Side-wall-mounted adjustable pillar glass clamp

By designing an adjustable side wall column glass clamp and using a screw assembly and an arc assembly to adjust the glass angle, the problem of the glass not being in a straight line in the existing technology is solved, and the flexibility of installation and the convenience of adjustment are improved.

WO2025209597A1PCT designated stage Publication Date: 2025-10-09JINFER TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
PCT/CN2025/089466
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2025-03-12
Filing Date
2025-04-17
Publication Date
2025-10-09

AI Technical Summary

Technical Problem

After the existing side wall column glass clamp is installed, the glass angle cannot be adjusted, resulting in the glass not being in a straight line. It is especially difficult to adjust when the wall is not vertical.

Method used

A side wall adjustable column glass clamp is designed. The movable connection of the second part is achieved through the screw assembly and the arc assembly, allowing the glass angle to be adjusted. The coordination of the screw, adjustment block and arc block ensures the adjustability of the glass clamping groove.

Benefits of technology

It increases the fault tolerance of glass installation, can compensate for uneven wall defects, make multiple pieces of glass in a straight line, provides angle adjustment function, and simplifies installation and use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a side-wall-mounted adjustable pillar glass clamp, comprising: a first part; a second part, which is arranged opposite the first part, wherein a clamping groove capable of mounting and clamping glass is formed between the first part and the second part, the first part can be movably connected to the second part, and an accommodating groove is formed on the side of the second part away from the first part; a base plate, wherein a first side of the base plate is located in the accommodating groove, a mounting surface is provided on a second side of the base plate opposite the first side and can be mounted on a side wall, the mounting surface is located outside the accommodating groove, and the second part can be movably connected to the base plate; and a lead screw assembly, which is mounted between the second part and the base plate, can be adjusted transversely and can rotate, so as to adjust the second part.
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Description

Side wall adjustable column glass clamp

[0001] This application claims priority to the Chinese patent application filed with the China Patent Office on March 12, 2025, with application number 202510293551X and invention name “Side wall adjustable column glass clamp”; the entire contents of which are incorporated by reference into this application. Technical Field

[0002] The present application belongs to the technical field of glass guardrail installation, and in particular relates to a glass clamp with an adjustable column on a side wall. Background Art

[0003] Conventional column glass clamps have a base at the bottom (for mounting) with a U-shaped groove that accommodates the glass guardrail. The mounting surface of the base is roughly perpendicular to the glass guardrail. Side wall column glass clamps differ from conventional column glass clamps in that the mounting surface of the side wall column glass clamp is located on the side, not the bottom, and is roughly parallel to the glass guardrail. This allows for side installation on the side wall, eliminating pedestrian space and leaving more room.

[0004] After the glass guardrail is installed with the glass clamp of the side wall column in the prior art, the glass is fixed and the glass angle cannot be adjusted. Once the wall (side wall) on which it is installed is not vertical, the glass will not be in a straight line after being assembled together, making adjustment difficult. Summary of the Invention

[0005] In response to some deficiencies in the related art, the present application provides a side wall adjustable column glass clamp that can adjust the degree of fit with the glass.

[0006] The first aspect of the present application provides a side wall adjustable column glass clamp comprising:

[0007] Part 1;

[0008] The second part is arranged opposite to the first part, and a clamping groove for installing and clamping glass is formed between the two parts; the first part and the second part are movably connected; a receiving groove is provided on a side of the second part away from the first part;

[0009] A base plate, wherein a first side of the base plate is located in the receiving groove; a second side of the base plate opposite to the first side has a mounting surface capable of being mounted on a side wall; the mounting surface is located outside the receiving groove; and the second portion and the base plate are movably connected; and

[0010] The lead screw assembly is mounted between the second portion and the base plate and is capable of being adjusted laterally and rotating to adjust the second portion.

[0011] In one embodiment, the base plate is provided with a pair of inclined plates, forming a motion path therebetween; the inclined plates are arranged transversely and their width gradually increases from one side to the other, such that the depth of the motion path gradually increases. The screw assembly includes a screw and an adjustment block located on the screw and capable of moving along the screw; the screw is arranged transversely and can be adjusted and rotated; the adjustment block has a first side with an arc-shaped curved surface that can abut against and rotate with the receiving groove of the second portion; the adjustment block has a motion block protruding from a second side opposite the first side, capable of extending into the motion path, moving along the path, and being constrained by the path.

[0012] In one embodiment, the size of the adjustment block is larger than the moving track and is located outside the moving track; the size of the moving block is smaller than the moving track, and there is a margin between the two after matching; a pair of inclined surfaces are formed between the adjustment block and the moving block, which can respectively match with a pair of inclined plates of the base plate, and the inclination of the inclined surface is roughly equal to the inclination of the inclined plate. After matching, the curved surface of the adjustment block and the second part are in at least linear contact.

[0013] In one embodiment, the adjustment block and the screw are both located in the accommodating groove; the screw is provided with a screw head with a recessed adjustment hole therein; a second through hole is provided on the second part; the adjustment hole can be aligned with the second through hole so as to adjust the rotation of the screw from the outside through the second through hole.

[0014] In one embodiment, an arc assembly and the screw assembly are arranged between the second part and the base plate along the longitudinal interval; the longitudinal direction is roughly perpendicular to the transverse direction; wherein, the arc assembly includes a protruding arc block and an arc groove in contact with it, and the two can rotate relative to each other; one of the arc block and the arc groove is arranged in the accommodating groove of the second part, and the other is arranged on the base plate.

[0015] In one embodiment, in the longitudinal direction, the arc assembly is located at the upper part and the screw assembly is located at the lower part; the arc block is arranged in the accommodating groove, which has a tip with a circular chamfer; the arc groove is opened on the base plate, which has a pointed groove.

[0016] In one embodiment, the outside of the first part forms a first shell, and the lower part of the first shell faces one side of the second part to form a first protrusion, which is a plate structure; the outside of the second part forms a second shell, and the lower part of the second shell faces one side of the first part to form a second protrusion, which is a block structure; the block structure can be located above the plate structure to form a supporting part at the bottom of the clamping groove; wherein, the upper surface of the second protrusion is the upper surface of the supporting part, which is used to support the glass.

[0017] In one embodiment, a first hole is formed on the first part, for mounting the first part on the base plate or the side wall after the first fastener passes through the second part, wherein the first fastener is in movable contact with the second part; a second hole is formed on the second part, for mounting the second part on the base plate or the side wall by the second fastener; and a third hole is formed on the base plate, for mounting the base plate on the side wall via the third fastener.

[0018] In one embodiment, the second protrusion of the second part is provided with a first through hole for the first fastener to pass through, with a margin between the first fastener and the second protrusion to achieve movable contact. There is also a margin between the base plate and the receiving groove of the second part to facilitate the rotation of the second part.

[0019] The installation method of the side wall adjustable column glass clamp provided on the second side of the present application can be used for the side wall adjustable column glass clamp described in any of the above embodiments. The installation method includes the following steps:

[0020] Determine the installation position of the column glass clamp and install the base plate on the side wall so that the mounting surface is at least partially in contact with the side wall;

[0021] Install the screw assembly between the second part and the base plate; then install the second part on the base plate or side wall;

[0022] The first part is mounted on the base plate or the side wall so that a clamping groove is formed between the first part and the second part, and the second part is located between the first part and the base plate.

[0023] In one embodiment, further, the glass to be installed is placed in the clamping groove, and the screw assembly is adjusted to adjust the angle of the glass.

[0024] At least one embodiment of the present application provides an adjustable side wall column glass clamp, whose adjustable function can increase the error tolerance when installing glass, can compensate for the defects of uneven wall surface, and achieve multiple pieces of glass in a straight line through adjustment;

[0025] The side wall adjustable column glass clamp provided in at least one embodiment of the present application has an additional angle adjustment function compared to existing products with top screws on the side on the market, making it easier for users to install and adjust. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] FIG1A is a schematic diagram of a column glass clamp according to one embodiment;

[0027] FIG1B is another perspective schematic diagram of a column glass clamp;

[0028] FIG1C is a cross-sectional view of a column glass clamp;

[0029] FIG2A is a first perspective view of the first portion;

[0030] FIG2B is a second perspective view of the first portion;

[0031] FIG3A is a first perspective view of the second portion;

[0032] FIG3B is a second perspective view of the second portion;

[0033] FIG4A is a first perspective view of a base plate;

[0034] FIG4B is a second perspective view of the base plate;

[0035] FIG5 is a schematic diagram showing the cooperation between the base plate and other components;

[0036] FIG6 is a perspective view of the lead screw assembly;

[0037] In the figure: 1 first part, 11 first shell, 101 first clamping surface, 102 first protrusion, 103 first hole; 2 second part, 21 second shell, 201 second clamping surface, 202 second protrusion, 203 second hole, 204 first through hole, 205 accommodating groove, 206 third protrusion, 207 second through hole; 3 base plate, 301 inclined plate, 302 moving path, 303 third hole, 304 mounting surface; 4 clamping groove; 5 supporting part; 601 first fastener, 602 second fastener; 7 arc assembly, 701 arc block, 702 arc groove; 8 screw assembly, 801 screw, 8011 screw head, 8012 adjustment hole, 802 adjustment block, 803 curved surface, 804 moving block, 805 inclined surface. DETAILED DESCRIPTION

[0038] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments. Obviously, the described embodiments are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0039] In the description of this application, it should be understood that the terms "center", "lateral", "longitudinal", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application.

[0040] The terms "first," "second," and "third" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or to implicitly specify the quantity of the technical features indicated. Therefore, a feature specified as "first," "second," or "third" may explicitly or implicitly include one or more of such features.

[0041] In the description of this application, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to direct connections, indirect connections through an intermediate medium, or internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.

[0042] As shown in Figures 1-4, the first embodiment of the present application provides a side wall adjustable column glass clamp (referred to as glass clamp for short), comprising: a first part 1, a second part 2 and a base plate 3; wherein:

[0043] The first portion 1 and the second portion 2 are disposed opposite each other, forming a clamping groove 4 extending longitudinally (vertically in the figure) therebetween for mounting and clamping the glass. More specifically, the first portion 1 has a first clamping surface 101, and the second portion 2 has a second clamping surface 201. The two are disposed opposite each other and can respectively contact the two side surfaces of the glass to be clamped; the clamping groove 4 is formed between the two clamping surfaces.

[0044] The exterior of the first portion 1 forms its outer shell, namely the first housing 11. Its interior can be hollowed out to ensure support strength, thereby reducing the overall weight of the glass clamp. A first clamping surface 101 is formed on the first housing 11. The exterior of the second portion 2 forms its outer shell, namely the second housing 21. In the figure, it is a rectangular shape, but is not limited to this shape. A second clamping surface 201 is formed on the second housing 21.

[0045] The bottom of the clamping groove 4 forms a support portion 5. The support portion 5 can be part of the first portion 1 or part of the second portion 2. In one embodiment, as shown in Figures 2A and 2B, a first protrusion 102 is formed on the lower portion of the first portion 1, facing the side of the second portion 2. This protrusion 102 can be a plate-shaped structure protruding from the first housing 11, serving as part of the support portion 5. As shown in Figures 3A and 3B, a second protrusion 202 is formed on the lower portion of the second portion 2, facing the side of the first portion 1. This protrusion 202 can be a block-shaped structure extending from the second clamping surface 201 (or second housing 21), serving as another part of the support portion 5. The second protrusion 202 can abut against the first protrusion 102, providing support. The top surface of the second protrusion 202 of the second portion 2 becomes the upper surface of the support portion 5, capable of contacting the bottom surface of the glass to be clamped. Considering the actual situation of clamping glass, the area of ​​the two clamping surfaces is much larger than the area of ​​the upper surface of the support portion 5.

[0046] The first portion 1 has a first hole 103 for mounting the first portion 1 on the base plate 3 or a side wall after the first fastener 601 passes through the second portion 2. The second portion 2 has a second hole 203 for mounting the second portion 2 directly on the base plate 3 or a side wall using the second fastener 602. The first fastener 601 and the second fastener 602 can each be selected from bolts, screws, and other fixing elements.

[0047] In one embodiment, as shown in Figures 3A and 3B , the second protrusion 202 of the second portion 2 is provided with a first through-hole 204 for passage of the first fastener 601, allowing the second portion 2 to move axially along the first fastener 601 and to rotate slightly. In other words, the inner diameter of the first through-hole 204 is larger than the outer diameter of at least a portion of the first fastener 601. Of course, the first through-hole 204 can also be provided elsewhere in the second portion 2, not necessarily in the second protrusion 202; however, given the greater thickness of the second protrusion 202, it is more convenient to restrict the movement of the first fastener 601 and the second portion 2, and therefore, it is preferably provided in the second protrusion 202.

[0048] A receiving groove 205 is formed on the side of the second portion 2 facing away from the first portion 1 to accommodate the base plate 3. To strengthen the second portion 2, a third protrusion 206 is provided in the receiving groove 205. This protrusion 206 may be a block structure extending from the back of the second clamping surface 201. The third protrusion 206 is located adjacent to the second protrusion 202 and is located on two opposing sides of the second portion 2. The first through-hole 204 and the first fastener 601 extend through the second protrusion 202 and the third protrusion 206. These two protrusions reinforce the strength of the second portion 2 from both sides, providing stability for subsequent adjustments.

[0049] As shown in Figures 1C, 3B and 4A, an arc component 7 is provided between the second part 2 and the base plate 3, enabling the second part 2 to rotate relative to the base plate 3. The arc component 7 includes a protruding arc block 701 and a cooperating arc groove 702, which can rotate relative to each other, thereby achieving rotation. In one embodiment, the arc block 701 is provided in the receiving groove 205 and is located at the upper part of the second part 2; the arc groove 702 is formed on the first side of the base plate 3 and is located at the upper part of the base plate 3. Vice versa, that is, the arc block 701 is provided on the first side of the base plate 3, and the arc groove 702 is provided in the receiving groove 205. Through the provision of the arc component 7, not only can the relative rotation of the second part 2 and the base plate 3 be achieved, but also the relative positioning and support of the two can be achieved, making the coordinated installation of the two simpler and more convenient. In one embodiment, the arc block 701 has a tip with a circular chamfer, and the arc groove 702 has a pointed groove, so that the fitting and positioning are more accurate.

[0050] As shown in Figures 4A and 5 , a pair of inclined plates 301 are further provided on the first side of the base plate 3, forming a motion path 302 therebetween. The inclined plates 301 are arranged in a transverse direction, and their width gradually increases from one side to the other, thereby increasing the depth of the motion path 302 in the transverse direction. This transverse direction is perpendicular to the longitudinal direction described above.

[0051] As shown in FIG5 and FIG6, the glass clamp further comprises a screw assembly 8, comprising a screw rod 801 and an adjusting block 802 located on the screw rod 801 and capable of moving along the screw rod 801.

[0052] The screw 801 is generally parallel to the direction (lateral direction) of extension of the motion path 302. A second through-hole 207 is defined in the housing of the second portion 2, allowing the rotation of the screw 801 to be adjusted from the outside. The screw 801 has a screw head 8011 with a recessed adjustment hole 8012, such as a hexagonal countersunk hole. This allows an adjustment tool, such as a hexagonal rod, to be inserted into the adjustment hole 8012 to rotate the screw 801. In one embodiment, the screw head 8011 is located within the receiving slot 205 of the second portion, meaning that the entire screw 801 (or lead screw assembly 8) is located within the housing of the second portion 2. This arrangement prevents accidental manipulation of the screw 801 by others, ensuring the safety and stability of the glass clamp after installation.

[0053] The adjustment block 802 is located between the second portion 2 and the base plate 3. A first side of the adjustment block 802 forms a generally arc-shaped curved surface 803, capable of abutting against the receiving groove 205 of the second portion 2, forming a linear contact. A second side of the adjustment block 802, opposite the first side, is provided with a protruding motion block 804. This motion block 804 can extend into the motion path 302, moving along it while being constrained by it; that is, the motion block 804 and the motion path 302 form a sliding assembly.

[0054] In one specific embodiment, the adjustment block 802 is larger than the motion path 302 and is located outside the motion path 302. The motion block 804 is smaller in size than the adjustment block 802, allowing it to extend into and engage with the motion path 302. A pair of inclined surfaces 805 are formed between the adjustment block 802 and the motion block 804, and mate with the inclined plate 301 of the base plate 3. The inclination of these surfaces is approximately equal to that of the inclined plate 301. This ensures that, when the motion block 804 mates with the motion path 302, and when the inclined surfaces 805 mate with the inclined plate 301, the curved surface 803 of the adjustment block 802 and the second portion 2 are in at least linear contact, thereby increasing the reliability of the adjustment.

[0055] As shown in FIG1C , there is a slight margin between the movement block 804 and the movement path 302 after mating (not a tight fit), allowing the movement block 804 and the curved surface 803 to rotate slightly (clockwise or counterclockwise in the figure). Generally, the rotation angles on both sides are 0-2°, and preferably, the rotation angles on both sides are greater than 0° and less than or equal to 1.5°. For example, the rotation angles can be adjusted to 0.5°, 1°, 1.2°, 1.5°, etc. according to actual needs. A slight margin is also provided between the base plate 3 and the receiving groove 205 of the second portion 2 to provide space for small rotation.

[0056] Relatively speaking, along the longitudinal direction, the arc assembly 7 is located at the upper part and the screw assembly 8 is located at the lower part; the two are spaced apart along the longitudinal direction, which can well position the second part 2 and the base plate 3 and provide support for them.

[0057] Through the above-mentioned arrangement, when adjusting the lead screw assembly 8, on the one hand, the second part 2 can be moved toward the first part 1 to press against the glass in the clamping groove 4, and on the other hand, the second part 2 can be rotated slightly clockwise or counterclockwise to adjust the fit between the second part 2 and the glass or adjust the angle of the glass. Specifically, referring to FIG1C , when installing the glass, the width of the clamping groove 4 is slightly larger than the width of the glass. By adjusting the screw 801, the motion block 804 is restricted by the motion path 302. The adjustment block 802 and the motion block 804 can only move laterally along the inclined plate 301, thereby expanding the distance between the second part 2 and the base plate 3, pushing the second part 2 toward the first part 1, reducing the width of the clamping groove 4, and pressing against the glass. After pressing against the glass, if the glass and the second part 2 are not tightly fitted or the angles of the glasses are inconsistent due to reasons such as the tilt of the side wall, the screw 801 is adjusted. Due to the interference between the glass and the glass clamp, the adjustment block 802 mainly starts to rotate slightly. Under the restriction of the motion path 302, the curved surface 803 and the motion block 804 rotate slightly. With the interference of the arc component 7, the second part 2 rotates slightly, thereby adjusting its angle, so that the glass and the second part 2 fit more closely or the angle of the glass is adjusted so that the angles of the glasses are roughly consistent.

[0058] As shown in Figures 4A and 4B, the base plate 3 is provided with a third hole 303 for mounting the base plate 3 on the side wall via a third fastener (not shown in the figures). The third fastener may be a bolt, screw or other fastener, which is easily understood by those skilled in the art. A mounting surface 304 is formed on the second side of the base plate 3 opposite to the first side, which can at least partially fit with the side wall. The second side of the base plate 3 can also be a hollow structure to reduce the weight of the base plate 3. In addition, as shown in Figures 1B and 1C, after the second part 2 and the base plate 3 are matched, the second side of the base plate 3 is at least partially located outside the second part 2 to facilitate the installation of the second part 2 and its small rotation.

[0059] A second embodiment of the present application provides a method for installing a glass clamp on an adjustable side wall column (hereinafter referred to as the installation method), which can be used to install the glass clamp described in any of the above embodiments; the installation method includes:

[0060] Determine the installation position of the glass clamp and use the third fastener to install the base plate 3 on the side wall through the third hole 303 so that the installation surface 304 is in contact with the side wall;

[0061] Assemble the screw rod 801 and adjustment block 802 of the lead screw assembly 8. Then, mate the motion block 804 with the motion path 302, mate the inclined surface 805 with the inclined plate 301, and align the screw rod's adjustment hole 8012 with the second through hole 207. Furthermore, align the arc assembly 7 so that the arc block 701 is located in the arc groove 702. Then, use the second fastener 602 through the second hole 203 to mount the second portion 2 on the base plate 3, so that the curved surface 803 of the adjustment block is in line contact with the second portion 2.

[0062] Align the first hole 103 and the first through hole 204, and use the first fastener 601 to pass through the first hole 103 and the first through hole 204 in sequence to install the first part 1 on the base plate 3; so that a clamping groove 4 and a support part 5 are formed between the first part 1 and the second part 2, and the second part 2 is located between the first part 1 and the base plate 3.

[0063] Furthermore, after the above assembly is completed, the glass to be installed is placed in the clamping groove 4, and an adjusting tool is used to pass through the second through hole 207 and inserted into the adjusting hole 8012. By rotating the screw 801, the clamping groove 4 is gradually narrowed to further clamp the glass; after the glass is clamped, the screw 801 can also be rotated to make the second part 2 rotate slightly, thereby adjusting the angle of the glass.

[0064] Finally, it should be noted that the various embodiments in this specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referenced to each other.

[0065] The above embodiments are only used to illustrate the technical solution of the present application and not to limit it. Although the present application has been described in detail with reference to the preferred embodiments, ordinary technicians in the relevant field should understand that the specific embodiments of the present application can still be modified or some technical features can be replaced by equivalents without departing from the spirit of the technical solution of the present application. They should all be included in the scope of the technical solution for which protection is requested in the present application.

Claims

1. A side wall adjustable column glass clamp, wherein: include: Part 1; The second part is arranged opposite to the first part, and a clamping groove capable of installing and clamping the glass is formed therebetween; The first part and the second part are movably connected; a receiving groove is provided on a side of the second part away from the first part; A base plate, wherein a first side of the base plate is located in the receiving groove; a second side of the base plate opposite to the first side has a mounting surface capable of being mounted on a side wall; the mounting surface is located outside the receiving groove; and the second portion and the base plate are movably connected; as well as The lead screw assembly is mounted between the second portion and the base plate and can be adjusted in the lateral direction and can be rotated to adjust the second portion.

2. The side wall adjustable column glass clamp according to claim 1, wherein: A pair of inclined plates are provided on the base plate, and a motion path is formed between the two; the inclined plates are distributed in the transverse direction, and the width gradually increases from one side to the other side along the transverse direction, so that the depth of the motion path gradually increases; the screw assembly includes a screw and an adjustment block located on the screw and capable of moving along the screw; the screw is arranged in the transverse direction and can be adjusted and rotated; the first side of the adjustment block has an arc-shaped curved surface, which can abut against and rotate with the accommodating groove of the second part; the second side of the adjustment block opposite to the first side is protrudingly provided with a motion block, which can extend into the motion path, move along it and be constrained by it.

3. The side wall adjustable column glass clamp according to claim 2, wherein: The size of the adjustment block is larger than the moving track and is located outside the moving track; the size of the moving block is smaller than the moving track, and there is a margin between the two after matching; a pair of inclined surfaces are formed between the adjustment block and the moving block, which can respectively match with a pair of inclined plates of the base plate, and the inclination of the inclined surface is roughly equal to the inclination of the inclined plate. After matching, the curved surface of the adjustment block and the second part are in at least linear contact.

4. The side wall adjustable column glass clamp according to claim 2, wherein: The adjusting block and the screw are both located in the receiving groove; the screw is provided with a screw head with a recessed adjusting hole therein; a second through hole is provided on the second part; the adjusting hole can be aligned with the second through hole so as to adjust the rotation of the screw from the outside through the second through hole.

5. The side wall adjustable column glass clamp according to any one of claims 1 to 4, wherein: An arc assembly and the screw assembly are arranged between the second part and the base plate along the longitudinal interval; the longitudinal direction is roughly perpendicular to the transverse direction; wherein, the arc assembly includes a protruding arc block and an arc groove in contact with it, and the two can rotate relative to each other; one of the arc block and the arc groove is arranged in the accommodating groove of the second part, and the other is arranged on the base plate.

6. The side wall adjustable column glass clamp according to claim 5, wherein: In the longitudinal direction, the arc assembly is located at the upper part and the screw assembly is located at the lower part; the arc block is arranged in the accommodating groove, which has a tip with a circular arc chamfer; the arc groove is opened on the base plate, which has a pointed groove.

7. The side wall adjustable column glass clamp according to any one of claims 1 to 4 and 6, wherein: The outside of the first part forms a first shell, and the lower part of the first shell faces one side of the second part to form a first protrusion, which is a plate structure; the outside of the second part forms a second shell, and the lower part of the second shell faces one side of the first part to form a second protrusion, which is a block structure; the block structure can be located above the plate structure to form a supporting part at the bottom of the clamping groove; wherein, the upper surface of the second protrusion is the upper surface of the supporting part, which is used to support the glass.

8. The side wall adjustable column glass clamp according to claim 7, wherein: A first hole is provided on the first part for mounting the first part on the base plate or the side wall after the first fastener passes through the second part, wherein the first fastener is in movable contact with the second part; a second hole is provided on the second part for mounting the second part on the base plate or the side wall by the second fastener; a third hole is provided on the base plate for mounting the base plate on the side wall; a first through hole is provided on the second protrusion of the second part for the first fastener to pass through, and there is a margin between the second protrusion and the first fastener to achieve movable contact; there is also a margin between the base plate and the accommodating groove of the second part to facilitate the rotation of the second part.

9. A method for installing a side wall adjustable column glass clamp, wherein: The installation method for the side wall adjustable column glass clamp according to any one of claims 1 to 8 comprises the following steps: Determine the installation position of the column glass clamp and install the base plate on the side wall so that the mounting surface is at least partially in contact with the side wall; Install the screw assembly between the second part and the base plate; then install the second part on the base plate or side wall; The first part is mounted on the base plate or the side wall so that a clamping groove is formed between the first part and the second part, and the second part is located between the first part and the base plate.

10. The method for installing the side wall adjustable column glass clamp according to claim 9, wherein: Furthermore, the glass to be installed is placed in the clamping groove, and the lead screw assembly is adjusted to adjust the angle of the glass.

Citation Information

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