KR200463834Y1 - Glass bottle loading instrument of chain spindle conveyor for paintng the surface of glass bottle - Google Patents

Glass bottle loading instrument of chain spindle conveyor for paintng the surface of glass bottle Download PDF

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Publication number
KR200463834Y1
KR200463834Y1 KR2020110005670U KR20110005670U KR200463834Y1 KR 200463834 Y1 KR200463834 Y1 KR 200463834Y1 KR 2020110005670 U KR2020110005670 U KR 2020110005670U KR 20110005670 U KR20110005670 U KR 20110005670U KR 200463834 Y1 KR200463834 Y1 KR 200463834Y1
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South Korea
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glass bottle
spindle
jig
bottleneck
protrusion
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KR2020110005670U
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Korean (ko)
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이무근
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삼안산업 주식회사
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B13/00Machines or plants for applying liquids or other fluent materials to surfaces of objects or other work by spraying, not covered by groups B05B1/00 - B05B11/00
    • B05B13/02Means for supporting work; Arrangement or mounting of spray heads; Adaptation or arrangement of means for feeding work
    • B05B13/0221Means for supporting work; Arrangement or mounting of spray heads; Adaptation or arrangement of means for feeding work characterised by the means for moving or conveying the objects or other work, e.g. conveyor belts
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G17/00Conveyors having an endless traction element, e.g. a chain, transmitting movement to a continuous or substantially-continuous load-carrying surface or to a series of individual load-carriers; Endless-chain conveyors in which the chains form the load-carrying surface
    • B65G17/30Details; Auxiliary devices
    • B65G17/32Individual load-carriers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G49/00Conveying systems characterised by their application for specified purposes not otherwise provided for
    • B65G49/05Conveying systems characterised by their application for specified purposes not otherwise provided for for fragile or damageable materials or articles
    • CCHEMISTRY; METALLURGY
    • C03GLASS; MINERAL OR SLAG WOOL
    • C03CCHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
    • C03C17/00Surface treatment of glass, not in the form of fibres or filaments, by coating
    • C03C17/001General methods for coating; Devices therefor
    • C03C17/003General methods for coating; Devices therefor for hollow ware, e.g. containers
    • C03C17/005Coating the outside
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G2201/00Indexing codes relating to handling devices, e.g. conveyors, characterised by the type of product or load being conveyed or handled
    • B65G2201/02Articles
    • B65G2201/0235Containers
    • B65G2201/0244Bottles
    • B65G2201/0247Suspended bottles

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Geochemistry & Mineralogy (AREA)
  • Materials Engineering (AREA)
  • Organic Chemistry (AREA)
  • Mechanical Engineering (AREA)
  • Re-Forming, After-Treatment, Cutting And Transporting Of Glass Products (AREA)
  • Surface Treatment Of Glass (AREA)

Abstract

본 고안은 유리병 표면 도장용 체인 스핀들 컨베이어의 유리병 적재기구에 관한 것으로, 상단부가 다각형 돌기로 형성된 스핀들과; 하부에는 스핀들의 다각형 돌기가 끼워지는 다각형 홈이 형성되고, 상부에는 유리병의 병목이 삽입설치되는 적재 홈이 형성되되, 적재 홈의 중앙에 병목 내부로 끼워져 들어가는 돌출부가 형성된 지그를 포함한다. The present invention relates to a glass bottle loading mechanism of the chain spindle conveyor for glass bottle surface coating, the upper end of the spindle formed of polygonal projection; A polygonal groove is formed in the lower portion of which a polygonal projection of the spindle is inserted, and a loading groove in which a bottleneck of the glass bottle is inserted is formed in the upper portion, and includes a jig in which a protrusion is inserted into the bottleneck in the center of the loading groove.

Description

유리병 표면 도장용 체인 스핀들 컨베이어의 유리병 적재기구{Glass bottle loading instrument of chain spindle conveyor for paintng the surface of glass bottle}Glass bottle loading instrument of chain spindle conveyor for paintng the surface of glass bottle}

본 고안은 체인 스핀들 컨베이어에 관한 것으로, 특히 유리병을 체인 스핀들 컨베이어의 스핀들의 상부에 적재시키는 유리병 표면 도장용 체인 스핀들 컨베이어의 유리병 적재기구에 관한 것이다. The present invention relates to a chain spindle conveyor, and more particularly, to a glass bottle loading mechanism of a chain spindle conveyor for coating a glass bottle on a top of a spindle of a chain spindle conveyor.

일반적으로 화장품 병 등과 같은 유리병(일명 초자(硝子) 용기) 표면의 도장방법은 유리병을 검사하여 합격 여부 판정을 하는 유리병 입고단계, 유리병의 표면의 이물질을 불산으로 약품처리하여 제거하는 부식단계, 유리병을 이송시키는 다이 적재 이송단계, 유리병이 뒤집혀져 병목이 스핀들의 상단에 지지되어 스핀들 컨베이어에 실리는 로딩 단계, 정전기에 의한 이물질의 흡착을 방지하는 에어 샤워단계, 도료가 유리병 표면에 잘 부착되도록 하는 프라이머 코팅단계, 프라이머 코팅을 건조하는 건조단계, 도료가 용이하게 도장되도록 가열 또는 예열하는 가열 또는 예열단계, 도료를 피복하는 도장단계, 피복된 도료를 평활화시키는 세팅단계, 가열건조시켜 도막을 형성시키는 도막 형성단계, 유리병을 상온에서 냉각시키는 냉각단계, 코팅 피막과 인쇄 잉크의 부착성 향상을 위해 화염 표면 처리하는 화염 처리단계, 피막의 형성 정도를 검사하는 검사단계, 및 도막 형성된 유리병을 스핀들 컨베이어에서 내리는 언 로딩 단계로 이루어진다. In general, the coating method of the surface of a glass bottle (also known as a glass container) such as a cosmetic bottle is a glass bottle wearing step of inspecting the glass bottle to determine whether it passes, and removing foreign substances on the surface of the glass bottle by chemical treatment with hydrofluoric acid. Corrosion stage, die loading transfer stage to transfer the glass bottle, bottle bottle is supported on the top of the spindle because the glass bottle is upside down, loading step on the spindle conveyor, air shower step to prevent the adsorption of foreign substances by static electricity, paint is glass Primer coating step to adhere well to the bottle surface, drying step of drying the primer coating, heating or preheating step of heating or preheating the coating for easy coating, coating step of coating the paint, setting step of smoothing the coated paint, The film forming step of drying by heating to form a coating film, the cooling step of cooling the glass bottle at room temperature, the coating film and In order to improve adhesion of the printing ink, a flame treatment step of treating the surface of the flame, an inspection step of checking the degree of formation of the film, and an unloading step of unloading the formed glass bottle from the spindle conveyor are performed.

상기 로딩 단계에서 유리병이 뒤집혀져 병목이 스핀들의 상단에 적재되어 유리병을 적재시키는 유리병 적재기구는 본 출원인이 출원한 특허문헌 1(스핀들 컨베이어용 부쉬)의 도 1에 상세하게 도시되어 있다. 도시된 바처럼, 다수개의 스핀들의 상단부에는 암나사 구멍이 형성되어 있고, 암나사 구멍에 부쉬 볼트가 체결되는데, 부쉬 볼트는 병목 부분이 삽입되는 지그의 바닥 중앙의 관통공을 통하여 암나사 구멍에 각각 체결된다. In the loading step, the glass bottle is turned upside down so that the bottleneck is loaded on the top of the spindle, and the glass bottle loading mechanism for loading the glass bottle is shown in detail in FIG. 1 of Patent Document 1 (the spindle conveyor bushing) filed by the present applicant. . As shown, female threaded holes are formed in the upper ends of the plurality of spindles, and the bushing bolts are fastened to the female threaded holes, which are respectively fastened to the female threaded holes through the through holes in the bottom center of the jig into which the bottleneck is inserted. .

이와 같이 유리병 적재기구는 상단부에 암나사 구멍을 가진 스핀들, 지그, 및 금속관체 및/또는 탄성수지제가 둘레에 설치되는 부쉬 볼트의 별개의 부품으로 구성된다. 이러한 유리병 적재기구의 유리병이 적재되는 지그의 설치과정을 살펴보면, 지그에 부쉬 볼트를 조립하여 이 부쉬 볼트를 다수의 작업자가 통상 자동 드라이버를 이용하여 스핀들의 상단부의 암나사 구멍에 체결하여 병목이 설치되는 지그를 스핀들의 상단에 설치한다. As such, the vial loading mechanism is composed of a spindle, a jig having a female threaded hole at the upper end thereof, and a separate part of the bush bolt in which a metal tube and / or an elastic resin material are installed around. Looking at the installation process of the jig in which the vial of the glass bottle loading mechanism is loaded, the bush bolt is assembled to the jig, and a number of workers fasten the bush bolt to the female threaded hole at the upper end of the spindle using an automatic screwdriver. Install the jig to be installed on the top of the spindle.

그런데 별개의 부품인 지그와 부쉬 볼트를 조립하고 스핀들에 부쉬 볼트를 체결하여 유리병이 설치되는 지그를 다수개의 스핀들에 설치하는데 여러 명의 작업자가 필요할 뿐만 아니라 설치시간이 1시간 30분 ~ 2시간 정도 소요되고, 또한, 유리병의 병목 크기가 다양하므로 병목에 맞는 지그를 교체하는데도 상기의 설치시간과 같은 교체시간이 걸림에 따라 작업공정이 지연되고, 이에 따라 유리병의 생산성이 저하되는 문제점이 있고, 또한, 지그 교체를 위해서 부쉬 볼트를 풀었다 끼웠다 하게 되므로 스핀들 상단부의 암나사 구멍과 부쉬 볼트의 마모로 인해 6개월 또는 1년에 1번씩 스핀들 및 부쉬 볼트를 교체해야 하는 문제점이 있다. However, assembling separate parts such as jig and bush bolt and fastening bolts to the spindle, it is necessary not only several workers to install the jig in which glass bottles are installed on multiple spindles, but also the installation time is about 1 hour 30 minutes to 2 hours. In addition, since the bottleneck size of the glass bottle varies, the work process is delayed due to the replacement time such as the installation time, even when replacing the jig suitable for the bottleneck, and thus there is a problem that the productivity of the glass bottle is lowered. In addition, since the bush bolt is loosened and inserted to replace the jig, there is a problem in that the spindle and the bush bolt need to be replaced every six months or a year due to the wear of the female thread hole and the bush bolt at the upper end of the spindle.

또한, 부쉬 볼트에 지그의 바닥 관통공이 끼워지는 방식으로 지그가 부쉬 볼트에 체결됨에 따라 스핀들 컨베이어가 움직일 때 지그가 부쉬 볼트에서 유동되어 유리병이 유동됨으로써 유리병의 표면 도장이 균일한 두께로 매끄럽게 이루어지지 않아 유리병의 품질불량이 발생하게 된다. In addition, as the jig is fastened to the bush bolt by inserting the bottom through hole of the jig into the bush bolt, when the spindle conveyor moves, the jig flows from the bush bolt and the glass bottle flows to smoothly coat the surface of the glass bottle with a uniform thickness. It is not made will cause a poor quality of the glass bottle.

대한민국등록실용신안 20-0218836Utility Model Registration of Korea 20-0218836

본 고안은 상술한 종래의 문제점을 해결하기 위한 것으로, 그 목적은 부쉬 볼트를 사용하지 않고 지그를 스핀들의 상단부에 신속하게 결합할 수 있으면서 결합된 지그가 유동되지 않도록 한 유리병 표면 도장용 체인 스핀들 컨베이어의 유리병 적재기구를 제공함에 있다. The present invention is to solve the above-mentioned conventional problems, the purpose of the chain spindle for painting the glass bottle surface can be coupled to the jig quickly to the top of the spindle without the use of bush bolts, so that the combined jig does not flow It is to provide a glass bottle loading mechanism of the conveyor.

상술한 본 고안의 목적은 상단부가 다각형 돌기로 형성된 스핀들과; 하부에는 스핀들의 다각형 돌기가 끼워지는 다각형 홈이 형성되고, 상부에는 유리병의 병목이 삽입설치되는 적재 홈이 형성되되, 적재 홈의 중앙에 병목 내부로 끼워져 들어가는 돌출부가 형성된 지그를 포함하는 유리병 표면 도장용 체인 스핀들 컨베이어의 유리병 적재기구에 의해 달성된다. An object of the present invention described above and the spindle is formed of a polygonal projection of the upper end; A polygonal groove is formed in the lower portion, and a polygonal groove into which the polygonal projection of the spindle is fitted is formed, and a loading groove in which the bottleneck of the glass bottle is inserted is formed in the upper portion. It is achieved by the glass bottle loading mechanism of the chain spindle conveyor for surface coating.

본 고안의 유리병 표면 도장용 체인 스핀들 컨베이어의 유리병 적재기구에 있어서, 돌출부의 상단 둘레는 내측으로 경사지는 경사면이 형성된 것을 특징으로 한다. In the glass bottle loading mechanism of the chain spindle conveyor for glass bottle surface coating of the present invention, the upper circumference of the protrusion is characterized in that the inclined surface is inclined inward.

상술한 본 고안의 기술구성에 따라 지그의 설치 및 교체를 위한 작업자 및 시간을 단축할 수 있고, 이에 따라 작업공정이 신속히 이루어져 유리병의 생산성을 향상시킬 수 있고, 지그만 사용되므로 비용이 절감되며, 지그가 스핀들에 안정되게 안착됨에 따라 지그가 스핀들에서서 유동되지 않아 유리병의 표면 도장이 균일하게 이루어져 유리병의 품질향상이 이루어진다. According to the technical configuration of the present invention described above, the operator and time for the installation and replacement of the jig can be shortened, and accordingly, the work process can be made quickly, thereby improving the productivity of the glass bottle, and only the jig is used, thereby reducing the cost. As the jig is stably seated on the spindle, the jig does not flow on the spindle, so that the surface coating of the glass bottle is uniform, thereby improving the quality of the glass bottle.

도 1은 본 고안의 스핀들과 지그를 도시한 사시도.
도 2는 본 고안의 스핀들과 지그의 결합상태를 도시한 측면도.
도 3은 본 고안의 지그에 유리병이 적재된 상태를 도시한 정면도.
1 is a perspective view showing a spindle and a jig of the present invention.
Figure 2 is a side view showing a coupled state of the spindle and jig of the present invention.
Figure 3 is a front view showing a state in which the glass bottle is loaded on the jig of the present invention.

이하, 본 고안의 기술구성을 첨부된 도면에 의거하여 상세하게 기술하기로 한다. Hereinafter, the technical configuration of the present invention will be described in detail with reference to the accompanying drawings.

본 고안은 체인 스핀들 컨베이어의 스핀들의 상부에 화장품 용기 등과 같은 유리병을 거꾸로 세워서 적재하여 유리병의 몸체 표면에 내마모성 및 내압성을 위해서 스프레이로 도장을 하기 위한 체인 스핀들 컨베이어의 유리병 적재기구에 관한 것이다. The present invention relates to a glass bottle loading mechanism of a chain spindle conveyor for spraying the glass bottle, such as a cosmetics container, on the upper part of the spindle of the chain spindle conveyor upside down to spray the coating on the body surface of the glass bottle for abrasion resistance and pressure resistance. .

본 고안의 유리병 적재기구는 도 1에 도시한 바와 같이, 스핀들(10)과 지그(20)로 구성되는데, 스핀들(10)은 상단부에 다각형 돌기(11)가 형성되고, 지그(20)는 하부에 스핀들(10)의 다각형 돌기(11)가 끼워지는 다각형 홈(21)이 형성되고, 상부에 유리병의 병목이 삽입설치되는 적재 홈(22)이 형성되되, 적재 홈(22)의 중앙에 병목 내부로 끼워져 들어가는 돌출부(23)가 형성되는데, 돌출부(23)의 높이는 지그(20)의 테두리의 높이와 동일하다. Glass bottle loading mechanism of the present invention, as shown in Figure 1, consisting of a spindle 10 and a jig 20, the spindle 10 is a polygonal projection 11 is formed on the upper end, jig 20 is A polygonal groove 21 into which the polygonal protrusion 11 of the spindle 10 is fitted is formed at a lower portion thereof, and a loading groove 22 is formed at the top thereof to insert a bottleneck of a glass bottle, and the center of the loading groove 22 is formed. The protrusion 23 is inserted into the bottleneck is formed, the height of the protrusion 23 is the same as the height of the edge of the jig 20.

본 고안의 도면에는 돌기(11)와 홈(21)이 육각형으로 형성되어 있지만 이에 국한되지 않고 삼각형이나 사각형 등으로 구성되어 지그(20)가 스핀들(11)에서 회전되지 않기만 하면 되는 것이다. In the drawings of the present invention, the protrusions 11 and the grooves 21 are formed in a hexagon, but are not limited thereto, and the jig 20 may be rotated on the spindle 11 without being limited thereto.

또한, 지그(20)의 상부 형상이 원통형이고 내부에 원통형 돌출부(23)가 있어서 적재 홈(22)의 형상이 링(ring) 형이지만, 유리병의 병목 형상에 따라 지그의 상부 형상과 돌출부의 형상이 다양해 질 수 있는 것이다. 즉, 유리병의 병목은 통상 마개의 개폐방식이 회전식이어서 원통형으로 형성되지만 마개의 개폐방식에 따라 유리병의 병목이 다각형으로 형성될 수도 있는 것이기에 지그(20)의 상부 형상도 다각형으로 형성되어 적재 홈이 다각형 홈이 될 수도 있다. In addition, although the upper shape of the jig 20 is cylindrical and there is a cylindrical protrusion 23 therein, the shape of the loading groove 22 is ring-shaped, but according to the bottleneck shape of the glass bottle, the upper shape of the jig and the protrusion The shape can be varied. That is, the bottleneck of the glass bottle is usually formed in a cylindrical shape by opening and closing the stopper of the bottle, but the bottleneck of the glass bottle may be formed in a polygonal shape according to the opening and closing method of the stopper. The groove may be a polygonal groove.

그리고 돌출부(23)의 상단 둘레는 내측으로 경사지는 경사면(231)이 형성되어 있는데, 이는 유리병(30)의 병목을 적재 홈(22)에 적재할 때 유리병의 병목 내부로 들어가는 돌출부(23)가 유리병의 병목 입구에 걸리지 않으면서 병목 내부로 쉽게 들어가 유리병(30)의 병목이 적재 홈(22)에 부드럽게 안착되도록 하기 위한 것이다. 즉, 돌출부(23)가 유리병의 병목 내부로 들어가기 위해서는 돌출부(23)의 몸체 직경은 당연히 유리병의 병목 입구의 직경 보다 작고, 이에 더불어서 상기한 경사면(231)으로 인해서 돌출부(23)의 상면 직경은 돌출부(23)의 몸체 직경 보다 작다. 한편, 지그의 상부의 크기는 종류가 다양한 유리병(30)의 병목 크기에 따라 달라 질 수 있다. And the circumference of the upper end of the protrusion 23 is formed with an inclined surface 231 which is inclined inwardly, which is a protrusion 23 that enters the bottleneck of the glass bottle when the bottleneck of the glass bottle 30 is loaded into the loading groove 22. ) To easily enter the bottleneck without the bottleneck opening of the vial so that the bottleneck of the vial 30 is seated smoothly in the loading groove (22). That is, in order for the protrusion 23 to enter the bottleneck of the vial, the body diameter of the protrusion 23 is naturally smaller than the diameter of the bottleneck inlet of the vial, and in addition to this, the upper surface of the protrusion 23 due to the inclined surface 231. The diameter is smaller than the body diameter of the protrusion 23. On the other hand, the size of the top of the jig may vary depending on the bottleneck size of the various kinds of glass bottle 30.

이와 같이 구성된 본 고안의 유리병 적재기구는 도 2에 도시된 바처럼, 지그(20)의 다각형 홈(21)이 스핀들(10)의 다각형 돌기(11)에 끼워져 형상결합되면서 지그(20)가 스핀들(10)의 상단부에 안정되게 안착되어 조립설치된다. The glass bottle loading mechanism of the present invention configured as described above has a polygonal groove 21 of the jig 20 fitted into the polygonal protrusion 11 of the spindle 10 as shown in FIG. The upper end of the spindle 10 is stably seated and assembled.

도 2처럼 지그(20)가 스핀들(10)의 상단부에 설치된 상태에서 도 3과 같이 유리병(30)을 지그(20)에 적재하게 되는데, 유리병(30)의 병목을 아래로 향하도록 거꾸로 세워서 유리병(30)의 병목을 지그(20)의 적재 홈(22)에 집어넣을 때 경사면(231)에 의해 유리병(30)의 병목 입구가 돌출부(11)의 둘레에 걸리지 않으면서 유리병의 병목이 적재 홈(22)으로 부드럽게 들어가면서 지그(20)의 돌출부(23)는 유리병(30)의 병목 내부로 삽입되어 유리병이 거꾸로 세워진 채로 유리병(30)이 지그(20)에 안착 설치된다. As shown in FIG. 2, the jig 20 is loaded on the jig 20 as shown in FIG. 3 in a state where the jig 20 is installed at the upper end of the spindle 10, and the bottle bottle of the glass bottle 30 is faced downward. When the bottleneck of the glass bottle 30 is standing up and inserted into the loading groove 22 of the jig 20, the bottleneck inlet of the glass bottle 30 is not caught by the circumference of the protrusion 11 by the inclined surface 231. As the bottleneck of the bottle gently enters the loading groove 22, the protrusion 23 of the jig 20 is inserted into the bottleneck of the glass bottle 30 and the glass bottle 30 is seated on the jig 20 with the glass bottle standing upside down. Is installed.

이와 같은 구성에 의해 본 고안은 종래와 달리 부쉬 볼트 및 이를 스핀들에 체결하기 위한 자동 드라이버가 필요 없고, 이에 따라 스핀들 상단부의 암나사 구멍과 부쉬 볼트의 마모로 인한 스핀들 및 부쉬 볼트의 교체도 필요 없고, 지그와 부쉬 볼트의 조립시간 및 부쉬 볼트의 스핀들에의 체결시간을 획기적으로 감소시킬 수 있다. With this configuration, the present invention does not require a bushing bolt and an automatic driver to fasten it to the spindle, unlike the related art, and thus, there is no need to replace the spindle and the bushing bolt due to the wear of the female threaded hole at the upper end of the spindle and the bushing bolt. The assembly time of the jig and bush bolt and the fastening time of the bush bolt to the spindle can be significantly reduced.

다시 말해서, 본 고안은 작업자가 지그(20)를 수동으로 스핀들(10)의 상단부에 형상결합만으로 간단히 설치할 수 있어 작업자가 많이 필요 없고, 지그 설치시간을 30분~40분으로 단축할 수 있고, 또한, 유리병(30)의 병목 크기에 따른 지그의 교체시간도 30분~40분으로 단축할 수 있어 작업공정이 신속히 이루어짐에 따라 유리병의 생산성을 향상시킬 수 있다. In other words, the present invention allows the operator to simply install the jig 20 manually on the upper end of the spindle 10 only by the shape coupling, so that the operator does not need much, and the jig installation time can be shortened to 30 to 40 minutes, In addition, the replacement time of the jig according to the bottleneck size of the glass bottle 30 can also be shortened to 30 minutes to 40 minutes to improve the productivity of the glass bottle as the work process is made quickly.

게다가, 본 고안은 종래와 달리 부쉬 볼트가 필요없고 유리병이 설치되는 지그만 있으면 되므로 부품수도 절감되어 비용절감의 효과도 있다. In addition, the present invention does not require a bush bolt unlike the conventional art, and only a jig in which a glass bottle is installed, so that the number of parts is also reduced, thereby reducing costs.

그리고 본 고안은 지그가 스핀들에 형상결합에 의해 안정되게 설치됨에 따라 스핀들 컨베이어가 움직일 때 돌출부와 지그의 테두리가 유리병의 병목을 유동되지 않게 잡아주기 때문에 지그가 스핀들에서 유동되지 않음에 따라 유리병의 표면 도장이 균일한 두께로 매끄럽게 이루어져 유리병의 품질을 향상시킬 수 있다. And the present invention is because the jig does not flow in the spindle because the jig does not flow in the spindle, because the jig is fixed to the spindle stably installed by the combination of the projection and the edge of the jig to hold the bottleneck of the glass bottle when the spindle conveyor is moving. The surface of the coating is made of a uniform thickness to improve the quality of the glass bottle.

10 : 스핀들 11 : 다각형 돌기
20 : 지그 21 : 다각형 홈
22 : 적재 홈 23 : 돌출부
10: spindle 11: polygon projection
20: Jig 21: Polygon Groove
22: loading groove 23: protrusion

Claims (2)

상부에는 유리병의 병목이 설치되고, 하부는 스핀들과 착탈결합되는 지그를 포함하는 유리병 표면 도장용 체인 스핀들 컨베이어의 유리병 적재기구에 있어서,
스핀들(10)의 상단부는 다각형 돌기(11)로 형성되고,
지그(20)의 하부에는 스핀들(10)의 다각형 돌기(11)가 끼워지는 다각형 홈(21)이 형성되고,
지그(20)의 상부에는 유리병(30)의 병목이 삽입설치되는 적재 홈(22)이 형성되고, 상기 적재 홈(22)의 중앙에 병목 내부로 끼워져 들어가는 돌출부(23)가 형성되고, 상기 돌출부(23)의 몸체 직경은 유리병의 병목 입구의 직경 보다 작게 하고,
상기 돌출부(23)의 상단 둘레는 내측으로 경사지는 경사면(231)이 형성되고, 상기 돌출부(23)의 상면 직경은 돌출부(23)의 몸체 직경 보다 작게 하고,
돌출부의 높이는 지그의 테두리의 높이와 동일한 것을 특징으로 하는 유리병 표면 도장용 체인 스핀들 컨베이어의 유리병 적재기구.
In the upper part of the bottleneck of the glass bottle is installed, the lower part of the glass bottle loading mechanism of the chain spindle conveyor for glass bottle surface coating including a jig detachably coupled to the spindle,
The upper end of the spindle 10 is formed of a polygonal projection 11,
The lower portion of the jig 20 is formed with a polygonal groove 21 into which the polygonal projection 11 of the spindle 10 is fitted.
A loading groove 22 into which the bottleneck of the glass bottle 30 is inserted is formed in the upper portion of the jig 20, and a protrusion 23 is inserted into the bottleneck in the center of the loading groove 22. The body diameter of the protrusion 23 is smaller than the diameter of the bottleneck inlet of the glass bottle,
An inclined surface 231 which is inclined inward is formed at an upper circumference of the protrusion 23, and an upper surface diameter of the protrusion 23 is smaller than a body diameter of the protrusion 23.
Glass bottle loading mechanism of the chain spindle conveyor for glass bottle surface coating, characterized in that the height of the projection is equal to the height of the edge of the jig.
삭제delete
KR2020110005670U 2011-06-22 2011-06-22 Glass bottle loading instrument of chain spindle conveyor for paintng the surface of glass bottle KR200463834Y1 (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101467468B1 (en) 2013-07-26 2015-01-06 주식회사 신흥 The jig structure for painting process
KR101697472B1 (en) * 2015-10-16 2017-01-18 삼안산업 주식회사 electrostatic Jig and vial coating lifting equipment using the same
KR102123629B1 (en) * 2019-12-19 2020-06-16 삼안산업 주식회사 Automatic input and discharge device for painting products
KR20210158477A (en) * 2020-06-24 2021-12-31 주식회사 삼화 Jig for conainer manufacturing
CN113926606A (en) * 2021-10-26 2022-01-14 四川天马玻璃有限公司 Fluorine spraying device for glass bottle production

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Publication number Priority date Publication date Assignee Title
KR200218836Y1 (en) 2000-10-16 2001-04-02 삼안산업주식회사 Bush for spindle conveyor
JP2002080244A (en) * 2000-09-07 2002-03-19 Shiseido Co Ltd Method of manufacturing coated glass bottle

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JP2002080244A (en) * 2000-09-07 2002-03-19 Shiseido Co Ltd Method of manufacturing coated glass bottle
KR200218836Y1 (en) 2000-10-16 2001-04-02 삼안산업주식회사 Bush for spindle conveyor

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101467468B1 (en) 2013-07-26 2015-01-06 주식회사 신흥 The jig structure for painting process
KR101697472B1 (en) * 2015-10-16 2017-01-18 삼안산업 주식회사 electrostatic Jig and vial coating lifting equipment using the same
KR102123629B1 (en) * 2019-12-19 2020-06-16 삼안산업 주식회사 Automatic input and discharge device for painting products
KR20210158477A (en) * 2020-06-24 2021-12-31 주식회사 삼화 Jig for conainer manufacturing
KR102356919B1 (en) * 2020-06-24 2022-01-28 주식회사 삼화 Jig for conainer manufacturing
CN113926606A (en) * 2021-10-26 2022-01-14 四川天马玻璃有限公司 Fluorine spraying device for glass bottle production
CN113926606B (en) * 2021-10-26 2022-08-02 四川天马玻璃有限公司 Fluorine spraying device for glass bottle production

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