Glass fiber reinforced plastic composite tube box
The fiberglass composite conduit box with boltless assembly structure solves the problems of cumbersome assembly and insufficient adaptability of traditional fiberglass conduit boxes, realizes the storage of high-density conduits and the safe protection of easily damaged conduits, and improves the overall protection effect of conduits.
Patent Information
- Application Number
- CN202520003668.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-02
AI Technical Summary
Traditional fiberglass pipe boxes rely on bolts for fixing, which makes assembly cumbersome and fails to meet the adaptability of simultaneously satisfying high-density storage and protection against easy damage.
Employing a boltless assembly structure, the cover and body of the enclosure are assembled without bolts by using hook blocks and snap-fit grooves or by interlocking bolts with convex pads. This makes it suitable for high-density conduit storage and protection of easily damaged conduits.
It improves the safety and stability of conduit protection, facilitates the stacking and storage of high-density conduits, and provides safety padding for easily damaged conduits, reducing friction and collision losses.
Smart Images

Figure CN223736667U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass steel technical field, concretely is a kind of glass steel composite pipe box. BACKGROUND
[0002] Glass steel pipe box is a kind of non-metal pipe box of light weight, high strength, corrosion resistance, it is glass fiber with resin matrix weight according to process requirement layer by layer winding on rotating core film, and quartz sand is evenly laid as sand layer between fiber, its pipe wall structure is reasonable and advanced, can give full play to the role of material, improve the steel degree under the premise of meeting the use strength.
[0003] The core defect of traditional glass steel pipe box lies in "relying on bolt fixing", not only assembly is cumbersome, and single structure cannot adapt to "high-density storage" and "easy loss protection" two common needs, leading to insufficient adaptability.
[0004] The utility model is just for this single technical pain point, proposes the core solution of "boltless assembly", and covers main application scenarios through two implementation forms, forms more comprehensive technical protection. INVENTION CONTENTS
[0005] In view of the deficiencies of prior art, the utility model provides a kind of glass steel composite pipe box to solve the core defect of traditional glass steel pipe box lies in "relying on bolt fixing", not only assembly is cumbersome, and single structure cannot adapt to "high-density storage" and "easy loss protection" two common needs, leading to insufficient adaptability problem.
[0006] The general inventive concept of the utility model is to provide a kind of glass steel composite pipe box with "boltless assembly structure" as core, for the single technical problem of "pipe box needs bolt fixing, effect is poor to adapt to different types of line pipe" in prior art, design two scene implementation ways, the technical principle of two is communicated, core features are consistent, and it constitutes complete technical scheme.
[0007] Among them, form one realizes boltless assembly by "hook angle block and buckle tooth thread groove buckling", focuses on meeting the high-density line pipe large-capacity storage demand, solves the problem that line pipe is bundled and sorted inconveniently;Form two realizes boltless assembly by "lock bolt structure and convex gasket interlocking", focuses on meeting the safe pad protection demand of easy loss line pipe, solves the problem of line pipe friction and collision loss.Two forms are not deviated from the core technical means of "boltless assembly", belong to the reasonable extension of the same inventive concept, and not independent invention.
[0008] In order to achieve the above object, the utility model discloses a glass steel composite pipe box through the following technical schemes is realized: a glass steel composite pipe box, including the box and the box body, the box and the box body adopt boltless assembly structure cooperation, specific implementation is one of following two forms: form one: the box is first box cover, the box body is first box, the first box cover is integrally formed with arc hook angle block in left and right lower corners, the first box is equipped with arc convex edge block, buckle tooth trace groove, the arc convex edge block is buckled together with the arc hook angle block, the arc hook angle block is buckled with buckle tooth trace groove, realizes the boltless assembly of first box cover and first box, is applicable to high density line pipe storage scene, form two: the box is second box cover, the box body is second box, still include lock bolt structure and convex fender plate, the second box is built-in convex fender plate, the convex fender plate is interlocked with the second box through the lock bolt structure, realizes the boltless assembly of second box cover and second box, and the convex fender plate can support line pipe, is applicable to the protection scene of easy-wear line pipe, the second box cover is integrally formed with U-shaped hook angle block in left and right lower corners, the second box is equipped with rectangular convex edge block, and the rectangular convex edge block is buckled together with the U-shaped hook angle block.
[0009] Through the first box cover and the first box, the first glass steel composite pipe box is formed, and the high-density line pipe frame is arranged in the box, so that the line pipe is conveniently stored and arranged, and through the second box cover and the second box, the second glass steel composite pipe box is formed, so that the line pipe is protected and prevented from being damaged.
[0010] Preferably, the buckle tooth trace groove is fixed on the bottom of the arc convex edge block and is an integral structure.
[0011] The arc convex edge block outwardly supports the first box cover to form a track sliding cover operation effect, and the buckle tooth trace groove and the hook angle block are fixedly connected.
[0012] Preferably, the second box body is internally provided with two or more than two slots, and the slots and the lock bolt structure are gap matched.
[0013] The slot is provided with a thread column end of a nylon bolt wrapped around the lock bolt structure bottom to form a bolt body wrapping protection effect, and the connection slot is stable and strong.
[0014] Preferably, the lock bolt structure is provided with a nylon bolt and a gasket ring, the nylon bolt vertically penetrates the gasket ring shaft center, the nylon bolt is connected with the gasket ring screw thread, and the convex fender plate is interlocked with the second box through the nylon bolt.
[0015] The convex pad and the interior of the second housing are fixed by nylon bolts and washers, allowing conventional locking bolts to be replaced by high-elasticity, wear-resistant, and oxidation-resistant nylon. The nylon has a slight hardness that allows for a fuller fit with the fiberglass, preventing the metal bolts from scratching the fiberglass.
[0016] Preferably, the nylon bolt has a rounded top and a threaded post, the rounded top and the threaded post being an integral structure, and the threaded post being connected to the washer ring thread.
[0017] The rounded top auxiliary convex pad lifts the easily damaged conduit, making the threaded column support conduit rack end lift and fix efficiently.
[0018] Preferably, the washer ring has an opening, a toothed ring surface, and a rubber frame. The toothed ring surface and the rubber frame are an integral structure. The opening is fixed inside the built-in toothed ring surface, and the inner wall thread of the opening is connected to the thread of the nylon bolt.
[0019] By wrapping the meshing threaded column with the ring and toothed annular surface, the multi-end locking bolt cross fixing bracket of the wire tube is used to fix the corresponding convex pad when the second box is built in, thus improving the operation effect.
[0020] This utility model provides a fiberglass composite pipe box, which has the following beneficial effects:
[0021] This fiberglass composite pipe box consists of a first box cover and a first box body, providing ample space to store bundles of high-density pipes of varying thicknesses. This facilitates the clustering and organization of the pipes. The corner blocks and curved convex edge blocks are connected and fastened with toothed grooves, creating a sliding cover and snap-fit design that eliminates the need for bolts.
[0022] This fiberglass composite pipe box, consisting of a second cover and a second body, forms a second type of fiberglass composite pipe box. Through a locking structure and a convex pad corresponding to easily damaged conduits, it provides auxiliary protection and safety for the overhead pipes, preventing damage caused by friction and collisions during assembly, thus improving the stability of pipe safety. Then, through slotted joints and nylon bolts, the pipes are fixed in place, with the washer ring pressing against the convex pad to tighten the vertical interlocking of the nylon bolts. This results in a higher degree of composite structure within the pipe box, allowing for horizontal support of the conduits. The fiberglass material also reduces friction, enhancing the safety protection of the conduits. The rounded top and round surface of the conduit shell prevent scratches, and the threaded post inserts into the ring, engaging with the toothed ring surface within a rubber frame for stability, further enhancing the stability of the protective support and connection. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of two sets of three-dimensional structures of a fiberglass composite pipe box according to the present invention;
[0024] Figure 2This is a cross-sectional structural diagram of the first box cover and the first box body in the assembled state of this utility model;
[0025] Figure 3 This is a cross-sectional structural diagram of the second box cover and the second box body in the assembled state of this utility model;
[0026] Figure 4 This is a three-dimensional structural diagram of the bolt structure and the convex pad of this utility model, as well as the assembly state of the nylon bolt and washer ring.
[0027] In the diagram: 1. First box cover; 2. First box body; 3. Second box cover; 4. Second box body; 5. Locking bolt structure; 6. Convex pad; 11. Hook block; 21. Arc-shaped convex edge block; 22. Snap-on toothed groove; 41. Slot; 51. Nylon bolt; 52. Washer ring; 511. Round top; 512. Threaded post; 521. Ring opening; 522. Toothed ring surface; 523. Rubber frame. Detailed Implementation
[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0029] Please see Figures 1-4 This utility model provides a fiberglass composite pipe box, including a box cover and a box body. The box cover and the box body are assembled using a boltless assembly structure, specifically implemented in one of the following two forms: Form 1: The box cover is a first box cover 1, and the box body is a first box body 2. The first box cover 1 has an integrally formed arc-shaped hook block 11 at the lower left and right corners. The first box body 2 is provided with an arc-shaped convex edge block 21 and a snap-fit toothed groove 22. The arc-shaped convex edge block 21 and the arc-shaped hook block 11 are fastened together, and the arc-shaped hook block 11 and the snap-fit toothed groove 22 are fastened together, realizing the boltless assembly of the first box cover 1 and the first box body 2. Form 1: Suitable for high-density cable management scenarios; Form 2: The cover is a second cover 3, the body is a second body 4, and it also includes a locking bolt structure 5 and a convex pad 6. The second body 4 has a built-in convex pad 6, which is interlocked with the second body 4 through the locking bolt structure 5, realizing boltless assembly of the second cover 3 and the second body 4. The convex pad 6 can support the cable, which is suitable for scenarios where easily damaged cable is protected. The lower left and right corners of the second cover 3 are integrally formed with U-shaped hook blocks, and the second body 4 is provided with rectangular convex edge blocks. The rectangular convex edge blocks and the U-shaped hook blocks are fastened together.
[0030] The core defect of traditional FRP pipe boxes lies in their reliance on bolt fixing, which not only makes assembly cumbersome but also makes it impossible for the single structure to meet the two common needs of "high-density storage" and "protection against easy damage", resulting in insufficient adaptability.
[0031] It should be noted that the first type of fiberglass composite pipe box, consisting of the first cover and the first box body, provides ample space to store bundles of thick and thin high-density pipes inside the box, facilitating the clustering and organization of pipes. The second type of fiberglass composite pipe box, consisting of the second cover and the second box body, provides auxiliary padding and safety protection for easily damaged pipes, preventing damage caused by stuffing, friction, or collisions during pipe assembly, thus improving the safety and stability of pipe protection.
[0032] The snap-fit groove 22 is fixed to the bottom of the arc-shaped convex edge block 21 and the two are an integral structure.
[0033] It should be noted that the first box cover is supported by the arc-shaped convex edge block to form the sliding cover operation effect, and then the snap-lock tooth groove and the hook block are interlocked and fixed efficiently.
[0034] When assembling the first fiberglass composite conduit box to fit the conduit, the first box cover 1 and the first box body 2 are combined to form the first fiberglass composite conduit box, which provides ample space to store bundles of thick and thin high-density conduits inside the box, making it convenient to store and organize the conduits. Then, the corner block 11 is used to buckle the arc-shaped convex edge block 21 to connect and lock the buckle tooth groove 22, forming a sliding cover and snap-on box laying effect that does not require bolt sealing of the conduit box.
[0035] Please see Figures 1-4 This utility model provides a fiberglass composite pipe box, including a box cover and a box body. The box cover and the box body are assembled using a boltless assembly structure, specifically implemented in one of the following two forms: Form 1: The box cover is a first box cover 1, and the box body is a first box body 2. The first box cover 1 has an integrally formed arc-shaped hook block 11 at the lower left and right corners. The first box body 2 is provided with an arc-shaped convex edge block 21 and a snap-fit toothed groove 22. The arc-shaped convex edge block 21 and the arc-shaped hook block 11 are fastened together, and the arc-shaped hook block 11 and the snap-fit toothed groove 22 are fastened together, realizing the boltless assembly of the first box cover 1 and the first box body 2. Form 1: Suitable for high-density cable management scenarios; Form 2: The cover is a second cover 3, the body is a second body 4, and it also includes a locking structure 5 and a convex pad 6. The second body 4 has a built-in convex pad 6, which is interlocked with the second body 4 through the locking structure 5, realizing boltless assembly of the second cover 3 and the second body 4. The convex pad 6 can support the cable, which is suitable for scenarios where easily damaged cable is protected. The lower left and right corners of the first cover 3 are integrally formed with U-shaped hook blocks, and the second body 4 is provided with rectangular convex edge blocks. The rectangular convex edge blocks and the U-shaped hook blocks are fastened together.
[0036] The core defect of traditional FRP pipe boxes lies in their reliance on bolt fixing, which not only makes assembly cumbersome but also makes it impossible for the single structure to meet the two common needs of "high-density storage" and "protection against easy damage", resulting in insufficient adaptability.
[0037] The second housing 4 has two or more slots 41 fixed inside, and the slots 41 are fitted with the locking bolt structure 5 with clearance.
[0038] It should be noted that the groove at the bottom of the bolt structure forms a protective effect by wrapping the threaded end of the nylon bolt, and the connection slot is stable and strong.
[0039] The locking structure 5 is provided with a nylon bolt 51 and a washer ring 52. The nylon bolt 51 vertically penetrates the inside of the axis of the washer ring 52. The nylon bolt 51 and the washer ring 52 are connected by threads. The convex pad 6 is interlocked with the second housing 4 through the nylon bolt 51.
[0040] It should be noted that the convex pad and the interior of the second housing are fixed by nylon bolts and washers, allowing conventional locking bolts to be replaced by high-elasticity, wear-resistant, and oxidation-resistant nylon. Furthermore, the nylon has a slight hardness that allows for a fuller fit with the fiberglass, preventing the metal bolts from rubbing against and scratching the fiberglass.
[0041] The nylon bolt 51 has a round top 511 and a threaded post 512. The round top 511 and the threaded post 512 are an integral structure. The threaded post 512 is threadedly connected to the washer ring 52.
[0042] It should be noted that by using the rounded top auxiliary convex pad to lift and support the easily damaged conduit, the threaded column supports the conduit rack end for efficient lifting and fixing.
[0043] The washer ring 52 has an opening 521, a toothed ring surface 522, and a rubber frame 523. The toothed ring surface 522 and the rubber frame 523 are an integral structure. The opening 521 is fixed inside the built-in toothed ring surface 522. The inner wall thread of the opening 521 is connected to the thread of the nylon bolt 51.
[0044] It should be noted that by wrapping the meshing threaded column with the ring and toothed annular surface, the multi-end locking bolt cross fixing bracket of the wire tube when the corresponding convex pad is built into the second box is effectively operated.
[0045] When assembling the second type of fiberglass composite conduit box to fit the conduit, the second box cover 3 and the second box body 4 form the second type of fiberglass composite conduit box. The locking bolt structure 5 and the convex pad 6 correspond to the conduit that is easily damaged and vulnerable, and provide auxiliary padding and safety protection to avoid conduit damage caused by stuffing, friction and collision, etc., thus improving the safety protection stability of the conduit. Then, the groove 41 and the nylon bolt 51 are inserted and fixed, and the washer ring 52 presses against the convex pad 6 to tighten the vertical interlock of the nylon bolt 51, making the internal frame of the conduit box more composite. It can horizontally support the conduit, and the fiberglass material also reduces friction contact, improving the safety protection effect of the conduit. The round top 511 is a round surface anti-scratch conduit membrane shell, and the threaded post 512 is inserted into the ring 521 and engaged with the toothed ring surface 522 and wrapped in the rubber frame 523 for stability, improving the stability of the padding support connection reinforcement.
[0046] The two embodiments of this utility model are not independently designed, but are scenario-based optimizations based on the core technology of "boltless assembly" to meet the usage needs of different types of conduits. The first solution focuses on the large-capacity storage of high-density conduits, while the second solution focuses on the safe protection of easily damaged conduits. The two solutions share the same technical principles and core features, and together achieve the invention objective of "boltless assembly and high adaptability" of this utility model. They belong to a complete technical solution under a general inventive concept.
[0047] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any changes or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application.
Claims
1. A fiberglass reinforced plastic composite pipe box characterized by: The utility model provides a box cover and box, the box cover and box adopt boltless assembly structure cooperation, specific implementation is following two forms one of: form one: the box cover is first box cover (1), the box is first box (2), first box cover (1) left and right lower corner integral forming has arc hook angle block (11), first box (2) is equipped with arc convex edge block (21), buckle tooth trace groove (22), arc convex edge block (21) and arc hook angle block (11) are buckled together, arc hook angle block (11) and buckle tooth trace groove (22) are buckled, realize first box cover (1) and first box (2) boltless assembly, be applicable to high density line pipe storage scene;Form two: the box cover is second box cover (3), the box is second box (4), still includes lock bolt structure (5) and convex fender plate (6), second box (4) built-in convex fender plate (6), convex fender plate (6) is interlocked with second box (4) through lock bolt structure (5), realizes second box cover (3) and second box (4) boltless assembly, and convex fender plate (6) can support and pad line pipe, be applicable to the protection scene of easy-wear line pipe, second box cover (3) left and right lower corner integral forming has U-shaped hook angle block, second box (4) is equipped with rectangular convex edge block, rectangular convex edge block and U-shaped hook angle block are buckled together.
2. A glass reinforced plastic composite pipe box according to claim 1, characterised in that: The buckle tooth trace groove (22) is fixedly arranged at the bottom of the arc convex edge block (21) and is an integral structure.
3. A glass reinforced plastic composite pipe box as claimed in claim 1, wherein: The second box (4) is internally provided with two or more than two notches (41), and the notches (41) are gap-fitted with the lock bolt structure (5).
4. The glass reinforced plastic composite pipe box according to claim 1, characterized in that: The lock bolt structure (5) is provided with a nylon bolt (51) and a gasket ring (52), the nylon bolt (51) vertically penetrates the inner shaft of the gasket ring (52), the nylon bolt (51) is screw-connected with the gasket ring (52), and the convex fender plate (6) is interlocked with the second box (4) through the nylon bolt (51).
5. A glass reinforced plastic composite pipe box according to claim 4, characterised in that: The nylon bolt (51) is provided with a round top (511) and a threaded column (512), the round top (511) and the threaded column (512) are an integral structure, and the threaded column (512) is screw-connected with the gasket ring (52).
6. A glass reinforced plastic composite pipe box according to claim 4, characterised in that: The gasket ring (52) is provided with a ring opening (521), a toothed ring surface (522) and a rubber frame (523), the toothed ring surface (522) and the rubber frame (523) are an integral structure, the ring opening (521) is fixedly arranged in the built-in toothed ring surface (522), and the inner wall of the ring opening (521) is screw-connected with the nylon bolt (51).