Energy-saving outdoor camping lamp

By using a multi-section adjustable telescopic bracket and threaded connection structure, combined with a hinged support plate and hooks, the installation problem of outdoor camping lights on surfaces without elevated platforms or smooth surfaces is solved, enabling flexible height and angle adjustment, improving lighting effect and stability, and making them easy to carry.

CN121296948APending Publication Date: 2026-01-09TAIZHOU CHANGHONG HUAMEI ELECTRIC APPLIANCE CO LTD
View PDF 10 Cites 0 Cited by

Patent Information

Application Number
CN202511871787.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-12
Publication Date
2026-01-09

AI Technical Summary

Technical Problem

Existing outdoor camping lights cannot be effectively installed without a high platform, and cannot be fixed on a smooth surface, resulting in poor lighting performance. Furthermore, existing support structures are bulky, inconvenient to carry, and easy to forget.

Method used

The lamp body adopts a multi-segment adjustable telescopic bracket structure, combined with threaded connection and hinge support plate, to achieve flexible adjustment of lamp body height and angle, and provides a hanging installation method through hooks to ensure stable fixation of lamp body in different environments.

Benefits of technology

It enables flexible adjustment of the lamp's height and angle in various environments, improving lighting effect and stability, while reducing carrying volume for easy transport and storage.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN121296948A_ABST
    Figure CN121296948A_ABST
Patent Text Reader

Abstract

The invention relates to the field of camping lamps, in particular to an energy-saving outdoor camping lamp which comprises a cylindrical lamp body, a mounting hole penetrating through the upper side and the lower side is coaxially formed in the lamp body, a limiting sleeve is coaxially arranged in the mounting hole, a first rod is coaxially and slidably connected in the limiting sleeve, and a second rod is coaxially and slidably connected in the first rod. A second rod is coaxially and slidably connected into the first rod, a third rod is coaxially and slidably connected into the second rod, and a connecting rod is slidably connected into the third rod. According to the camping lamp, the through mounting hole is formed in the middle of the lamp body, the telescopic support and other structures are arranged in the hole, multiple sections of telescopic support structures capable of being completely stored are arranged, the lamp body can have smaller occupied space when being completely stored, the carrying convenience of the camping lamp is improved, when a lamp source needs to be higher, the telescopic support can be lengthened, and the lamp body is more convenient to carry. Due to the multi-section structure, the telescopic support can have a high height, the height of the lamp source is guaranteed, and convenience is guaranteed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of camping lights, specifically an energy-saving outdoor camping light. Background Technology

[0002] Outdoor camping lights are an important tool for outdoor activities. In practical applications, in order to achieve the ideal lighting range, camping lights are usually installed at high places to better play their lighting role. In environments such as forests, users can use tree branches to hang them. However, camping environments are very different. In open areas such as rocky mountains and deserts without greenery, there is often a lack of suitable high fixed points, which makes it impossible to effectively set up the lights and greatly reduces the lighting effect.

[0003] To address the aforementioned issues, existing technologies offer several solutions. For instance, patent application CN202410704081.7 discloses a vehicle-mounted outdoor camping light, which uses a magnetic adsorption structure to fix the camping light to the vehicle's chassis surface, offering advantages such as high installation stability and ease of placement. However, this solution has limitations in practical use: the installation height of the camping light is limited by the vehicle itself, and in scenarios without vehicles or other smooth metal surfaces, the single adsorption method cannot achieve high-level fixation, thus failing to meet the needs of various outdoor environments. Another example is using a tripod for support at the bottom of the camping light. While this effectively increases the light's height, its application has significant limitations: the tripod is bulky when folded, making it inconvenient to carry, and the tripod and camping light are connected as a unit, resulting in poor overall integrity and making it easy for users to forget to bring the tripod, thus failing to support the camping light. Summary of the Invention

[0004] The purpose of this invention is to provide an energy-saving outdoor camping light to solve the problem of insufficient light source when there is no high platform for installing camping lights, and to solve the problem that existing technologies cannot install them when there is no smooth surface.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] An energy-saving outdoor camping light includes a light body, a first pole, a second pole, a third pole, a connecting rod, and a connecting block. The light body has coaxial mounting holes extending through its upper and lower sides. A limiting sleeve is installed within each mounting hole. The first pole is slidably connected and installed inside the limiting sleeve. The second pole is slidably connected and installed at the lower end of the first pole. The third pole is slidably connected and installed inside the second pole. The upper half of the connecting rod is slidably connected and installed inside the third pole. The connecting block is slidably connected and installed at the lower half of the connecting rod. Locking components are provided between the limiting sleeve, the first pole, the second pole, the third pole, the connecting rod, and the connecting block.

[0007] Specifically, the connecting block has a first hinge seat on three sides. The first hinge seat is connected to the first support plate by a first adjusting bolt. The angle of the first support plate is adjusted by the first adjusting bolt to achieve the required support surface. The lower end of the first support plate is connected to the second support plate by a second adjusting bolt. When installed on an uneven ground, the second support plate is unfolded and the bracket is fixed on the ground. The angle of the second support plate is fixed by the second adjusting bolt to complete the fixing of the lamp body.

[0008] The device includes a cylindrical lamp body with coaxial mounting holes extending through both the top and bottom sides. A limiting sleeve is coaxially installed within each mounting hole. A first rod is slidably connected coaxially within the limiting sleeve. A second rod is slidably connected coaxially within the first rod. A third rod is slidably connected coaxially within the second rod. A connecting rod is slidably connected within the third rod. A connecting block is slidably connected to the outer wall of the connecting rod. The vertical projection of the connecting block is triangular. A first support plate is hinged to each of the three side walls of the connecting block. Locking components are provided between the limiting sleeve and the first rod, between the first rod and the second rod, between the third rod and the connecting rod, and between the connecting rod and the connecting block. These locking components are used to lock axial relative displacement.

[0009] Optionally, the locking component may be at least one of bolt locking connection and pin locking connection. Both of the above solutions can achieve sliding connection and locking of the limiting sleeve, rod 1, rod 2, rod 3, connecting rod and connecting block. However, with long-term use, the bolts and pins may gradually loosen due to vibration, temperature changes or external forces, which may cause errors during adjustment and result in the failure to reach the expected height. Therefore, neither of the above solutions is a preferred locking component of the present invention.

[0010] Preferably, the locking assembly includes a slot, a limiting groove, a limiting block, a first internal thread, a first thread groove, a first external thread, a second internal thread, a second thread groove, a second external thread, a third internal thread, a third thread groove, and a third external thread. The limiting groove is formed inside the limiting sleeve and extends along the axis of the limiting sleeve. The upper end of the limiting groove penetrates the limiting sleeve, while the lower end does not. The slot is located on one side wall of the limiting groove, and there are at least three slots, which are equidistantly arranged vertically. The limiting block is located on the upper outer wall of the first rod and is slidably installed within the limiting groove. The first internal thread, the second internal thread, and the third internal thread are respectively located on the first rod, the second rod, and the third rod. On the inner sidewall of the rod, the first threaded groove, the second threaded groove, and the third threaded groove are respectively provided on the inner sidewall of rod No. 1, rod No. 2, and rod No. 3. The first internal thread and the first threaded groove, the second internal thread and the second threaded groove, and the third internal thread and the third threaded groove are each provided with at least 3, and are arranged alternately. The first external thread, the second external thread, and the third external thread are respectively provided on the upper outer sidewall of rod No. 2, rod No. 3, and connecting rod. The first external thread and the first internal thread, the second external thread and the second internal thread, and the third external thread and the third internal thread are threadedly connected. The first internal thread and the first external thread have the same thread width, the second internal thread and the second external thread have the same thread width, and the third internal thread and the third external thread have the same thread width.

[0011] By setting a limiting groove and a slot inside the limiting sleeve, and setting a limiting block at the upper end of the first rod, when the limiting block of the first rod needs to slide in the limiting groove to reach the desired position, rotating the first rod causes the limiting block on the first rod to enter the slot, completing the position locking and thus restricting the axial movement of the first rod. By setting a first internal thread and a first thread groove inside the first rod, and setting a first external thread on the upper outer wall of the second rod, when it is necessary to extend the second rod beyond the first rod, rotating the second rod causes the first external thread on the second rod to rotate into the first thread groove, disengaging the first external thread from the first internal thread, releasing the axial limitation of the second rod, and allowing adjustment of the length of the second rod extending beyond the first rod. After adjusting to the appropriate length, rotating rod number two causes the first external thread on rod number two to rotate outside the first thread groove. The first external thread and the first internal thread form a threaded connection, thereby restricting the axial movement of rod number two. By setting a second internal thread and a second thread groove inside rod number two, and setting a second external thread on the upper outer side wall of rod number three, when it is necessary to extend rod number three beyond rod number two, rotating rod number three causes the second external thread on rod number three to rotate into the second thread groove. The second external thread and the second internal thread are disengaged, and the axial limit of rod number three is released. The length of rod number three extending beyond rod number two can be adjusted. After adjusting to the appropriate length, rotating rod number three causes the second external thread on rod number three to rotate into the second thread groove. Outside the groove, the second external thread and the second internal thread form a threaded connection, thereby restricting the axial movement of the third rod. By setting a third internal thread and a first threaded groove inside the third rod, and setting a third external thread on the outer side wall of the upper side of the connecting rod, when it is necessary to extend the connecting rod beyond the third rod, rotating the connecting rod causes the third external thread on the connecting rod to rotate into the third threaded groove. The threaded connection between the third external thread and the third internal thread is released, and the axial limit of the connecting rod is released. The length of the connecting rod extending beyond the third rod can be adjusted. When adjusted to a suitable length, rotating the connecting rod causes the third external thread on the connecting rod to rotate outside the third threaded groove. The threaded connection between the third external thread and the third internal thread is formed, thereby restricting the axial movement of the connecting rod. Axial movement solves the problem of excessively low light source in camping lights without elevated platforms. A threaded connection structure between poles one, two, and three allows for multi-level adjustment of their extension. This threaded connection structure is self-locking, ensuring the stability of the camping light's installation height. Furthermore, the light body, poles one, two, and three are relatively independent; pole one can be pulled out from the top of the light body, pole two from the bottom of pole one, and pole three from the bottom of pole two. This modular design allows for easy replacement of damaged poles, extending the camping light's lifespan.

[0012] Preferably, the lower side of the outer wall of the connecting rod is provided with multiple connecting threads, the inner wall of the connecting block is provided with multiple fourth internal threads and fourth thread grooves, the fourth internal threads and fourth thread grooves are arranged alternately, the connecting threads and fourth internal threads are threadedly connected, and a limit plate is coaxially fixedly installed on the lower end of the connecting rod.

[0013] By setting multiple connecting threads on the outer wall of the connecting rod and multiple fourth internal threads and fourth thread grooves inside the connecting block, the connecting block can be adjusted up and down on the connecting rod. This allows the connecting rod to retract into the lamp body, and the connecting block to retract into the mounting hole, reducing the storage volume. Furthermore, the height of the connecting block and the connecting rod is adjustable to increase the height of the camping lamp, thereby increasing the height of the light source. A limit plate at the lower end of the connecting rod prevents the connecting block from detaching from the connecting rod, thus avoiding loss of the connecting block.

[0014] Preferably, the lower inner walls of rods No. 1, No. 2, and No. 3 are respectively provided with a first threaded notch, a second threaded notch, and a third threaded notch, which are slidably connected to each other. The inner walls of the first threaded notch, the second threaded notch, and the third threaded notch have the same diameter as the outer walls of rods No. 2, No. 3, and the connecting rod.

[0015] When the length between rod 2 and rod 1 is adjusted to the maximum, the first threaded locking jaw prevents the first external thread on the upper sidewall of rod 2 from disengaging, thus preventing rod 2 from separating from rod 1. When the length between rod 3 and rod 2 is adjusted to the maximum, the second threaded locking jaw prevents the second external thread on the upper sidewall of rod 3 from disengaging, thus preventing rod 3 from separating from rod 2. When the length between the connecting rod and rod 3 is adjusted to the maximum, the third threaded locking jaw prevents the third external thread on the upper sidewall of the connecting rod from disengaging, thus preventing the connecting rod from separating from rod 3. The first, second, and third threaded locking jaws all play a restrictive role, thereby preventing rod 1, rod 2, rod 3, and the connecting rod from falling off and being lost.

[0016] Preferably, each of the three side walls of the connecting block has a first hinge seat, and the side wall of the first hinge seat has a horizontally arranged mounting hole. A first adjusting bolt is inserted into the mounting hole, and a fastening nut is threaded to the tail of the first adjusting bolt. The first support plate is hinged to the connecting block through the first hinge seat, the first adjusting bolt and the fastening nut.

[0017] When the light fixture requires a ground support frame, the first support plate is rotated to a suitable angle by adjusting the tightness of the first adjusting bolt. Then, the first adjusting bolt is tightened to secure the first support plate. Adjusting the first adjusting bolt allows the first support plate to adapt to different terrain angles. Furthermore, adjusting the bolt tightening force ensures the stability of the camping light installation.

[0018] Preferably, the end of the first support plate furthest from the connecting block is provided with a second hinge seat, a second adjusting bolt, and a fastening nut. The second support plate is hinged to the end of the first support plate furthest from the connecting block via the second hinge seat, the second adjusting bolt, and the fastening nut on that side. By adjusting the second adjusting bolt, the second support plate can be adjusted to different angles at the connection end of the first support plate, increasing the contact area with the ground and thus adapting to different ground angles, improving the overall stability of the camping light when it is placed on the ground.

[0019] Preferably, a limiting ring is coaxially provided on the upper surface of the lamp body, and the limiting ring is threadedly connected to the mounting hole. When the camping lamp is stored, the limiting ring is used to prevent the first pole, second pole, third pole, connecting rod, first support plate and second support plate from detaching from the upper end of the lamp body, thus preventing the structure supporting the lamp body from separating from the lamp body when the camping lamp is stored, thereby improving the overall integrity of the camping lamp; and since the limiting ring is threadedly connected to the lamp body, the limiting ring can be detached from the lamp body. After the limiting ring is detached from the lamp body, the first pole, second pole, third pole, connecting rod, first support plate and second support plate can be pulled upward within the limiting sleeve, which facilitates replacement and maintenance in case of damage to the lamp body's support structure.

[0020] Preferably, a hook is fixedly provided on the upper end face of the first pole, and the length of the first pole and the height of the lamp body are L1 and L2 respectively, where 1.2L2≤L1≤1.3L2.

[0021] By installing hooks on pole number 1, the camping light can be directly suspended from tree branches, tent beams, or other high locations when needed, further expanding the installation options and meeting the needs of different scenarios. Setting the length of pole number 1 and the height of the light body within the range of 1.2L2≤L1≤1.3L2 ensures the overall structural stability of the camping light, facilitating carrying and storage. If pole number 1 is too short, the light body may not be able to be raised to a suitable height when suspended via hooks, limiting the lighting range; if pole number 1 is too long, it will not only increase the overall storage volume but may also cause instability due to a high center of gravity, easily leading to swaying or even tipping over. This length range ensures that the light body reaches the ideal height when suspended, providing sufficient and suitable lighting, while also ensuring the stability of the overall structure for easy carrying and storage.

[0022] Preferably, the lower end face of the second support plate is provided with multiple anti-slip stripes made of elastic rubber, which are evenly distributed in a linear pattern. The anti-slip stripes help to improve the grip on smooth terrain, increase friction, and improve the stability of installation. The use of elastic rubber can increase the impact resistance when falling and increase the service life of the second support plate.

[0023] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0024] 1. This invention provides a through mounting hole in the middle of the lamp body, through which a telescopic bracket and other structures are installed. The telescopic bracket structure has multiple sections that can be fully retracted, allowing the lamp body to occupy less space when fully retracted, thus improving the portability of the camping lamp. When it is necessary to raise the lamp above the light source, the bracket can be extended and retracted. The multi-section structure allows the telescopic bracket to have a high height, ensuring the height of the light source and guaranteeing convenience.

[0025] 2. By setting up a first support plate and a second support plate, when the camping lamp body needs a support, the first support plate can be fixedly supported on the ground at a suitable angle by adjusting a suitable angle. By adjusting the second support plate, the contact area between the support plate and the ground can be increased, so that the second support plate is completely fixedly in contact with the ground, thereby improving the stability of the lamp body.

[0026] 3. By setting up a hook, when the camping lamp body needs a support, the lamp body structure can be adjusted to allow the hook to be stored in the lamp body. When the support is stored, the hook is fully exposed from the top of the lamp body, which makes it easy to hang in a high place, thus retaining the function of traditional hanging. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the structure of the energy-saving outdoor camping light of the present invention;

[0028] Figure 2 This is a partial cross-sectional view of the camping light body of the present invention;

[0029] Figure 3 This is a schematic diagram of the structure of pole No. 1, pole No. 2, pole No. 3, and connecting pole;

[0030] Figure 4 This is a top view of pole number one;

[0031] Figure 5 for Figure 3 Enlarged view of point A in the middle;

[0032] Figure 6 for Figure 3 Enlarged view at point B in the middle;

[0033] Figure 7 for Figure 3 Enlarged view at point C;

[0034] Figure 8 A schematic diagram of the connecting block, first support plate, second support plate, adjusting bolts, and fixing bolts;

[0035] Figure 9 A schematic diagram of the bottom of the connecting block, the first support plate, the second support plate, the adjusting bolts, and the fixing bolts;

[0036] Figure 10 A schematic diagram of the connecting rod, connecting block, first support plate, and second support plate;

[0037] Figure 11 This is a schematic diagram of the camping lamp storage of the present invention.

[0038] In the diagram: 1. Lamp body; 101. Limiting ring; 102. Limiting groove; 103. Slot; 104. Lampshade mounting slot; 105. Mounting hole; 106. Limiting sleeve; 2. Lampshade; 3. Rod No. 1; 301. Hook; 302. First internal thread; 303. Limiting block; 304. First threaded bayonet; 305. First threaded groove; 4. Rod No. 2; 401. First external thread; 402. Second internal thread; 403. Second threaded bayonet; 404. Second threaded groove; 5. Rod No. 3; 01. Third internal thread; 502. Second external thread; 503. Third thread bayonet; 504. Third thread groove; 6. Connecting rod; 601. Connecting thread; 602. Limiting plate; 603. Third external thread; 604. Fourth thread groove; 7. Connecting block; 701. Fourth internal thread; 702. First hinge seat; 8. First support plate; 801. Second hinge seat; 9. Second support plate; 901. Anti-slip stripe; 10. First adjusting bolt; 11. Fastening nut; 12. Second adjusting bolt. Detailed Implementation

[0039] Please see Figures 1 to 11 This invention provides an energy-saving outdoor camping light, the technical solution of which is as follows:

[0040] For details, please refer to Figure 1 and Figure 11An energy-saving outdoor camping light includes a lamp body 1, which is cylindrical and has mounting holes 105 coaxially extending through its upper and lower sides. A limiting sleeve 106 is coaxially disposed within the mounting holes 105. A first rod 3 is slidably connected coaxially within the limiting sleeve 106. A second rod 4 is slidably connected coaxially within the first rod 3. A third rod 5 is slidably connected coaxially within the second rod 4. A connecting rod 6 is slidably connected within the third rod 5. A connecting block 7 is slidably connected to the outer wall of the connecting rod 6. The vertical projection of the connecting block 7 is triangular. A first support plate 8 is hinged to each of the three side walls of the connecting block 7. A second hinge seat 801 is disposed on the side of the first support plate 8 furthest from the connecting block 7. The second hinge seat 801 is connected to the second support plate 9 via... The second adjusting bolt 12 is connected to the fastening nut 11. Locking components are provided between the limiting sleeve 106 and the first rod 3, between the first rod 3 and the second rod 4, between the third rod 5 and the connecting rod 6, and between the connecting rod 6 and the connecting block 7. The locking components include a slot 103, a limiting slide groove 102, a limiting block 303, a first internal thread 302, a first threaded slide groove 305, a first external thread 401, a second internal thread 402, a second threaded slide groove 404, a second external thread 502, a third internal thread 501, a third threaded slide groove 504, and a third external thread 603. The limiting slide groove 102 is opened inside the limiting sleeve 106 and extends along the axis of the limiting sleeve 106. The upper end of the limiting slide groove 102 passes through the limiting block 7. The sleeve 106 has a lower end that does not penetrate the limiting sleeve 106. A slot 103 is provided on one side wall of the limiting slide groove 102. There are at least three slots 103, and they are equidistantly arranged vertically. A limiting block 303 is provided on the upper outer wall of the first rod 3, and the limiting block 303 is slidably installed within the limiting slide groove 102. A first internal thread 302, a second internal thread 402, and a third internal thread 501 are respectively provided on the inner side walls of the first rod 3, the second rod 4, and the third rod 5. A first thread slide groove 305, a second thread slide groove 404, and a third thread slide groove 504 are respectively provided on the inner side walls of the first rod 3, the second rod 4, and the third rod 5. The first internal thread 302 and the first thread slide groove 305, the second... The internal thread 402 and the second thread groove 404, the third internal thread 501 and the third thread groove 504 are each provided with at least three, and are arranged alternately. The first external thread 401, the second external thread 502 and the third external thread 603 are respectively provided on the upper outer side wall of the second rod 4, the third rod 5 and the connecting rod 6. The first external thread 401 is threaded to the first internal thread 302, the second external thread 502 and the second internal thread 402, the third external thread 603 and the third internal thread 501. The first internal thread 302 and the first external thread 401 have the same thread width, the second internal thread 402 and the second external thread 502 have the same thread width, and the third internal thread 501 and the third external thread 603 have the same thread width.A limiting ring 101 is coaxially provided on the upper surface of the lamp body 1. The limiting ring 101 is threadedly connected to the mounting hole 105. The lower inner walls of rods 3, 4, and 5 are respectively coaxially provided with a first threaded slot 304, a second threaded slot 403, and a third threaded slot 503. The inner walls of the first threaded slot 304, the second threaded slot 403, and the third threaded slot 503 have the same diameter as the outer walls of rods 4, 5, and 6, and are slidably connected. A hook 301 is fixedly provided on the upper surface of rod 3. The length of rod 3 and the height of lamp body 1 are 250mm and 200mm, respectively.

[0041] See Figure 1 , Figures 7 to 9 The lower side of the outer wall of the connecting rod 6 is provided with multiple connecting threads 601, and the inner wall of the connecting block 7 is provided with multiple fourth internal threads 701 and fourth thread grooves 604. The fourth internal threads 701 and fourth thread grooves 604 are arranged alternately. The connecting threads 601 and fourth internal threads 701 are threadedly connected. A limit plate 602 is coaxially fixedly installed on the lower end of the connecting rod 6. Each of the three side walls of the connecting block 7 has a first hinge seat 702. A horizontally arranged mounting hole 105 is formed on the side wall of the first hinge seat 702. A first adjusting bolt 10 is inserted into the mounting hole 105, and a fastening nut 11 is threaded to the tail of the first adjusting bolt 10. The first support plate 8 is hinged to the connecting block 7 via the first hinge seat 702, the first adjusting bolt 10, and the fastening nut 11. At the end of the first support plate 8 away from the connecting block 7, a second hinge seat 801, a second adjusting bolt 12, and a fastening nut 11 are provided. At the end of the first support plate 8 away from the connecting block 7, a second support plate 9 is hinged and installed via the second hinge seat 801, the second adjusting bolt 12, and the fastening nut 11 on that side. The lower end face of the second support plate 9 has multiple anti-slip stripes 901 made of elastic rubber, and the multiple anti-slip stripes 901 are linearly and evenly distributed.

[0042] Working principle: Please refer to Figures 1 to 11When in an environment without a high platform, and needing to raise the camping light for better illumination, rotate pole 3 to extend it downwards. The limiting block 303 on the upper side of pole 3 slides along the limiting groove 102 inside the limiting sleeve 106. When it reaches the desired position, reverse pole 3. This time, the limiting block 303 enters the slot 103, locking the position of pole 3. Then rotate pole 4 to misalign the first external thread 401 at the upper end of pole 4 with the first internal thread 302 inside pole 3. At this time, the first external thread 401 enters the first thread groove 305, allowing for axial adjustment. When the first external thread 401 at the upper end of pole 4 reaches the very end of pole 3, the first thread... The threaded retainer 304 restricts the first external thread 401 to prevent the two rods from separating. Then, rotate in the opposite direction to connect the first external thread 401 on rod 4 with the first internal thread 302, locking the position between rod 4 and rod 3. Continue rotating rod 5 to misalign the second external thread 502 at the upper end of rod 5 with the second internal thread 402 inside rod 4. At this point, the second external thread 502 enters the second thread groove 404, allowing for axial adjustment. When the second external thread 502 at the upper end of rod 5 reaches the very end of rod 4, the second thread retainer 403 restricts the second external thread 502 to prevent the two rods from separating. Then, rotate in the opposite direction to connect the second external thread 502 on rod 5 with the second internal thread 402. 02. Threaded connection: Lock the position between rod 5 (number 3) and rod 4 (number 2). Next, rotate connecting rod 6 to misalign the third external thread 603 at the upper end of connecting rod 6 with the third internal thread 501 inside rod 5 (number 3). At this time, the third external thread 603 enters the third thread groove 504, allowing for axial adjustment. When the third external thread 603 at the upper end of connecting rod 6 reaches the very end of rod 5 (number 3), the third thread retainer 503 restricts the third external thread 603, preventing the two rods from separating. Then, rotate in the opposite direction to thread the third external thread 603 on connecting rod 6 with the third internal thread 501, locking the position between connecting rod 6 and rod 5 (number 3). Finally, rotate connecting block 7 to thread the fourth internal thread 701 inside connecting block 7 with the lower end of connecting rod 6. When the connecting thread 601 on the side is misaligned, the fourth internal thread 701 enters the fourth thread groove 604, allowing for axial height adjustment. When the connecting block 7 is adjusted to the lowest point of the connecting rod 6, the limiting plate 602 restricts the connecting block 7 to prevent it from disengaging from the connecting rod 6. At this point, the connecting block 7 is reversed so that the fourth internal thread 701 reconnects with the connecting thread 601 on the lower side of the connecting rod 6, completing the position locking of the connecting block 7 and the connecting rod 6. At this point, the telescopic rod structure is fully extended. Finally, the first support plate 8, which is hinged to the connecting block 7, is unfolded by adjusting the first adjusting bolt 10 to achieve the first stage of support. Then, the second support plate 9, which is hinged to the first support plate 8, is unfolded by adjusting the second adjusting bolt 12 to achieve the best support effect.

[0043] When storing the camping light, adjust the second adjusting bolt 12 and the first adjusting bolt 10 to close the unfolded second support plate 9 and the first support plate 8, so that the first support plate 8 fits against the side wall of the connecting block 7. Rotate the connecting block 7 to disengage the fourth internal thread 701 from the connecting thread 601 on the lower side of the connecting rod 6, so that the fourth internal thread 701 enters the fourth thread groove 604. Adjust the connecting block 7 towards the upper end of the connecting rod 6. When it reaches the highest position, reverse the connecting block 7 to connect the fourth internal thread 701 with the connecting thread 601. At this time, lock the position of the connecting block 7 and the connecting rod 6. Then rotate the connecting rod 6 to make the third external thread... 603 is misaligned with the third internal thread 501 inside rod 5. At this time, the third external thread 603 enters the third thread groove 504, allowing the connecting rod 6 to be adjusted axially up and down. When the upper part of the connecting rod 6 is fully inserted into rod 5, the connecting rod 6 is reversed so that the third external thread 603 connects with the third internal thread 501. At this time, the positions of the connecting rod 6 and rod 5 are locked. Then, rod 5 is rotated so that the second external thread 502 on the upper side of rod 5 is misaligned with the second internal thread 402 inside rod 4. At this time, the second external thread 502 enters the second thread groove 404, allowing rod 5 to be adjusted axially up and down. Adjust the lower axial direction. When rod 3 (5) is fully engaged with rod 2 (4), reverse rod 3 (5) to connect the second external thread 502 with the second internal thread 402. At this point, lock the positions of rod 3 (5) and rod 2 (4). Then rotate rod 2 (4) to misalign the first external thread 401 on the upper side of rod 1 (3) with the first internal thread 302 inside rod 1 (3). At this point, the first external thread 401 enters the first thread groove 305, allowing rod 2 (4) to be adjusted vertically. When rod 2 (4) is fully engaged with rod 1 (3), reverse rod 1 (3) to connect the first external thread 401 with the first internal thread 302. At this point, lock rod 2 (4). The positions of rod 4 and rod 3 are determined. Finally, rod 3 is rotated so that the limiting block 303 on the upper side of rod 3 disengages from the slot 103 inside the limiting sleeve 106. At this time, the limiting block 303 enters the limiting slide groove 102, allowing rod 3 to be adjusted axially up and down. When rod 3 reaches the uppermost end of the limiting sleeve 106, the limiting ring 101 restricts rod 3 from coming out. At this time, the hook 301 at the upper end of rod 3 is completely exposed outside the lamp body 1, and the first support plate 8 at the lower end is completely retracted into the lamp body 1. Rod 3 is then reversed so that the limiting block 303 enters the uppermost slot 103, thus locking the position of rod 3.

[0044] The specific embodiment of the present invention has been described in detail above with reference to the accompanying drawings, but the present invention is not limited to the embodiments described above. For those skilled in the art, various changes, modifications, substitutions, and variations made to these embodiments without departing from the principles and ideas of the present invention should still fall within the protection scope of the present invention.

Claims

1. An energy-saving outdoor camping light, comprising a lamp body (1), characterized in that, The lamp body (1) is cylindrical, and a mounting hole (105) is coaxially provided on the lamp body (1) through the upper and lower sides. A limiting sleeve (106) is coaxially provided in the mounting hole (105). A first rod (3) is coaxially slidably connected in the limiting sleeve (106). A second rod (4) is coaxially slidably connected in the first rod (3). A third rod (5) is coaxially slidably connected in the second rod (4). A connecting rod (6) is slidably connected in the third rod (5). A connecting block (7) is slidably connected to the outer side wall of the connecting rod (6). The vertical projection of the connecting block (7) is triangular. The three side walls of the connecting block (7) are all hinged with a first support plate (8). The limiting sleeve (106) is provided with a locking component between the first rod (3), between the first rod (3) and the second rod (4), between the third rod (5) and the connecting rod (6), and between the connecting rod (6) and the connecting block (7). The locking component is used to lock the axial relative displacement.

2. The energy-saving outdoor camping light according to claim 1, characterized in that, The locking assembly includes a slot (103), a limiting groove (102), a limiting block (303), a first internal thread (302), a first threaded groove (305), a first external thread (401), a second internal thread (402), a second threaded groove (404), a second external thread (502), a third internal thread (501), a third threaded groove (504), and a third external thread (603). The limiting groove (102) is formed inside the limiting sleeve (106) and extends along the axis of the limiting sleeve (106). The upper end of the limiting groove (102) The lower end of the limiting sleeve (106) is not through the limiting sleeve (106). The slot (103) is provided on one side wall of the limiting slide groove (102). The number of slots (103) is at least 3, and the multiple slots (103) are equidistantly arranged in the vertical direction. The limiting block (303) is provided on the upper outer wall of the first rod (3). The limiting block (303) is slidably installed in the limiting slide groove (102). The first internal thread (302), the second internal thread (402), and the third internal thread (501) are respectively provided on the first rod (3), the second rod (4), and the... On the inner wall of rod 3 (5), the first threaded groove (305), the second threaded groove (404), and the third threaded groove (504) are respectively provided on the inner walls of rod 1 (3), rod 2 (4), and rod 3 (5). The first internal thread (302) and the first threaded groove (305), the second internal thread (402) and the second threaded groove (404), the third internal thread (501) and the third threaded groove (504) are each provided with at least 3, and are arranged alternately. The first external thread (401), the second external thread (502), and the third external thread (604) are provided with at least 3, and are arranged alternately. 03) On the upper outer side wall of rod No. 2 (4), rod No. 3 (5) and connecting rod (6), respectively, the first external thread (401) and the first internal thread (302), the second external thread (502) and the second internal thread (402), the third external thread (603) and the third internal thread (501) are threaded together. The first internal thread (302) and the first external thread (401) have the same thread width, the second internal thread (402) and the second external thread (502) have the same thread width, and the third internal thread (501) and the third external thread (603) have the same thread width.

3. The energy-saving outdoor camping light according to claim 2, characterized in that, The lower side of the outer wall of the connecting rod (6) is provided with multiple connecting threads (601), and the inner side wall of the connecting block (7) is provided with multiple fourth internal threads (701) and fourth thread grooves (604). The fourth internal threads (701) and fourth thread grooves (604) are arranged alternately. The connecting threads (601) and fourth internal threads (701) are threaded together. A limit plate (602) is coaxially fixedly installed on the lower end of the connecting rod (6).

4. An energy-saving outdoor camping light according to claim 3, characterized in that, The lower inner walls of rod 1 (3), rod 2 (4), and rod 3 (5) are respectively provided with a first threaded bayonet (304), a second threaded bayonet (403), and a third threaded bayonet (503) on the same axis. The inner walls of the first threaded bayonet (304), the second threaded bayonet (403), and the third threaded bayonet (503) are respectively the same diameter as the outer walls of rod 2 (4), rod 3 (5), and connecting rod (6), and are slidably connected.

5. An energy-saving outdoor camping light according to claim 1, characterized in that, The connecting block (7) has a first hinge seat (702) on each of its three side walls. The first hinge seat (702) has a horizontally set mounting hole on its side wall. A first adjusting bolt (10) is inserted into the mounting hole. A fastening nut (11) is threaded to the tail of the first adjusting bolt (10). The first support plate (8) is hinged to the connecting block (7) through the first hinge seat (702), the first adjusting bolt (10) and the fastening nut (11).

6. An energy-saving outdoor camping light according to claim 5, characterized in that, The first support plate (8) is provided with a second hinge seat (801), a second adjusting bolt (12) and a fastening nut (11) at one end away from the connecting block (7). The second support plate (9) is hinged to the first support plate (8) away from the connecting block (7) through the second hinge seat (801), the second adjusting bolt (12) and the fastening nut (11) on that side.

7. An energy-saving outdoor camping light according to claim 2, characterized in that, A limiting ring (101) is coaxially provided on the upper surface of the lamp body (1), and the limiting ring (101) is threadedly connected to the mounting hole (105).

8. An energy-saving outdoor camping light according to claim 1, characterized in that, A hook (301) is fixedly installed on the upper end face of the first pole (3). The length of the first pole (3) and the height of the lamp body (1) are L1 and L2 respectively, and 1.2L2≤L1≤1.3L2.

9. An energy-saving outdoor camping light according to claim 6, characterized in that, The lower end face of the second support plate (9) is provided with multiple anti-slip stripes (901), which are made of elastic rubber and are arranged in a linear and uniform manner.

Citation Information

Patent Citations

  • Vehicle-mounted outdoor camping lamp

    CN118309981A

  • Multifunctional photographing device

    CN107387982A

  • Convenient chopsticks

    CN1969722A

  • Telescopic and foldable outdoor illuminating lamp

    CN219318359U

  • Height-adjustable high-pole lamp for highway electromechanical engineering

    CN219713251U