A lamp packaging box and a production process thereof
By introducing a buffer and reinforcement mechanism into the lamp packaging box, the problem of lamps being broken due to vibration during transportation is solved, and effective protection and quality inspection of special-shaped lamps are achieved, making them easier to sell.
Patent Information
- Application Number
- CN202310978410.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-04
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2043-08-04
AI Technical Summary
When existing lamp packaging boxes encounter strong vibrations during transportation, there is a possibility that the lamps will break. Especially for lamps of various shapes, conventional cushioning materials cannot provide effective support and packaging.
A lighting packaging box was designed, which includes a buffering mechanism and a reinforcement mechanism inside the box. The buffering mechanism provides multi-directional buffering protection through a combination of a clamping frame, a telescopic rod, an airbag and liquid PET; the reinforcement mechanism enhances the connection stability through a plug-in plate and a hinged rod.
The cushioning effect of special-shaped lamps and the stability of the packaging box are improved to prevent the lamps from breaking during transportation. The stroboscopic test mechanism is used to help customers understand the quality of the lamps and increase sales.
Smart Images

Figure CN116853664B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of lamp packaging boxes, and in particular to a lamp packaging box and a production process thereof. Background Art
[0002] As the name suggests, packaging boxes are boxes used to package products. They can be classified by material, such as paper boxes, iron boxes, wooden boxes, cloth boxes, leather boxes, acrylic boxes, corrugated boxes, PVC boxes, etc. They can also be classified by the name of the product. Among them, lighting packaging boxes are used to package lamps and provide a cushioning effect to prevent fragile lamps from breaking during transportation.
[0003] Generally, lamp packaging boxes can be directly packaged and cushioned with materials such as foam for lamps with a single shape. However, for lamps with different shapes, general cushioning materials cannot fully support or wrap them. If bulk foam particles are used to fill the box, the foam particles may shake during transportation, causing the position of the lamp to be unstable. If there is strong vibration during transportation, the lamp may still be broken. Summary of the Invention
[0004] The invention discloses a lamp packaging box and a production process thereof, aiming to solve the technical problem that if a general lamp packaging box encounters strong vibration during transportation, the lamp may still be broken.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions:
[0006] A lighting packaging box comprises a box body, wherein the four corners of the box body are provided with reinforcement mechanisms, a buffer mechanism is provided in the box body, and a stroboscopic test mechanism is provided at the bottom end of the box body, the buffer mechanism comprises two connecting seats and is provided on the inner walls on opposite sides of the box body, and the top and bottom ends of the connecting seats are fixed with multi-section telescopic rods at the same time, the output ends of the two multi-section telescopic rods are simultaneously connected to the clamping frame, and an airbag is provided in the clamping frame, and the clamping frame and the connecting seat are connected by a first spring, and a limit seat is provided at the bottom end of the last section of the multi-section telescopic rod located at the bottom end of the connecting seat, and a pressure rod is inserted in the limit seat, and the inner wall of the top end of the pressure rod is in contact with the limit A second spring is provided between the seats, and a contact ball is provided at the top of the pressure rod. An outer wall of the bottom end of the middle section of the same multi-section telescopic rod is provided with an inclined block, and the inclined block is in contact with the contact ball. An elastic sleeve is provided on the inner wall of the bottom end of the box body, and the elastic sleeve is filled with liquid PET. The opposite ends of the elastic sleeve are fixedly connected with support plates, and the pressure rod is against the top of the support plate. The inner walls of the opposite sides of the box body are respectively fitted with buffer pads, and the inner walls of the other two sides of the box body are respectively provided with support seats, and a foam box is provided on the support seats. A cutting line is provided on the inner wall of one side of the box body and at a position below the multi-section telescopic rod.
[0007] A buffer mechanism is provided, in which the top of the lamp is first clamped by a clamping frame, and an inward clamping force is provided under the action of a first spring, so that the lamp is suspended in the air, and its multi-shaped bottom contacts the elastic sleeve. Since the elastic sleeve is filled with liquid PET, when the bottom end of the lamp contacts the elastic sleeve, the distribution of the liquid PET in the elastic sleeve will be changed by squeezing, thereby ensuring the wrapping and buffering protection of the bottom end of the lamp. Therefore, the buffering effect of the packaging box is improved by enhancing the buffering fit for special-shaped lamps.
[0008] In a preferred embodiment, the box body includes a bottom plate, and the outer wall of the bottom plate is connected to four side cardboards, and the reinforcement mechanism is located at the connection between adjacent side cardboards, and a second perspective window is inlaid in the bottom plate, and the inner wall and outer wall of one of the side cardboards are respectively provided with a line connection port and a placement groove, and one end of the line connection port is inserted into the placement groove, the strobe test mechanism includes a bottom shell, and the inner wall of one side of the bottom shell is inlaid with a first perspective window, and the inner wall of the opposite side of the bottom shell is provided with a bevel mirror, a bearing seat is fixed at the center position of the inner wall of the bottom end of the bottom shell, a support shaft is connected to the bearing seat, and a detection gyroscope and a gear are fixedly connected to the support shaft at the same time, the gear is meshed with a rack, and one end of the rack is connected to an electric telescopic rod, the other end of the rack is connected to a limiting rod, and the limiting rod is movably inserted in the limiting slot, the electric telescopic rod is connected to the battery box through an electric wire, and an instruction manual is attached to the outer wall of one side of the bottom shell.
[0009] By setting up a stroboscopic test mechanism, the lamp can be powered on by the line connection port and illuminated, and the light can be irradiated onto the detection gyroscope. The electric telescopic rod drives the rack to move repeatedly and quickly, driving the detection gyroscope to rotate continuously and quickly to both sides. Through the refraction of the bevel mirror, the image of the detection gyroscope can be observed through the first perspective window, and thus the stroboscopic of the lamp can be observed, thereby realizing the stroboscopic test of high-quality lamps during the sales process, making it convenient for customers to quickly understand the quality of the lamps during the purchase process, which is conducive to increasing sales.
[0010] In a preferred embodiment, two sheets of paper corrugations are respectively arranged on the inner walls at both ends of each side paperboard, and a certain gap is left between the two sheets of paper corrugations. The reinforcing mechanism includes a plurality of groups of inserting plates in a group of two, and each group of inserting plates is hinged to each other by a hinge rod. The inserting plates are just inserted into the gaps between the paper corrugations, and the inserting plates include an inserting plate body, and linen is respectively attached to the opposite sides of the inserting plate body, and the linen and the inserting plate body are bonded to each other on all sides and left empty in the middle. A plurality of needles are provided at the empty positions of the linen. A packaging sticker is attached to the outside of the box body, and the reinforcing mechanism is included in the packaging sticker. The top of the box body is covered with a box lid.
[0011] A production process for a lamp packaging box includes the following specific steps:
[0012] S1: Component preparation: All components required for making the packaging box are ready for use, and the basic components are installed on the side paperboard and bottom plate simultaneously;
[0013] S2: Buffer mechanism installation inspection: Install the buffer mechanism located on the side paperboard according to the position and check the stability of the installation;
[0014] S3: Merge the box body: Fold the side paperboards. During the folding process, remove the components of the insert plate and the hinge rod, apply glue to the needle end of the insert plate body, and insert the insert plate body into the gap between the paper corrugations.
[0015] S4: Auxiliary limit: Close the box cover to perform auxiliary limit until the glue of the reinforcement mechanism is completely dry;
[0016] S5: Connect the stroboscopic test mechanism: Fix the stroboscopic test mechanism at the bottom of the box and ensure that the battery box has power supply;
[0017] S6: post-processing;
[0018] The post-processing in S6 includes pasting a packaging sticker, placing an elastic sleeve structure, and placing a foam box.
[0019] By providing a reinforcement mechanism, the reinforcement mechanism can further strengthen the connection stability of the four corners during the assembly of the packaging box. On the other hand, by using the hinged rod as a support, the support stability of the four corners of the packaging box can be enhanced, avoiding excessive stacking of packaging boxes that may cause deformation and squeeze the lamps.
[0020] From the above, it can be seen that a lamp packaging box and its production process include a box body, reinforcement mechanisms are distributed at the four corners of the box body, a buffer mechanism is provided in the box body, and a stroboscopic test mechanism is provided at the bottom end of the box body. The buffer mechanism includes two connecting seats and is provided on the inner walls of the opposite sides of the box body, and the top and bottom ends of the connecting seats are fixed with multi-section telescopic rods at the same time, the output ends of the two multi-section telescopic rods are connected to the clamping frame at the same time, and an air bag is provided in the clamping frame, and the clamping frame and the connecting seat are connected by a first spring, and a limit seat is provided at the bottom end of the last section of the multi-section telescopic rod located at the bottom end of the connecting seat, and a pressure rod is inserted in the limit seat, and the pressure rod A second spring is provided between the top inner wall and the limit seat, and a contact ball is provided at the top of the pressure rod. An inclined block is provided on the outer wall of the bottom end of the middle section of the same multi-section telescopic rod, and the inclined block is in contact with the contact ball. An elastic sleeve is provided on the bottom inner wall of the box body, and the elastic sleeve is filled with liquid PET. The opposite ends of the elastic sleeve are respectively fixedly connected to support plates, and the pressure rod is against the top of the support plate. Buffer pads are respectively fitted on the opposite inner walls of the box body, and support seats are respectively provided on the other two inner walls of the box body, and a foam box is provided on the support seats. A cutting line is provided on the inner wall of one side of the box body and at a position below the multi-section telescopic rod. The lamp packaging box and its production process provided by the present invention have the technical effect of improving the buffering performance of the packaging box by enhancing the buffering fit for special-shaped lamps. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a schematic diagram of the overall structure of a lamp packaging box proposed by the present invention.
[0022] Figure 2 This is a rear view schematic diagram of the internal structure of a lamp packaging box proposed by the present invention.
[0023] Figure 3 This is a schematic diagram of the disassembled structure of a stroboscopic testing mechanism of a lamp packaging box proposed by the present invention.
[0024] Figure 4 This is a schematic diagram of the overall disassembled structure of a lamp packaging box proposed by the present invention.
[0025] Figure 5 This is a schematic diagram of the disassembled structure of part of the buffer mechanism of a lamp packaging box proposed by the present invention.
[0026] Figure 6 This is a cross-sectional view of the reinforcement mechanism of a lamp packaging box proposed by the present invention.
[0027] Figure 7 This is a schematic diagram of the disassembled structure of the plug-in board of a lamp packaging box proposed by the present invention.
[0028] Figure 8This is an overall flow chart of the production process of a lamp packaging box proposed by the present invention.
[0029] In the figure: 1. Box cover; 2. Packaging sticker; 3. Strobe test mechanism; 4. Buffer mechanism; 5. Box body; 6. Placement slot; 7. Line connection port; 8. Cutting line; 9. Reinforcement mechanism; 10. Foam box; 11. Buffer pad; 301. Detection gyroscope; 302. Gear; 303. Electric telescopic rod; 304. Battery box; 305. Bottom shell; 306. First perspective window; 307. Instruction manual; 308. Bevel mirror; 309. Limit slot; 310. Limit rod; 311. Rack; 312. Bearing seat; 313. Support Axis; 401, airbag; 402, clamping frame; 403, multi-section telescopic rod; 404, first spring; 405, connecting seat; 406, elastic sleeve; 407, support plate; 408, limit seat; 409, contact sphere; 410, second spring; 411, pressure rod; 412, inclined block; 413, support seat; 501, side paperboard; 502, second perspective window; 503, bottom plate; 504, corrugated paper; 901, plug board; 902, hinged rod; 9011, plug board body; 9012, linen; 9013, needle. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0031] The present invention discloses a lamp packaging box and a production process thereof, which are mainly used in the production of lamp packaging boxes.
[0032] Reference Figure 1 、 Figure 2 、 Figure 4 and Figure 5, a lighting packaging box, including a box body 5, the four corners of the box body 5 are distributed with reinforcement mechanisms 9, and a buffer mechanism 4 is provided in the box body 5, and a stroboscopic test mechanism 3 is provided at the bottom end of the box body 5, the buffer mechanism 4 includes two connecting seats 405 and is provided on the inner walls of the box body 5 on opposite sides, and the top and bottom ends of the connecting seats 405 are fixed with multi-section telescopic rods 403 at the same time, the output ends of the two multi-section telescopic rods 403 are connected to the clamping frame 402 at the same time, and the clamping frame 402 is provided with an airbag 401, and the clamping frame 402 is connected to the connecting seat 405 by a first spring 404, and the bottom end of the last section of the multi-section telescopic rod 403 at the bottom end of the connecting seat 405 is provided A limit seat 408 is provided, and a pressure rod 411 is inserted into the limit seat 408, a second spring 410 is provided between the inner wall of the top end of the pressure rod 411 and the limit seat 408, and a contact ball 409 is provided on the top end of the pressure rod 411, and an inclined surface block 412 is provided on the outer wall of the bottom end of the middle section of the same multi-section telescopic rod 403, and the inclined surface block 412 is in contact with the contact ball 409, an elastic sleeve 406 is provided on the inner wall of the bottom end of the box body 5, and the elastic sleeve 406 is filled with liquid PET, the opposite ends of the elastic sleeve 406 are respectively fixedly connected with support plates 407, and the pressure rod 411 is against the top end of the support plate 407, and the inner walls of the opposite sides of the box body 5 are respectively fitted with The cushion 11 is provided, and the inner walls on the other two sides of the box body 5 are respectively provided with a support 413, and a foam box 10 is provided on the support 413. A cutting line 8 is provided on the inner wall of one side of the box body 5 and below the multi-section telescopic rod 403. In the buffer mechanism 4, the top position of the lamp is first clamped by the clamping frame 402, and an inward clamping force is provided under the action of the first spring 404 to suspend the lamp in the air, and its multi-shaped bottom contacts the elastic sleeve 406. Since the elastic sleeve 406 is filled with liquid PET, when the bottom end of the lamp contacts the elastic sleeve 406, the distribution of the liquid PET in the elastic sleeve 406 will be changed by squeezing, thereby ensuring the The wrapping and buffering protection of the bottom end of the lamp can form multi-directional buffering protection through the foam box 10 that can hold accessories at the same time and the buffer pads 11 on both sides. At the same time, during the clamping process, when the multi-section telescopic rod 403 contracts, the inclined block 412 is displaced to contact the sphere 409, so that the pressure rod 411 is pressed down to the top of the support plate 407, thereby ensuring that the bottom end of the elastic sleeve 406 is flat on the bottom end of the box body 5, optimizing the stability of the buffer mechanism 4, and when the lamp is removed, the pressure rod 411 is released, and the elastic sleeve 406 can be pulled out from the cutting line 8 for secondary use, thereby improving the buffering effect of the packaging box by enhancing the buffering fit for special-shaped lamps.
[0033] Reference Figure 2 and Figure 4In a preferred embodiment, the box body 5 includes a bottom plate 503, and the outer wall of the bottom plate 503 is connected to four side paperboards 501, and the reinforcement mechanism 9 is located at the connection between adjacent side paperboards 501. A second perspective window 502 is embedded in the bottom plate 503, and the inner wall and outer wall of one of the side paperboards 501 are respectively provided with a line connection port 7 and a placement groove 6, and one end of the line connection port 7 is inserted into the placement groove 6.
[0034] Reference Figure 3 In a preferred embodiment, the stroboscopic testing mechanism 3 includes a bottom shell 305, and a first perspective window 306 is inlaid on the inner wall of one side of the bottom shell 305, a bevel mirror 308 is provided on the inner wall of the opposite side of the bottom shell 305, and a bearing seat 312 is fixed at the center position of the bottom inner wall of the bottom shell 305.
[0035] Reference Figure 3 In a preferred embodiment, a support shaft 313 is connected to the bearing seat 312, and the support shaft 313 is fixedly connected to the detection gyroscope 301 and the gear 302. The gear 302 is engaged with a rack 311, and one end of the rack 311 is connected to the electric telescopic rod 303.
[0036] Reference Figure 3 In a preferred embodiment, the other end of the rack 311 is connected to the limit rod 310, and the limit rod 310 is movably inserted into the limit slot 309. The electric telescopic rod 303 is connected to the battery box 304 through an electric wire, and an instruction manual 307 is attached to the outer wall of one side of the bottom shell 305. Since the elastic sleeve 406 and the liquid PET are transparent, the lamp can be powered by the connection line connection port 7 to light it up, and the light simultaneously passes through the elastic sleeve 406, the liquid PET and the second perspective window 502 to illuminate the detection gyroscope 301. The electric telescopic rod 303 drives the rack 311 to move repeatedly and rapidly, and through engagement with the gear 302, drives the detection gyroscope 301 to rotate continuously and rapidly to both sides. Through refraction by the bevel mirror 308, the image of the detection gyroscope 301 can be observed through the first perspective window 306, thereby observing the flicker of the lamp, thereby realizing the flicker test of high-quality lamps during the sales process, making it convenient for customers to quickly understand the quality of the lamps during the purchase process, which is conducive to increasing sales.
[0037] Reference Figure 6 In a preferred embodiment, two pieces of paper corrugations 504 are respectively arranged on the inner walls at both ends of each side paperboard 501, and a certain gap is left between the two pieces of paper corrugations 504. The reinforcement mechanism 9 includes multiple groups of plug plates 901 in groups of two, and each group of plug plates 901 is hinged to each other through a hinge rod 902.
[0038] Reference Figure 6 and Figure 7In a preferred embodiment, the plug board 901 is just inserted into the gap between the paper corrugations 504, and the plug board 901 includes a plug board body 9011, and linen 9012 is respectively adhered to the opposite sides of the plug board body 9011, and the linen 9012 and the plug board body 9011 are bonded around the edges and left empty in the middle.
[0039] Reference Figure 1 and Figure 7 In a preferred embodiment, a plurality of needles 9013 are provided in the empty positions on the linen 9012, a packaging sticker 2 is affixed to the outside of the box body 5, and the reinforcement mechanism 9 is included in the packaging sticker 2, and the top of the box body 5 is covered with a box cover 1.
[0040] Reference Figure 8 , a production process for a lamp packaging box, comprising the following specific steps:
[0041] S1: Component preparation: All components required for making the packaging box are ready for use, and the basic components are simultaneously installed on the side paperboard 501 and the bottom plate 503;
[0042] S2: Buffer mechanism installation inspection: install the buffer mechanism 4 partially located on the side paperboard 501 on the side paperboard 501 according to the position, and check the stability of the installation;
[0043] S3: Combining the box body: Fold the side paperboard 501. During the folding process, remove the components of the inserting plate 901 and the hinge rod 902, apply glue to the end of the needle 9013 of the inserting plate body 9011, and insert the inserting plate body 9011 into the gap between the paper corrugations 504;
[0044] S4: Auxiliary limiting: Cover the box cover 1 to perform auxiliary limiting until the glue of the reinforcement mechanism 9 is completely dry;
[0045] S5: Connect the stroboscopic test mechanism: Fix the stroboscopic test mechanism 3 at the bottom end of the box body 5 and ensure that the battery box 304 has power supply;
[0046] S6: Post-processing.
[0047] Reference Figure 8In a preferred embodiment, S6, the post-processing includes pasting the packaging sticker 2, placing the elastic sleeve 406 structure and placing the foam box 10. During the assembly of the packaging box, due to the setting position of the linen cloth 9012 of the needle 9013, it is not adhered to the plug board body 9011. Therefore, when the plug board 901 is inserted into the gap, the setting angle of the needle 9013 can be changed so that it can be inserted into the side paper board 501. After insertion, the needle 9013 is just inserted into the concave and convex part of the paper corrugated 504. When the glue is dry, in addition to producing a sticky effect, it can also solidify the needle 9013, further strengthening the connection stability of the four corners. On the other hand, by using the hinged rod 902 as a support, the support stability of the four corners of the packaging box can be enhanced, avoiding excessive stacking of the packaging box and deformation to cause squeezing of the lamp.
[0048] Working principle: When fixing the lamp, first clamp the top of the lamp through the clamping frame 402, and provide an inward clamping force under the action of the first spring 404 to suspend the lamp in the air, and its multi-shaped bottom contacts the elastic sleeve 406. Since the elastic sleeve 406 is filled with liquid PET, when the bottom of the lamp contacts the elastic sleeve 406, the distribution of the liquid PET in the elastic sleeve 406 will be changed by squeezing, thereby ensuring the wrapping and buffering protection of the bottom of the lamp. The foam box 10 that can hold accessories at the same time and the buffer pads 11 on both sides can form multi-directional buffering protection. At the same time, during the clamping process, multiple During the contraction of the telescopic rod 403, the inclined surface block 412 is displaced to contact the sphere 409, so that the pressure rod 411 is pressed down to the top of the support plate 407, thereby ensuring that the bottom end of the elastic sleeve 406 is flat on the bottom end of the box body 5, optimizing the stability of the buffer mechanism 4, and when the lamp is removed, the pressure rod 411 is loosened, and the elastic sleeve 406 can be pulled out from the cutting line 8 for secondary use, thereby improving the buffering effect of the packaging box by enhancing the buffering fit for the special-shaped lamp. In addition, since the elastic sleeve 406 and the liquid PET are in a transparent state, the lamp can be powered by the connection line connection port 7 to light it up, and The light passes through the elastic sleeve 406, the liquid PET and the second perspective window 502 at the same time, and shines on the detection gyro 301. The electric telescopic rod 303 drives the rack 311 to move repeatedly and quickly, and through the engagement with the gear 302, drives the detection gyro 301 to rotate continuously and quickly to both sides. It is refracted by the bevel mirror 308, and the image of the detection gyro 301 can be observed through the first perspective window 306, thereby observing the stroboscopic light of the lamp, thereby realizing the stroboscopic test of high-quality lamps during the sales process, making it easier for customers to quickly understand the quality of the lamps during the purchase process, which is conducive to increasing sales. During the assembly of the packaging box, due to the stimulating The linen cloth 9012 at the setting position of the needle 9013 is not adhered to the plug board body 9011. Therefore, when the plug board 901 is inserted into the gap, the setting angle of the needle 9013 can be changed so that it can be inserted into the side paper board 501. After insertion, the needle 9013 is just inserted into the concave and convex part of the paper corrugation 504. When the glue is dry, in addition to producing a sticky effect, it can also solidify the needle 9013, further strengthening the connection stability of the four corners. On the other hand, by using the hinged rod 902 as a support, the support stability of the four corners of the packaging box can be enhanced, avoiding excessive stacking of the packaging box and deformation to cause squeezing of the lamp.
[0049] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A lighting packaging box, comprising a box body (5), characterized in that: The box body (5) is provided with reinforcement mechanisms (9) at the four corners thereof, and a buffer mechanism (4) is provided inside the box body (5), and a stroboscopic test mechanism (3) is provided at the bottom end of the box body (5), and the buffer mechanism (4) comprises two connecting seats (405) and is provided on the inner walls of the box body (5) on opposite sides, and the top and bottom ends of the connecting seats (405) are simultaneously fixed with multi-section telescopic rods (403), and the output ends of the two multi-section telescopic rods (403) are simultaneously connected to the There is a clamping frame (402), and an air bag (401) is arranged in the clamping frame (402), and the clamping frame (402) is connected to the connecting seat (405) through a first spring (404), and a limit seat (408) is arranged at the bottom end of the last section of the multi-section telescopic rod (403) at the bottom end of the connecting seat (405), and a pressure rod (411) is inserted into the limit seat (408), and the inner wall of the top end of the pressure rod (411) is in contact with the limit seat (408). A second spring (410) is provided between the plurality of sections of the multi-section telescopic rod (403), and a contact ball (409) is provided at the top end of the pressure rod (411). An inclined surface block (412) is provided on the outer wall of the bottom end of the middle section of the multi-section telescopic rod (403), and the inclined surface block (412) is in contact with the contact ball (409). An elastic sleeve (406) is provided on the inner wall of the bottom end of the box body (5), and the elastic sleeve (406) is filled with liquid PET. The relative The two ends are respectively fixedly connected with support plates (407), and the pressure rod (411) is against the top of the support plate (407), the inner walls of the two opposite sides of the box body (5) are respectively fitted with buffer pads (11), and the inner walls of the other two sides of the box body (5) are respectively provided with support seats (413), and a foam box (10) is provided on the support seats (413), and a cutting line (8) is provided on the inner wall of one side of the box body (5) and at a position below the multi-section telescopic rod (403).
2. A lamp packaging box according to claim 1, characterized in that: The box body (5) comprises a bottom plate (503), and the outer wall of the bottom plate (503) is connected to four side paperboards (501), and the reinforcement mechanism (9) is located at the connection between adjacent side paperboards (501). A second perspective window (502) is embedded in the bottom plate (503), and the inner wall and outer wall of one of the side paperboards (501) are respectively provided with a line connection port (7) and a placement groove (6), and one end of the line connection port (7) is inserted into the placement groove (6).
3. The lamp packaging box according to claim 1, characterized in that: The stroboscopic test mechanism (3) comprises a bottom shell (305), wherein a first perspective window (306) is inlaid on an inner wall of one side of the bottom shell (305), a bevel mirror (308) is provided on an inner wall of an opposite side of the bottom shell (305), and a bearing seat (312) is fixed at the center position of the inner wall of the bottom end of the bottom shell (305).
4. A lamp packaging box according to claim 3, characterized in that: A support shaft (313) is connected inside the bearing seat (312), and a detection gyroscope (301) and a gear (302) are fixedly connected to the support shaft (313). The gear (302) is meshed with a rack (311), and one end of the rack (311) is connected to an electric telescopic rod (303).
5. A lamp packaging box according to claim 4, characterized in that: The other end of the rack (311) is connected to a limiting rod (310), and the limiting rod (310) is movably inserted into the limiting slot (309). The electric telescopic rod (303) is connected to a battery box (304) via an electric wire. An instruction manual (307) is attached to an outer wall of one side of the bottom shell (305).
6. The lamp packaging box according to claim 2, characterized in that: Two sheets of paper corrugations (504) are respectively arranged on the inner walls at both ends of each side paperboard (501), and a certain gap is left between the two sheets of paper corrugations (504). The reinforcing mechanism (9) includes a plurality of groups of inserting plates (901) in a group of two, and each group of inserting plates (901) is hinged to each other through a hinge rod (902).
7. The lamp packaging box according to claim 6, characterized in that: The inserting plate (901) is just inserted into the gap between the paper corrugations (504), and the inserting plate (901) includes an inserting plate body (9011), and linen (9012) is respectively attached to the two opposite sides of the inserting plate body (9011), and the linen (9012) and the inserting plate body (9011) are bonded on all sides and left empty in the middle.
8. The lamp packaging box according to claim 7, characterized in that: A plurality of needles (9013) are provided at the empty positions on the linen cloth (9012), a packaging sticker (2) is attached to the outside of the box body (5), and the reinforcement mechanism (9) is included in the packaging sticker (2), and the top end of the box body (5) is covered with a box cover (1).
9. A production process for a lamp packaging box, applied to the lamp packaging box according to claim 8, characterized in that: The specific steps include: S1: Component preparation: prepare all components required for making the packaging box, and install the basic components on the side paperboard (501) and the bottom plate (503) simultaneously; S2: Buffer mechanism installation inspection: install the buffer mechanism (4) partially located on the side paperboard (501) on the side paperboard (501) according to the position, and check the stability of the installation; S3: Combining the box body: Folding the side paperboard (501), taking out the components of the inserting plate (901) and the hinge rod (902), attaching glue to the end of the needle (9013) of the inserting plate body (9011), and inserting the inserting plate body (9011) into the gap between the paper corrugations (504); S4: Auxiliary limiting: Cover the box cover (1) to perform auxiliary limiting until the glue of the reinforcement mechanism (9) is completely dry; S5: Connect the stroboscopic test mechanism: Fix the stroboscopic test mechanism (3) at the bottom end of the box body (5) and ensure that the battery box (304) has power supply; S6: Post-processing.
10. The production process of a lamp packaging box according to claim 9, characterized in that: Before the boxes are combined in S3, the elastic sleeve structure is first placed inside the boxes, and then the boxes are combined.
Citation Information
Patent Citations
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