WO2021227273A1 - 一种照明光源的包装盒 - Google Patents
一种照明光源的包装盒 Download PDFInfo
- Publication number
- WO2021227273A1 WO2021227273A1 PCT/CN2020/108358 CN2020108358W WO2021227273A1 WO 2021227273 A1 WO2021227273 A1 WO 2021227273A1 CN 2020108358 W CN2020108358 W CN 2020108358W WO 2021227273 A1 WO2021227273 A1 WO 2021227273A1
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- WIPO (PCT)
- Prior art keywords
- light source
- cavity
- illuminating light
- enclosure body
- packaging box
- Prior art date
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- 238000004806 packaging method and process Methods 0.000 title claims abstract description 67
- 238000005286 illumination Methods 0.000 title claims abstract description 19
- 239000002985 plastic film Substances 0.000 claims abstract description 19
- 230000002093 peripheral effect Effects 0.000 claims description 26
- 239000000853 adhesive Substances 0.000 claims description 15
- 230000001070 adhesive effect Effects 0.000 claims description 15
- 238000005452 bending Methods 0.000 claims description 11
- 239000003292 glue Substances 0.000 claims description 7
- 238000000465 moulding Methods 0.000 claims 2
- 239000000123 paper Substances 0.000 description 22
- 239000011257 shell material Substances 0.000 description 22
- 239000000463 material Substances 0.000 description 17
- 238000004519 manufacturing process Methods 0.000 description 12
- 238000013461 design Methods 0.000 description 9
- 238000010586 diagram Methods 0.000 description 8
- 239000002994 raw material Substances 0.000 description 5
- 239000010410 layer Substances 0.000 description 4
- 239000004033 plastic Substances 0.000 description 3
- 238000000034 method Methods 0.000 description 2
- 238000012856 packing Methods 0.000 description 2
- 238000005192 partition Methods 0.000 description 2
- 239000002356 single layer Substances 0.000 description 2
- 238000012360 testing method Methods 0.000 description 2
- 240000008042 Zea mays Species 0.000 description 1
- 235000005824 Zea mays ssp. parviglumis Nutrition 0.000 description 1
- 235000002017 Zea mays subsp mays Nutrition 0.000 description 1
- 235000005822 corn Nutrition 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 230000007613 environmental effect Effects 0.000 description 1
- 229910052736 halogen Inorganic materials 0.000 description 1
- 150000002367 halogens Chemical class 0.000 description 1
- 238000002844 melting Methods 0.000 description 1
- 230000008018 melting Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012858 packaging process Methods 0.000 description 1
- 238000012795 verification Methods 0.000 description 1
- 239000002699 waste material Substances 0.000 description 1
Images
Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D85/00—Containers, packaging elements or packages, specially adapted for particular articles or materials
- B65D85/30—Containers, packaging elements or packages, specially adapted for particular articles or materials for articles particularly sensitive to damage by shock or pressure
- B65D85/42—Containers, packaging elements or packages, specially adapted for particular articles or materials for articles particularly sensitive to damage by shock or pressure for ampoules; for lamp bulbs; for electronic valves or tubes
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D5/00—Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper
- B65D5/02—Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper by folding or erecting a single blank to form a tubular body with or without subsequent folding operations, or the addition of separate elements, to close the ends of the body
- B65D5/04—Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper by folding or erecting a single blank to form a tubular body with or without subsequent folding operations, or the addition of separate elements, to close the ends of the body the tubular body having no end closures
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D5/00—Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper
- B65D5/42—Details of containers or of foldable or erectable container blanks
- B65D5/44—Integral, inserted or attached portions forming internal or external fittings
- B65D5/50—Internal supporting or protecting elements for contents
- B65D5/5002—Integral elements for containers having tubular body walls
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D57/00—Internal frames or supports for flexible articles, e.g. stiffeners; Separators for articles packaged in stacks or groups, e.g. for preventing adhesion of sticky articles
- B65D57/002—Separators for articles packaged in stacks or groups, e.g. stacked or nested
- B65D57/003—Separators for articles packaged in stacks or groups, e.g. stacked or nested for horizontally placed articles, i.e. for stacked or nested articles
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D77/00—Packages formed by enclosing articles or materials in preformed containers, e.g. boxes, cartons, sacks or bags
- B65D77/04—Articles or materials enclosed in two or more containers disposed one within another
- B65D77/0413—Articles or materials enclosed in two or more containers disposed one within another the inner and outer containers being rigid or semi-rigid and the outer container being of polygonal cross-section formed by folding or erecting one or more blanks, e.g. carton
- B65D77/042—Articles or materials enclosed in two or more containers disposed one within another the inner and outer containers being rigid or semi-rigid and the outer container being of polygonal cross-section formed by folding or erecting one or more blanks, e.g. carton the inner container being of polygonal cross-section formed by folding or erecting one or more blanks, e.g. carton
Definitions
- the invention relates to the technical field of packaging of lighting lamps, in particular to a packaging box of a lighting source.
- LED bulbs have the characteristics of energy saving, environmental protection, long life, and small size. They are favored by consumers and are gradually replacing traditional light sources.
- the good packaging design of bulbs can prevent products from
- many lining packaging designs are often used in the prior art to avoid this problem. That is, a lining body is set in a square box, and the lamp holder is stuck in the lining. In the hole of the body (there is also a lining body to block the bulb part), so as to prevent the bulb from shaking in the packaging box during transportation.
- the box of the square is the same as the common packaging box, and the bulb is placed in the square.
- one of the paper shell surfaces (or the two opposite paper shell surfaces) can be turned over and opened for easy access to the bulb.
- the bulb packaging design in the prior art although it can In order to prevent the product from shaking in the packaging box, the use of the square box and the inner lining makes the overall production material of the packaging box use a large amount, and the material cost is high, and it is not only necessary to make the box body, but also to make the inner
- the lining body needs to be assembled together after the two are manufactured, and then the bulb can be put in.
- the entire manufacturing and packaging process is time-consuming and laborious, the manufacturing process is not simple enough, and the manufacturing cost is relatively high.
- the technical problem to be solved by the present invention is to overcome the shortcomings of the prior art and provide a packaging box for illuminating light sources.
- a packaging box for an illuminating light source includes a baffle body with a cavity formed inside.
- the outer side wall of the baffle constitutes the outer side wall of the package box.
- the inner circumference of the enclosure has at least a collision area that can collide with one illumination light source.
- the collision area can press and hold the outer periphery of the illumination light source, so that the illumination light source can be stabilized in the cavity; It is composed of a paper shell or a plastic sheet after bending and forming; the two ends of the cavity are opened; the height of the cavity is greater than or equal to the length of the three illuminating light sources; the inner peripheral surface of the enclosure is in the hollow
- the height direction of the cavity extends along a straight line, and the contour of the inner peripheral surface of the enclosure body in the circumferential direction is polygonal; the contour of the inner peripheral surface of the enclosure body in the circumferential direction is a regular hexagon; the inner cut of the inner peripheral surface of the enclosure body
- the diameter of the circle is smaller than the maximum outer diameter of the illuminating light source; the difference between the inscribed circle diameter of the inner circumference of the enclosure and the maximum outer diameter of the illuminating light source is 2mm to 4mm; an adhesive part is formed on one side of the enclosure to bond The part and the other side of the enclosure body are connected
- a packaging box for an illuminating light source includes a baffle body with a cavity formed inside.
- the outer side wall of the baffle constitutes the outer side wall of the package box.
- the inner circumference of the enclosure has at least a collision area that can collide with one illumination light source.
- the collision area can press and hold the outer periphery of the illumination light source, so that the illumination light source can be stabilized in the cavity; It is composed of a paper shell or a plastic sheet after bending and forming; the two ends of the cavity are opened; the height of the cavity is greater than or equal to the length of the three illuminating light sources; the inner peripheral surface of the enclosure is in the hollow The height direction of the cavity extends along a straight line, and the contour of the inner peripheral surface of the enclosure body is circular in the circumferential direction; an adhesive part is formed on one side of the enclosure body, and the adhesive part is connected to the other side of the enclosure body The edges are connected by glue.
- a packaging box for an illuminating light source includes a baffle body with a cavity formed inside.
- the outer side wall of the baffle constitutes the outer side wall of the package box.
- the inner peripheral surface of the enclosure has at least a collision area that can collide with one illuminating light source, and the collision area can press and hold the outer periphery of the illuminating light source tightly, so that the illuminating light source can be stabilized in the cavity.
- the baffle body is composed of only a piece of paper shell or a piece of plastic sheet after bending and forming.
- both ends of the cavity are opened.
- the height of the cavity is at least greater than or equal to the length of one illuminating light source, or the height of the cavity is greater than or equal to the length of two illuminating light sources, or the height of the cavity is greater than or equal to the length of three illuminating light sources.
- the inner peripheral surface of the enclosure body extends in a straight line in the height direction of the cavity, and the contour of the inner peripheral surface of the enclosure body in the circumferential direction is a circular shape.
- the inner peripheral surface of the enclosure body extends in a straight line in the height direction of the cavity, and the contour of the inner peripheral surface of the enclosure body in the circumferential direction is polygonal.
- the contour of the inner peripheral surface of the enclosure body in the circumferential direction is a regular hexagon.
- the diameter of the inscribed circle of the inner circumferential surface of the enclosure is smaller than the maximum outer diameter of the illumination light source.
- the difference between the diameter of the inscribed circle of the inner circumferential surface of the enclosure and the maximum outer diameter of the illumination light source is 2 mm to 4 mm.
- an adhesive part is formed on one side of the enclosure body, and the adhesive part is connected to the other side of the enclosure body by glue.
- the present invention has the following advantages compared with the prior art:
- the packaging box of the illuminating light source of the present invention has only a paper shell or a plastic sheet formed by bending and forming, and its production is simpler, and compared with the prior art, the use of raw materials is greatly reduced; in addition, The packaging box relies on the holding force of the enclosure body to hold the lighting source to stabilize the lighting source in the cavity, which can meet the ISO 2248-1985 international standard (product drop test), avoiding the use of design lining body for clamping packaging This simplifies the production process and further reduces the use of raw materials, which greatly reduces the production cost of the enterprise; because the two ends of the packaging box are open design, it reduces the material generated by the internal cavity due to the upper and lower covers. It is expensive, and the upper and lower covers are eliminated, which greatly facilitates the operation of putting in and taking out the lighting source.
- FIG. 1 is a schematic diagram of the three-dimensional structure of the enclosure body of the present invention when it is in the shape of a regular quadrilateral;
- FIG. 2 is a schematic diagram of the three-dimensional structure when the enclosure body of the present invention is in a regular pentagonal shape
- FIG. 3 is a schematic diagram of the three-dimensional structure when the enclosure body of the present invention is in the shape of a regular hexagon;
- FIG. 4 is a schematic diagram of the three-dimensional structure when the enclosure body of the present invention is in the shape of a regular heptagon;
- FIG. 5 is a schematic diagram of the three-dimensional structure when the enclosure body of the present invention is in a regular octagonal shape
- FIG. 6 is a schematic diagram of the front structure of the hexagonal enclosure body of the present invention when it is unfolded;
- Figure 7 is a schematic top view of the bulk packaging boxes of the present invention packed in the packaging box in a state of being close to each other;
- FIG. 8 is a schematic side view of the structure of the batch packaging box of the present invention placed in a single layer and contained in the packaging box;
- FIG. 9 is a schematic side view of the structure of the batch packaging box of the present invention placed in two layers and contained in the packaging box;
- Fig. 10 is a schematic diagram of the three-dimensional structure of a bulb lamp in the packaging box of the present invention.
- Figure 11 is a three-dimensional schematic diagram of the packaging box of the present invention when two bulb lamps are packaged (two-pack);
- 100 enclosure body; 101, bonding part; 200, light bulb; 300, packing box; 301, partition plate.
- a packaging box for an illuminating light source can be a bulb lamp, a corn lamp, a halogen lamp, an incandescent lamp, etc.
- a bulb lamp mainly takes a bulb lamp as an example Description of the technical solution of the present invention:
- the packaging box of the present invention includes a baffle body 100 with a cavity formed therein.
- the circumferential direction of the bulb 200 can enclose it in the cavity, and the inner circumferential surface of the enclosure 100 has at least a collision area that can collide with the bulb of a bulb 200, and the collision area can resist the outer periphery of the bulb. Press and hold tightly, so that the bulb lamp 200 can be stabilized in the cavity.
- the packaging box is composed of and only the enclosure 100, no other structural components, and the enclosure 100 is composed of and only a piece of paper (the material of the paper shell can be 300 grams of white cardboard, 350 grams of white cardboard). Cardboard, 350g gray cardboard, etc.) is formed by bending and forming, or the enclosure body can also be formed by bending and forming a plastic sheet, but compared to the paper shell, the plastic sheet is used as the enclosure.
- the cost of materials will be slightly increased.
- the use of paper shells or plastic sheets greatly reduces the use of raw materials and greatly simplifies the manufacturing process.
- the baffle body 100 is formed by bending a paper shell or a plastic sheet into a polygonal shape (using regular polygons makes it easier to pack the lighting light source and the subsequent packing of the packaging box is easier to arrange and place) , That is, the molded enclosure body 100 has an inner peripheral surface that extends in a straight line in the height direction of the cavity, and the two ends of the cavity are open, and the two ends are open compared to the existing packaging box, saving The use of the cover material saves the labor and process of folding the upper and lower covers compared with the prior art, and further reduces the production cost.
- the bulb 200 with the maximum outer diameter of the bulb shell of 60mm it is most suitable to bend the paper shell or plastic sheet into a regular hexagonal shape (see Figure 3).
- a regular quadrilateral shape see Figure 1.
- Five-sided shape see Figure 2)
- regular heptagonal shape see Figure 4
- regular octagonal shape see Figure 5
- the enclosure body 100 circumference is shorter, that is, the material is less used.
- the regular octagonal packaging design although the enclosure body 100 circumference is Shorter and less material, but the width of a single side is narrow, which cannot meet the requirements of LOGO printing on one side. Therefore, after many verifications, the bulb 200 with a maximum outer diameter of 60mm adopts a regular hexagon. Suitable.
- a paper shell is used as the material of the baffle body 100.
- the diameter of the inscribed circle of its inner peripheral surface needs to be smaller than the maximum outer diameter of the bulb of the bulb lamp 200 so as to facilitate the placement of the ball.
- the enclosure body 100 can tightly hug the bulb shell of the bulb lamp 200, and will not cause damage to the bulb lamp 200 due to shaking, and is aimed at the enclosure body 100 using a paper shell as a material.
- the bulb 200 must be folded into a polygonal shape to effectively hold the bulb 200.
- the inscribed circle diameter of the polygonal enclosure 100 is smaller than the maximum outer diameter of the bulb.
- the polygon When the bulb 200 is placed in the cavity, the polygon The periphery of the shaped enclosure 100 can expand outwards. If the enclosure 100 is arranged in a cylindrical shape, when the bulb 200 is put in, the enclosure 100 cannot deform and expand outwards (or has a very slight slight slight deformation).
- the enclosure body 100 must be bent into a polygonal state; specifically, for the case where the bulb 200 bulb to be packaged has a maximum outer diameter of 60mm, paper shell is used as the material
- the diameter of the inscribed circle of the inner circumferential surface of the baffle body 100 should be 57mm, that is, the difference between the diameter of the inscribed circle of the inner circumferential surface of the baffle body 100 and the maximum outer diameter of the blister is 3mm.
- the differential tightness is the most appropriate.
- the enclosure body 100 using plastic sheet as the material is bent into a polygonal shape. Later, the difference between the diameter of the inscribed circle of the inner peripheral surface and the maximum outer diameter of the bulb of the bulb lamp 200 can be selected according to the specific plastic material, which will not be repeated here.
- the baffle body 100 is made of plastic sheet, the baffle body 100 can be bent into a polygonal shape or rolled into a cylindrical shape because the plastic material has better deformability and plasticity than a paper shell.
- the inner diameter of the baffle body 100 can be slightly smaller than the maximum outer diameter of the blister. If the baffle body 100 made of paper shell material is set in a circular shape, the inner diameter of the baffle body 100 is too large and the bulb 200 cannot be held tightly. Without good deformability, the bulb 200 cannot be placed in the cavity.
- the height of the cavity around the inner periphery of the enclosure is at least greater than or equal to the length of one bulb 200, or the height of the cavity may also be greater than or equal to the length of two bulbs 200, or the height of the cavity may also be The length of three bulb lamps 200 is greater than or equal to.
- the cavity on the inner circumference of the enclosure 100 can only accommodate one bulb 200 (see Figure 10);
- the cavity on the inner circumference of the enclosure 100 can accommodate the two bulb lamps 200 in the length direction, and the inner circumference of the enclosure 100 also has Two collision areas that can respectively collide with the bulbs of the two bulb lamps 200, that is, the bulb lamps 200 are packaged in a two-pack form (see Figure 11);
- the cavity on the inner circumference of the enclosure 100 can accommodate three bulbs 200 in the length direction, and the inner circumference of the enclosure 100 also has
- the three collision areas that can respectively collide with the bulbs of the three bulb lamps 200 are packaging the bulb lamps 200 in a triple package.
- the enclosure body 100 is composed of a paper shell or a plastic sheet
- the adhesive part 101 can be used after the enclosure body 100 is bent. The two sides of the enclosure body 100 are connected and fixed. The difference is that when the enclosure body 100 is composed of a paper shell, the adhesive part 101 can be fixedly connected to the other side of the enclosure body 100 with glue.
- the adhesive part and the other side of the enclosure body 100 can be fixedly connected by high-temperature heat melting.
- a batch of packaging boxes can be put into a larger packaging box 300 and arranged in an arrangement, and the packaging boxes can be close to each other. There is a waste of space (see Figure 7). Batches of packaging boxes can be placed in a single layer (see Figure 8) or two layers, but a partition 301 needs to be placed between the two layers to separate them. (See Figure 9), or put it in more than two layers.
- the packaging box of the illuminating light source of the present invention has only a paper shell or a plastic sheet formed by bending and forming, and its production is simpler, and compared with the prior art, the raw materials are greatly reduced.
- the packaging box relies on the holding force of the enclosure body to hold the lighting source to stabilize the lighting source in the cavity, which can meet the ISO 2248-1985 international standard (product drop test), avoiding the use of design linings
- the snap-fit packaging form simplifies the production process and further reduces the use of raw materials, which greatly reduces the production cost of the enterprise; because the two ends of the packaging box are open design, the internal cavity is reduced due to the upper and lower seals. The material consumption caused by the cover, and the upper and lower covers are eliminated, which greatly facilitates the operation of putting in and taking out the lighting source.
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Abstract
一种照明光源的包装盒,包装盒包括内部形成有空腔的围挡体(100),围挡体(100)沿照明光源的周向能够将其围裹于空腔内,围挡体(100)内周面至少具有能够与一个照明光源的泡壳抵触的抵触区,抵触区能够将泡壳的外周边抵压抱紧,进而照明光源能够稳定在空腔内;围挡体(100)由且仅由一张纸壳或一张塑胶片经弯折成型后构成。
Description
本发明涉及照明灯具包装技术领域,具体涉及一种照明光源的包装盒。
目前,LED球泡灯作为第四代照明光源,具有节能、环保、寿命长、体积小等特点,受到广大消费者的青睐,正逐步代替传统光源;球泡灯良好的包装设计可以避免产品在运输过程中因震动的影响带来的损坏,现有技术中为避免这一问题,常采用许多内衬包装设计,即在一个四方体状的盒子内设置一个内衬体,灯头卡在内衬体的孔内(也有设置内衬体将球泡部卡住),进而防止运输过程中球泡灯在包装盒内晃动,四方体的盒子与常见的包装盒相同,球泡灯放置于四方体的六个纸壳面围合的空间内,其中一个纸壳面(或相对的两个纸壳面)可以翻转打开,以便取放球泡灯,现有技术中的灯泡包装设计,虽然能够起到防止产品在包装盒内晃动的效果,但四方体的盒子与内衬的使用使得包装盒整体的制作材料使用量较大,材料成本支出较高,且不仅需要制作盒体,还需要制作内衬体,二者制作完成之后还需要将二者组装到一起,之后才能放入灯泡,整个制作及包装过程比较费时费力,制作工序不够简单,制作成本相对较高。
发明内容
本发明所要解决的技术问题是克服现有技术的不足,提供一种照明光源的包装盒。
为解决上述技术问题,本发明采取的技术方案如下:
一种照明光源的包装盒,包装盒包括内部形成有空腔的围挡体,围挡体的外侧壁构成包装盒的外侧壁,围挡体沿照明光源的周向能够将其围裹于空腔内,围挡体内周面至少具有能够与一个照明光源抵触的抵触区,抵触区能够将照明光源的外周边抵压抱紧,进而照明光源能够稳定在空腔内;围挡体由且仅由一张纸壳或一张塑胶片经弯折成型后构成;空腔的两端部敞口设置;空腔的高度大于或等于三个照明光源的长度;围挡体的内周面在空腔的高度方向沿直线延伸,且围挡体的内周面在周向上的轮廓呈多边形状;围挡体的内周面在周向上的轮廓呈正六边形状;围挡体内周面的内切圆直径小于照明光源的最大外径;围挡体内周面的内切圆直径与照明光源最大外径的差值为2mm~4mm;围挡体的一侧边上形成有粘接部,粘接部与围挡体的另一侧边通过胶粘连接。
一种照明光源的包装盒,包装盒包括内部形成有空腔的围挡体,围挡体的外侧壁构成 包装盒的外侧壁,围挡体沿照明光源的周向能够将其围裹于空腔内,围挡体内周面至少具有能够与一个照明光源抵触的抵触区,抵触区能够将照明光源的外周边抵压抱紧,进而照明光源能够稳定在空腔内;围挡体由且仅由一张纸壳或一张塑胶片经弯折成型后构成;空腔的两端部敞口设置;空腔的高度大于或等于三个照明光源的长度;围挡体的内周面在空腔的高度方向沿直线延伸,且围挡体的内周面在周向上的轮廓呈圆形状;围挡体的一侧边上形成有粘接部,粘接部与围挡体的另一侧边通过胶粘连接。
一种照明光源的包装盒,包装盒包括内部形成有空腔的围挡体,围挡体的外侧壁构成包装盒的外侧壁,围挡体沿照明光源的周向能够将其围裹于空腔内,围挡体内周面至少具有能够与一个照明光源抵触的抵触区,抵触区能够将照明光源的外周边抵压抱紧,进而照明光源能够稳定在空腔内。
优选地,围挡体由且仅由一张纸壳或一张塑胶片经弯折成型后构成。
优选地,空腔的两端部敞口设置。
优选地,空腔的高度至少大于或等于一个照明光源的长度,或者空腔的高度大于或等于二个照明光源的长度,或者空腔的高度大于或等于三个照明光源的长度。
优选地,围挡体的内周面在空腔的高度方向沿直线延伸,且围挡体的内周面在周向上的轮廓呈圆形状。
优选地,围挡体的内周面在空腔的高度方向沿直线延伸,且围挡体的内周面在周向上的轮廓呈多边形状。
优选地,围挡体的内周面在周向上的轮廓呈正六边形状。
优选地,围挡体内周面的内切圆直径小于照明光源的最大外径。
优选地,围挡体内周面的内切圆直径与照明光源最大外径的差值为2mm~4mm。
优选地,围挡体的一侧边上形成有粘接部,粘接部与围挡体的另一侧边通过胶粘连接。
由于以上技术方案的实施,本发明与现有技术相比具有如下优点:
本发明的照明光源的包装盒,其仅有一张纸壳或一张塑胶片经弯折成型后构成,其制作上更为简单,且相较于现有技术大大减少了原材料的使用;此外,该包装盒凭靠围挡体对照明光源的抱紧力,使照明光源稳定在空腔内,可满足ISO 2248-1985国际标准(产品跌落试验),避免采用设计内衬体进行卡接的包装形式,这在简化了制作工序的同时也进一步减少了原材料的使用,大大降低了企业生产成本;由于包装盒的两端为敞口设计,减少了内部空腔因设置上下封盖而产生的材料耗费,而且取消了上下封盖,也大大方便了照明光源放入和取出的操作。
图1为本发明围挡体呈正四边形状时的立体结构示意图;
图2为本发明围挡体呈正五边形状时的立体结构示意图;
图3为本发明围挡体呈正六边形状时的立体结构示意图;
图4为本发明围挡体呈正七边形状时的立体结构示意图;
图5为本发明围挡体呈正八边形状时的立体结构示意图;
图6为本发明六边形状的围挡体展开下的主视结构示意图;
图7为本发明批量包装盒在相互靠拢的状态下盛装于包装箱内的俯视结构示意图;
图8为本发明批量包装盒单层放置并盛装于包装箱内的侧视结构示意图;
图9为本发明批量包装盒双层放置并盛装于包装箱内的侧视结构示意图;
图10为本发明包装盒内部包装一个球泡灯时的立体结构示意图;
图11为本发明包装盒内部包装二个球泡灯时的立体结构示意图(两联装);
其中:100、围挡体;101、粘接部;200、灯泡;300、包装箱;301、隔挡板。
下面结合附图和具体的实施例对本发明做进一步详细的说明。
结合图1~6、图10~11所示,一种照明光源的包装盒,该照明光源可以是球泡灯、玉米灯、卤素灯、白炽灯等等,以下主要以球泡灯为例进行本发明技术方案的描述:
本发明的包装盒包括内部形成有空腔的围挡体100,围挡体100的外侧壁构成所述包装盒的外侧壁(包装盒仅由围挡体100构成),围挡体100沿球泡灯200的周向能够将其围裹于空腔内,围挡体100内周面至少具有能够与一个球泡灯200的泡壳抵触的抵触区,抵触区能够将泡壳的外周边抵压抱紧,进而球泡灯200能够稳定在空腔内。
具体地,包装盒由且仅由围挡体100构成,不再包含其它结构部件,而围挡体100由且仅由一张纸壳(纸壳材质可以是300克白卡纸、350克白卡纸、350克灰卡纸等)经弯折成型后构成,或者围挡体也可以是由一张塑胶片经弯折成型后构成,但相对于纸壳而言,采用塑胶片作为围挡体的材料,成本支出会稍有提高。但是相较于现有技术而言,采用纸壳或塑胶片都大大减少了原材料的使用,且大大简化了制作工序。
本例中,围挡体100由一张纸壳或一张塑胶片经过弯折后成多边形状(采用正多边形,更容易包装照明光源及后续对包装盒进行装箱作业更容易排列摆放),即成型后的围挡体100,其内周面在空腔的高度方向沿直线延伸,且空腔的两端部为敞口状态,两端敞口则相对现有的包装盒,节省了封盖材料的使用,且较现有技术省去了折合上下盖的人工和工序, 进一步降低了生产成本。
针对球泡灯泡壳最大外径为60mm的球泡灯200,将纸壳或塑胶片弯折成正六边形状(参见图3)最为合适,当然也可以考虑正四边形状(参见图1)、正五边形状(参见图2)、正七边形状(参见图4)、正八边形状(参见图5)等等,较正四边形包装设计,在内切圆直径相等的情况下,正六边形包装设计,其围挡体100周长较短一些,即材料使用较省,与正八边形包装设计相比,在内切圆直径相等的情况下,正八边形包装设计,围挡体100周长虽然较短,用料也较省,但其单个侧面宽度较窄,无法满足LOGO印刷在一面的需求,因此经过多次验证考量,泡壳最大外径为60mm的球泡灯200采用正六边形最为合适。
本例中,采用纸壳作为材料的围挡体100,在弯折成正多边形后,其内周面的内切圆直径需要小于球泡灯200的泡壳的最大外径,以便于在盛装球泡灯200之后,围挡体100可以将球泡灯200的泡壳紧密抱紧,不会因产生晃动而导致球泡灯200损坏的情况发生,且针对采用纸壳作为材料的围挡体100,必须经过弯折后成多边形状才能对球泡灯200进行有效抱紧,多边形的围挡体100其内切圆直径小于泡壳最大外径,在球泡灯200放入空腔时,多边形状的围挡体100周边可以朝外胀大,如果围挡体100设置为圆筒形,则球泡灯200放入时,围挡体100无法朝外变形胀大(或者有非常轻微的微胀,取决于所采用的纸壳品种),因此围挡体100必须为弯折成多边形状态;具体的,针对待包装球泡灯200泡壳最大外径为60mm的情况,采用纸壳作为材料的围挡体100,围挡体100内周面的内切圆直径则应为57mm,即围挡体100内周面的内切圆直径与泡壳最大外径的差值为3mm,3mm的差值松紧度最为合适。
当然,如果将围挡体100的材料如果采用塑胶片,根据具体的塑胶材质,围挡体100的韧性、可塑性会有不同,因此采用塑胶片作为材料的围挡体100,在弯折成多边形后,其内周面的内切圆直径与球泡灯200泡壳最大外径的差值可以根据具体塑胶材质进行选择,此处不再赘述。另外,如果围挡体100材料采用塑胶片,那么围挡体100除了可以弯折成多边形,也可以卷曲成圆柱形,因为塑胶材质相对于纸壳具有更好的可变形塑性,圆柱形的围挡体100内周直径可以略小于泡壳最大外径,而纸壳材料的围挡体100如果设置成圆形,内径过大则无法抱紧球泡灯200,如果内径过小,因纸壳没有良好的可变形塑性,球泡灯200则无法放入空腔内。
进一步地,围挡体内周的空腔的高度至少大于或等于一个球泡灯200的长度,或者空腔的高度也可以大于或等于二个球泡灯200的长度,或者空腔的高度还可以大于或等于三个球泡灯200的长度。
当空腔的的高度大于或等于一个球泡灯200的长度时,围挡体100内周的空腔仅可以容 纳一个球泡灯200(参见图10所示);
当空腔的高度大于或等于二个球泡灯200的长度时,围挡体100内周的空腔就可以在长度方向上容纳二个球泡灯200,围挡体100内周面也就具有能够与两个球泡灯200的泡壳分别抵触的二个抵触区,即以二联装形式包装球泡灯200(参见图11所示);
当空腔的高度大于或等于三个球泡灯200的长度时,围挡体100内周的空腔就可以在长度方向上容纳三个球泡灯200,围挡体100内周面也就具有能够与三个球泡灯200的泡壳分别抵触的三个抵触区,即以三联装形式包装球泡灯200。
进一步地,围挡体100由纸壳或者塑胶片构成时,都需要围挡体100的一侧边上形成有粘接部101,粘接部101可以在围挡体100完成弯折之后,将围挡体100的两侧边连接固定,不同之处在于,围挡体100由纸壳构成时,粘接部101可以用胶粘实现与围挡体100的另一侧边固定连接,围挡体100由塑胶片构成时,粘接部与与围挡体100的另一侧边则可以通过高温热熔的方式实现固定连接。
此外,本发明的包装盒在完成对球泡灯200的包装之后,可以将批量的包装盒放入较大的包装箱300中并进行排列摆放,各包装盒之间能够靠拢贴近,不会有空间浪费(参见图7所示),批量的包装盒可以成单层摆放(参见图8所示),也可以摆放成二层,但两层之间需要放置隔挡板301隔开(参见图9所示),或者摆放成二层以上的更多层。
综上所述,本发明的照明光源的包装盒,其仅有一张纸壳或一张塑胶片经弯折成型后构成,其制作上更为简单,且相较于现有技术大大减少了原材料的使用;此外,该包装盒凭靠围挡体对照明光源的抱紧力,使照明光源稳定在空腔内,可满足ISO 2248-1985国际标准(产品跌落试验),避免采用设计内衬体进行卡接的包装形式,这在简化了制作工序的同时也进一步减少了原材料的使用,大大降低了企业生产成本;由于包装盒的两端为敞口设计,减少了内部空腔因设置上下封盖而产生的材料耗费,而且取消了上下封盖,也大大方便了照明光源放入和取出的操作。
以上对本发明做了详尽的描述,其目的在于让熟悉此领域技术的人士能够了解本发明的内容并加以实施,并不能以此限制本发明的保护范围,凡根据本发明的精神实质所作的等效变化或修饰,都应涵盖在本发明的保护范围内。
Claims (12)
- 一种照明光源的包装盒,其特征在于:所述包装盒包括内部形成有空腔的围挡体,所述围挡体的外侧壁构成所述包装盒的外侧壁,所述围挡体沿照明光源的周向能够将其围裹于空腔内,所述围挡体内周面至少具有能够与一个所述照明光源抵触的抵触区,所述抵触区能够将所述照明光源的外周边抵压抱紧,进而所述照明光源能够稳定在所述空腔内;所述围挡体由且仅由一张纸壳或一张塑胶片经弯折成型后构成;所述空腔的两端部敞口设置;所述空腔的高度大于或等于三个照明光源的长度;所述围挡体的内周面在所述空腔的高度方向沿直线延伸,且所述围挡体的内周面在周向上的轮廓呈多边形状;所述围挡体的内周面在周向上的轮廓呈正六边形状;所述围挡体内周面的内切圆直径小于所述照明光源的最大外径;所述围挡体内周面的内切圆直径与所述照明光源最大外径的差值为2mm~4mm;所述围挡体的一侧边上形成有粘接部,所述粘接部与所述围挡体的另一侧边通过胶粘连接。
- 一种照明光源的包装盒,其特征在于:所述包装盒包括内部形成有空腔的围挡体,所述围挡体的外侧壁构成所述包装盒的外侧壁,所述围挡体沿照明光源的周向能够将其围裹于空腔内,所述围挡体内周面至少具有能够与一个所述照明光源抵触的抵触区,所述抵触区能够将所述照明光源的外周边抵压抱紧,进而所述照明光源能够稳定在所述空腔内;所述围挡体由且仅由一张纸壳或一张塑胶片经弯折成型后构成;所述空腔的两端部敞口设置;所述空腔的高度大于或等于三个照明光源的长度;所述围挡体的内周面在所述空腔的高度方向沿直线延伸,且所述围挡体的内周面在周向上的轮廓呈圆形状;所述围挡体的一侧边上形成有粘接部,所述粘接部与所述围挡体的另一侧边通过胶粘连接。
- 一种照明光源的包装盒,其特征在于:所述包装盒包括内部形成有空腔的围挡体,所述围挡体的外侧壁构成所述包装盒的外侧壁,所述围挡体沿照明光源的周向能够将其围裹于空腔内,所述围挡体内周面至少具有能够与一个所述照明光源抵触的抵触区,所述抵触区能够将所述照明光源的外周边抵压抱紧,进而所述照明光源能够稳定在所述空腔内。
- 根据权利要求3所述的照明光源的包装盒,其特征在于:所述围挡体由且仅由一张纸壳或一张塑胶片经弯折成型后构成。
- 根据权利要求3所述的照明光源的包装盒,其特征在于:所述空腔的两端部敞口设置。
- 根据权利要求3所述的照明光源的包装盒,其特征在于:所述空腔的高度至少大于或等于一个照明光源的长度,或者所述空腔的高度大于或等于二个照明光源的长度,或者所述空腔的高度大于或等于三个照明光源的长度。
- 根据权利要求3所述的照明光源的包装盒,其特征在于:所述围挡体的内周面在所述空 腔的高度方向沿直线延伸,且所述围挡体的内周面在周向上的轮廓呈圆形状。
- 根据权利要求3所述的照明光源的包装盒,其特征在于:所述围挡体的内周面在所述空腔的高度方向沿直线延伸,且所述围挡体的内周面在周向上的轮廓呈多边形状。
- 根据权利要求8所述的照明光源的包装盒,其特征在于:所述围挡体的内周面在周向上的轮廓呈正六边形状。
- 根据权利要求9所述的照明光源的包装盒,其特征在于:所述围挡体内周面的内切圆直径小于所述照明光源的最大外径。
- 根据权利要求10所述的照明光源的包装盒,其特征在于:所述围挡体内周面的内切圆直径与所述照明光源最大外径的差值为2mm~4mm。
- 根据权利要求4所述的照明光源的包装盒,其特征在于:所述围挡体的一侧边上形成有粘接部,所述粘接部与所述围挡体的另一侧边通过胶粘连接。
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EP20935333.3A EP4137421A4 (en) | 2020-05-12 | 2020-08-11 | PACKAGING BOX FOR ILLUMINATION LIGHT SOURCE |
US17/923,953 US20230219711A1 (en) | 2020-05-12 | 2020-08-11 | Packaging box for illumination source |
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CN202010397567.2 | 2020-05-12 | ||
CN202010397567.2A CN111605899B (zh) | 2020-05-12 | 2020-05-12 | 一种照明光源的包装盒 |
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WO2021227273A1 true WO2021227273A1 (zh) | 2021-11-18 |
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PCT/CN2020/108358 WO2021227273A1 (zh) | 2020-05-12 | 2020-08-11 | 一种照明光源的包装盒 |
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US (1) | US20230219711A1 (zh) |
EP (1) | EP4137421A4 (zh) |
CN (1) | CN111605899B (zh) |
WO (1) | WO2021227273A1 (zh) |
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- 2020-08-11 WO PCT/CN2020/108358 patent/WO2021227273A1/zh unknown
- 2020-08-11 US US17/923,953 patent/US20230219711A1/en active Pending
- 2020-08-11 EP EP20935333.3A patent/EP4137421A4/en active Pending
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Also Published As
Publication number | Publication date |
---|---|
EP4137421A1 (en) | 2023-02-22 |
CN111605899A (zh) | 2020-09-01 |
US20230219711A1 (en) | 2023-07-13 |
EP4137421A4 (en) | 2023-09-20 |
CN111605899B (zh) | 2023-11-21 |
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