CN219289037U - Sliding rail structure - Google Patents

Sliding rail structure Download PDF

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Publication number
CN219289037U
CN219289037U CN202223335855.9U CN202223335855U CN219289037U CN 219289037 U CN219289037 U CN 219289037U CN 202223335855 U CN202223335855 U CN 202223335855U CN 219289037 U CN219289037 U CN 219289037U
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rail
hook
sliding rail
hanging
drawer
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CN202223335855.9U
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Chinese (zh)
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郭子敏
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Individual
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Individual
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Abstract

The utility model relates to the field of sliding rails, and particularly discloses a sliding rail structure which comprises a sliding rail body, wherein the sliding rail body comprises a fixed rail and a movable rail which are in sliding fit with each other, one far side of the fixed rail and one far side of the movable rail are respectively connected with a hook assembly, the fixed rail and the movable rail are respectively and detachably mounted with a side wall of a cabinet body and a side wall of a drawer through the hook assemblies, and an adjusting assembly for adjusting the height of the drawer is mounted on the movable rail. The novel sliding rail adopts the plug-in hanging type, is convenient and quick to install, has high accuracy and has no installation cost. When the novel sliding rail is installed, a gap of 3mm is reserved between the drawer and the cabinet body, due to the small gap, the sliding rail shadow is hidden in the wood board on the side wall of the cabinet body, sundries are not easy to fall into the gap, the sliding rail is damaged, the drawer is caused to fall off to generate a safety accident, and meanwhile, the sliding rail shadow is very attractive in appearance and high in safety. The novel slide rail enables the upper and lower adjacent drawers to be adjustable at will from top to bottom.

Description

Sliding rail structure
Technical Field
The utility model relates to a sliding rail structure, in particular to a sliding rail structure, and belongs to the field of sliding rails.
Background
The drawer is used as a commonly used storage part on the cabinet body, and a sliding rail is often used as a structure for installation and sliding between the drawer and the cabinet body. The existing sliding rail is installed with the drawer and the cabinet body through screws, the installation is complicated, and the precision is low. And the gap between the upper and lower adjacent drawers is difficult to adjust after installation, abrasion is easy to occur between the upper and lower adjacent two sliding rails after deviation occurs, the sliding rails and screws need to be adjusted and removed, and inconvenience is brought to installation and subsequent use. The existing sliding rail is installed in an exposed mode, dust and impurities are easy to enter in use to damage the sliding rail, meanwhile, gaps reserved between the side walls of the drawer and the side walls of the cabinet body are large, and attractiveness is required to be improved.
Disclosure of Invention
Aiming at the problems in the prior art, the utility model provides a sliding rail structure.
The aim of the utility model can be achieved by the following technical scheme:
the utility model provides a slide rail structure, includes the slide rail body, the slide rail body includes mutual sliding fit's fixed track and moves the track, fixed track and move one side that the track kept away from mutually all are connected with the couple subassembly, fixed track and move the track through couple subassembly respectively with the side hanging installation of cabinet body and drawer, and move and install the adjusting part who is used for adjusting drawer height on the track.
Optionally, the hook component on the fixed track comprises a plurality of lower hooks and a transverse hook, wherein the lower hooks are arranged at one end of the side wall of the fixed track, and the transverse hook is arranged at the other end of the side wall of the fixed track.
Optionally, the hook component on the movable rail comprises a plurality of upper hooks and a transverse hook, wherein the upper hooks are arranged at one end of the side wall of the movable rail, and the transverse hook is arranged at the other end of the side wall of the movable rail.
Optionally, the junction of cabinet body lateral wall and fixed track is seted up flutedly, and first lacing film is all installed at the inside both ends of recess, is provided with a plurality of first card holes that are used for down the hook to connect the installation on one of them first lacing film, is provided with the horizontal card hole that is used for the hook to connect the installation on another first lacing film, and fixed track installs the inside at the recess.
Optionally, the second hanging pieces are installed at the joints of the two ends of the side wall of the drawer and the movable rail, a plurality of second clamping holes for hanging and installing the upper hook are formed in one second hanging piece, and a transverse clamping hole for hanging and installing the transverse hook is formed in the other second hanging piece.
Optionally, the adjusting component comprises an adjusting nail, the adjusting nail is an iron eccentric nail, an adjusting hole for screwing the adjusting nail is formed in the side wall of the drawer in a penetrating manner along the thickness direction, and one end of the adjusting nail is riveted with the side wall of the fixed track.
Optionally, the inside grafting of regulation hole is installed and is blocked the post, and the one end upside of blocking the post is connected with the magnet piece, and the bottom of blocking the post is connected with the stopper along length direction, and the bottom of regulation hole is provided with the spacing groove that is used for stopper joint installation along length direction, and the inside of magnet piece is provided with bearing structure.
Optionally, the supporting structure comprises a push rod and a telescopic supporting rod, an installation cavity is transversely arranged below the inside of the magnet block, one end of the push rod is inserted into the installation cavity, one end of the push rod, which faces the inner wall of the installation cavity, is connected with a stabilizing plate, a plurality of return springs are connected between one end of the stabilizing plate, which is far away from the push rod, and the inner wall of the installation cavity, the push rod is arranged in a cone frustum shape, the large diameter end of the push rod extends from the inside of the installation cavity to the outside, and the large diameter end of the push rod is smaller than the inner diameter of the installation cavity;
the top of installation cavity upwards vertically is provided with the removal hole, and the roof of magnet piece is run through at the top of removal hole, and the inside grafting of removal hole is installed flexible butt pole, and the outer wall butt of stiff end bottom and push rod of flexible butt pole below has cup jointed annular spacing ring with the outer wall in the middle part of the flexible end in flexible butt pole top, and the top inner wall of removal hole is provided with annular spacing blend stop, and the diameter of spacing ring is greater than the internal diameter of spacing blend stop.
Optionally, the one end of going up couple and couple down and horizontal couple all includes an organic whole and connects the bed plate, and bed plate one side both ends all are connected with the inserted bar, and the side wall of fixed track and moving the track all is provided with a plurality of jack that are used for the inserted bar grafting installation, still an organic whole is connected with a plurality of mutually independent strip shaped plates on the bed plate of going up couple and couple down.
The utility model has the beneficial effects that:
1. the novel sliding rail adopts the plug-in hanging type, is convenient and quick to install, has high accuracy and has no installation cost.
2. When the novel sliding rail is installed, a gap of 3mm is reserved between the drawer and the cabinet body, due to the small gap, the sliding rail shadow is hidden in the wood board on the side wall of the cabinet body, sundries are not easy to fall into the gap, the sliding rail is damaged, the drawer is caused to fall off to generate a safety accident, and meanwhile, the sliding rail shadow is very attractive in appearance and high in safety.
3. The novel sliding rail enables the gap between the upper drawer and the lower drawer to be adjusted randomly, the adjusting nails on the sliding rail can be adjusted steplessly up and down only by slightly adjusting the sliding rail after the sliding rail is installed, the adjustment is convenient and quick, an ordinary user can install the novel sliding rail easily, the later maintenance cost is avoided, and the novel sliding rail is also created on like products in the current market.
Drawings
The present utility model is further described below with reference to the accompanying drawings for the convenience of understanding by those skilled in the art.
FIG. 1 is a schematic view of the installation structure of a plurality of drawers and cabinets according to the present utility model.
Fig. 2 is a schematic view of the installation structure of the drawer through the sliding rail and the cabinet body.
FIG. 3 is a schematic view of the mounting structure of the sliding rail, drawer and cabinet of the present utility model.
FIG. 4 is a schematic view of the mounting structure of the sliding rail and drawer according to the present utility model.
FIG. 5 is a schematic view of the drawer height adjustment structure of the present utility model.
Fig. 6 is a schematic view of a sliding rail structure according to the present utility model.
Fig. 7 is a schematic view of the structure of the upper hook of the present utility model.
Fig. 8 is an enlarged schematic view of the detail a in fig. 1 according to the present utility model.
Fig. 9 is a schematic diagram of a plugging column structure according to the present utility model.
Fig. 10 is a schematic view of a structure in which a plurality of drawers and cabinets are mounted via old-fashioned sliding rails.
Fig. 11 is a schematic diagram of a mounting structure of a drawer and a cabinet body through an old type sliding rail.
Fig. 12 is a schematic view of the mounting structure of the old rail, the drawer and the cabinet.
Fig. 13 is a schematic view of an old type slide rail mounting structure.
In the figure: 1. a cabinet body; 2. a drawer; 3. a lower hook; 4. a first clamping hole; 5. fixing a track; 6. a groove; 7. a first hanging piece; 8. a second hanging piece; 9. a moving track; 10. an upper hook; 11. a second clamping hole; 12. an adjustment aperture; 13. adjusting nails; 14. a transverse hook; 15. a base plate; 16. a rod; 17. a strip-shaped plate; 18. plugging the column; 19. a limit groove; 20. a limiting block; 21. a magnet block; 22. a moving hole; 23. a limiting ring; 24. a push rod; 25. a return spring; 26. a mounting cavity; 27. and (5) extending and contracting the supporting rod.
Detailed Description
The technical solutions of the present utility model will be clearly and completely described in connection with the embodiments, and it is obvious that the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-13, a sliding rail structure includes a sliding rail body, the sliding rail body includes a fixed rail 5 and a movable rail 9 which are in sliding fit with each other, one side of the fixed rail 5 and one side of the movable rail 9, which are far away from each other, are respectively connected with a hook assembly, the fixed rail 5 and the movable rail 9 are respectively mounted on side walls of a cabinet body 1 and a drawer 2 through the hook assemblies, and an adjusting assembly for adjusting the height of the drawer 2 is mounted on the movable rail 9.
As a technical optimization scheme of the utility model, the hook component on the fixed rail 5 comprises a plurality of lower hooks 3 and a transverse hook 14, wherein the lower hooks 3 are arranged at one end of the side wall of the fixed rail 5, and the transverse hook 14 is arranged at the other end of the side wall of the fixed rail 5.
As a technical optimization scheme of the utility model, the hook component on the movable rail 9 comprises a plurality of upper hooks 10 and a transverse hook 14, wherein the upper hooks 10 are arranged at one end of the side wall of the movable rail 9, and the transverse hook 14 is arranged at the other end of the side wall of the movable rail 9.
As a technical optimization scheme of the utility model, a groove 6 is formed at the joint of the side wall of the cabinet body 1 and the fixed rail 5, first hanging pieces 7 are arranged at two ends of the inside of the groove 6, a plurality of first clamping holes 4 for hanging and installing the lower hook 3 are arranged on one of the first hanging pieces 7, a transverse clamping hole for hanging and installing the transverse hook 14 is arranged on the other first hanging piece 7, and the fixed rail 5 is arranged inside the groove 6.
As a technical optimization scheme of the utility model, the connection parts of the two ends of the side wall of the drawer 2 and the movable rail 9 are provided with the second hanging pieces 8, wherein one of the second hanging pieces 8 is provided with a plurality of second clamping holes 11 for hanging and installing the upper hanging hook 10, and the other second hanging piece 8 is provided with a transverse clamping hole for hanging and installing the transverse hanging hook 14.
As a technical optimization scheme of the utility model, the adjusting assembly comprises an adjusting nail 13, the adjusting nail 13 is an iron eccentric nail, the side wall of the drawer 2 is provided with an adjusting hole 12 used for screwing the adjusting nail 13 in a penetrating manner along the thickness direction, and one end of the adjusting nail 13 is riveted with the side wall of the fixed rail 5.
As a technical optimization scheme of the utility model, a plugging column 18 is inserted and installed in the adjusting hole 12, a magnet block 21 is connected to the upper side of one end of the plugging column 18, a limiting block 20 is connected to the bottom of the plugging column 18 along the length direction, a limiting groove 19 for clamping and installing the limiting block 20 is arranged at the bottom of the adjusting hole 12 along the length direction, and a supporting structure is arranged in the magnet block 21.
As a technical optimization scheme of the utility model, the supporting structure comprises a push rod 24 and a telescopic supporting rod 27, an installation cavity 26 is transversely arranged below the inside of the magnet block 21, one end of the push rod 24 is inserted into the installation cavity 26, one end of the push rod 24 facing the inner wall of the installation cavity 26 is connected with a stabilizing plate, a plurality of return springs 25 are connected between one end of the stabilizing plate far away from the push rod 24 and the inner wall of the installation cavity 26, the push rod 24 is arranged in a cone frustum shape, the large diameter end of the push rod 24 extends from the inside of the installation cavity 26 to the outside, and the large diameter end of the push rod 24 is smaller than the inner diameter of the installation cavity 26;
the top of installation cavity 26 upwards vertically is provided with and removes hole 22, and the roof of magnet piece 21 is run through at the top of removing hole 22, and flexible butt pole 27 is installed in the inside grafting of removing hole 22, and the stiff end bottom of flexible butt pole 27 below and the outer wall butt of push rod 24, the middle part outer wall of flexible end in flexible butt pole 27 top has cup jointed annular spacing ring 23, and the top inner wall of removing hole 22 is provided with annular spacing blend stop, and the diameter of spacing ring 23 is greater than the internal diameter of spacing blend stop. The telescopic abutting rod 27 can move up and down in the moving hole 22, and is limited by the limiting stop bar, and the telescopic abutting rod 27 cannot fall off from the moving hole 22.
As a technical optimization scheme of the utility model, one ends of the upper hook 10, the lower hook 3 and the transverse hook 14 are respectively provided with an integrally connected base plate 15, two ends of one side of the base plate 15 are respectively connected with an inserting rod 16, the side walls of the fixed rail 5 and the movable rail 9 are respectively provided with a plurality of inserting holes for inserting and installing the inserting rods 16, and the base plates 15 of the upper hook 10 and the lower hook 3 are also integrally connected with a plurality of mutually independent strip-shaped plates 17. The strip 17 facilitates the adjustment and installation of the upper hook 10 and the lower hook 3 during installation.
When the novel multifunctional cabinet is used, in the earlier stage of processing and manufacturing of the cabinet body 1 and the drawer 2, the groove 6 is formed in the preset position of the side wall of the cabinet body 1 along the length direction, the first hanging pieces 7 are mounted at the two ends of the inside of the groove 6 through screws, the two first hanging pieces 7 are kept at the same horizontal height when being mounted, and the first hanging pieces 7 with the first clamping holes 4 are mounted at the outer side ends. The second hanging pieces 8 are respectively arranged at two ends of the side wall of the drawer 2, the two second hanging pieces 8 are kept at the same horizontal height when being arranged, and the second hanging pieces 8 with the second clamping holes 11 are arranged at the outer side ends. When the drawer 2 and the cabinet body 1 are required to be installed, the sliding rail body is respectively connected with the first clamping holes 4 and the transverse clamps Kong Gua on the two first hanging pieces 7 through the lower hooks 3 and the transverse hooks 14 on the fixed rail 5. Firstly, one end of a sliding rail body is placed into the groove 6, a transverse hook 14 on the fixed rail 5 is clamped and installed with a transverse clamping hole on the inner side first hanging piece 7, and then a plurality of lower hooks 3 on the fixed rail 5 are clamped and installed with a plurality of first clamping holes 4 on the outer side first hanging piece 7, so that the sliding rail body is installed in the groove 6. Subsequently, the drawer 2 is placed at the installation position inside the cabinet body 1, the transverse hooks 14 on the side wall of the movable rail 9 are firstly clamped and installed with the transverse clamping holes on the inner side second hanging piece 8, then the plurality of upper hooks 10 on the movable rail 9 are clamped and installed with the second clamping holes 11 on the outer side second hanging piece 8, the drawer 2 can be installed with the cabinet body 1 through the sliding rail body through the operation, the sliding rail body is tested to be installed stably by pushing and pulling the drawer 2 for many times, and the installation stability of the drawer 2 is ensured. The operation is simple and quick in a mode of clamping and installing the hanging hook and the hanging piece. The hanging piece is fully automatically installed in a factory, scribing and punching are not needed when the drawer is installed on site, and the hanging piece is directly hung in, so that the precision is high and the installation efficiency is high; the precision after installation is high, and after the product is installed, the use effect can meet the design requirement without adjustment; because the installation is direct hanging type, the installation cost is almost not needed, and a large amount of manpower, material resources and financial resources can be saved.
And through the design of seting up recess 6 on cabinet body 1, can hide the slide rail body in the inside of cabinet body 1. The novel sliding rail body is adopted, a gap of 3mm is reserved between the side wall of the drawer 2 and the side wall of the cabinet body 1, the gaps are 6mm on two sides, the gap is small, and due to the small gap, sundries are not easy to fall into the gap in the use process of the drawer 2 due to the fact that the sliding rail body is hidden in the cabinet body 1, the sliding rail body is damaged, and the drawer 2 falls off to generate a safety accident; because the gap is small, the slide rail body shadow is hidden in the cabinet body 1, the utilization space of the drawer 2 is increased by 5-10%, and meanwhile, the slide rail body shadow is hidden in the cabinet body 1 very attractive, and the safety is very high.
Since a plurality of drawers 2 are typically installed in one cabinet 1 from top to bottom, as shown in fig. 1. The distance between the upper and lower adjacent drawers 2 can be freely adjusted due to the deviation after installation. The position of the side wall of the drawer 2 corresponding to the adjusting nail 13 is reserved with an adjusting hole 12 in advance, and after the track body is installed, the screwing end of the adjusting nail 13 is arranged in the adjusting hole 12. When the height of the drawer 2 in the vertical direction needs to be adjusted, the screwdriver penetrates into the adjusting hole 12, the adjusting nail 13 is screwed, and as the adjusting nail 13 is eccentrically arranged, the contact position between the eccentric end of the adjusting nail 13 and the top end of the inner wall of the adjusting hole 12 is continuously changed, and the drawer 2 can be driven to move in the vertical direction, so that the distance between the upper drawer 2 and the lower drawer 2 is adjusted. The error generated during installation and the error caused by the size in the actual production process can be simply and quickly adjusted. The improved slide rail is convenient to install and adjust, the gap between the upper adjacent drawer 2 and the lower adjacent drawer 2 can be adjusted at will, the gap between the normal upper adjacent drawer 2 and the lower adjacent drawer 2 is 3mm, and after deviation is generated, interference is easily caused when the upper drawer 2 and the lower drawer 2 are pulled. The stepless regulation can facilitate the installation, the efficiency is high, the installation cost is almost zero, the installation can be realized without professional installation master, the installation can be easily carried out by a common user, and the later maintenance cost is avoided. The existing slide rail adopts the screw to directly fix on the lateral wall of drawer 2 and cabinet body 1, comparatively loaded down with trivial details in the installation, and is higher to the precision requirement, and the deviation appears in addition after the installation or need when adjusting the height of drawer 2 need dismantle the screw on the track just can adjust, waste time and energy, and the dismantlement requires professional master just can operate moreover, and ordinary user hardly installs alone to it is difficult to change by oneself or maintain the slide rail after taking place to damage in the use, and follow-up maintenance and use cost are higher.
When the existing sliding rail body is installed, if the size deviation is caused in the production process, the lower hook 3 and the first clamping hole 4 or the upper hook 10 and the second clamping hole 11 cannot be accurately clamped in the installation process, so that the sliding rail body is difficult to install normally. At this time, the actual deviation between the lower hook 3 and the first clamping hole 4 or between the upper hook 10 and the second clamping hole 11 can be checked, and the strip-shaped plate 17 on the blocking side is pressed, so that the strip-shaped plate 17 causing blocking is flattened and parallel to the side wall of the sliding rail body, and the rest strip-shaped plate 17 is continuously clamped and installed, so that normal use can be performed, and further rapid adjustability is brought to the installation process. And the lower hook 3, the upper hook 10 and the transverse hook 14 are detachably connected by the inserting rod 16 in an inserting way, after the drawer 2 is damaged in installation or use, a user can detach the drawer 2 to replace the damaged lower hook 3, the damaged upper hook 10 and the damaged transverse hook 14, and the independent replacement cost is low and the operation is simple.
After the drawer 2 is installed and the height adjustment is completed, the blocking post 18 may be inserted into the interior of the adjustment hole 12. When the plugging column 18 is plugged, the limiting block 20 at the bottom slides in the limiting groove 19, so that the plugging column 18 can be conveniently inserted with accuracy. After the plugging column 18 is inserted into the interior, the magnet block 21 is magnetically attracted and abutted with the adjusting nail 13, the push rod 24 is pushed to press the return spring 25, and the push rod 24 is completely pressed into the installation cavity 26. Because the diameter of the push rod 24 entering the installation cavity 26 gradually becomes larger, the bottom of the telescopic abutting rod 27 is continuously pushed upwards, the top end of the telescopic abutting rod 27 abuts against the top end of the inner wall of the adjusting hole 12, and the height stability of the drawer 2 can be maintained. And the contact part of the side wall of the magnet block 21 and the adjusting nail 13 is provided with a rubber pad, so that the friction force between the magnet block 21 and the adjusting nail 13 after adsorption is increased, and the magnet block 21 is not easy to move on the adjusting nail 13. The magnet piece 21 adsorbs the pulling through magnetic force to the one end of adjusting nail 13 for the pressure between adjusting nail 13 and the movable rail 9 increases, and adjusting nail 13 is difficult for taking place to rotate in use, and then makes drawer 2 stability in the use high. And after the plugging column 18 is inserted into the adjusting hole 12, dust is not easy to enter into contact with the sliding rail from the adjusting hole 12 in the using process of the drawer 2, so that the influence of dust impurities on the sliding rail is reduced. At the same time, the small articles placed by the drawer 2 are prevented from entering the adjusting holes 12 to cause the blocking of the adjusting holes 12, and the subsequent adjustment is influenced. When the adjustment aperture 12 is desired, the blocking post 18 is pulled outwardly.
When the existing sliding rail is used, the sliding rail is fixed with the cabinet body 1 and the drawer 2 by adopting screws, scribing and punching are needed on site, the precision is poor, and the installation efficiency is low; because of poor precision, the use effect of the product is difficult to reach the design requirement; because of the low installation efficiency, the installation cost is high, is similar to or even higher than the cost of purchasing the sliding rail. When the existing sliding rail is installed, a gap of 13mm is reserved between the side wall of the drawer 2 and the side wall of the cabinet body 1, and the gaps of 26mm are reserved on two sides, so that the gap is larger; because the gap is too large, the slide rail is exposed, sundries are easy to fall into the gap, the slide rail is damaged, the drawer 2 falls off to generate safety accidents, and the safety accidents happen frequently in reality; the gap is too large, so that the slide rail is exposed, the utilization space of the drawer 2 is reduced by 5-10%, and the slide rail is exposed very unattractively. After the existing slide rail is installed, the gap between the upper drawer 2 and the lower drawer 2 which are adjacent to each other is not adjustable, the gap is usually 3mm, if the adjustment is needed, the adjustment is needed to be carried out by dismantling the screws on the slide rail, and the adjustment difficulty is high, and the precision is poor; the installation difficulty is high due to unadjustable drawer 2, the efficiency is low, the drawers 2 are frequently rubbed with each other, the installation requirement cannot be met, and the installation cost is high.
The preferred embodiments of the utility model disclosed above are intended only to assist in the explanation of the utility model. The preferred embodiments are not exhaustive or to limit the utility model to the precise form disclosed. Obviously, many modifications and variations are possible in light of the above teaching. The embodiments were chosen and described in order to best explain the principles of the utility model and the practical application, to thereby enable others skilled in the art to best understand and utilize the utility model. The utility model is limited only by the claims and the full scope and equivalents thereof.

Claims (7)

1. The sliding rail structure comprises a sliding rail body, wherein the sliding rail body comprises a fixed rail (5) and a movable rail (9) which are in sliding fit with each other, and the sliding rail structure is characterized in that one far away side of the fixed rail (5) and the movable rail (9) is connected with a hook assembly, the fixed rail (5) and the movable rail (9) are respectively connected with the side walls of a cabinet body (1) and a drawer (2) in a hanging manner through the hook assembly, and an adjusting assembly for adjusting the height of the drawer (2) is arranged on the movable rail (9);
the hook component on the fixed rail (5) comprises a plurality of lower hooks (3) and a transverse hook (14), the lower hooks (3) are arranged at one end of the side wall of the fixed rail (5), and the transverse hook (14) is arranged at the other end of the side wall of the fixed rail (5);
the hook component on the movable rail (9) comprises a plurality of upper hooks (10) and a transverse hook (14), the upper hooks (10) are arranged at one end of the side wall of the movable rail (9), and the transverse hook (14) is arranged at the other end of the side wall of the movable rail (9).
2. The sliding rail structure according to claim 1, wherein a groove (6) is formed at the joint of the side wall of the cabinet body (1) and the fixed rail (5), first hanging pieces (7) are arranged at two ends of the inside of the groove (6), a plurality of first clamping holes (4) for hanging and installing the lower hanging hook (3) are formed in one of the first hanging pieces (7), a transverse clamping hole for hanging and installing the transverse hanging hook (14) is formed in the other first hanging piece (7), and the fixed rail (5) is arranged in the groove (6).
3. The sliding rail structure according to claim 2, wherein the connection parts between the two ends of the side wall of the drawer (2) and the movable rail (9) are provided with second hanging pieces (8), one of the second hanging pieces (8) is provided with a plurality of second clamping holes (11) for hanging and installing the upper hanging hook (10), and the other second hanging piece (8) is provided with a transverse clamping hole for hanging and installing the transverse hanging hook (14).
4. A sliding rail structure according to claim 3, characterized in that the adjusting assembly comprises an adjusting nail (13), the adjusting nail (13) is an iron eccentric nail, the side wall of the drawer (2) is provided with an adjusting hole (12) for screwing the adjusting nail (13) along the thickness direction in a penetrating way, and one end of the adjusting nail (13) is riveted with the side wall of the fixed rail (5).
5. The sliding rail structure according to claim 4, wherein the plugging column (18) is inserted and mounted in the adjusting hole (12), a magnet block (21) is connected to the upper side of one end of the plugging column (18), a limiting block (20) is connected to the bottom of the plugging column (18) along the length direction, a limiting groove (19) for clamping and mounting the limiting block (20) is formed in the bottom of the adjusting hole (12) along the length direction, and a supporting structure is arranged in the magnet block (21).
6. The sliding rail structure according to claim 5, wherein the supporting structure comprises a push rod (24) and a telescopic supporting rod (27), a mounting cavity (26) is transversely arranged below the inside of the magnet block (21), one end of the push rod (24) is inserted into the mounting cavity (26), one end of the push rod (24) facing the inner wall of the mounting cavity (26) is connected with a stabilizing plate, a plurality of return springs (25) are connected between one end of the stabilizing plate far away from the push rod (24) and the inner wall of the mounting cavity (26), the push rod (24) is arranged in a conical shape, the large-diameter end of the push rod (24) extends from the inside of the mounting cavity (26) to the outside, and the large-diameter end of the push rod (24) is smaller than the inner diameter of the mounting cavity (26);
the top of installation cavity (26) is upwards vertical to be provided with remove hole (22), the roof of magnet piece (21) is run through at the top of remove hole (22), flexible butt pole (27) are installed in the inside grafting of remove hole (22), the stiff end bottom of flexible butt pole (27) below and the outer wall butt of push rod (24), annular spacing ring (23) have been cup jointed to the middle part outer wall of flexible end in flexible butt pole (27) top, the top inner wall of remove hole (22) is provided with annular spacing blend stop, the diameter of spacing ring (23) is greater than the internal diameter of spacing blend stop.
7. The sliding rail structure according to claim 6, wherein one ends of the upper hook (10), the lower hook (3) and the transverse hook (14) are respectively provided with an integrally connected base plate (15), two ends of one side of the base plate (15) are respectively connected with an inserting rod (16), the side walls of the fixed rail (5) and the movable rail (9) are respectively provided with a plurality of inserting holes for inserting the inserting rods (16), and a plurality of mutually independent strip-shaped plates (17) are integrally connected on the base plates (15) of the upper hook (10) and the lower hook (3).
CN202223335855.9U 2022-12-12 2022-12-12 Sliding rail structure Active CN219289037U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223335855.9U CN219289037U (en) 2022-12-12 2022-12-12 Sliding rail structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223335855.9U CN219289037U (en) 2022-12-12 2022-12-12 Sliding rail structure

Publications (1)

Publication Number Publication Date
CN219289037U true CN219289037U (en) 2023-07-04

Family

ID=86954088

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223335855.9U Active CN219289037U (en) 2022-12-12 2022-12-12 Sliding rail structure

Country Status (1)

Country Link
CN (1) CN219289037U (en)

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