Sliding hanger

By designing a sliding hanger and utilizing a combination of adjustment components and sliding components, the problems of friction damage and tilting of the display module during the splicing process are solved, friction and vibration are reduced, and the integrity of the display module is protected.

CN120760029APending Publication Date: 2025-10-10AU OPTRONICS CORP
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Patent Information

Application Number
CN202510994483.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2025-01-15
Filing Date
2025-07-18
Publication Date
2025-10-10

AI Technical Summary

Technical Problem

When splicing multiple display modules, the existing technology has problems such as friction damage, vibration and tilting caused by a large friction area, which can easily cause damage to the display modules especially under load-bearing conditions.

Method used

A sliding hanger is used, including a first object, a first adjustment component, a second adjustment component, a second object and a sliding component. Through the movement of the adjustment component and the design of the sliding component, friction and vibration during the sliding process are reduced to avoid tilting. The sliding component and the cross bar are in point or line contact to reduce the contact area.

Benefits of technology

It effectively reduces friction and vibration during the sliding process, avoids damage to the display module, reduces friction damage and tilt, and protects the integrity of the display module.

✦ Generated by Eureka AI based on patent content.

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Abstract

A sliding hanger is suitable for splicing a plurality of display modules and is used for being hung on a cross rod. The sliding hanger comprises a first object, a first adjusting assembly, a second adjusting assembly, a second object and a sliding assembly. The first object is connected with the display module. One end of the first adjusting assembly and one end of the second adjusting assembly are connected to the first object. The second object is movably connected to the other end of the first adjusting assembly in the first direction and movably connected to the other end of the second adjusting assembly in the second direction. The second direction is different from the first direction. The sliding assembly is connected to the second object. A gap is formed between the first adjusting assembly and the transverse rod. The sliding assembly is adapted to slidably contact the crossbar.
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Description

Technical Field

[0001] The present invention relates to a sliding hanger, and in particular to a sliding hanger for splicing a plurality of display modules. Background Art

[0002] When manufacturing large-scale micro-light-emitting diode (uLED) transparent display modules, directly fabricating large glass window covers is limited by production equipment, costs, packaging, and shipping. On the other hand, splicing small pieces together to create a large display also encounters limitations. To achieve larger sizes, modular assembly is necessary.

[0003] Current transparent display modules have a large friction area when moving under load. This large friction area can easily lead to excessive friction damage, excessive vibration, and tilting, causing the box module to easily collide with adjacent corners. Summary of the Invention

[0004] The invention provides a sliding hanger which can reduce friction, vibration and tilt.

[0005] The sliding hanger of the present invention is suitable for splicing multiple display modules and for hanging on a crossbar. The sliding hanger includes a first object, a first adjustment assembly, a second adjustment assembly, a second object, and a sliding assembly. The first object is connected to the display module. One end of the first adjustment assembly is connected to the first object. One end of the second adjustment assembly is connected to the first object. The second object is movably connected to the other end of the first adjustment assembly along a first direction and movably connected to the other end of the second adjustment assembly along a second direction. The second direction is different from the first direction. The sliding assembly is connected to the second object. A gap is provided between the first adjustment assembly and the crossbar. The sliding assembly is adapted to slide in contact with the crossbar.

[0006] Based on the above, in the sliding hanger of the present invention, one end of the first adjustment component is connected to the first object, one end of the second adjustment component is connected to the first object, the second object is movably connected to the other end of the first adjustment component along the first direction, and is movably connected to the other end of the second adjustment component along the second direction, the sliding component is connected to the second object, and there is a gap between the first adjustment component and the cross bar, the sliding component is suitable for sliding contact with the cross bar, and adjusting the first adjustment component and / or the second adjustment component can make the first object move relative to the second object along the first direction and / or the second direction, while the sliding component still slides in contact with the cross bar. Therefore, in the process of the sliding component moving relative to the cross bar, the friction between the sliding component and the cross bar can be effectively reduced, the vibration is also reduced, and correspondingly, the tilting situation can be avoided, which helps to prevent damage to the display module. BRIEF DESCRIPTION OF THE DRAWINGS

[0007] Figure 1 It is a partially cutaway perspective schematic diagram of a sliding hanger according to an embodiment of the present invention.

[0008] Figure 2 It is a partial cross-sectional schematic diagram of a sliding hanger according to an embodiment of the present invention.

[0009] Figure 3 yes Figure 2 Schematic diagram of a second object after moving along the first direction.

[0010] Figure 4 yes Figure 2 Schematic diagram of a second object after moving along the second direction.

[0011] The accompanying drawings are described as follows:

[0012] 50: Display module

[0013] 60: horizontal bar

[0014] 100: Sliding rack

[0015] 110: First Object

[0016] 111: First Wall

[0017] 112: First horizontal wall

[0018] 120: First adjustment component

[0019] 121: First bolt

[0020] 121a: first threaded portion

[0021] 121b: First adjustment unit

[0022] 122: First Nut

[0023] 123: Second nut

[0024] 124: Third nut

[0025] 130: Second adjustment component

[0026] 131: Second bolt

[0027] 131a: Second threaded portion

[0028] 131b: Second adjustment unit

[0029] 132: Fourth nut

[0030] 133: Fifth nut

[0031] 134: Sixth Nut

[0032] 140: Second Object

[0033] 141: Second Wall

[0034] 142: Second horizontal wall

[0035] 150: Sliding component

[0036] 151: Base

[0037] 152: Locking firmware

[0038] 153: Sliding part

[0039] D1: First direction

[0040] D2: Second direction

[0041] G: Gap. DETAILED DESCRIPTION

[0042] As used herein, "about," "approximately," "substantially," or "substantially" include the stated value and the mean value within an acceptable deviation range for the particular value as determined by one of ordinary skill in the art, taking into account the measurement in question and the particular amount of error associated with the measurement (i.e., the limitations of the measurement system). For example, "about" can mean within one or more standard deviations of the stated value, or within, for example, ±30%, ±20%, ±15%, ±10%, ±5%. Furthermore, as used herein, "about," "approximately," "substantially," or "substantially" can be selected based on the acceptable deviation range or standard deviation of the measured property, cutting property, or other property, and may not apply to all properties without a single standard deviation.

[0043] In the accompanying drawings, the thickness of layers, films, panels, regions, etc. is exaggerated for clarity. It should be understood that when an element such as a layer, film, region, or substrate is referred to as being "on" or "connected to" another element, it may be directly on or connected to another element, or an intermediate element may also exist. In contrast, when an element is referred to as being "directly on" or "directly connected to" another element, there is no intermediate element. As used herein, "connection" may refer to physical and / or electrical connection. Furthermore, "electrical connection" may refer to the presence of other elements between two elements.

[0044] In addition, relative terms such as "lower" or "bottom" and "upper" or "top" may be used herein to describe the relationship of one element to another element, as shown in the figures. It should be understood that relative terms are intended to include different orientations of the device in addition to the orientation shown in the figures. For example, if the device in a figure is turned over, the element described as being on the "lower" side of the other elements will be oriented on the "upper" side of the other elements. Thus, the exemplary term "lower" can include both "lower" and "upper" orientations, depending on the particular orientation of the figure. Similarly, if the device in a figure is turned over, the element described as being "below" or "beneath" the other elements will be oriented as being "above" the other elements. Thus, the exemplary terms "above" or "below" can include both "above" and "below" orientations.

[0045] Exemplary embodiments are described herein with reference to cross-sectional views that are schematic diagrams of idealized embodiments. Therefore, variations in the shapes of the illustrations as a result of, for example, manufacturing techniques and / or tolerances are to be expected. Therefore, the embodiments described herein should not be construed as limited to the specific shapes of the regions as shown herein, but rather include deviations in shapes that result, for example, from manufacturing. For example, a region shown or described as flat may typically have rough and / or nonlinear features. Furthermore, sharp angles shown may be rounded. Therefore, the regions shown in the figures are schematic in nature, and their shapes are not intended to illustrate the precise shapes of the regions and are not intended to limit the claims.

[0046] Reference will now be made in detail to exemplary embodiments of the present invention, examples of which are illustrated in the accompanying drawings. Whenever possible, the same reference numerals are used in the drawings and the description to refer to the same or like parts.

[0047] Figure 1 It is a partially cutaway perspective schematic diagram of a sliding hanger according to an embodiment of the present invention. Figure 2 It is a partial cross-sectional schematic diagram of a sliding hanger according to an embodiment of the present invention. Figure 3 yes Figure 2 Schematic diagram of a second object after moving along the first direction. Figure 4 yes Figure 2 Schematic diagram of a second object after moving along the second direction.

[0048] Please refer to Figure 1 、 Figure 2 、 Figure 3 and Figure 4 The sliding hanger 100 is suitable for splicing a plurality of display modules 50 and is used to be hung on the crossbar 60. The sliding hanger 100 includes a first object 110, a first adjustment component 120, a second adjustment component 130, a second object 140 and a sliding component 150.

[0049] The first object 110 is connected to the display module 50, one end of the first adjustment component 120 is connected to the first object 110, one end of the second adjustment component 130 is connected to the first object 110, the second object 140 is movably connected to the other end of the first adjustment component 120 along a first direction D1, and is movably connected to the other end of the second adjustment component 130 along a second direction D2, the second direction D2 is different from the first direction D1, the sliding component 150 is connected to the second object 140, and there is a gap G between the first adjustment component 120 and the cross bar 60, and the sliding component 150 is suitable for sliding contact with the cross bar 60. By adjusting the first adjustment component 120 and / or the second adjustment component 130, the first object 110 can be moved relative to the second object 140 along the first direction D1 and / or the second direction D2, while the sliding component 150 still slides in contact with the cross bar 60. During the movement of the sliding component 150 relative to the cross bar 60, the friction between the sliding component 150 and the cross bar 60 can be effectively reduced, vibration is also reduced, and tilting can be avoided accordingly, which helps to prevent damage to the display module 50.

[0050] In one embodiment, the sliding assembly 150 has a ball bearing, and the ball bearing and the cross bar 60 are in point contact, which helps to reduce the contact area between the sliding assembly 150 and the cross bar 60 and thus reduce friction.

[0051] In one embodiment, the sliding assembly has a roller, and the roller is in line contact with the crossbar 60 , which helps to reduce the contact area between the sliding assembly and the crossbar, thereby reducing friction.

[0052] In one embodiment, the sliding assembly 150 includes a base 151 , a locking member 152 , and a sliding member 153 . The locking member 152 passes through the second object 140 and is locked to the base 151 , and the sliding member 153 is movably disposed on the base 151 .

[0053] In one embodiment, the second object 140 has a second transverse wall 142 , and the sliding assembly 150 includes a base 151 , a locking member 152 , and a sliding member 153 . The locking member 152 passes through the second transverse wall 142 and is locked to the base 151 , and the sliding member 153 is movably disposed on the base 151 .

[0054] In one embodiment, the sliding member 153 is a ball bearing, which is rotatably disposed on the base 151 , and point contact is formed between the ball bearing and the cross bar 60 .

[0055] In one embodiment, the sliding member 153 is a roller. The roller is rotatably disposed on the base 151 , and there is line contact between the roller and the cross bar 60 .

[0056] Please refer to Figure 1 、 Figure 2 and Figure 3In one embodiment, the first adjustment assembly 120 includes a first bolt 121, a first nut 122, a second nut 123, and a third nut 124. The first bolt 121 is pivotally mounted on the first object 110, and the first object 110 is located between the first bolt 121 and the second object 140. The first nut 122 is connected to the second object 140, and the first bolt 121 is screwed onto the first nut 122. The first object 110 is located between the first bolt 121 and the first nut 122, and the first nut 122 is located between the first object 110 and the second object 140. The second nut 123 is screwed onto the first bolt 121, and the first object 110 is located between the first bolt 121 and the second nut 123. The second nut 123 is located between the first object 110 and the first nut 122, and the first nut 122 is located between the second nut 123 and the second object 140. The third nut 124 is screwed onto the first bolt 121 . The second nut 123 is located between the first object 110 and the third nut 124 . The third nut 124 is located between the second nut 123 and the first nut 122 . The first nut 122 is located between the third nut 124 and the second object 140 .

[0057] In one embodiment, the first object 110 has a first vertical wall 111 and a first transverse wall 112, the first transverse wall 112 is connected to the first vertical wall 111, and the first bolt 121 has a first threaded portion 121a and a first adjustment portion 121b, the first adjustment portion 121b is connected to the first threaded portion 121a, the first threaded portion 121a sequentially passes through the first transverse wall 112, the second nut 123, the third nut 124, the first nut 122, and the second transverse wall 142, and is sequentially screwed onto the second nut 123, the third nut 124, and the first nut 122. Rotating the first adjustment portion 121b can cause the first bolt 121 to rotate as a whole, thereby idling relative to the first transverse wall 112, thereby screwing the first nut 122 in or out relative to the first object 110, so that the first object 110 moves relative to the second object 140 along the first direction D1.

[0058] In one embodiment, the first adjustment assembly 120 has a first bolt 121 and a first nut 122, the first nut 122 is connected to the second object 140, the first bolt 121 is pivoted on the first object 110 and screwed on the first nut 122, the first object 110 is located between the first bolt 121 and the first nut 122, and the first nut 122 is located between the first object 110 and the second object 140.

[0059] Please refer to Figure 1 、 Figure 2 and Figure 4In one embodiment, the second adjusting assembly 130 includes a second bolt 131, a fourth nut 132, a fifth nut 133, and a sixth nut 134. The second bolt 131 is pivotally arranged between the first article 110 and the second article 140, and the first article 110 is located between the second bolt 131 and the second article 140. The fourth nut 132 is threadedly arranged on the second bolt 131, the first article 110 is located between the second bolt 131 and the second article 140, and the second article 140 is located between the first article 110 and the fourth nut 132. The fifth nut 133 is threadedly arranged on the second bolt 131, the first article 110 is located between the second bolt 131 and the fifth nut 133, the fifth nut 133 is located between the first article 110 and the second article 140, and the second article 140 is located between the fifth nut 133 and the fourth nut 132. The sixth nut 134 is threadedly arranged on the second bolt 131, the fifth nut 133 is located between the first article 110 and the sixth nut 134, the sixth nut 134 is located between the fifth nut 133 and the second article 140, and the second article 140 is located between the sixth nut 134 and the fourth nut 132.

[0060] In one embodiment, the second article 140 has a second vertical wall 141 and a second horizontal wall 142, the second horizontal wall 142 is connected to the second vertical wall 141, the second bolt 131 has a second threaded portion 131a and a second adjusting portion 131b, the second adjusting portion 131b is connected to the second threaded portion 131a, the second threaded portion 131a sequentially passes through the first vertical wall 111, the fifth nut 133, the sixth nut 134, the second vertical wall 141, and the fourth nut 132, and is threadedly locked to the fifth nut 133, the sixth nut 134, and the fourth nut 132 in sequence. Rotating the second adjusting portion 131b can cause the second bolt 131 to rotate as a whole, thereby idling relative to the first vertical wall 111, and rotating into or out of the fourth nut 132, so as to cause the first article 110 to move relative to the second article 140 in the second direction D2.

[0061] The second adjusting assembly 130 has a second bolt 131 and a fourth nut 132, the second bolt 131 is pivotally arranged between the first article 110 and the second article 140 and is threadedly arranged on the fourth nut 132, the first article 110 is located between the second bolt 131 and the second article 140, and the second article 140 is located between the first article 110 and the fourth nut 132.

[0062] To sum up, in the sliding hanger of the present invention, one end of the first adjustment component is connected to the first object, one end of the second adjustment component is connected to the first object, the second object is movably connected to the other end of the first adjustment component along the first direction, and is movably connected to the other end of the second adjustment component along the second direction, the sliding component is connected to the second object, and there is a gap between the first adjustment component and the cross bar, the sliding component is suitable for sliding contact with the cross bar, and adjusting the first adjustment component and / or the second adjustment component can make the first object move relative to the second object along the first direction and / or the second direction, while the sliding component still slides in contact with the cross bar. Therefore, in the process of the sliding component moving relative to the cross bar, the friction between the sliding component and the cross bar can be effectively reduced, the vibration is also reduced, and correspondingly, the tilting situation can be avoided, which helps to prevent damage to the display module.

Claims

1. A sliding hanger suitable for splicing multiple display modules and for hanging on a horizontal bar, comprising: a first object connected to the display module; a first adjustment component, one end of which is connected to the first object; a second adjustment component, one end of which is connected to the first object; a second object movably connected to the other end of the first adjustment component along a first direction and movably connected to the other end of the second adjustment component along a second direction, wherein the second direction is different from the first direction; as well as A sliding component is connected to the second object. A gap is defined between the first adjustment component and the crossbar. The sliding component is adapted to slide in contact with the crossbar. 2 . The sliding hanger as claimed in claim 1 , wherein the sliding component has a ball, and the ball is in point contact with the cross bar. 3 . The sliding hanger as claimed in claim 1 , wherein the sliding assembly comprises a roller, and the roller is in line contact with the crossbar.

4. The sliding hanger according to claim 1, wherein the sliding assembly comprises: a base; a locking member passing through the second object and being locked to the base; as well as A sliding member is movably arranged on the base. 5 . The sliding hanger as claimed in claim 4 , wherein the sliding member is a ball, the ball is rotatably disposed on the base, and the ball is in point contact with the crossbar. 6 . The sliding hanger as claimed in claim 4 , wherein the sliding member is a roller, the roller is rotatably disposed on the base, and there is line contact between the roller and the crossbar.

7. The sliding hanger according to claim 1, wherein the first adjustment component comprises: a first bolt pivotally mounted on the first object, wherein the first object is located between the first bolt and the second object; a first nut connected to the second object, the first bolt being screwed onto the first nut, the first object being located between the first bolt and the first nut, and the first nut being located between the first object and the second object; a second nut screwed onto the first bolt, the first object being located between the first bolt and the second nut, the second nut being located between the first object and the first nut, and the first nut being located between the second nut and the second object; as well as A third nut is screwed on the first bolt, the second nut is located between the first object and the third nut, the third nut is located between the second nut and the first nut, and the first nut is located between the third nut and the second object.

8. A sliding hanger as described in claim 1, wherein the first adjustment component has a first bolt and a first nut, the first nut is connected to the second object, the first bolt is pivoted on the first object and screwed on the first nut, the first object is located between the first bolt and the first nut, and the first nut is located between the first object and the second object.

9. The sliding hanger according to claim 1, wherein the second adjustment component comprises: a second bolt pivotally mounted between the first object and the second object, with the first object located between the second bolt and the second object; a fourth nut, the second bolt being screwed onto the fourth nut, the first object being located between the second bolt and the second object, and the second object being located between the first object and the fourth nut; a fifth nut screwed onto the second bolt, the first object being located between the second bolt and the fifth nut, the fifth nut being located between the first object and the second object, and the second object being located between the fifth nut and the fourth nut; as well as A sixth nut is screwed on the second bolt, the fifth nut is located between the first object and the sixth nut, the sixth nut is located between the fifth nut and the second object, and the second object is located between the sixth nut and the fourth nut.

10. A sliding hanger as described in claim 1, wherein the second adjustment component has a second bolt and a fourth nut, the second bolt is pivotally mounted on the first object and the second object and is screwed on the fourth nut, the first object is located between the second bolt and the second object, and the second object is located between the first object and the fourth nut.