is an exploded view of the first frame set 40 of the vibrating mill structure of the present invention. The three figures are an exploded perspective view of the second body set 50 and the workpiece set 60 of the vibrating mill structure of the present invention, and the fourth figure is an exploded perspective view of the vibrating mill structure workpiece set 60 of the present invention, and the fifth figure is the vibrating grinding of the present invention. The three-dimensional combination diagram of the second body set 50 and the workpiece set 60 of the machine structure, and the sixth figure is a three-dimensional combination diagram of the components of the vibration grinder structure of the present invention, the present invention relates to a vibration The structure of the movable grinder includes a main body 10, and the main body 10 is provided with a receiving groove 11. The bottom of the groove of the receiving groove 11 is curved, and a receiving portion 12 is convexly disposed at the center of the receiving groove 11. The accommodating portion 12 is in the shape of a cylinder, and the accommodating portion 12 is in the shape of a round seat; and the elevated group 20 is fixed at the accommodating portion 12, the elevated group The first base body 21 is fixed to the accommodating portion 12 of the main body 10, and the first base body 21 is coupled to the second base body 22, and the second base body 22 is fixed to the accommodating portion 12 of the main body 10. The second base 22 is received in the first base 21, and the second base 22 is raised or lowered in the first base 21, and the first base 21 and The second block 22 is cylindrical, and the elevated group 20 can be a hydraulic cylinder structure; the plurality of guide posts 30 are cylindrical, and the guide post 30 is fixed on the In the accommodating portion 12, the plurality of guide columns 30 are arranged in a ring shape with the elevated group 20 as an axis, and the raised group 20 is wound; a first frame group 40, please supplement the second figure The first frame group 40 is assembled with the elevated group 20, and the first frame group 40 is The second body 22 of the elevated group 20 is raised or lowered. The first frame body 40 includes: a first frame body 41, a plurality of first frame bodies 42 and a second frame body 43; The frame body 41 is fixed on the second seat body 22 of the elevated group 20, and the first frame body 41 is simultaneously actuated as the second seat body 22 is raised or lowered. The body 41 is in the shape of a round seat; the plurality of first frames 42 are fixed to the first frame 41, and the plurality of first frames 42 are opposite to the axis of the raised group 20 and the first The frame body 41 is arranged in a ring shape, the first frame The first joint portion 421 is fixedly coupled to the first frame body 41 at one end of the body 42 , and the second frame 42 is disposed at the other end of the first frame 42 . The second joint portion 422 is away from the first joint portion 421. The first frame body 42 is convexly provided with a guide plate 423. Each guide plate 423 is opposite to each guide post 30. The guide plate 423 is The through-slot 4231 is disposed at the end of the guide plate 423. The through-hole 4231 is disposed on the guide post 30, so that the plurality of first frames 42 are sleeved. The number of the first frame bodies 42 is matched with the number of the guide columns 30 on the plurality of guide columns 30; the second frame body 43 is fixedly coupled with the plurality of first frame bodies 42, the second frame Each of the corner ends of the body seat 43 is provided with a third joint portion 431, and each of the third joint portions 431 is combined with the second joint portion 422 of each first frame body 42. The second frame body seat 43 A fourth joint portion 432 is disposed on each of the side surfaces, and a plurality of first joint holes 4321 are formed in the second end of each of the fourth joint portions 432. The first frame base 41 is driven by the elevated group 20 And when it rises or falls, The plurality of first frames 42 fixed to the first body frame 41 are driven by the first frame base 41 to be raised or lowered at the plurality of guide posts 30, and the plurality of first frames 42 The second frame body 43 fixed to the phase is also raised or lowered by the plurality of first frame bodies 42, that is, when the second body 22 of the elevated group 20 is in the first body 21 When raising or lowering, the first body group 40 is driven to rise or fall; the second body group 50 is supplemented by the third figure, and the second body group 50 is The first frame group 40 is combined, and when the first frame group 40 is driven to rise or fall by the elevated group 20, the first frame group 40 also drives the second frame group 50 to simultaneously rise. Or descending, each second body set 50 is coupled to each of the second frame seats 43 of the second frame set 40 At the fourth joint portion 432, the number of the second frame group 50 is matched with the number of the fourth joint portions 432, and each of the second frame groups 50 includes: two second frames 51 and two third frames. 52, the second frame body 53 and the plurality of screwing members 54; the second frame body 51 is coupled to the two ends of the fourth joint portion 432, the second frame body 51 is provided with a plurality of second joint holes 511, the second coupling hole 511 is opposite to the first coupling hole 4321, the number of the second coupling hole 511 is matched with the number of the first coupling hole 4321, and the second frame 51 is provided with a plurality of numbers at the center of the second frame 51. The third coupling hole 512 is formed in a circular groove shape; the third frame body 52 is combined with the second frame body 51, and the third frame body 52 is provided with an accommodating space 521. The accommodating space 521 is open, and a plurality of fourth coupling holes 522 are formed at one end of the accommodating space 521, and the fourth coupling hole 522 is opposite to the third coupling hole 512. The fourth coupling hole is opposite to the third coupling hole 512. The number of 522 is matched with the number of the third coupling holes 512. The fourth coupling hole 522 is formed in a circular groove shape, and the first space of the accommodating space 521 is provided with a plurality of first screwing portions 523. The third frame body 52 has a U-shaped cross section; the fourth frame body 53 has a rectangular bar shape, and the fourth frame body 53 is received in the accommodating space 521 of the third frame body 52. The second frame 53 is provided with a plurality of second screwing portions 531, the second screwing portions 531 are opposite to the first screwing portions 523, and the second screwing portions 531 are rounded. The screwing member 54 is sequentially threaded on the second screwing portion 531 and the accommodating space 521 and screwed with the first screwing portion 523. The screwing member 54 is externally threaded. The plurality of workpiece groups 60, as shown in the third and fourth figures, each of the workpiece sets 60 are accommodated in the pockets 11 of the body 10, each of the workpiece sets 60 and each second Frame group 50 phase For example, each workpiece group 60 is raised or lowered with each second frame group 50. The workpiece group 60 includes: a plurality of workpieces 61, a plurality of first spacer blocks 62, two first assembly members 63, and two a second assembly member 64; the plurality of workpieces 61 are assembled with the third frame body 52, and the plurality of workpieces 61 are linearly arranged with respect to the third frame body 52, and the two ends of the workpiece 61 are respectively disposed There is a first assembly portion 611, the first assembly portion 611 is formed in a circular groove shape, and the workpiece 61 can be each frame body on the bicycle; the plurality of first spacer blocks 62 are grouped with the plurality of workpieces 61. The first spacer block 62 is disposed at two ends of each of the two workpieces 61. The first spacer block 62 is provided with a second assembly portion 621, and the second assembly portion 621 is associated with the second spacer portion 62. The first grouping portion 611 is relatively straight, and the second grouping portion 621 is formed in a circular groove shape. The plurality of first spacer blocks 62 are received in the accommodating space 521, and the first spacer block 62 is rectangular. The first assembly unit 611 is disposed at the first assembly portion 611 of the plurality of workpieces 61 and the second assembly portion 621 of the plurality of first spacer blocks 62. The first group Set up 63 is externally threaded; the second assembly member 64 is disposed through the first assembly portion 611 of the plurality of workpieces 61 and the second assembly portion 621 of the plurality of first spacer blocks 62 and The two first assembly members 63 are assembled such that the plurality of workpieces 61 and the plurality of first spacer blocks 62 are assembled, and the second assembly member 64 is internally threaded; the second frame group 50 is The plurality of first spacers 62 of the workpiece set 60 are received in the accommodating space 521 of the third frame 52, and the plurality of screws are assembled. The member 54 is sequentially threaded to the second screwing portion 531 and the accommodating space 521 of the fourth frame body 53 and is screwed to the first screwing portion 521 of the third frame body 52. In the space The plurality of first spacer blocks 62 at the intermediate portion 521 are sandwiched between the third frame body 52 and the fourth frame body 53; the number of the guide posts 30 is five, and the number of the first frame bodies 42 There are five, the second frame seat 43 is in the shape of a pentagon, the number of the second frame group 50 is five groups, and the number of the workpiece groups 60 is five.

該第一架體組40、該複數第二架體組50及該複數工件組60相組設後即如第六圖所示,第六圖係本發明振動研磨機結構部份元件之立體組合圖。 The first frame set 40, the plurality of second frame sets 50 and the plurality of workpiece sets 60 are assembled as shown in the sixth figure, and the sixth figure is a three-dimensional combination of the components of the vibrating mill structure of the present invention. Figure.

請繼續參閱第七圖所示,第七圖係本發明振動研磨機結構之立體組合圖,該升高組20係固設於該本體10之該容置部12上,該第二座體22係可於該第一座體21內升高或下降,該複數導柱30係固設於該容置部12上,該複數導柱30係以該升高組20為軸心呈環狀排列,該第一架體組40係與該升高組20相固設,該第一架體組40係與該複數導柱30相組設,該複數第二架體組50係與該第一架體組40相結合,每一工件組60係容設於該本體10之該容槽11處,該工件組60係與該第二架體組50相組設,該容槽11內係容設有複數研磨石,該本體10之振動機構振動使該複數工件61與該研磨石充分接觸研磨,該複數工件61已被固定組設於該第二架體組50上,即該複數工件61係不會於研磨時相互碰撞而造成刮痕,使該工件61達到良好研磨效果。 Continuing to refer to the seventh embodiment, the seventh figure is a perspective view of the structure of the vibrating mill of the present invention. The elevated group 20 is fixed on the receiving portion 12 of the body 10, and the second block 22 is The plurality of guide posts 30 are fixed on the accommodating portion 12, and the plurality of guide posts 30 are arranged in a ring shape with the elevated group 20 as an axis. The first frame group 40 is fixed to the elevated group 20, and the first frame group 40 is assembled with the plurality of columns 30, and the plurality of second frame groups 50 are associated with the first The frame group 40 is combined, and each of the workpiece groups 60 is disposed at the pocket 11 of the body 10. The workpiece group 60 is assembled with the second frame group 50. A plurality of grinding stones are provided, and the vibration mechanism of the body 10 vibrates the plurality of workpieces 61 in sufficient contact with the grinding stone, and the plurality of workpieces 61 are fixedly assembled on the second frame group 50, that is, the plurality of workpieces 61 The workpieces do not collide with each other during grinding to cause scratches, so that the workpiece 61 achieves a good grinding effect.

請繼續參閱第八圖所示,第八圖係本發明振動研磨機結構另一操作狀態之立體圖,由圖示可清楚所示,當該升高組20之該第二座體22於該第一座體21內上升或下降時,係會帶動該第一架體組40、該複數第二 架體組50及該複數工件組60隨其於該容槽11之範圍內同時上升或下降,該升高組20升高時,該第一架體組40沿其隨該升高組20而升高,該複數導柱30係具導引功效,該第一架體組40並會同時帶動該複數第二架體組50及該複數工件組60升高,即如第八圖所示,該工件組60升高後即凸露於該容槽11外,即更易將每一工件組60自該第二架體組50上取下而更換每一工件組60。 Please refer to the eighth figure, which is a perspective view of another operating state of the vibrating mill structure of the present invention, as clearly shown by the illustration, when the second block 22 of the elevated group 20 is in the When the body 21 rises or falls, the first body group 40 is driven, and the second body is second. The frame set 50 and the plurality of workpiece sets 60 rise or fall simultaneously with the range of the pockets 11 , and the first set of racks 40 follow the raised set 20 along with the elevated set 20 When the plurality of guide columns 30 are guided, the first frame set 40 simultaneously drives the plurality of second frame sets 50 and the plurality of workpiece sets 60 to rise, as shown in the eighth figure. After the workpiece group 60 is raised, it is exposed outside the pocket 11, that is, each workpiece group 60 is more easily removed from the second frame group 50 to replace each workpiece group 60.

請繼續參閱第九圖所示,第九圖係本發明第二實施例第二架體組50與工件組60之立體分解圖,該第三架體52與該第四架體53係為一體狀,該容置空間521之二側係設有複數第一螺合部523,該第一螺合部523係呈內螺紋狀,該第一間隔塊62係容設於該容置空間521後,該複數螺合件54係壓抵於該第一間隔塊62側面處,使該工件組60係組設於該第二架體組50上。 Please refer to the ninth figure. The ninth figure is an exploded perspective view of the second body set 50 and the workpiece set 60 according to the second embodiment of the present invention. The third frame 52 and the fourth frame 53 are integrated. A plurality of first screwing portions 523 are formed on the two sides of the accommodating space 521. The first screwing portion 523 is internally threaded. The first spacer block 62 is received in the accommodating space 521. The plurality of screwing members 54 are pressed against the side of the first spacer block 62 to assemble the workpiece group 60 on the second frame group 50.

請參閱第十圖至第十二圖所示,第十圖係本發明第三實施例工件組60之立體分解圖,第十一圖係本發明第三實施例第二架體組50與工件組60之立體分解圖,第十二圖係本發明第三實施例第二架體組50與工件組60之立體組合圖,該第二架體組50之該第三架體52與該第四架體53係為一體狀,設有四第二間隔塊65,該第二間隔塊65相較於該第一間隔塊62其長度較長,該第二間隔塊65係容設於該容置空間521處,該第二間隔塊65係組設於最頂端處之該工件61之頂面二端處及最底端處之該工件61之底面二端處,該第二間隔塊65係設有第三組設部651,該第三組設部651係與該第一組設部611及該第二組設部621相對正,該第三組設部651係呈軸向貫穿之穿槽狀,該第一組設件63係依序穿設於該第三組設部651、該第一組設部611 及該第二組設部621處,該第二組設件64係依序穿設於該第三組設部651、該第一組設部611及該第二組設部621並與該第一組設件63相螺合,該第二間隔塊65係設有穿孔652,該穿孔652係與該第三組設部651相遠離,該穿孔652係可與該第一螺合部523相對正,該穿孔652係呈橫向貫穿之穿槽狀,該螺合件54係依序穿設於該第一螺合部523及該第二間隔塊65之該穿孔652並與另一第一螺合部523相螺合,使該工件組60與該第二架體組50相組設而不脫開。 Referring to the tenth to twelfth drawings, the tenth figure is an exploded perspective view of the workpiece set 60 of the third embodiment of the present invention, and the eleventh figure is the second frame set 50 and the workpiece of the third embodiment of the present invention. FIG. 12 is a perspective exploded view of a second frame group 50 and a workpiece set 60 according to a third embodiment of the present invention, and the third frame 52 of the second frame set 50 and the first frame The four spacers 53 are integrally formed, and are provided with four second spacers 65. The second spacers 65 are longer than the first spacers 62, and the second spacers 65 are accommodated in the capacity. The second spacer block 65 is disposed at the top end of the workpiece 61 at the top end and at the bottom end of the bottom surface of the workpiece 61. The second spacer block 65 is disposed at the top end. A third assembly portion 651 is provided. The third assembly portion 651 is opposite to the first assembly portion 611 and the second assembly portion 621. The third assembly portion 651 is axially penetrated. The first assembly 63 is sequentially disposed in the third assembly portion 651 and the first assembly portion 611. And the second assembly portion 621 is sequentially disposed in the third assembly portion 651, the first assembly portion 611, and the second assembly portion 621, and the first assembly portion 621 A set of members 63 are screwed together, and the second spacer block 65 is provided with a through hole 652 which is away from the third assembly portion 651. The through hole 652 is opposite to the first screw portion 523. The through hole 652 is inserted into the groove of the first screwing portion 523 and the second spacer block 65 and is connected to the other first screw. The joint portion 523 is screwed so that the workpiece group 60 and the second frame group 50 are assembled without being disengaged.

該第二架體座42之該第一結合孔4321及該第二結合孔511處係設有螺絲相組設,同理該第三結合孔512與該第四結合孔522係設有螺絲相組設。 The first joint hole 4321 and the second joint hole 511 of the second frame base 42 are provided with a screw phase assembly. Similarly, the third joint hole 512 and the fourth joint hole 522 are provided with a screw phase. Set up.

本發明振動研磨機結構之優點係在於: The advantages of the vibrating mill structure of the present invention are:

1、該升高組20係具有升高功效,該第二座體22係於該第一座體21內升高或下降,該升高組20之該第二座體22於該第一座體21內上升或下降時,係會帶動該第一架體組40、該複數第二架體組50及該複數工件組60隨其於該容槽11之範圍內同時上升或下降,該升高組20升高時,該第一架體組40沿其隨該升高組20而升高,該第一架體組40並會同時帶動該複數第二架體組50及複數工件組60升高,該複數工件組60升高後即凸露於該容槽11外,使用者即更易將每一工件組60自該第二架體組50上取下而更換每一工件組60。 1. The elevated group 20 has a lifting effect, the second seat 22 is raised or lowered in the first seat body 21, and the second seat 22 of the elevated group 20 is in the first seat When the body 21 is raised or lowered, the first frame group 40, the plurality of second frame groups 50, and the plurality of workpiece groups 60 are simultaneously raised or lowered within the range of the container 11 When the high group 20 is raised, the first body group 40 is raised along with the elevated group 20, and the first frame group 40 simultaneously drives the plurality of second frame groups 50 and the plurality of workpiece groups 60. When the plurality of workpiece groups 60 are raised, they are exposed outside the housing 11, and the user can easily remove each workpiece group 60 from the second frame group 50 to replace each workpiece group 60.

2、該容槽11內係容設有複數研磨石,該本體10之振動機構振動使該複數工件61與該研磨石接觸研磨,該複數工件61已被固定組設於該第二架體組50上,該複數工件61係不會於研磨時相互碰撞而造成刮痕而達到良好研 磨效果。 2. The cavity 11 is provided with a plurality of grinding stones. The vibration mechanism of the body 10 vibrates the plurality of workpieces 61 in contact with the grinding stone. The plurality of workpieces 61 are fixedly disposed in the second frame group. On the 50th, the plurality of workpieces 61 do not collide with each other during polishing to cause scratches and achieve good research. Grinding effect.

3、該工件組60之該複數第一間隔塊62係容設於該第三架體52之該容置空間521處,該複數螺合件54係依序穿設於該第四架體53之該第二螺合部531及該容置空間521並與該第三架體52之該第一螺合部521相螺合,容設於該容置空間521處之該工件組60之該複數第一間隔塊62係夾合於該第三架體52及該第三架體53之間,使該工件組60係無法與該第二架體組50相互脫開。 The plurality of first spacers 62 of the workpiece set 60 are received in the accommodating space 521 of the third frame 52. The plurality of screwing members 54 are sequentially disposed on the fourth frame 53. The second screwing portion 531 and the accommodating space 521 are screwed into the first screwing portion 521 of the third frame body 52, and the workpiece group 60 is accommodated in the accommodating space 521. The plurality of first spacer blocks 62 are sandwiched between the third frame body 52 and the third frame body 53 such that the workpiece group 60 cannot be disengaged from the second frame group 50.

因此本發明之振動研磨機結構具有產業利用性、新穎性及進步性,誠能符合發明專利之申請要件,爰依法提出申請。 Therefore, the vibration grinding machine structure of the invention has industrial utilization, novelty and progressiveness, and can meet the application requirements of the invention patent, and submits an application according to law.

10‧‧‧本體 10‧‧‧ Ontology

11‧‧‧容槽 11‧‧‧ 容容

12‧‧‧容置部 12‧‧‧ 容部

20‧‧‧升高組 20‧‧‧height group

21‧‧‧第一座體 21‧‧‧First body

22‧‧‧第二座體 22‧‧‧Second body

30‧‧‧導柱 30‧‧‧ Guide column

40‧‧‧第一架體組 40‧‧‧First body group

41‧‧‧第一架體座 41‧‧‧First body seat

42‧‧‧第一架體 42‧‧‧First body

43‧‧‧第二架體座 43‧‧‧Second body

50‧‧‧第二架體組 50‧‧‧Second body group

60‧‧‧工件組 60‧‧‧Workpieces

Claims (13)

一種振動研磨機結構,其係包括:一本體,該本體係設有一容槽,該容槽中央處係凸設有一容置部;一升高組,該升高組係固設於該容置部處,該升高組係包括第一座體及第二座體,該第一座體係固設於該本體之該容置部處,該第二座體係可相對該第一座體升高或下降;一第一架體組,該第一架體組係與該升高組相組設,該第一架體組係隨該升高組之該第二座體上升或下降;複數第二架體組,該複數第二架體組係與該第一架體組相結合,該第一架體組受該升高組帶動而上升或下降時,該第一架體組亦會同時帶動該第二架體組同時上升或下降;複數工件組,每一工件組係容設於該本體之該容槽處,每一工件組係與每一第二架體組相組設,每一工件組係隨每一第二架體組上升或下降。 A vibration grinder structure includes: a body, the system is provided with a receiving groove, and a receiving portion is convexly disposed at a center of the receiving groove; and a rising group is fixed to the receiving portion In the department, the elevated group includes a first seat body and a second seat body, the first seat system is fixed at the receiving portion of the body, and the second seat system is raised relative to the first seat body Or descending; a first body group, the first body group being grouped with the elevated group, the first body group rising or falling with the second body of the elevated group; In the two body group, the plurality of second body groups are combined with the first body group, and when the first body group is driven or raised by the elevated group, the first body group is simultaneously Driving the second frame group to rise or fall simultaneously; a plurality of workpiece groups, each workpiece group is accommodated in the cavity of the body, and each workpiece group is assembled with each second frame group, each A workpiece set rises or falls with each second frame set. 如請求項1所述之振動研磨機結構,其中,該容槽之槽底係呈弧面狀,該容置部係呈圓柱體狀或該容置部係呈圓座體狀。 The vibration grinder structure according to claim 1, wherein the groove bottom of the cuvette has a curved shape, and the receiving portion has a cylindrical shape or the receiving portion has a rounded shape. 如請求項1所述之振動研磨機結構,其中,該第二座體係容設於該第一座體內,該第二座體係可於該第一座體內升高或下降,該第一座體及該第二座體係呈圓筒狀,該升高組係可為一油壓缸結構。 The vibration grinder structure of claim 1, wherein the second seat system is accommodated in the first seat body, and the second seat system is raised or lowered in the first seat body, the first seat body And the second system is cylindrical, and the elevated group can be a hydraulic cylinder structure. 如請求項1所述之振動研磨機結構,其中,該第一架體組係包括:第一架體座、複數第一架體及第二架體座;該第一架體座係固設於該升高組之該第二座體上,該第一架體座係會隨該第二座體升高或下降而同時作動,該第一架體座係呈圓座體狀;該複數第一架體係與該第一架體座相固 設,該複數第一架體相對該升高組之軸心及該第一架體座係呈環狀排列,該第一架體一端係設有第一結合部,該第一結合部係與該第一架體座相結合固設,該第一架體另端係設有第二結合部,該第二結合部係與該第一結合部相遠離;該第二架體座係與該複數第一架體相固設結合,該第二架體座係設有第三結合部,每一第三結合部係與每一第一架體之該第二結合部相結合,該第二架體座係設有第四結合部;該第一架體座受該升高組帶動而升高或下降時,與該第一架體座相固設之該複數第一架體係會受該第一架體座帶動而於該複數導柱處上升高或下降,而與該複數第一架體相固設之該第二架體座亦會受該複數第一架體帶動而升高或下降,即當該升高組之該第二座體於該第一座體內升高或下降時,係會帶動該第一架體組隨其升高或下降。 The vibrating mill structure of claim 1, wherein the first frame body comprises: a first frame body, a plurality of first frame bodies, and a second frame body; the first frame body is fixed And on the second body of the elevated group, the first frame system is simultaneously actuated as the second body is raised or lowered, and the first frame is in the shape of a round seat; The first system is solid with the first body seat The first frame body is arranged in an annular shape with respect to the axis of the elevated group and the first frame body. The first frame body is provided with a first joint portion at one end, and the first joint portion is coupled to The first frame body is combined and fixed, and the second frame is provided with a second joint portion at the other end, the second joint portion is away from the first joint portion; the second frame body is coupled to the second frame portion a plurality of first body phases are fixedly coupled, the second frame body is provided with a third joint portion, and each of the third joint portions is combined with the second joint portion of each first frame body, the second The frame base is provided with a fourth joint portion; when the first frame body is raised or lowered by the elevated group, the plurality of first frame systems fixed to the first frame seat are subject to the The first body frame is driven to rise or fall at the plurality of guide posts, and the second frame body fixed to the plurality of first frame bodies is also driven by the plurality of first frame bodies to be raised or The lowering, that is, when the second seat of the elevated group rises or falls in the first seat, the first frame set is caused to rise or fall with it. 如請求項4所述之振動研磨機結構,其中,設有複數導柱,該導柱係呈圓柱體狀,該導柱係固設於該容置部上,該複數導柱係以該升高組為軸心呈環狀排列而係繞設該升高組;該第一架體係凸設有導板,每一導板係與每一導柱相對正,該導板係設於近該第二結合部處,該導板端部處係設有穿槽,該穿槽係穿設於該導柱上,使該複數第一架體係套設於該複數導柱上,該第一架體之數量係配合該導柱之數量。 The vibrating mill structure of claim 4, wherein a plurality of guide columns are provided, the guide columns are cylindrical, and the guide columns are fixed on the receiving portion, and the plurality of guide columns are connected by the rise The high group is arranged in a ring shape and is surrounded by the elevated group; the first frame is convexly provided with a guide plate, and each guide plate is opposite to each guide post, and the guide plate is disposed near The second joint portion is provided with a through groove at the end of the guide plate, and the through groove is disposed on the guide post, so that the plurality of first frame systems are sleeved on the plurality of guide columns, the first frame The number of bodies is matched to the number of the guide columns. 如請求項4所述之振動研磨機結構,其中,該第二架體座之每一角端處係設有第三結合部,該第二架體座每一邊面係設有第四結合部。 The vibration grinder structure of claim 4, wherein each of the corner ends of the second frame base is provided with a third joint portion, and each of the second frame seats is provided with a fourth joint portion. 如請求項1所述之振動研磨機結構,其中,每一第二架體組係包括:二第二架體、二第三架體、二第四架體及複數螺合件;該第二架體係結合於該第一架體組處;該第三架體係與該第二架體相結合,該第三架體係設 有容置空間,該容置空間係呈開放狀,該容置空間一側係設有複數第一螺合部;該第四架體係呈長方桿體狀,該第四架體係容設於該第三架體之該容置空間處,該第四架體上係設有複數第二螺合部,該第二螺合部係與該第一螺合部相對正;該螺合件係依序穿設於該第二螺合部及該容置空間處並與該第一螺合部相螺合。 The vibration grinder structure of claim 1, wherein each second frame body comprises: two second frame bodies, two second frame bodies, two fourth frame bodies, and a plurality of screwing members; a frame system is coupled to the first body group; the third frame system is combined with the second frame body, and the third frame system is The accommodating space is open, and the first space of the accommodating space is provided with a plurality of first screwing portions; the fourth system is in the shape of a rectangular bar, and the fourth system is accommodated in In the accommodating space of the third frame, the fourth frame is provided with a plurality of second screwing portions, and the second screwing portion is opposite to the first screwing portion; the screwing device is The second screwing portion and the accommodating space are sequentially threaded and screwed with the first screwing portion. 如請求項7所述之振動研磨機結構,其中,該第二架體中央處係設有複數第三結合孔,該第三結合孔係呈圓穿槽狀;該容置空間一端部處係設有複數第四結合孔,該第四結合孔係與該第三結合孔相對正,該第四結合孔之數量係配合該第三結合孔之數量,該第四結合孔係呈圓穿槽狀。 The vibrating mill structure of claim 7, wherein a plurality of third coupling holes are formed in the center of the second frame, and the third coupling holes are in a circular groove shape; a plurality of fourth bonding holes are formed, the fourth bonding holes are opposite to the third bonding holes, and the number of the fourth bonding holes is matched with the number of the third bonding holes, and the fourth bonding holes are circularly through shape. 如請求項1所述之振動研磨機結構,其中,該工件組係包括:複數工件;該複數工件係與該第二架體組相組設,該複數工件相對該第二架體組係呈直線排列。 The vibrating mill structure of claim 1, wherein the workpiece group comprises: a plurality of workpieces; the plurality of workpieces are grouped with the second frame group, and the plurality of workpieces are opposite to the second frame group Arranged in a straight line. 如請求項7所述之振動研磨機結構,其中,該工件組係包括:複數工件、複數第一間隔塊、二第一組設件及二第二組設件;該複數工件係與該第三架體相組設,該複數工件相對該第三架體係呈直線排列,該工件之二端部處係各設有一第一組設部,該第一組設部係呈圓穿槽狀,該工件係可為自行車上之各架體;該複數第一間隔塊係與該複數工件相組設,該第一間隔塊係組設於每二個工件間之二端部處,該第一間隔塊係設有第二組設部,該第二組設部係與該第一組設部相對正,該第二組設部係呈圓穿槽狀,該複數第一間隔塊係容設於該容置空間處,該第一間隔塊係呈長方形塊體狀;該二第一組設件係穿設於該複數工件之該第一組設部及該複數第一間隔塊之該第二組設部處,該第一組設件係呈外螺紋狀;該二第二組設 件係穿設於該複數工件之該第一組設部及該複數第一間隔塊之該第二組設部處並與該二第一組設件相組設,使該複數工件及該複數第一間隔塊相組設,該第二組設件係呈內螺紋狀;該工件組之該複數第一間隔塊係容設於該第三架體之該容置空間處,該複數螺合件係依序穿設於該第四架體之該第二螺合部及該容置空間並與該第三架體之該第一螺合部相螺合,容設於該容置空間處之該複數第一間隔塊係夾合於該第三架體及該第四架體之間。 The vibration grinder structure of claim 7, wherein the workpiece set comprises: a plurality of workpieces, a plurality of first spacer blocks, two first assembly members, and two second assembly members; the plurality of workpieces and the first The three body segments are arranged in a straight line with respect to the third frame system, and each of the two ends of the workpiece is provided with a first grouping portion, and the first grouping portion is rounded and grooved. The workpiece can be each frame on the bicycle; the plurality of first spacer blocks are assembled with the plurality of workpieces, and the first spacer block is disposed at two ends of each of the two workpieces, the first The spacer block is provided with a second assembly portion, the second assembly portion is opposite to the first assembly portion, and the second assembly portion is formed in a circular groove shape, and the plurality of first spacer blocks are accommodated In the accommodating space, the first spacer block has a rectangular block shape; the two first assembly members are disposed through the first assembly portion of the plurality of workpieces and the plurality of first spacer blocks In the second set of parts, the first set of parts is externally threaded; the second set of the second set a member is disposed at the first assembly portion of the plurality of workpieces and the second assembly portion of the plurality of first spacer blocks and is assembled with the two first assembly members to make the plurality of workpieces and the plurality The first spacer block is assembled, and the second set of components is internally threaded; the plurality of first spacer blocks of the workpiece set are accommodated in the accommodating space of the third frame, the plurality of screws And the second screwing portion of the fourth frame and the accommodating space are screwed into the first screwing portion of the third frame, and are accommodated in the accommodating space. The plurality of first spacer blocks are sandwiched between the third frame and the fourth frame. 如請求項5所述之振動研磨機結構,其中,該導柱之數目係為五個,該第一架體之數目係為五個,該第二架體座係呈五角形座體狀,該第二架體組之數量係為五組,該工件組之數目係為五個。 The vibration grinder structure of claim 5, wherein the number of the guide posts is five, the number of the first frame is five, and the second frame is in the shape of a pentagon. The number of the second body groups is five, and the number of the workpiece groups is five. 如請求項10所述之振動研磨機結構,其中,該第三架體與該第四架體係為一體狀,該容置空間之二側係設有複數第一螺合部,該第一螺合部係呈內螺紋狀,該第一間隔塊係容設於該容置空間後,該複數螺合件係壓抵於該第一間隔塊側面處,使該工件組係組設於該第二架體組上。 The vibration grinder structure of claim 10, wherein the third frame body and the fourth frame system are integrally formed, and the first side of the accommodating space is provided with a plurality of first screwing portions, the first snail The joint portion is internally threaded, and after the first spacer block is received in the accommodating space, the plurality of screwing members are pressed against the side of the first spacer block, so that the workpiece group is assembled in the first portion On the two body groups. 如請求項10所述之振動研磨機結構,其中,設有四第二間隔塊,該第二間隔塊相較於該第一間隔塊其長度較長,該第二間隔塊係容設於該容置空間處,該第二間隔塊係組設於最頂端處之該工件之頂面二端處及最底端處之該工件之底面二端處,該第二間隔塊係設有第三組設部,該第三組設部係與該第一組設部及該第二組設部相對正,該第三組設部係呈軸向貫穿之穿槽狀,該第一組設件係依序穿設於該第三組設部、該第一組設部及該第二組設部處,該第二組設件係依序穿設於該第三組設部、該第一組設部及該第二組設部並與該第一組設件相螺合,該第二間隔塊係設有穿 孔,該穿孔係與該第三組設部相遠離,該穿孔係可與該第一螺合部相對正,該穿孔係呈橫向貫穿之穿槽狀,該螺合件係依序穿設於該第一螺合部及該第二間隔塊之該穿孔並與另一第一螺合部相螺合,使該工件組與該第二架體組相組設而不脫開。 The vibration grinder structure of claim 10, wherein four second spacer blocks are provided, the second spacer block having a longer length than the first spacer block, and the second spacer block is received in the second spacer block In the accommodating space, the second spacer block is disposed at the top end of the workpiece at the top end and at the bottom end of the workpiece at the bottom end of the workpiece, the second spacer block is provided with a third An assembly unit, the third assembly portion is opposite to the first assembly portion and the second assembly portion, and the third assembly portion is axially penetrating, the first assembly member The second assembly unit is sequentially disposed in the third assembly portion, the first assembly portion, and the second assembly portion, and the second assembly member is sequentially disposed in the third assembly portion, the first The assembly portion and the second assembly portion are screwed with the first assembly member, and the second spacer block is provided with a hole, the perforation is away from the third assembly portion, the perforation can be opposite to the first screw portion, the perforation is transversely penetrating, and the screw is sequentially disposed on the hole The perforations of the first screwing portion and the second spacer block are screwed together with the other first screwing portion, so that the workpiece group and the second frame body group are assembled without being disengaged.
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