KR101670485B1 - An altar structure and method thereof - Google Patents

An altar structure and method thereof Download PDF

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Publication number
KR101670485B1
KR101670485B1 KR1020150060787A KR20150060787A KR101670485B1 KR 101670485 B1 KR101670485 B1 KR 101670485B1 KR 1020150060787 A KR1020150060787 A KR 1020150060787A KR 20150060787 A KR20150060787 A KR 20150060787A KR 101670485 B1 KR101670485 B1 KR 101670485B1
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KR
South Korea
Prior art keywords
dimensional
insertion tube
molding groove
fitting
altar structure
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KR1020150060787A
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Korean (ko)
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석경용
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석경용
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G33/00Religious or ritual equipment in dwelling or for general use
    • A47G33/02Altars; Religious shrines; Fonts for holy water; Crucifixes

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  • Casting Or Compression Moulding Of Plastics Or The Like (AREA)

Abstract

The present invention relates to a method of manufacturing a three-dimensional altar structure, and more particularly, to a method of manufacturing a three-dimensional altar structure by molding a three-dimensional standardized altar structure using a mold.
The method of manufacturing a three-dimensional altar structure of the present invention is characterized in that a molding groove 11 is formed so as to have a three-dimensional feeling and a mold 10 in which a plurality of fitting holes 12 are formed at regular intervals on the surface of the molding groove 11 ; A second step of fitting and fixing one end of the tubular barrel 20 to the fitting hole 12 of the first step, respectively; A third step of putting the hollow spiral insertion tube 30 having one end into the hollow cylindrical bar 20 of the second stage and fitting them to the surface, respectively; A fourth step of injecting a foaming resin into the molding groove 11 and curing the molded resin after the third step; A fifth step of removing the foamed material 70 integrally molded by the flower pedestal insertion tube 30 from the molding groove 11 after completion of the fourth step; After finishing the fifth step, the finish film 40 is attached to the front surface of the foamed article, and the finished film 40 is finished before the attachment, or after the attachment, to the perforated hole 31 of the flange insertion tube 30, step; And a seventh step of covering the opened rear face of the foamed product with the cover plate 50 after finishing the fifth step or the sixth step and then finishing the stepped shape to form an altar structure having a three dimensional feel.

Description

[0001] An altar structure and method thereof [0002]

The present invention relates to a method of manufacturing a three-dimensional altar structure, and more particularly, to a method of manufacturing a three-dimensional altar structure by using a mold to produce a three-dimensional standardized altar structure.

Generally, in the case of indoor and outdoor sculptures, there is an altar for laying photographs. The altar is of varying size and consists of several garbage bands connected together.

Conventional altar garland is composed of an oasis containing a certain amount of water, and flowers are arranged so that the flowers are arranged properly, and water is supplied to maximize the decoration effect.

However, the conventional altar garland requires a skill to insert the chrysanthemum blossoms so that the work time and labor cost are excessive, and the water of the oasis is easily evaporated during the burial period, which makes it difficult to keep the flower fresh .

In addition, since the flower garland for the altar has been simply inserted into the oasis, the decorated flowers are disturbed over time.

In order to solve this problem, a utility model registration No. 0441203 and a patent registration No. 1012174 are disclosed, and the above-mentioned technique is a technology that not only makes it possible to maintain flowers for a long period of time, but also reuses them after use.

Specifically, in the utility model registration No. 0441203, the flower arrangement box for the altar is constructed by bending a front / rear plate on the front and rear sides of the bottom plate, A water tank; A handle provided on the rear plate; A plate having an upper portion bent toward the upper side of the front plate so as to be inclined toward the rear plate and a plate hole formed at a grid interval; Fixing means provided on the back edge of the plate for holding the elastic band and the elastic band and fixing pins for fixing the elastic band to the plate; A support plate provided on the water tank so that both ends are fixed to the side plate; And an overflow prevention plate fixed to the upper rear surface of the front plate and the side plate.

The above-mentioned patent registration No. 1012174 discloses a flower-making device comprising a main body having a front surface formed to have a three-dimensional feel, a flower arrangement ball perforated at regular intervals so as to be able to insert flowers on the front surface of the main body, Wherein the main body is provided with a water storage tank for supplying water to the inner bottom surface of the water storage tank, and a drainage member is provided at a rear lower end of the water storage tank so that water can be discharged to the outside, Respectively.

The above-mentioned techniques have a technique of forming a hole for plugging a flower in the main body so that the flower can be easily and easily inserted into the flower so that the flower can be decorated. However, There is a problem that it is not easy to actually manufacture a garland of the same standard.

Patent Registration No. 1012174 (Jan. 25, 2011, altar garland) Registration Practical Newspaper Bulletin No. 0441203 (July 23, 2008, Flower arrangement for altar)

SUMMARY OF THE INVENTION The present invention has been made in order to solve the above-mentioned problems, and an object of the present invention is to provide a method of manufacturing an integral structure by molding an integral foamed article, The present invention provides a method of manufacturing a three-dimensional altar structure capable of manufacturing a three-dimensional altar structure that is standardized.

In order to achieve the above object, the present invention is characterized in that a molding groove (11) is formed so as to have a three-dimensional effect and a mold (10) in which a plurality of fitting holes ); A second step of fitting and fixing one end of the tubular barrel 20 to the fitting hole 12 of the first step, respectively; A third step of putting the hollow spiral insertion tube 30 having one end into the hollow cylindrical bar 20 of the second stage and fitting them to the surface, respectively; A fourth step of injecting a foaming resin into the molding groove 11 and curing the molded resin after the third step; A fifth step of removing the foamed material 70 integrally molded by the flower pedestal insertion tube 30 from the molding groove 11 after completion of the fourth step; After finishing the fifth step, the finish film 40 is attached to the front surface of the foamed article, and the finished film 40 is finished before the attachment, or after the attachment, to the perforated hole 31 of the flange insertion tube 30, step; And a seventh step of covering the opened rear face of the foamed product with the cover plate 50 after finishing the fifth step or the sixth step and then finishing the stepped shape to form an altar structure having a three dimensional feel.

The fixing frame 60 is further provided at the edge portion of the mold 10 before the fourth step is performed so that the fixing frame 60 is integrally formed on the rim of the molded foamed product desirable.

In the sixth step, the finish film 40 attached to the front surface of the foamed product is formed of a film produced by printing a chrysanthemum leaf on the surface of the foamed product, and the gum top 20 is made of a material having elasticity so as to be bent desirable.

It is preferable that the pedicle insertion tube 30 is constituted by a conduit having an acid and a bone, and the other end of the conduit is filled with paraffin 32 to close the other end of the conduit.

According to the method for manufacturing a three-dimensional altar structure having the above-described structure, it is possible to manufacture the foamed product in a short time by molding the foamed product using the mold, as well as to reduce the manufacturing cost as much as possible, , It is possible to reuse the altar structure after the funeral, thereby achieving a cost saving effect.

FIG. 1 is a process diagram showing a manufacturing step of a three-dimensional altar structure according to the present invention.
FIGS. 2A to 2F are views sequentially illustrating the molding process of the foamed product according to the present invention,
3 is a perspective view of a manufactured three-dimensional altar structure according to the present invention,
Fig. 4 is a sectional view of Fig. 3,
5 is a state in which the cover plate of the three-dimensional altar structure according to the present invention is engaged,
6A and 6B are photographs showing a three-dimensional altar structure manufactured through the manufacturing steps according to the present invention.

BRIEF DESCRIPTION OF THE DRAWINGS The above and other features and advantages of the present invention will be more apparent from the following detailed description taken in conjunction with the accompanying drawings, in which: FIG.

FIG. 1 is a process diagram showing a manufacturing step of a three-dimensional altar structure according to the present invention, FIGS. 2A to 2F are views sequentially illustrating a forming process of a foamed product according to the present invention, FIG. 4 is a sectional view of FIG. 3, and FIG. 5 is a view illustrating a cover plate of the three-dimensional altar structure according to the present invention.

The three-dimensional altar structure manufactured in the present invention is manufactured by molding a foamed product using the mold 10, attaching a finish film and installing a cover plate.

Specifically, a method of manufacturing a three-dimensional altar structure according to an embodiment of the present invention is manufactured through steps 1 to 7 as shown in FIG.

In the mold preparation step of the first step, a molding groove 11 is formed so as to have a three-dimensional effect, and a mold 10 is prepared by forming a large number of fitting holes 12 at a predetermined interval on the surface of the molding groove 11.

Since the foam 10 needs to be molded so that the front surface has a three-dimensional effect, it is not necessary to cover the molding groove and close it.

In the second step, the fixing step is fixed by inserting one end of the stopper rod 20 into each of the plurality of the insertion holes 12. The protruding rod is coupled to the fitting hole in an interference fit manner, so that the operator can force the foam to be separated one by one after applying the force.

The tubular body 20 may be made of a general resin pipe having a non-bending strength, or may be made of a resilient material such as elastic material that can be bent As shown in Fig.

In the third step, the insertion of the tether is carried out by inserting a hollow tapered insertion tube 30 having one end into a plurality of guttering rods 20 fixed to the insertion hole and closely adhering to the surface of the molding groove of the mold 10.

At this time, the pedicle insertion tube 30 is composed of a conduit having an acid and a bone, and the inner space of the other end of the conduit is filled with a filling material 32 such as paraffin or resin to close the other end of the conduit.

The reason for constructing the pedicel insertion tube 30 as a conduit is that the pedicel inserted into the pedicel insertion tube 30 is caught by the mountain protruding to the inner peripheral surface of the pedicel, So that it can be blocked.

Particularly, since the flower bud insertion tube of the present invention is inserted without removing the leaves of the flower so that the leaves of the flower are closely attached to the inner circumferential surface of the flower bud insertion tube to minimize the possibility of drawing, It can be maintained as it is.

At this time, by closing the other end of the pedestal insertion tube 30 with paraffin, a receiving space is formed in the inside of the pedestal insertion tube 30 so that water is charged into the inside receiving space to be accommodated in a certain amount, Provide water to the pedicles inserted in the insertion tube.

In the fourth step, after the pedestal insertion tube is inserted, the foaming resin is injected into the molding groove 11 to cure the pedestal insertion tube so that the pedestal insertion tube does not move. In the fifth step, And the foamed product 70 integrally molded is removed from the molding groove 11. As shown in Fig.

Then, the finish film 40 is attached to the front surface of the foamed material removed from the molding groove and closed.

The reason for attaching the finishing film 40 is that the front surface of the foam material 70 is not smooth due to the cured state of the foaming resin so that the front surface of the foam material 70 is closed. So that a natural decoration effect can be obtained even if the size of the blossoms is not uniform.

At this time, in the finishing film 40, a portion corresponding to the opening hole 31 of the flange insertion tube 30 is perforated before or after the finishing film is attached, To be exposed.

The perforated holes may be made to fit in the perforations 31. If the perforations are perforated after the perforations are formed, the corresponding portions of the perforations 31 are cut out with a knife It is punctured.

At this time, it is preferable that the finished film (40) is made of a film produced by printing and printing chrysanthemum leaves on the surface. The reason for printing the chrysanthemum leaves is to maximize the decoration effect by allowing the chrysanthemum leaves to be exposed to the outside, so that they can be harmonized with the flower decoration even if there is a part exposed to the outside.

In the seventh step, the cover plate 50 is closed in order to cover the opened rear surface of the foamed product after the fifth step of molding the foamed product or the sixth step of attaching the finished film.

The cover plate 50 may be fixed directly to the rim of the foamed material, or the cover plate may be fixed to each piece of the foamed material separately.

Further, before the fourth step is performed, a step of installing the fixing frame 60 on the edge portion of the mold 10 is further performed so that the fixing frame 60 is integrally formed on the rim of the formed foamed product So that the cover plate can be fixed to the fixed frame.

When the fixed frame is integrally formed, there is no need to perform a separate operation, which makes it possible to facilitate the installation work of the cover plate.

On the other hand, when the foam is formed, grooves are formed at a predetermined depth in the upper part of the foamed material to be molded, so that the potable support part (not marked) can be integrally molded, have.

The present invention constructed as described above can form an altar structure so as to have a three-dimensional effect, so that it can have a beautiful appearance and can form a standardized altar structure easily by molding the foam using a mold, Invention.

10: mold 11: molding groove
12: Insertion hole 20: Negotiation opening
30: Velcro insertion tube 31:
32: Filler 40: Finishing film
50: cover plate 60: fixed frame
70: foam

Claims (6)

A first step of forming a molding groove (11) having a three-dimensional effect and preparing a mold (10) having a plurality of fitting holes (12) formed on the surface of the molding groove (11) at regular intervals;
A second step of fitting and fixing one end of the tubular barrel 20 to the fitting hole 12 of the first step, respectively;
A third step of putting the hollow spiral insertion tube 30 having one end into the hollow cylindrical bar 20 of the second stage and fitting them to the surface, respectively;
A fourth step of injecting a foaming resin into the molding groove 11 and curing the molded resin after the third step;
A fifth step of removing the foamed material 70 integrally molded by the flower pedestal insertion tube 30 from the molding groove 11 after completion of the fourth step;
After finishing the fifth step, the finish film 40 is attached to the front surface of the foamed article, and the finished film 40 is finished before the attachment, or after the attachment, to the perforated hole 31 of the flange insertion tube 30, step;
A seventh step of covering the open rear face of the foamed product with the cover plate (50) after completing the fifth step or the sixth step;
Wherein the step of forming the three-dimensional altar structure has a three-dimensional feel.

The method according to claim 1,
The fixing frame 60 is further provided at the edge of the mold 10 before the fourth step so that the fixing frame 60 is integrally formed with the rim of the molded foam 70 Wherein the step of forming the three-dimensional altar structure comprises:
3. The method according to claim 1 or 2,
The method of manufacturing a three-dimensional altar structure according to claim 1, wherein the finishing film (40) attached to the front surface of the foamed article in the sixth step is formed of a film produced by printing and printing chrysanthemum leaves on the surface.
The method according to claim 1,
The method of claim 3, wherein the hanger rod (20) is made of a material having elasticity so as to be bent.
The method according to claim 1,
The pedestal insertion tube (30) is constituted by a conduit having an acid and a bone, and the inner space of the other end of the conduit is filled with a filler (32) to close the other end of the conduit. Way.
A three-dimensional altar structure produced by the method of any one of claims 1 to 5.
KR1020150060787A 2015-04-29 2015-04-29 An altar structure and method thereof KR101670485B1 (en)

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KR1020150060787A KR101670485B1 (en) 2015-04-29 2015-04-29 An altar structure and method thereof

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KR101670485B1 true KR101670485B1 (en) 2016-10-28

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102060912B1 (en) 2019-02-15 2019-12-30 원찬호 3-dimensional altar flower and manufacturing method thereof

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100441203B1 (en) 2004-01-14 2004-07-23 대한민국 Submersible fish cage system using underwater motor
KR200441203Y1 (en) * 2007-05-14 2008-07-31 이용구 A flower arranging box for an altar
KR20120026363A (en) * 2010-09-09 2012-03-19 이용구 A flower arranging box for an altar
KR101164127B1 (en) * 2012-03-15 2012-07-11 김찬수 Flower case

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100441203B1 (en) 2004-01-14 2004-07-23 대한민국 Submersible fish cage system using underwater motor
KR200441203Y1 (en) * 2007-05-14 2008-07-31 이용구 A flower arranging box for an altar
KR20120026363A (en) * 2010-09-09 2012-03-19 이용구 A flower arranging box for an altar
KR101164127B1 (en) * 2012-03-15 2012-07-11 김찬수 Flower case

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102060912B1 (en) 2019-02-15 2019-12-30 원찬호 3-dimensional altar flower and manufacturing method thereof

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