Novel sealing silica gel for battery bracket

By designing structures such as positioning holes, positioning rods, insertion rods, and sliding grooves, the problem of inconvenient installation of sealing silicone for battery brackets was solved, achieving convenient and stable silicone ring connection.

CN223612540UActive Publication Date: 2025-11-28DONGGUAN YIFAN SILICONE RUBBER TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422862219.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-23
Publication Date
2025-11-28
Estimated Expiration
2034-11-23

AI Technical Summary

Technical Problem

Existing battery holders use a single piece of sealing silicone, which requires a certain amount of stretching during installation to fully fit into the sealing groove, making them inconvenient to use.

Method used

A sealing silicone structure including a first silicone ring and a second silicone ring was designed. The silicone ring is stably installed by means of the cooperation of the positioning hole and the positioning rod, and by the mechanical connection of the insertion rod, the connecting sleeve, the sliding groove and the extrusion block.

Benefits of technology

It enables convenient installation and stable connection of the silicone ring, avoids displacement, and improves ease of use.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223612540U_ABST
    Figure CN223612540U_ABST
Patent Text Reader

Abstract

The utility model discloses novel sealing silica gel for a battery bracket, and belongs to the technical field of sealing silica gel rings. The novel sealing silica gel for the battery support comprises a battery support body, the battery support body comprises a square frame, a sealing groove is formed in the upper end face of the square frame, a sealing silica gel ring body is arranged in the sealing groove, the sealing silica gel ring body comprises a first silica gel ring and a second silica gel ring, and the first silica gel ring and the second silica gel ring are both in a U shape. The opposite ends of the first silica gel ring and the second silica gel ring are connected with a first lap joint block and a second lap joint block respectively, the bottom end of the second lap joint block is attached to the upper end of the first lap joint block, the bottom end of the first lap joint block is flush with the bottom end of the first silica gel ring, and the upper end of the second lap joint block is flush with the upper end of the second silica gel ring. A pair of grooves are formed in the upper end of the first lap joint block, protruding blocks are connected to the positions, located at the grooves, of the bottom end of the second lap joint block, inserting holes are formed in the sides, opposite to each other, of the protruding blocks and the grooves, and an inserting rod is inserted between the inserting holes.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of sealed silica gel ring, specifically to a new type of sealed silica gel for battery support. BACKGROUND

[0002] Battery support refers to the structure for fixing battery monomer or battery pack, which can be designed into different shapes and specifications according to needs. Its main function is to support battery monomer or assembly, guaranteeing the safety and stability of the battery. Sealed silica gel is needed when the battery is sealed. Sealed silica gel ring is a sealing element made of silica gel material, which is widely used in various sealing occasions. The silica gel ring has important applications in industry and daily life due to its excellent performance and wide applicability.

[0003] Based on the above, the present inventors found that the following problems exist: The current sealed silica gel for battery support has a whole structure, and when it is installed inside the sealing groove, the sealed silica gel ring needs a certain amount of stretching to completely enter the sealing groove, which is very inconvenient to use.

[0004] Therefore, in view of the above, the existing structure and defects are improved, and a new type of sealed silica gel for battery support is provided to achieve a more practical value. INVENTION CONTENTS

[0005] The purpose of the utility model is to provide a new type of sealed silica gel for battery support to solve the problems raised in the background art.

[0006] In view of the above problems, the technical scheme provided by the utility model is:

[0007] A new type of sealed silica gel for battery support, comprising a battery support body, the battery support body comprising a square frame, the upper end face of the square frame being provided with a sealing groove, the inside of the sealing groove being provided with a sealed silica gel ring body, the sealed silica gel ring body comprising a first silica gel ring and a second silica gel ring, the first silica gel ring and the second silica gel ring both being "U" shaped, and the opposite ends of the first silica gel ring and the second silica gel ring being connected with a first lap joint block and a second lap joint block respectively, the bottom end of the second lap joint block being flush with the upper end of the first lap joint block, the bottom end of the first lap joint block being flush with the bottom end of the first silica gel ring, the upper end of the second lap joint block being flush with the upper end of the second silica gel ring, a pair of grooves being formed in the upper end of the first lap joint block, a protrusion being connected to the bottom end of the second lap joint block at the groove, and a plug hole being formed on the opposite side of the protrusion and the groove, a plug rod being inserted between the pair of plug holes.

[0008] Further, the top surface of the opposite end of the first and second silica gel rings is provided with a positioning hole, the bottom of the sealing groove is connected with a positioning rod, the upper end of the positioning rod penetrates the positioning hole and is matched with the positioning hole.

[0009] The beneficial effect of the above further scheme is that the first and second silica gel rings are positioned by the cooperation of the positioning hole and the positioning rod, thereby preventing displacement.

[0010] Further, one side of the pair of first lap blocks is connected with a pair of connecting sleeves, the front and back surfaces of the square box are provided with a pair of U-shaped grooves, the end of the pair of connecting sleeves away from the first lap block penetrates the U-shaped groove and is connected with a mounting box, and the pair of insertion rods extend to the inside of the mounting box through the connecting sleeves.

[0011] Further, the inner wall of the mounting box is provided with a sliding groove on both sides, and a horizontal plate is slidably connected between the pair of sliding grooves.

[0012] The beneficial effect of the above further scheme is that the horizontal plate is stably moved under the sliding and limiting action of the sliding groove, the insertion rod moves to the inside of the square box through the connecting sleeve when the horizontal plate continuously approaches the square box, so that the insertion rod is inserted into the insertion hole, thereby realizing the connection of the first and second lap blocks and the connection of the first and second silica gel rings.

[0013] The beneficial effect of the above further scheme is that the pair of extrusion blocks are matched with the outer side wall of the jacking block, and the moving blocks of the inclined end of the extrusion blocks continuously slide in the moving grooves when the pair of extrusion blocks continuously extrude to the center, thereby continuously moving the jacking block to the square box.

[0014] The beneficial effect of the further scheme is that the slide rod is arranged to facilitate the sliding of the extrusion blocks, when the pair of extrusion blocks move towards the center on the slide rod, the pair of extrusion blocks will extrude the spring, when the pair of extrusion blocks move away from the position close to the center to the two sides, the pair of extrusion blocks will restore to the original position under the elastic force of the spring, so that the jacking block drives the insertion rod to restore to the original position, the end of the insertion rod away from the horizontal plate is flush with the end of the connecting sleeve away from the mounting box, and the insertion rod is separated from the insertion hole.

[0015] Further, the mounting box away from the side of the square box is provided with a square groove, and the ends of the pair of extrusion blocks away from the jacking block extend into the interior of the square groove. The center of the side of the mounting box away from the square box is provided with a pair of first fixed seats. The ends of the pair of extrusion blocks are connected with a pair of second fixed seats. The opposite sides of the pair of second fixed seats are respectively fitted with the outer walls of the two sides of the first fixed seats. The outer two sides of the pair of first fixed seats are provided with a pair of first threaded holes. A pair of second threaded holes are arranged on the pair of second fixed seats. The adjacent first threaded holes and second threaded holes are threadedly connected with bolts.

[0016] The beneficial effect of the further scheme is that the second fixed seat is arranged to facilitate the user to move the two second fixed seats towards the center with hands, so that the opposite sides of the pair of second fixed seats are fitted with the two sides of the first fixed seat. At this time, the extrusion blocks will drive the jacking block to continuously approach the square box under the action of the moving block and the moving groove. Then, the first fixed seat and the second fixed seat are connected through the cooperation of the bolt, the first threaded hole and the second threaded hole, so as to avoid the displacement of the pair of extrusion blocks.

[0017] Further, the interior center of the square box is connected with a placing rack.

[0018] The beneficial effect of adopting the further scheme is that the placing rack is arranged, thereby facilitating the placing of the battery. The beneficial effect of the utility model is that the novel battery support uses sealing silica gel, the positioning holes on the first silica gel ring are aligned with the pair of positioning rods on one side of the sealing groove, and then the first silica gel ring is placed in the sealing groove, at this time, the bottom end of the first lap joint block is attached to the inner bottom end of the sealing groove, then the positioning holes on the second silica gel ring are aligned with the pair of positioning rods on the other side of the sealing groove, and then the second silica gel ring is placed in the sealing groove, at this time, the bottom end of the second silica gel ring is attached to the inner bottom end of the sealing groove, and the bottom end of the second lap joint block is attached to the upper end of the first lap joint block, so that the opposite pair of insertion holes are located on the same axial line, then the second fixing seat is arranged, thereby facilitating the user to move the two second fixing seats towards the center with hands, so that the opposite side of the pair of second fixing seats is attached to the two sides of the first fixing seat, at this time, the extrusion blocks will drive the jacking blocks to continuously approach the square frame under the action of the moving blocks and the moving grooves, the pair of extrusion blocks will extrude the springs, and the moving blocks on the oblique end of one end extrusion block continuously slide in the moving grooves, so that the jacking blocks continuously approach the square frame, and the cross plate continuously approaches the square frame, so that the insertion rods continuously move to the inside of the square frame through the connecting sleeves, thereby realizing the connection of the first lap joint block and the second lap joint block, and further realizing the connection of the first silica gel ring and the second silica gel ring. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 A perspective structural schematic view of the novel battery support sealing silica gel is provided for the utility model.

[0020] Figure 2 An exploded perspective structural schematic view of the novel battery support sealing silica gel is provided for the utility model.

[0021] Figure 3 A perspective structural schematic view of the novel battery support sealing silica gel is provided for the utility model. Figure 2 An enlarged schematic view of the structure A is provided for the utility model.

[0022] Figure 4 An exploded perspective structural schematic view of the limiting mechanism of the novel battery support sealing silica gel is provided for the utility model.

[0023] Figure 5 A top cross-sectional structural schematic view of the mounting box of the novel battery support sealing silica gel is provided for the utility model.

[0024] In the figure: 100, battery support body; 1001, square box; 1002, sealing groove; 1003, positioning rod; 1004, U-shaped groove; 1005, placing rack; 200, sealing silica gel ring body; 2001, first silica gel ring; 2002, second silica gel ring; 2003, positioning hole; 2004, first lap block; 2005, second lap block; 2006, recess; 2007, protruding block; 2008, insertion hole; 2009, insertion rod; 2010, connecting sleeve; 2011, mounting box; 2012, cross plate; 2013, jacking block; 2014, moving groove; 2015, extrusion block; 2016, sliding rod; 2017, spring; 2018, square groove; 300, first fixed seat; 400, second fixed seat; 500, bolt. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0026] Please refer to Figures 1-5The utility model provides a technical scheme: A novel sealed silica gel for battery support, including battery support body 100, battery support body 100 includes square frame 1001, the upper end surface of square frame 1001 is equipped with sealing groove 1002, the inside of sealing groove 1002 is equipped with sealed silica gel ring body 200, sealed silica gel ring body 200 includes first silica gel ring 2001 and second silica gel ring 2002, first silica gel ring 2001 and second silica gel ring 2002 all are " U " shape, and first silica gel ring 2001 and second silica gel ring 2002 opposite one end are connected with first lap block 2004 and second lap block 2005 respectively, the bottom of second lap block 2005 and the upper end of first lap block 2004 are inlaid, the bottom of first lap block 2004 and the bottom of first silica gel ring 2001 are flush, the upper end of second lap block 2005 and the upper end of second silica gel ring 2002 are flush, the upper end of first lap block 2004 is equipped with a pair of recess 2006, the bottom of second lap block 2005 is located recess 2006 and is connected with lug 2007, opposite lug 2007 and recess 2006 one side are all equipped with jack 2008, a pair of jack 2008 are inserted with inserting rod 2009, the top surface of first silica gel ring 2001 and second silica gel ring 2002 opposite one end are all equipped with positioning hole 2003, the inside bottom corner of sealing groove 1002 is all connected with positioning rod 1003, the upper end of positioning rod 1003 is through positioning hole 2003, and is in clearance fit with positioning hole 2003, through positioning hole 2003 and positioning rod 1003, after the positioning hole 2003 on first silica gel ring 2001 is aligned with a pair of positioning rod 1003 on one side of sealing groove 1002, first silica gel ring 2001 is placed in sealing groove 1002, at this time, the bottom of first lap block 2004 and the inside bottom of sealing groove 1002 are inlaid, then after the positioning hole 2003 on second silica gel ring 2002 is aligned with a pair of positioning rod 1003 on the other side of sealing groove 1002, second silica gel ring 2002 is placed in sealing groove 1002, at this time, the bottom of second silica gel ring 2002 and the inside bottom of sealing groove 1002 are inlaid, and the bottom of second lap block 2005 and the upper end of first lap block 2004 are inlaid, make opposite a pair of jack 2008 be located on the same axis.

[0027] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.

[0028] Please refer to Figures 1-5The utility model provides a technical scheme: one pair of first lap joint blocks 2004 opposite sides all are connected with a pair of connecting sleeves 2010, the front and back of square frame 1001 all are equipped with a pair of U type grooves 1004, a pair of connecting sleeves 2010 away from the one end of first lap joint block 2004 is through U type groove 1004, and is connected with installation box 2011, a pair of insertion rod 2009 respectively through connecting sleeve 2010 and extend to the inside of installation box 2011, the inside wall both sides of installation box 2011 all are equipped with sliding slot, a pair of sliding slot are connected with horizontal plate 2012 between sliding, the one side of horizontal plate 2012 is connected with the one end of insertion rod 2009 away from insertion hole 2008, and the bottom center of horizontal plate 2012 is connected with jacking block 2013, the both sides of jacking block 2013 outside are inclined, and the both sides of jacking block 2013 outside are equipped with moving groove 2014, a pair of moving blocks are slidably arranged in the inside of a pair of moving grooves 2014, a pair of moving blocks away from the one end of moving groove 2014 are all connected with extrusion block 2015, and one end of extrusion block 2015 is attached with the lateral wall of jacking block 2013, a pair of extrusion blocks 2015 between the both ends of slide bar 2016 are extended to the outside through a pair of extrusion blocks 2015 respectively and are slidably connected with a pair of extrusion blocks 2015 between, and the both ends of slide bar 2016 are connected with the inside wall both sides of installation box 2011 respectively, and the outside of slide bar 2016 is located between a pair of extrusion blocks 2015 spring 2017 is sleeved, and the both ends of spring 2017 are connected with the opposite side of a pair of extrusion blocks 2015 respectively, through the cooperation of U type groove 1004 and connecting sleeve 2010, because the one end of connecting sleeve 2010 away from first lap joint block 2004 is through U type groove 1004, makes a pair of connecting sleeves 2010 between the installation box 2011 of connection located the outside of square frame 1001, when a pair of extrusion blocks 2015 on slide bar 2016 moves towards the center, a pair of extrusion blocks 2015 will extrude spring 2017, and the moving block of extrusion block 2015 inclined end constantly slides in moving groove 2014, to make jacking block 2013 constantly close to square frame 1001, the stable movement of horizontal plate 2012 under the sliding limit of sliding slot is convenient, because insertion rod 2009 is connected with horizontal plate 2012, when horizontal plate 2012 constantly close to square frame 1001, make insertion rod 2009 through connecting sleeve 2010 constantly move to the inside of square frame 1001, to make insertion rod 2009 insert insertion hole 2008, to realize the connection of first lap joint block 2004 and second lap joint block 2005, and further realize the connection of first silica gel ring 2001 and second silica gel ring 2002.

[0029] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0030] Please refer to Figures 1-5 The utility model provides a technical scheme: the installation box 2011 is equipped with a square groove 2018 on one side far from the square 1001, one pair of extrusion blocks 2015 extends to the inside of the square groove 2018 from one end far from the jacking block 2013, a pair of first fixed seat 300 is equipped at the center of one side of the installation box 2011 far from the square 1001, one end of a pair of extrusion blocks 2015 is connected with second fixed seat 400, the opposite side of a pair of second fixed seat 400 respectively is in accord with the two sides of the outer wall of first fixed seat 300, a pair of first fixed seat 300 is equipped with a pair of first threaded hole on the two sides of the outside, a pair of second fixed seat 400 is equipped with a pair of second threaded hole, and the adjacent first threaded hole and second threaded hole are connected with bolt 500, the inside center of square 1001 is connected with placing rack 1005, the second fixed seat 400 is set up, so as to be convenient for the user to move two second fixed seat 400 with hand to the center, the opposite side of a pair of second fixed seat 400 is in accord with the two sides of first fixed seat 300, at this moment, the extrusion block 2015 moves in the square groove 2018, and the extrusion block 2015 is driven jacking block 2013 to be close to square 1001 under the action of moving block and moving groove 2014, and then the first fixed seat 300 and second fixed seat 400 are connected by the cooperation of bolt 500, first threaded hole and second threaded hole, and the displacement of a pair of extrusion blocks 2015 is avoided.

[0031] Specifically, the working principle of the new type of battery support sealing silica gel is as follows: in use, the positioning holes 2003 on the first silica gel ring 2001 are aligned with the pair of positioning rods 1003 on one side of the sealing groove 1002, and then the first silica gel ring 2001 is placed inside the sealing groove 1002, at this time, the bottom end of the first lap block 2004 is in contact with the inner bottom end of the sealing groove 1002, then the positioning holes 2003 on the second silica gel ring 2002 are aligned with the pair of positioning rods 1003 on the other side of the sealing groove 1002, and then the second silica gel ring 2002 is placed inside the sealing groove 1002, at this time, the bottom end of the second silica gel ring 2002 is in contact with the inner bottom end of the sealing groove 1002, and the bottom end of the second lap block 2005 is in contact with the upper end of the first lap block 2004, so that the opposite pair of insertion holes 2008 are located on the same axis, then the user uses his hands to move the two second fixed seats 400 towards the center, so that the opposite side of the pair of second fixed seats 400 is in contact with the two sides of the first fixed seat 300, at this time, the extrusion block 2015 will move in the square groove 2018, and the extrusion block 2015 will drive the lifting block 2013 to continuously approach the square frame 1001 under the action of the moving block and the moving groove 2014, so as to facilitate the stable movement of the horizontal plate 2012 under the sliding limiting action of the sliding groove, since the insertion rod 2009 is connected with the horizontal plate 2012, when the horizontal plate 2012 continuously approaches the square frame 1001, the insertion rod 2009 continuously moves to the inside of the square frame 1001 through the connecting sleeve 2010, so that the insertion rod 2009 is inserted into the insertion hole 2008, thereby realizing the connection of the first lap block 2004 and the second lap block 2005, and further realizing the connection of the first silica gel ring 2001 and the second silica gel ring 2002, then the first fixed seat 300 and the second fixed seat 400 are connected through the cooperation of the bolt 500, the first threaded hole and the second threaded hole, so as to avoid the displacement of the pair of extrusion blocks 2015.

Claims

1. A novel sealing silicone for battery holder, characterized by, The utility model relates to a battery holder body (100) comprising a square frame (1001) with a sealing groove (1002) in the upper end face, a sealing silica gel ring body (200) in the sealing groove (1002), the sealing silica gel ring body (200) comprising a first silica gel ring (2001) and a second silica gel ring (2002), both the first silica gel ring (2001) and the second silica gel ring (2002) being "U" shaped, and the first silica gel ring (2001) and the second silica gel ring (2002) being connected with a first lap joint block (2004) and a second lap joint block (2005) respectively at opposite ends, the bottom end of the second lap joint block (2005) being flush with the upper end of the first lap joint block (2004), the bottom end of the first lap joint block (2004) being flush with the bottom end of the first silica gel ring (2001), the upper end of the second lap joint block (2005) being flush with the upper end of the second silica gel ring (2002), a pair of recesses (2006) being formed in the upper end of the first lap joint block (2004), a protrusion (2007) being connected to the bottom end of the second lap joint block (2005) at the recess (2006), and a jack (2008) being formed in the side of the protrusion (2007) and the recess (2006) opposite to each other, a plug rod (2009) being inserted between the jacks (2008).

2. A novel battery stand sealing silica gel according to claim 1, characterized in that, The top surface of the opposite end of the first silica gel ring (2001) and the second silica gel ring (2002) is provided with a positioning hole (2003), and the bottom end of the sealing groove (1002) is connected with a positioning rod (1003) at the four corners, the upper end of the positioning rod (1003) penetrating the positioning hole (2003) and being in clearance fit with the positioning hole (2003).

3. The novel battery stand sealing silica gel according to claim 2, characterized in that, The opposite side of the first lap joint block (2004) is connected with a pair of connecting sleeves (2010), the front and back surfaces of the square frame (1001) are provided with a pair of U-shaped grooves (1004), the ends of the connecting sleeves (2010) away from the first lap joint block (2004) penetrating the U-shaped grooves (1004) and being connected with a mounting box (2011), and the plug rods (2009) penetrating the connecting sleeves (2010) and extending to the inside of the mounting box (2011).

4. The novel battery stand sealing silica gel according to claim 3, characterized in that, The inner walls of the mounting box (2011) are provided with a pair of sliding grooves, and a cross plate (2012) is slidingly connected between the sliding grooves.

5. The novel battery stand sealing silica gel according to claim 4, characterized in that, The bottom end center of the transverse plate (2012) is connected with a jacking block (2013), the outer sides of the jacking block (2013) are inclined, and the outer sides of the jacking block (2013) are provided with moving grooves (2014), the inner sides of a pair of the moving grooves (2014) are slidably provided with moving blocks, and the ends of a pair of the moving blocks away from the moving grooves (2014) are connected with extrusion blocks (2015), and one end of the extrusion block (2015) is attached to the outer side wall of the jacking block (2013).

6. The novel battery stand sealing silica gel according to claim 5, characterized in that, A slide rod (2016) is arranged between a pair of the extrusion blocks (2015), the two ends of the slide rod (2016) extend to the outside through a pair of the extrusion blocks (2015) and are slidably connected with a pair of the extrusion blocks (2015), respectively, and the two ends of the slide rod (2016) are connected with the inner walls of the mounting box (2011), respectively, and the outside of the slide rod (2016) is sleeved with a spring (2017) between a pair of the extrusion blocks (2015), and the two ends of the spring (2017) are connected with the opposite sides of a pair of the extrusion blocks (2015), respectively.

7. A novel battery stand sealing silica gel according to claim 6, characterized in that, The mounting box (2011) is provided with a square groove (2018) away from the square frame (1001), and the ends of a pair of the extrusion blocks (2015) away from the jacking block (2013) extend to the inside of the square groove (2018), the mounting box (2011) is provided with a pair of first fixing bases (300) away from the square frame (1001), and the ends of a pair of the extrusion blocks (2015) are connected with second fixing bases (400), the opposite sides of a pair of the second fixing bases (400) are attached to the outer walls of the first fixing bases (300), respectively, a pair of first threaded holes are arranged in the outer sides of a pair of the first fixing bases (300), a pair of second threaded holes are arranged in a pair of the second fixing bases (400), and the adjacent first threaded holes and second threaded holes are threadedly connected with bolts (500).

8. The novel battery stand sealing silica gel according to claim 7, characterized in that, The inside center of the square frame (1001) is connected with a placing rack (1005).