Foot pad with good anti-skid effect

By designing shock-absorbing structures and anti-slip structures in the foot pads for electronic products, the existing foot pads are easily deformed and the shock-absorbing effect is reduced when electronic products are heavy, and better shock-absorbing and anti-slip effects are achieved.

CN222968299UActive Publication Date: 2025-06-13KUNSHAN ZOPOD ELECTRONIC CO LTD
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Patent Information

Application Number
CN202421719099.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-19
Publication Date
2025-06-13
Estimated Expiration
2034-07-19

AI Technical Summary

Technical Problem

The foot pads for existing electronic products are prone to depression and deformation when the electronic products are heavy, shortening their service life and reducing shock absorption effect.

Method used

A foot pad including a docking plate and a foot pad main body is designed. The foot pad main body is equipped with a shock absorbing structure, including a first fixing plate, a telescopic tube, a high-pressure spring, a second fixing plate, a butt screw and a hinge plate. The anti-slip structure includes an anti-slip plastic sheet, an inlay insertion block and a metal lining sheet.

Benefits of technology

By setting up a shock absorbing structure, the high-pressure spring produces elastic buffering when under pressure, avoiding damage to electronic products due to excessive placement, and improving the shock absorbing effect of the foot pads. The anti-slip structure allows the foot pad to maintain an anti-slip effect when subjected to gravity, avoiding deformation and shortening service life.

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Abstract

The utility model discloses a foot pad with a good anti-skidding effect, which comprises a butt joint disc and a foot pad main body, the bottom end of the butt joint disc is fixedly connected with an internal thread bushing, the foot pad main body is arranged below the butt joint disc, an inner cavity is arranged in the foot pad main body, and a damping structure comprises a first fixing plate, a telescopic pipe, a high-pressure spring, a second fixing plate, a butt joint screw rod and a hinged plate. The first fixing plate is fixedly connected to the bottom end in the inner cavity, and an anti-skid structure is installed at the bottom end of the inner cavity. By arranging the damping structure, when the placing force is too large, the gravity larger than the weight of the electronic product is transmitted to the second fixing plate through the butt joint disc and the inner thread sleeve, at the moment, the second fixing plate presses the high-pressure spring downwards due to gravity transmission, and at the moment, the gravity of the electronic product is buffered through elastic force generated by deformation of the high-pressure spring; in this way, the electronic product is prevented from being damaged when the force for placing the electronic product is too large, and the damping effect of the foot pad is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of foot pads for electronic products, in particular to a foot pad with good anti-slip effect. Background Technique

[0002] As a kind of equipment driven by electricity, electronic products have many and relatively precise internal electronic components. When placing and using them, in order to avoid unstable placement, corresponding foot pads are often installed at the bottom of the electronic products to keep the electronic products stable during use and placement.

[0003] Most common foot pads for electronic products are made of plastic products, which have a certain shock-absorbing and protective effect while having anti-slip properties, enabling the electronic products to maintain a high level of stability during placement and normal use. However, there are still some problems with common foot pads for electronic products:

[0004] When the electronic product is relatively heavy, the conventional plastic foot pads are prone to depression and deformation, greatly shortening their service life and further reducing their shock-absorbing effect. Content of the Utility Model

[0005] The purpose of the utility model is to provide a foot pad with good anti-slip effect to solve the defect that the existing foot pads are prone to deformation and damage when the electronic product is relatively heavy during use.

[0006] To solve the above technical problems, the utility model provides the following technical solution: A foot pad with good anti-slip effect, including a docking plate and a foot pad body. The bottom end of the docking plate is fixedly connected with an internal thread sleeve. The foot pad body is installed below the docking plate. The interior of the foot pad body is provided with an inner cavity. The bottom end inside the inner cavity is fixedly connected with a shock-absorbing structure. The shock-absorbing structure includes a first fixing plate, a telescopic tube, a high-pressure spring, a second fixing plate, a docking screw and a hinged plate. The first fixing plate is fixedly connected to the bottom end inside the inner cavity, and an anti-slip structure is installed at the bottom end of the inner cavity.

[0007] During use, the docking plate is installed at the bottom of the electronic product, and the foot pad body is installed through the threaded connection structure of the docking screw and the internal thread sleeve, thereby installing the foot pad at the bottom of the electronic product.

[0008] Preferably, a telescopic tube is fixedly connected to the middle position at the top end of the first fixing plate. A high-pressure spring is wrapped around the outside of the telescopic tube. The top end of the telescopic tube is fixedly connected with a second fixing plate. A docking screw is fixedly connected to the middle position at the top end of the second fixing plate. Hinged plates are hinged on both sides of the first fixing plate and the second fixing plate. Since the high-pressure spring is still in a high-pressure state when the foot pad is in a normal relaxed state, the phenomenon of repeated rebound of the high-pressure spring during the placement and use of the electronic product is avoided.

[0009] Preferably, the first fixing plate is perpendicular to the telescopic tube, and the first fixing plate is elastically connected to the second fixing plate through a high-pressure spring.

[0010] Preferably, the docking screw is in a threaded connection structure with the internal thread sleeve, and the hinge plates are symmetrically distributed about the vertical center line of the second fixing plate, so as to make the shock absorption of the foot pad more stable.

[0011] Preferably, the high-pressure spring is in a highly compressed state on the outside of the telescopic tube, so as to avoid the phenomenon of repeated rebound of the high-pressure spring.

[0012] Preferably, the anti-slip structure includes an anti-slip plastic sheet, an inlaid insert block and a metal inner lining sheet. The anti-slip plastic sheet is installed at the bottom of the foot pad body. The top end of the anti-slip plastic sheet is fixedly connected with the inlaid insert block. The inside of the anti-slip plastic sheet is wrapped with a metal inner lining sheet. The metal inner lining sheet supports the anti-slip plastic sheet, so that the metal inner lining sheet can support the gravity received by the foot pad.

[0013] Preferably, the inlaid insert block is in an inlaid structure with the inside of the bottom end of the foot pad body, and the cross-sectional area of the outer diameter of the metal inner lining sheet is smaller than the cross-sectional area of the inner diameter of the anti-slip plastic sheet.

[0014] A foot pad with good anti-slip effect provided by the present invention has the advantages that: by providing a shock absorption structure, when the placement force is too large, the gravity greater than the weight of the electronic product is transmitted to the second fixing plate through the docking plate and the internal thread sleeve. At this time, due to the transmission of gravity, the second fixing plate presses down the high-pressure spring. At this time, the elastic force generated by the deformation of the high-pressure spring will buffer the gravity of the electronic product, so as to avoid damaging the electronic product when the placement force of the electronic product is too large, and the shock absorption effect of the foot pad is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a front view sectional structure diagram of the present invention;

[0016] Figure 2 It is a side view structure diagram of the present invention;

[0017] Figure 3 It is a partial bottom view structure diagram of the present invention;

[0018] Figure 4 It is a three-dimensional structure diagram of the shock absorption structure of the present invention;

[0019] Figure 5 It is a three-dimensional partial sectional structure diagram of the anti-slip structure of the present invention.

[0020] In the figure: 1, docking plate; 2, internal thread sleeve; 3, foot pad main body; 4, inner cavity; 5, shock absorption structure; 501, first fixing plate; 502, telescopic tube; 503, high-pressure spring; 504, second fixing plate; 505, docking screw; 506, hinge plate; 6, anti-slip structure; 601, anti-slip plastic sheet; 602, inlaid insert block; 603, metal inner lining sheet. Specific implementation mode

[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0022] Please refer to Figures 1 - 5 , a foot pad with good anti-slip effect provided by the present invention includes a docking plate 1 and a foot pad main body 3. The bottom end of the docking plate 1 is fixedly connected with an internal thread sleeve 2. A foot pad main body 3 is installed below the docking plate 1. An inner cavity 4 is opened inside the foot pad main body 3. A shock absorption structure 5 is fixedly connected to the bottom end inside the inner cavity 4. The shock absorption structure 5 includes a first fixing plate 501, a telescopic tube 502, a high-pressure spring 503, a second fixing plate 504, a docking screw 505 and a hinge plate 506. The first fixing plate 501 is fixedly connected to the bottom end inside the inner cavity 4. A telescopic tube 502 is fixedly connected to the middle position of the top end of the first fixing plate 501. A high-pressure spring 503 is wrapped around the outside of the telescopic tube 502. The top end of the telescopic tube 502 is fixedly connected with a second fixing plate 504. A docking screw 505 is fixedly connected to the middle position of the top end of the second fixing plate 504. Hinge plates 506 are hinged to both sides of the first fixing plate 501 and the second fixing plate 504. The first fixing plate 501 is perpendicular to the telescopic tube 502. The first fixing plate 501 and the second fixing plate 504 are elastically connected through the high-pressure spring 503. The docking screw 505 and the internal thread sleeve 2 are in a threaded connection structure. The hinge plates 506 are symmetrically distributed about the vertical center line of the second fixing plate 504. The high-pressure spring 503 is in a highly compressed state on the outside of the telescopic tube 502.

[0023] Refer to the attached Figure 1 , Figure 2 and Figure 4, when the foot pad is in use, the docking plate 1 is installed at the bottom of the electronic product, and the foot pad body 3 is installed through the threaded connection structure of the docking screw 505 and the internal thread sleeve 2, so as to install the foot pad at the bottom of the electronic product. When the electronic product is installed with this foot pad and placed for use, the overall gravity of the electronic product is applied to this foot pad. If the placement force is too large and greater than the gravity of the electronic product, the gravity is transmitted through the docking plate 1 and the internal thread sleeve 2 to the second fixing plate 504. At this time, due to the gravity transmission, the second fixing plate 504 presses down the high-pressure spring 503. At this time, the elastic force generated by the deformation of the high-pressure spring 503 will buffer the gravity of the electronic product, so as to avoid damaging the electronic product when the placement force of the electronic product is too large. Since the high-pressure spring 503 is still in a high-pressure state when the foot pad is in a normal relaxed state, this avoids the repeated rebound phenomenon of the high-pressure spring 503 when the electronic product is placed for use.

[0024] The bottom end of the inner cavity 4 is provided with an anti-slip structure 6. The anti-slip structure 6 includes an anti-slip plastic sheet 601, an inlaid insert block 602 and a metal inner lining sheet 603. The anti-slip plastic sheet 601 is installed at the bottom of the foot pad body 3. The top end of the anti-slip plastic sheet 601 is fixedly connected with the inlaid insert block 602. The metal inner lining sheet 603 is wrapped inside the anti-slip plastic sheet 601. The inlaid insert block 602 and the inside of the bottom end of the foot pad body 3 are in an inlaid structure. The cross-sectional area of the outer diameter of the metal inner lining sheet 603 is smaller than the cross-sectional area of the inner diameter of the anti-slip plastic sheet 601.

[0025] Refer to the appendix Figure 1 , Figure 2 and Figure 5 , when a conventional plastic foot pad is used for a long time, due to gravity extrusion or high-temperature environment, the bottom foot pad is prone to shrivel and deform, resulting in a significant reduction in its anti-slip effect. Therefore, the anti-slip plastic sheet 601 is inlaid and installed at the bottom of the foot pad body 3 through the inlaid insert block 602. Since the metal inner lining sheet 603 is wrapped inside the anti-slip plastic sheet 601, the metal inner lining sheet 603 supports the anti-slip plastic sheet 601, so that the metal inner lining sheet 603 can support the gravity received by this foot pad, and avoid the shrinkage and shrivel of the anti-slip plastic sheet 601 due to gravity extrusion or high temperature. Furthermore, the anti-slip effect of the anti-slip plastic sheet 601 is kept stable.

[0026] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A foot pad with good anti-slip effect, comprising a docking plate (1) and a foot pad body (3); Features: The bottom end of the docking plate (1) is fixedly connected with an internal thread sleeve (2), and a foot pad body (3) is installed below the docking plate (1); An inner cavity (4) is formed inside the foot pad body (3); A shock absorbing structure (5) is fixedly connected to the bottom end of the inner cavity (4), and the shock absorbing structure (5) comprises a first fixing plate (501), a telescopic tube (502), a high-pressure spring (503), a second fixing plate (504), a docking screw (505) and a hinge plate (506). The first fixing plate (501) is fixedly connected to the bottom end of the inner cavity (4), and an anti-slip structure (6) is installed at the bottom end of the inner cavity (4).

2. A foot pad with good anti-slip effect according to claim 1, characterized in that: A telescopic tube (502) is fixedly connected at the middle position of the top end of the first fixed plate (501), a high-pressure spring (503) is wrapped around the outer side of the telescopic tube (502), a second fixed plate (504) is fixedly connected at the top end of the telescopic tube (502), a docking screw (505) is fixedly connected at the middle position of the top end of the second fixed plate (504), and hinge plates (506) are hinged on both sides of the first fixed plate (501) and the second fixed plate (504).

3. A foot pad with good anti-slip effect according to claim 2, characterized in that: The first fixing plate (501) is perpendicular to the telescopic tube (502), and the first fixing plate (501) is elastically connected to the second fixing plate (504) via a high-pressure spring (503).

4. The foot pad with good anti-slip effect according to claim 2, characterized in that: The butt screw (505) and the internal threaded sleeve (2) are in a threaded connection structure, and the hinged plates (506) are symmetrically distributed about the vertical center line of the second fixed plate (504).

5. The foot pad with good anti-slip effect according to claim 2, characterized in that: The high-pressure spring (503) is in a highly compressed state outside the telescopic tube (502).

6. The foot pad with good anti-slip effect according to claim 1, characterized in that: The anti-slip structure (6) comprises an anti-slip plastic sheet (601), an inlay block (602) and a metal lining sheet (603); the anti-slip plastic sheet (601) is installed at the bottom of the foot pad body (3); the top of the anti-slip plastic sheet (601) is fixedly connected to the inlay block (602); the interior of the anti-slip plastic sheet (601) is wrapped with a metal lining sheet (603).

7. A foot pad with good anti-slip effect according to claim 6, characterized in that: The inlaid insert (602) and the bottom of the foot pad body (3) form an inlaid structure, and the cross-sectional area of ​​the outer diameter of the metal lining sheet (603) is smaller than the cross-sectional area of ​​the inner diameter of the anti-slip plastic sheet (601).