A protective frame for embedded parts that is easy to locate and remove

By designing a protective frame for embedded parts that is easy to locate and remove, the problem of existing technologies being unable to adapt to embedded parts of different sizes has been solved, enabling an efficient installation and removal process and reducing the risk of damage to embedded parts.

CN117846342BActive Publication Date: 2026-04-21POWERCHINA RAILWAY CONSTR +2
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
POWERCHINA RAILWAY CONSTR
Filing Date
2023-12-27
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The existing embedded part protection frame structure is fixed and cannot adapt to embedded parts of different lengths and sizes, affecting installation efficiency. In addition, the lack of a support and positioning structure makes the embedded parts easy to be damaged during installation and removal.

Method used

An embedded part protection frame was designed, comprising an entrance auxiliary positioning component, a frame length adjustment component, and an internal auxiliary support and guide component. By adjusting the screw, guide rod, internal card plate, sliding groove, sliding support block, linkage plate, and magnetic strip block, the embedded part can be stably positioned and flexibly adjusted to prevent collision damage.

Benefits of technology

It improves the positioning accuracy and installation efficiency of embedded parts, expands the scope of application, simplifies the dismantling process, reduces the difficulty and cost of dismantling, reduces the moving resistance of embedded parts in the protective frame, and avoids damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of embedded part protection frame technology, and more particularly to an embedded part protection frame that facilitates positioning and removal. It includes a frame body, an entrance auxiliary positioning component, a frame length adjustment component, and an internal auxiliary support and guide component. The upper end of the frame body is equipped with the entrance auxiliary positioning component to ensure stable entry of the embedded part into the frame. The side end of the frame body is equipped with a frame length adjustment component for flexibly adjusting the length according to the size of the embedded part. The interior of the frame body contains an internal auxiliary support and guide component to prevent damage to the embedded part due to collision during placement. This invention, by incorporating the entrance auxiliary positioning component, ensures that the embedded part protection frame can stably fix and position the embedded part according to its size during installation, preventing displacement or mispositioning of the embedded part, reducing additional adjustments and corrections, and improving work efficiency.
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Description

Technical Field

[0001] This invention relates to the field of embedded part protection frame technology, and in particular to an embedded part protection frame that is easy to locate and dismantle. Background Technology

[0002] Embedded components are pre-installed parts in buildings and other structures, mainly used to connect structures, fix components or equipment. Pipe embedded components are a common type of embedded component, enabling a perfect integration of pipes with the building structure and meeting the functional requirements of buildings in terms of water supply and drainage, HVAC, and fire protection. However, embedded components are easily damaged during installation, thus requiring protective frames. But existing embedded component protective frames are mostly fixed in structure, which cannot accommodate embedded components of different lengths and sizes for certain special dimensions, potentially affecting installation efficiency. Furthermore, they lack a support and positioning structure for embedded components, making them prone to damage during installation and removal. Therefore, there is an urgent need for a structure that can flexibly adjust the length of embedded components of different sizes, making it adaptable to embedded components of varying lengths, improving flexibility and adaptability. In addition, adding a support and positioning structure for embedded components would facilitate the positioning and removal of the embedded component protective frame and prevent damage to the embedded components during removal. Summary of the Invention

[0003] To overcome the problems that embedded part protection frames are mostly fixed in structure during use, which cannot adapt to embedded parts of different lengths and sizes, potentially affecting installation efficiency, and lack a support and positioning structure for embedded parts, making them prone to damage during installation and removal.

[0004] The technical solution of the present invention is as follows: a protective frame for embedded parts that is easy to position and remove, comprising a protective frame body, an entrance auxiliary positioning component, a frame length adjustment component, and an internal auxiliary support and guide component; the upper end of the protective frame body is equipped with an entrance auxiliary positioning component for enabling the embedded parts to stably enter the protective frame; the side end of the protective frame body is provided with a frame length adjustment component for flexibly adjusting the length according to the size of the embedded parts; the inside of the protective frame body is provided with an internal auxiliary support and guide component for preventing the embedded parts from being damaged by collision during placement.

[0005] Preferably, the use of the entrance auxiliary positioning component ensures that the embedded part protective frame can stably fix and position the embedded part according to its size during installation. This improves positioning accuracy and avoids offset or mispositioning of the embedded part during installation, allowing construction personnel to accurately install the embedded part, reducing additional adjustments and corrections, and improving work efficiency. The frame length adjustment component can easily adapt to embedded parts of different lengths, expanding the application range of the protective frame and simplifying the dismantling process, improving dismantling efficiency, and reducing the difficulty and cost of dismantling projects. The internal auxiliary support guide component can prevent accidental collisions or damage to the embedded part during insertion and removal. When used in conjunction with the entrance auxiliary positioning component, it provides a stable support surface, making the movement of the embedded part in the protective frame smoother, reducing the resistance to movement of the embedded part in the protective frame, reducing obstacles during dismantling, which can improve the efficiency of the dismantling process and shorten the dismantling time.

[0006] Preferably, the entrance auxiliary positioning component includes an upper connecting frame, an adjusting screw, a guide rod, an internal clamping plate, and a first guide pulley; the upper connecting frame is installed on the upper end of the protective frame body; an adjusting screw is provided inside the upper connecting frame, which can guide and limit the internal clamping plate according to the size of the embedded part.

[0007] Preferably, a guide rod is provided at the side end of the adjusting screw; an internal retaining plate is provided at the front end of the guide rod and the adjusting screw; a first guide pulley is provided inside the internal retaining plate to facilitate the entry of the embedded part into the body of the protective frame. The first guide pulley can make the embedded part enter the body of the protective frame more smoothly, reduce resistance, and avoid damage to it.

[0008] Preferably, the frame length adjustment assembly includes an inner movable sleeve; a sliding groove and a sliding support block; a fixed inner sleeve, a middle connecting frame, a positioning support sleeve, a movable support rod, an elastic telescopic block, an internal anti-sway stabilizing pad, and a clamping screw sleeve; the inner movable sleeve is fixedly connected to the side end of the upper connecting frame; a sliding groove is provided on the side end of the inner movable sleeve, and the sliding groove on the side end of the inner movable sleeve can slide outside the fixed inner sleeve in conjunction with the sliding support block to adjust the overall length of the protective frame body.

[0009] Preferably, a sliding support block is slidably connected inside the sliding groove; a fixed inner sleeve is fixedly connected to the side end of the sliding support block; a middle connecting frame is provided at the outer end of the fixed inner sleeve, and the positioning support sleeves at the upper and lower ends of the middle connecting frame, together with the movable support rod, can play the role of synchronously adjusting the length of the protective frame body.

[0010] Preferably, a positioning support sleeve is provided at the lower end of the middle connecting frame; a movable support rod is slidably connected inside the positioning support sleeve; and two sets of positioning support sleeves and movable support rods are symmetrically arranged.

[0011] Preferably, an elastic telescopic block is provided at the end of the movable support rod; and the positioning support sleeve has a slot for use with the elastic telescopic block, so that the elastic telescopic block at the end of the movable support rod can be fixed in position when adjusted to a suitable position.

[0012] Preferably, the inner wall of the positioning support sleeve is provided with an internal anti-sway stabilizing pad; and multiple sets of internal anti-sway stabilizing pads are provided; the outer end of the positioning support sleeve is threaded with a clamping sleeving. The internal anti-sway stabilizing pads, together with the clamping sleeving, can be more stably fixed when adjusted to a suitable length, avoiding shaking.

[0013] Preferably, the internal auxiliary support and guide assembly includes an internal support block, a linkage plate, a second guide pulley, a pressure spring, a magnetic strip block, and an electromagnet; the internal support block is provided on the inner wall of the fixed inner sleeve; the linkage plate is hinged to the side end of the internal support block; the second guide pulley is provided on the side end of the linkage plate. The linkage plate and the second guide pulley can provide good support for the embedded parts inside the protective frame body and prevent them from shifting.

[0014] Preferably, a pressure spring is provided on the inner wall of the fixed inner sleeve; a magnetic strip is provided at the lower end of the linkage plate; and an electromagnet is provided at the outer end of the fixed inner sleeve to cooperate with the magnetic strip. The pressure spring can make it fit against the embedded part, and the magnetic strip and electromagnet can adjust the distance between themselves and the embedded part during installation and removal, which is convenient for disassembly.

[0015] The beneficial effects of this invention are:

[0016] 1. In the use of embedded part protection frames for waste recycling, their structures are mostly fixed and cannot adapt to embedded parts of different lengths and sizes, which may affect installation efficiency. Furthermore, the lack of a support and positioning structure for the embedded parts makes them prone to damage during installation and removal. Therefore, using inlet auxiliary positioning components can ensure that the embedded part protection frame can stably fix and position the embedded parts according to their dimensions during installation. This improves positioning accuracy, avoids offset or mispositioning of the embedded parts during installation, allows construction personnel to accurately install the embedded parts, reduces additional adjustments and corrections, and improves work efficiency. The frame length adjustment component can easily adapt to embedded parts of different lengths, expanding the application range of the protective frame and simplifying the dismantling process, improving dismantling efficiency, and reducing the difficulty and cost of dismantling projects. The internal auxiliary support guide component can prevent accidental collisions or damage to embedded parts during insertion and removal. When used in conjunction with the entrance auxiliary positioning component, it can provide a stable support surface, making the movement of embedded parts in the protective frame smoother and reducing the resistance to movement of embedded parts in the protective frame. This reduces obstacles in the dismantling process, which can improve the efficiency of the dismantling process and shorten the dismantling time.

[0017] 2. The adjusting screw can guide and limit the internal clamping plate according to the size of the embedded part. The first guide pulley can make the embedded part enter the protective frame body more smoothly, reduce resistance, and avoid damage to it.

[0018] 3. The sliding groove on the side end of the inner movable sleeve, together with the sliding support block, can slide outside the fixed inner sleeve to adjust the overall length of the protective frame body. The positioning support sleeves at the upper and lower ends of the middle connecting frame, together with the movable support rod, can play the role of synchronously adjusting the length of the protective frame body. The elastic telescopic block at the side end of the movable support rod can fix the position when it is adjusted to a suitable position. The internal anti-shaking stabilizing pad, together with the clamping screw sleeve, can fix it more stably when it is adjusted to a suitable length, avoiding shaking.

[0019] 4. The linkage plate and the second guide pulley can provide good support for the embedded parts inside the protective frame body and prevent them from shifting. The pressure spring can make it fit the embedded parts. The magnetic strip and electromagnet can adjust the distance between them and the embedded parts during installation and removal, making it easy to remove. Attached Figure Description

[0020] Figure 1 The diagram shown is a three-dimensional structural schematic of the embedded part protection frame of the present invention;

[0021] Figure 2 The diagram shown is a three-dimensional structural schematic of the entrance auxiliary positioning component of the embedded part protection frame of the present invention.

[0022] Figure 3 The diagram shown is a three-dimensional structural schematic of the positioning support sleeve of the embedded part protection frame of the present invention.

[0023] Figure 4 The diagram shown is a three-dimensional structural diagram of the internal anti-sway stabilizing pad of the embedded part protection frame of the present invention;

[0024] Figure 5 The diagram shown is a three-dimensional structural schematic of the linkage plate of the embedded part protection frame of the present invention.

[0025] Figure 6 The diagram shown is a three-dimensional structural schematic of the magnetic strip block of the embedded part protection frame of the present invention.

[0026] Explanation of reference numerals in the attached drawings: 1. Protective frame body; 2. Entrance auxiliary positioning component; 3. Frame length adjustment component; 4. Internal auxiliary support and guide component; 201. Upper connecting frame; 202. Adjusting screw; 203. Guide rod; 204. Internal retaining plate; 205. First guide pulley; 301. Inner movable sleeve; 302. Sliding groove; 303. Sliding support block; 304. Fixed inner sleeve; 305. Middle connecting frame; 306. Positioning support sleeve; 307. Movable support rod; 308. Elastic telescopic block; 309. Internal anti-sway stabilizing pad; 310. Pressing screw sleeve; 401. Internal support block; 402. Linkage plate; 403. Second guide pulley; 404. Compression spring; 405. Magnetic strip block; 406. Electromagnet. Detailed Implementation

[0027] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0028] Please see Figure 1-2 This invention provides an embodiment of a pre-embedded component protection frame for easy positioning and removal, comprising a protection frame body 1, an entrance auxiliary positioning component 2, a frame length adjustment component 3, and an internal auxiliary support and guide component 4; the upper end of the protection frame body 1 is equipped with the entrance auxiliary positioning component 2 to ensure stable entry of the pre-embedded component into the protection frame; the side end of the protection frame body 1 is provided with a frame length adjustment component 3 for flexibly adjusting the length according to the size of the pre-embedded component; the inside of the protection frame body 1 is provided with an internal auxiliary support and guide component 4 to prevent damage to the pre-embedded component due to collision during placement; the entrance auxiliary positioning component 2 includes an upper connecting frame 201, an adjusting screw 202, and a guide rod 201. 3. Internal clamping plate 204 and first guide pulley 205; An upper connecting frame 201 is installed at the upper end of the protective frame body 1; An adjusting screw 202 is provided inside the upper connecting frame 201, which can guide and limit the internal clamping plate 204 according to the size of the embedded part; A guide rod 203 is provided at the side end of the adjusting screw 202; An internal clamping plate 204 is provided at the front end of the guide rod 203 and the adjusting screw 202; A first guide pulley 205 is provided inside the internal clamping plate 204 to facilitate the embedded part to enter the interior of the protective frame body 1. The first guide pulley 205 can make the embedded part enter the protective frame body 1 more smoothly, reduce resistance, and avoid damage.

[0029] Please see Figure 3-4In this embodiment, the frame length adjustment assembly 3 includes an inner movable sleeve 301; a sliding groove 302; a sliding support block 303; a fixed inner sleeve 304; a middle connecting frame 305; a positioning support sleeve 306; a movable support rod 307; an elastic telescopic block 308; an internal anti-sway stabilizing pad 309; and a clamping screw sleeve 310. The inner movable sleeve 301 is fixedly connected to the side end of the upper connecting frame 201. A sliding groove 302 is provided on the side end of the inner movable sleeve 301. The sliding groove 302 on the side end of the inner movable sleeve 301 can slide outside the fixed inner sleeve 304 in conjunction with the sliding support block 303 to adjust the overall length of the protective frame body 1. The sliding support block 303 is slidably connected inside the sliding groove 302. The fixed inner sleeve 304 is fixedly connected to the side end of the sliding support block 303. A middle connecting frame 305 is provided at the outer end of the fixed inner sleeve 304. The positioning support sleeves 306 at the upper and lower ends of the middle connecting frame 305 cooperate with the movable support rod 307. The movable support rod 307 can synchronously adjust the length of the protective frame body 1. A positioning support sleeve 306 is provided at the lower end of the middle connecting frame 305. The movable support rod 307 is slidably connected inside the positioning support sleeve 306. Two sets of positioning support sleeves 306 and movable support rods 307 are symmetrically arranged. An elastic telescopic block 308 is provided at the side end of the movable support rod 307. The positioning support sleeve 306 has a slot for use with the elastic telescopic block 308. The elastic telescopic block 308 at the side end of the movable support rod 307 can be fixed in position when adjusted to a suitable position. An internal anti-sway stabilizing pad 309 is provided on the inner wall of the positioning support sleeve 306. Multiple sets of internal anti-sway stabilizing pads 309 are provided. A clamping screw sleeve 310 is threaded to the outer end of the positioning support sleeve 306. The internal anti-sway stabilizing pad 309, together with the clamping screw sleeve 310, can be more stably fixed when adjusted to a suitable length to avoid shaking.

[0030] Please see Figure 5-6 In this embodiment, the internal auxiliary support and guide assembly 4 includes an internal support block 401, a linkage plate 402, a second guide pulley 403, a pressure spring 404, a magnetic strip block 405, and an electromagnet 406. The inner wall of the fixed inner sleeve 304 is provided with the internal support block 401. The side end of the internal support block 401 is hinged to the linkage plate 402. The side end of the linkage plate 402 is provided with the second guide pulley 403. The linkage plate 402 and the second guide pulley 403 can provide good support for the embedded parts inside the protective frame body 1, preventing them from shifting. The inner wall of the fixed inner sleeve 304 is provided with the pressure spring 404. The lower end of the linkage plate 402 is provided with the magnetic strip block 405. The outer end of the fixed inner sleeve 304 is provided with an electromagnet 406 for use with the magnetic strip block 405. The pressure spring 404 can make it fit against the embedded parts. The magnetic strip block 405 and the electromagnet 406 can adjust the distance between themselves and the embedded parts during installation and removal, facilitating disassembly.

[0031] When working, the adjusting screw 202 is used to guide and limit the internal clamping plate 204 according to the size of the embedded part. The first guide pulley 205 can make the embedded part enter the protective frame body 1 more smoothly, reduce resistance and avoid damage.

[0032] Next, the sliding groove 302 on the side end of the inner movable sleeve 301, in conjunction with the sliding support block 303, can slide outside the fixed inner sleeve 304 to adjust the overall length of the protective frame body 1. The positioning support sleeves 306 at the upper and lower ends of the middle connecting frame 305, in conjunction with the movable support rod 307, can play the role of synchronously adjusting the length of the protective frame body 1. The elastic telescopic block 308 at the side end of the movable support rod 307 can fix the position when it is adjusted to a suitable position. The internal anti-shaking stabilizing pad 309, in conjunction with the clamping screw sleeve 310, can fix it more stably when it is adjusted to a suitable length, avoiding shaking.

[0033] Finally, the linkage plate 402 and the second guide pulley 403 can provide good support for the embedded parts inside the protective frame body 1, preventing them from shifting. The pressure spring 404 can make them fit the embedded parts. The magnetic strip block 405 and the electromagnet 406 can adjust the distance between them and the embedded parts during installation and removal, making it convenient to dismantle.

[0034] Through the above steps, the entrance auxiliary positioning component 2 ensures that the embedded part protective frame can stably fix and position the embedded part according to its size during installation. This improves positioning accuracy and avoids offset or mispositioning of the embedded part during installation, allowing construction personnel to accurately install the embedded part, reducing additional adjustments and corrections, and improving work efficiency. The frame length adjustment component 3 can easily adapt to embedded parts of different lengths, expanding the application range of the protective frame and simplifying the dismantling process, improving dismantling efficiency, and reducing the difficulty and cost of dismantling projects. The internal auxiliary support guide component 4 can prevent accidental collisions or damage to the embedded part during insertion and removal. When used in conjunction with the entrance auxiliary positioning component 2, it provides a stable support surface, making the movement of the embedded part in the protective frame smoother and reducing the resistance to movement of the embedded part in the protective frame. This reduces obstacles during dismantling, improving the efficiency of the dismantling process and shortening the dismantling time.

[0035] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.

Claims

1. A protective frame for embedded parts that is easy to locate and dismantle, comprising a protective frame body (1); characterized in that: It also includes an entrance auxiliary positioning component (2), a frame length adjustment component (3), and an internal auxiliary support guide component (4); the upper end of the protective frame body (1) is equipped with an entrance auxiliary positioning component (2) to ensure that the embedded parts can stably enter the protective frame; the side end of the protective frame body (1) is provided with a frame length adjustment component (3) to flexibly adjust the length according to the size of the embedded parts; the inside of the protective frame body (1) is provided with an internal auxiliary support guide component (4) to prevent the embedded parts from being damaged by collision during placement, and the entrance auxiliary positioning component (2) is provided with an internal auxiliary support guide component (4) to prevent the embedded parts from being damaged by collision during placement. The positioning aid component (2) includes an upper connecting frame (201), an adjusting screw (202), a guide rod (203), an internal retaining plate (204), and a first guide pulley (205); the upper end of the protective frame body (1) is equipped with an upper connecting frame (201); the upper connecting frame (201) is provided with an adjusting screw (202); the frame length adjustment component (3) includes an inner movable sleeve (301); a sliding groove (302); a sliding support block (303); a fixed inner sleeve (304); and a middle connecting frame (305). The components include a positioning support sleeve (306), a movable support rod (307), an elastic telescopic block (308), an internal anti-sway stabilizing pad (309), and a clamping screw sleeve (310); an inner movable sleeve (301) is fixedly connected to the side end of the upper connecting frame (201); a sliding groove (302) is opened on the side end of the inner movable sleeve (301); and the internal auxiliary support guide assembly (4) includes an internal support block (401), a linkage plate (402), a second guide pulley (403), a pressure spring (404), and a magnetic strip block (405). 05) and electromagnet (406); an internal support block (401) is provided on the inner wall of the fixed inner sleeve (304); a linkage plate (402) is hinged to the side end of the internal support block (401); a second guide pulley (403) is provided on the side end of the linkage plate (402); a pressure spring (404) is provided on the inner wall of the fixed inner sleeve (304); a magnetic strip block (405) is provided at the lower end of the linkage plate (402); an electromagnet (406) for use with the magnetic strip block (405) is provided at the outer end of the fixed inner sleeve (304).

2. The embedded part protection frame for easy positioning and dismantling according to claim 1, characterized in that: A guide rod (203) is provided at the side end of the adjusting screw (202); an internal clamping plate (204) is provided at the front end of the guide rod (203) and the adjusting screw (202); a first guide pulley (205) is provided inside the internal clamping plate (204) to facilitate the entry of the embedded parts into the body of the protective frame (1).

3. The embedded part protection frame for easy positioning and dismantling according to claim 1, characterized in that: The sliding groove (302) is slidably connected to a sliding support block (303); a fixed inner sleeve (304) is fixedly connected to the side end of the sliding support block (303); and a middle connecting frame (305) is provided at the outer end of the fixed inner sleeve (304).

4. The embedded part protection frame for easy positioning and dismantling according to claim 3, characterized in that: A positioning support sleeve (306) is provided at the lower end of the middle connecting frame (305); a movable support rod (307) is slidably connected inside the positioning support sleeve (306); and two sets of positioning support sleeves (306) and movable support rods (307) are symmetrically arranged.

5. The embedded part protection frame for easy positioning and dismantling according to claim 4, characterized in that: The movable support rod (307) is provided with an elastic telescopic block (308) at its side end; and the positioning support sleeve (306) is provided with a slot for use with the elastic telescopic block (308).

6. The embedded part protection frame for easy positioning and dismantling according to claim 5, characterized in that: The inner wall end of the positioning support sleeve (306) is provided with an internal anti-sway stabilizing pad (309); and multiple sets of internal anti-sway stabilizing pads (309) are provided; the outer end of the positioning support sleeve (306) is threadedly connected with a clamping sleeving sleeve (310).

Citation Information

Patent Citations

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