Mobile phone support

By designing a mobile phone holder to fix the mobile phone in the ore sorting equipment, the inaccurate sorting results caused by misalignment of the position of the blowing system and the identification system is solved, safe and convenient media data collection is achieved, and equipment debugging is reduced.

CN223182178UActive Publication Date: 2025-08-01HONESORT TECHNOLOGY (ZHEJIANG) CO LTD
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Patent Information

Application Number
CN202422515038.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-17
Publication Date
2025-08-01
Estimated Expiration
2034-10-17

AI Technical Summary

Technical Problem

During the manufacturing process, the blowing system and identification system positions may be misaligned, resulting in inaccurate sorting results and the testers cannot record videos through handheld mobile phones for debugging, which increases the difficulty of equipment debugging.

Method used

A mobile phone bracket is designed, including the bracket body and position fixing mechanism, which can fix the mobile phone through U-shaped grooves, and fix the bracket in the ore sorting equipment by means of hooks, magnets or bolts, so as to achieve stable placement of the mobile phone and media data collection.

Benefits of technology

It realizes safe and convenient media data collection in ore sorting equipment, reduces debugging difficulty, ensures the health and safety of testers, and improves equipment debugging efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of electronic equipment supports, in particular to a mobile phone support. The mobile phone support is used for fixing a mobile phone in ore separation equipment and comprises a support body, a U-shaped groove with an upward opening is formed in the support body, the interior of the U-shaped groove is used for containing the mobile phone, the U-shaped groove comprises a first vertical face and a second vertical face connected through a bottom face, the first vertical face and the second vertical face are used for protecting the mobile phone, and the bottom face is used for supporting the mobile phone; the position fixing mechanism is arranged on the second vertical face and used for fixing the support body in the ore separation equipment so that the mobile phone placed in the U-shaped groove can collect media data in the ore separation equipment. According to the method, media data collection can be carried out on the internal condition of the ore separation equipment through the mobile phone without manual hand holding, so that the media data collection difficulty can be effectively reduced, the health and safety of related personnel can be guaranteed, and the debugging difficulty can be effectively reduced when the ore separation equipment is debugged by using the media data subsequently.
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Description

Technical Field

[0001] The utility model relates to the technical field of electronic device brackets, and particularly relates to a mobile phone bracket. Background Art

[0002] The working principle of the ore sorting equipment is that after the ore is identified by the identification system, the identification system transmits instructions to the blowing system. When the ore passes through the blowing system, the blowing system sorts the ore according to the instructions. This process requires the positions of the blowing system and the identification system to correspond one by one. Due to machining errors generated during the manufacturing process of the ore sorting equipment, the positions of the blowing system and the identification system are misaligned, affecting the sorting results.

[0003] During the debugging process of the ore sorting equipment, real-time monitoring of the blowing system is required. However, since the identification system of the ore sorting equipment is composed of an X-ray device, testers cannot enter the equipment interior to record videos by holding a mobile phone, resulting in difficult equipment debugging. Summary of the Utility Model

[0004] To overcome the problems existing in the related art, an exemplary embodiment of the present disclosure provides a mobile phone bracket.

[0005] An exemplary embodiment of the first aspect of the present disclosure provides a mobile phone bracket for fixing a mobile phone inside an ore sorting equipment, including: a bracket body provided with a U-shaped groove opening upward, the inside of the U-shaped groove is for placing the mobile phone, the U-shaped groove includes a first vertical surface and a second vertical surface connected by a bottom surface, the first vertical surface and the second vertical surface are for protecting the mobile phone, and the bottom surface is for supporting the mobile phone; a position fixing mechanism provided on the second vertical surface for fixing the bracket body inside the ore sorting equipment so that the mobile phone placed in the U-shaped groove can collect media data inside the ore sorting equipment.

[0006] In some embodiments, the position fixing mechanism includes: a hook fixedly connected to the second vertical surface for hanging the bracket body on a target component of the ore sorting equipment.

[0007] In some embodiments, the hook includes: a first side surface and a second side surface connected to the first side surface by an upper baffle, the first side surface is for fixedly connecting with the second vertical surface, and the second side surface includes a fixing screw hole; the position fixing mechanism further includes: a first bolt for passing through the fixing screw hole to press and fix the target component and the first side surface.

[0008] In some embodiments, it further includes: a second bolt; the second vertical surface is fixedly connected to the first side surface by the second bolt.

[0009] In some embodiments, the position fixing mechanism includes: a magnet fixedly connected to the outer side surface of the second vertical surface, for fixing the bracket body on a target component inside the ore sorting device by magnetic attraction.

[0010] In some embodiments, the first vertical surface includes an adjusting screw hole; the mobile phone bracket further includes: an adjusting bolt and an adjusting protective gasket; the adjusting bolt penetrates through the first vertical surface through the adjusting screw hole; the adjusting protective gasket is connected to the tail of the adjusting bolt and suspended inside the U-shaped groove, for contacting the mobile phone and pressing and fixing the mobile phone to the second vertical surface.

[0011] In some embodiments, a rotating handle is provided at the head of the adjusting bolt, suspended outside the bracket body, and the rotating handle is used to adjust the penetration length of the tail of the adjusting bolt inside the U-shaped groove.

[0012] In some embodiments, the rotating handle is fixedly connected to the head of the adjusting bolt by welding; the adjusting protective gasket is fixedly connected to the tail of the adjusting bolt by pasting.

[0013] In some embodiments, it further includes: a shock absorption mechanism provided on the inner surface of the U-shaped groove, for reducing or eliminating the vibration of the mobile phone inside the U-shaped groove.

[0014] In some embodiments, the shock absorption mechanism includes: an elastic gasket provided at any one or more of the following positions: the surface of the first vertical surface facing the second vertical surface, the upper surface of the bottom surface, the surface of the second vertical surface facing the first vertical surface.

[0015] The technical solutions provided by the embodiments of the present disclosure may include the following beneficial effects: The mobile phone bracket provided by the present disclosure can place the mobile phone through the U-shaped groove with an upward opening provided on the bracket body, providing a placement platform for placing the mobile phone inside the ore sorting device. Through the position fixing mechanism provided on the second vertical surface of the U-shaped groove, the bracket body can be fixed inside the ore sorting device, so that without manual holding, the internal situation of the ore sorting device can also be collected by the mobile phone for media data, which can not only effectively reduce the difficulty of media data collection, but also help to ensure the health and safety of relevant personnel, and help to effectively reduce the debugging difficulty when using the media data to debug the ore sorting device subsequently.

[0016] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit the present disclosure. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] By describing the exemplary embodiments of the present utility model in conjunction with the drawings, the present utility model can be better understood. In the drawings:

[0018] Figure 1It is a schematic structural diagram of an ore sorting device shown according to an exemplary embodiment disclosed;

[0019] Figure 2 It is a schematic structural diagram of a mobile phone holder shown according to an exemplary embodiment disclosed;

[0020] Figure 3 It is an application schematic diagram of a mobile phone holder shown according to an exemplary embodiment disclosed;

[0021] Figure 4 It is another schematic structural diagram of a mobile phone holder shown according to an exemplary embodiment disclosed;

[0022] Figure 5 It is yet another schematic structural diagram of a mobile phone holder shown according to an exemplary embodiment disclosed;

[0023] Figure 6 It is a partial schematic structural diagram of a mobile phone holder shown according to an exemplary embodiment disclosed;

[0024] Figure 7 It is still another schematic structural diagram of a mobile phone holder shown according to an exemplary embodiment disclosed;

[0025] Figure 8 It is a schematic structural diagram of a mobile phone holder shown according to another exemplary embodiment disclosed;

[0026] Figure 9 It is another schematic structural diagram of a mobile phone holder shown according to another exemplary embodiment disclosed;

[0027] Figure 10 It is yet another schematic structural diagram of a mobile phone holder shown according to another exemplary embodiment disclosed. Detailed implementation manners

[0028] The following will describe the specific embodiments of the present utility model. It should be noted that in the specific description of these embodiments, for the sake of concise description, this specification cannot describe all features of the actual embodiments in detail. It should be understood that in the actual implementation of any embodiment, just as in the process of any engineering project or design project, in order to achieve the specific goals of the developer and to meet system-related or business-related restrictions, various specific decisions are often made, and these will also change from one embodiment to another. In addition, it can also be understood that although the efforts made in this development process may be complex and lengthy, for those of ordinary skill in the art related to the content disclosed in the present utility model, some design, manufacturing or production changes based on the technical content disclosed in this disclosure are only conventional technical means and should not be understood as the content of this disclosure being insufficient.

[0029] Unless otherwise defined, technical terms or scientific terms used in the claims and the specification should have the ordinary meaning understood by those of ordinary skill in the technical field to which the present utility model belongs. The "first", "second" and similar terms used in the specification and claims of the present utility model patent application do not denote any order, quantity or importance, but are only used to distinguish different components. The terms such as "a" or "an" do not denote a quantity limitation, but mean that there is at least one. The terms such as "comprising" or "including" mean that the elements or objects appearing before "comprising" or "including" cover the elements or objects listed after "comprising" or "including" and their equivalent elements, and do not exclude other elements or objects. The terms such as "connected" or "coupled" are not limited to physical or mechanical connections, nor are they limited to direct or indirect connections.

[0030] As Figure 1As shown in the figure, the present disclosure provides an ore sorting device 100, which can be a device for ore sorting, and may include a feeding system 110, a conveying mechanism 120, a detection mechanism 130, and a sorting mechanism 140. The feeding system 110 is used to feed the ore to be sorted into the conveying mechanism 120. The conveying mechanism 120 can be used to convey the ore to be sorted fed by the feeding mechanism, and the conveying mechanism 120 can be a conveyor belt or a chute. The detection mechanism 130 is used to detect the ore conveyed on the conveying mechanism 120 to detect whether the ore is the ore to be removed; the ore to be removed refers to the ore separated by the sorting mechanism 140. The ore to be removed can be the required ore or the non-required ore, as long as the sorting of the ore can be achieved. The sorting mechanism 140 is used to remove the ore to be removed. The sorting mechanism 140 is used to perform separation on the ore to be removed, for example, by impact, so that the ore to be removed deviates from the original movement trajectory and falls into a designated position.

[0031] In the related art, the recognition system can be deployed in the detection mechanism 130, and the blowing system can be deployed in the sorting mechanism 140. The position of the blowing system corresponds to the position of the recognition system one by one. During the process of the conveying mechanism 120 transporting the ore, the recognition system in the detection mechanism 130 can perform recognition processing on the ore to be sorted currently conveyed, and transfer the instruction to the blowing system deployed inside the sorting mechanism 140 according to the obtained recognition processing result. Then, the blowing system performs sorting processing on the ore to be sorted according to the obtained instruction.

[0032] Since during the manufacturing process of the ore sorting device 100, the positions of the blowing system and the recognition system may be misaligned due to processing errors, which will affect the sorting result. Therefore, it is necessary to pre-debug the ore sorting device 100. During the actual debugging process, it is necessary to monitor the blowing system in real time. However, since the recognition system of the ore sorting device 100 is composed of an X-ray device, testers cannot enter the device internally to record videos by holding a mobile phone, resulting in a high difficulty in obtaining the real-time situation of the blowing system sorting the ore to be sorted according to the instructions sent by the recognition system, thus making the device debugging difficult.

[0033] To solve the above problems, an exemplary embodiment of the present disclosure provides a mobile phone holder 200 for fixing a mobile phone inside an ore sorting device, so that in the scenario where the ore sorting device needs to be debugged, the mobile phone can be fixed at the position inside the ore sorting device where media data needs to be collected, solving the problem that the human body cannot enter the inside of the ore sorting device to record videos, thereby making the collection method of media data safer and more convenient, and effectively reducing the device debugging difficulty.

[0034] As Figure 2As shown in the figure, the mobile phone holder 200 provided by the present disclosure may include: a holder body 210 and a position fixing mechanism 220.

[0035] The holder body 210 may be provided with a U-shaped groove opening upward. The inside of the U-shaped groove may be used to place the mobile phone 300. The U-shaped groove may include a first vertical surface 211 and a second vertical surface 213 connected by a bottom surface 212. The first vertical surface 211 and the second vertical surface 213 may be used to protect the mobile phone, and the bottom surface 212 may be used to support the mobile phone. Among them, the holder body 210 refers to the main structure for supporting and fixing the mobile phone 300, which provides a stable placement platform for the mobile phone 300 to avoid or reduce the risk of the mobile phone 300 slipping or being damaged during use. The mobile phone 300 refers to a smart phone capable of collecting media data. The specific model and specifications can be determined according to actual needs and are not limited here. The data types of the media data may include, but are not limited to, any one of the following types: ordinary images, videos, panoramic images, or high dynamic range (HDR) images, etc.

[0036] By providing a U-shaped groove opening upward in the holder body 210, it can better adapt to the shape of the mobile phone 300. Furthermore, by placing the mobile phone 300 through the U-shaped groove, the placement process of the mobile phone 300 can be made easier and more convenient, which helps to improve the user experience. Also, since the ore sorting device 100 may experience device vibrations or ore flying off the running track during operation, therefore, by protecting both sides of the mobile phone 300 with the first vertical surface 211 and the second vertical surface 213 of the U-shaped groove and supporting the mobile phone 300 with the bottom surface 212, it can reduce the damage such as collision and scratching suffered by the mobile phone 300 due to the external environment during use, and can better stabilize the mobile phone 300, thereby helping to enhance the safety and stability of the mobile phone 300 during use.

[0037] In some examples, to improve the service life of the mobile phone holder 200 and ensure the safe placement of the mobile phone 300, the holder body 210 can be made of sheet metal. The width of the first facade 211 can be between 5 cm and 10 cm, and the width of the second facade 213 can be greater than or equal to the width of the first facade 211. If the widths of the first facade 211 and the second facade 213 are the same, when placing the mobile phone 300 in the U-shaped groove, the placement direction of the mobile phone 300 can be freely selected according to the shooting requirements, improving the flexibility of mobile phone placement. If the width of the first facade 211 is less than the width of the second facade 213, when placing the mobile phone 300 in the U-shaped groove, the placement direction of the mobile phone 300 can be restricted according to the width of the facade, facilitating the user to clarify the placement direction of the mobile phone holder 200. In some alternative implementation scenarios, the front view of placing the mobile phone 300 in the U-shaped groove can be as Figure 3 shown.

[0038] In some other examples, to ensure the safety of the mobile phone 300, the holder body 210 can be made of transparent hard plastic material. Furthermore, the widths of the first facade 211 and the second facade 213 can be greater than or equal to the width of the mobile phone 300 when it is placed horizontally on the holder body 210, so that while not affecting the normal shooting of the mobile phone 300, the sides of the mobile phone can also be comprehensively protected. In some other examples, all or part of the first facade 211 is made of transparent hard plastic material. When placing the mobile phone 300, the mobile phone camera can collect media data through the transparent area. The transparent hard plastic material can include but is not limited to polycarbonate (PC), polyvinyl chloride (PVC), or acrylic.

[0039] The position fixing mechanism 220 can be arranged on the second facade 213 and is used to fix the holder body 210 inside the ore sorting device 100, so that the mobile phone 300 placed in the U-shaped groove can collect media data inside the ore sorting device 100. The position fixing mechanism 220 is a mechanism for fixing the holder body 210 inside the ore sorting device 100. By arranging the position fixing mechanism 220 on the second facade 213, it can be ensured that the holder body 210 is fixed inside the ore sorting device 100 while ensuring that the opening of the U-shaped groove is not blocked, and the mobile phone 300 can be normally placed in the U-shaped groove.

[0040] The mobile phone holder 200 provided by the present disclosure can place the mobile phone 300 through the U-shaped groove with an upward opening provided on the holder body 210, providing a placement platform for placing the mobile phone 300 inside the ore sorting device 100. Through the position fixing mechanism 220 arranged at the position of the second vertical surface 213 of the U-shaped groove, the holder body 210 can be fixed at any required position inside the ore sorting device 100. Furthermore, without manual holding, the mobile phone 300 can also be used to collect media data on the internal situation of the ore sorting device 100, which can not only effectively reduce the difficulty of media data collection, but also help to ensure the health and safety of relevant personnel, and help to effectively reduce the debugging difficulty when the ore sorting device 100 is debugged using the media data subsequently.

[0041] In some embodiments, as Figure 2 shown, the position fixing mechanism 220 may include: a hook 221, fixedly connected to the second vertical surface 213, for hanging the holder body 210 on the target component of the ore sorting device 100. By fixedly connecting the hook 221 to the second vertical surface 213, the stability of the structure can be ensured. Furthermore, during the process of fixing the mobile phone 300 inside the ore sorting device 100 using the mobile phone holder 200, the situation where the holder body 210 is separated from the hook 221 due to the vibration of the ore sorting device 100 can be effectively prevented, realizing the fixation and position maintenance of the holder body 210, which helps to ensure the stability of the collection height and the use safety of the mobile phone 300. Among them, the target component can be any component inside the ore sorting device 100 that can support the use of the hook 221, so as to ensure that the mobile phone holder 200 can be suspended on the target component through the hook 221.

[0042] In some embodiments, as Figure 2As shown, the hook 221 may include: a first side surface 2211 and a second side surface 2213 connected to the first side surface 2211 through an upper baffle 2212. The first side surface 2211 is used for fixedly connecting with the second vertical surface 213. The second side surface 2213 may include fixing screw holes. The position fixing mechanism 220 may further include: a first bolt 222, which is used to pass through the fixing screw holes to press and fix the target component against the first side surface 2211. Since the thicknesses of the components that can support the hanging of the hook 221 on different target components are not exactly the same, in order to ensure the use stability of the bracket body 210 inside the ore sorting device 100, the pressure exerted by the first bolt 222 on the target component can be adjusted by adjusting the first bolt 222 passing through the fixing screw holes on the second side surface 2213, so that the hook 221 can adapt to target components of different sizes or shapes through the first bolt 222 according to the existence of the fixing screw holes, enhancing the versatility and flexibility of the position fixing mechanism 220, thereby achieving the purpose of pressing and fixing the target component against the first side surface 2211, preventing the bracket body 210 from shaking or moving during the working process, and contributing to ensuring the stability of the mobile phone 300 for collecting media data.

[0043] In some embodiments, as Figure 4 shown, the mobile phone bracket 200 may further include: a second bolt 230. The second vertical surface 213 is fixedly connected to the first side surface 2211 through the second bolt 230. That is, the bracket body 210 and the position fixing mechanism 220 can be combined and fixed together through the second bolt 230, and then can be installed and disassembled according to actual needs, which is convenient for maintenance, replacement or adjustment. Moreover, by fixedly connecting the second vertical surface 213 of the bracket body 210 with the first side surface 2211 of the hook 221 through the second bolt 230, the installation and disassembly methods can be made simpler and more convenient. Furthermore, in the working conditions where the hook is not required, the bracket body 210 can also be quickly separated from the position fixing mechanism 220, and the bracket body 210 can be used alone to place the mobile phone 300, which helps to enhance the practicability of the mobile phone bracket 200 and meet various usage requirements of users. In one example, in the embodiments of the present disclosure, the second bolt 230 may be provided with one or multiple. To ensure the stability of the fixation, the second bolt 230 may be provided with at least two.

[0044] In some embodiments, as Figure 5As shown, the position fixing mechanism 220 may include: a magnet 223 fixedly connected to the outer side of the second vertical surface 213, for fixing the bracket body 210 to the target component inside the ore sorting device 100 by magnetic attraction. To save the occupied space of the mobile phone bracket 200 inside the ore sorting device 100, the magnet 223 fixedly connected to the outer side of the second vertical surface 213 is used as the fixing device for fixing the placement position of the bracket body 210. Thus, during the actual placement of the bracket body 210, it can be placed by magnetic attraction, so that the bracket body 210 can flexibly adjust the placement position and placement angle within a certain range to meet the usage requirements of various working conditions.

[0045] In some examples, such as Figure 6 As shown, the position fixing mechanism 220 may simultaneously include a hook 221, a second bolt 230, and a magnet 223, and the magnet 223 is on the same side as the hook 221. By using this kind of position fixing mechanism to fix the bracket body 210 on the target component, the fixing method can be independently selected according to the structure and placement orientation of the target component, so as to ensure the placement flexibility of the mobile phone bracket 200 and meet the usage requirements of various working conditions.

[0046] For example: If the current target component can support the suspension of the hook 221 and the position after suspension can meet the requirement for the mobile phone 300 to collect media data on the bracket body 210, then the bracket body 210 is fixed to the target component by using the hook 221. If the current target component can support the suspension of the hook 221, but the position after suspension cannot meet the requirement for the mobile phone 300 to collect media data on the bracket body 210, then the bracket body 210 is fixed to the target component by the magnet 223. If the current target component cannot support the suspension of the hook 221, then the hook 221 is separated from the bracket body 210 by the second bolt 230, and after the disassembly of the hook 221 is completed, the bracket body 210 is fixed to the target component by the magnet 223.

[0047] In some embodiments, such as Figure 7 、 Figure 8As shown, the first facade 211 may include adjusting screw holes; the mobile phone holder 200 may further include: an adjusting bolt 240 and an adjusting protection gasket 250. The adjusting bolt 240 passes through the first facade 211 through the adjusting screw holes. The adjusting protection gasket 250 is connected to the tail of the adjusting bolt 240 and suspended inside the U-shaped groove for contacting the mobile phone 300 to press and fix the mobile phone 300 against the second facade 213. Since the width of the bottom surface 212 is a fixed width, but the widths of mobile phones 300 of different specifications or models are different. Therefore, in order to make the position of the mobile phone 300 placed in the U-shaped groove more stable, the distance between the mobile phone 300 and the second facade 213 is adjusted by using the adjusting bolt 240 to press and fix the mobile phone 300 against the second facade 213, thereby improving the adaptability between the U-shaped groove and the mobile phone 300 and achieving the purpose of enhancing the versatility of the mobile phone holder 200. Since during the actual adjustment process, it is the tail of the adjusting bolt 240 that contacts the mobile phone 300, but the material of the adjusting bolt is relatively hard. During the rotation process, directly contacting the tail of the adjusting bolt 240 with the mobile phone 300 is likely to damage the mobile phone 300. Therefore, in order to ensure the safety of the mobile phone 300, the adjusting protection gasket 250 is connected to the tail of the adjusting bolt 240. Furthermore, during the rotation process, it can not only protect the mobile phone 300, but also increase the friction between the tail of the adjusting bolt 240 and the mobile phone 300, thereby ensuring that the mobile phone 300 can be fixed more stably on the bracket body 210 and effectively reducing the risk of the mobile phone 300 falling. In some examples, the material of the adjusting protection gasket may include but is not limited to the following material types: silicone, rubber, plastic, composite materials, etc., which have good elasticity and wear resistance and can effectively protect the part in contact with the mobile phone 300 and reduce the degree of wear on the surface of the mobile phone 300.

[0048] In some examples, the mobile phone 300 can be pressed and fixed against the second facade 213 by manually rotating the adjusting bolt 240. In other examples, the mobile phone 300 can be pressed and fixed against the second facade 213 by rotating the adjusting bolt 240 with the aid of tools, which is convenient for the user to apply force to control the rotation of the adjusting bolt 240, thereby making the adjustment method more convenient. Among them, the auxiliary tools include but are not limited to tools that can control the rotation of the adjusting bolt 240, such as: a screwdriver or other tools that match the size and type of the adjusting bolt 240.

[0049] In some embodiments, such as Figure 8As shown, a rotating handle 260 can also be provided at the head of the adjusting bolt 240, suspended outside the bracket body 210. The rotating handle 260 is used to adjust the penetration length of the tail of the adjusting bolt 240 in the U-shaped groove. To reduce the difficulty for the user to rotate the adjusting bolt 240 and facilitate the adjustment by the user, a rotating handle 260 can be provided at the head of the adjusting bolt 240. Then, when it is necessary to stabilize the placement position of the mobile phone 300 in the U-shaped groove, the adjusting bolt 240 can be directly rotated through the rotating handle 260 suspended outside the bracket body 210 to control the penetration length of the tail of the adjusting bolt 240 in the U-shaped groove, so that the adjustment process of the adjusting bolt 240 is more convenient and accurate. Moreover, by pre-setting the rotating handle 260 at the head of the adjusting bolt 240, it is convenient for the user to operate in real time according to needs without the need to prepare additional tools, which helps to improve the user experience.

[0050] In the embodiments of the present disclosure, there can be one or multiple adjusting screw holes, and correspondingly, there can be one or multiple adjusting bolts. In some examples, as Figure 9 shown, the first vertical surface 211 can include two adjusting screw holes; the mobile phone bracket 200 can further include: two adjusting bolts 240 and adjusting protection gaskets 250 connected to the tails of the respective adjusting bolts 240, which helps to increase the stress area of the mobile phone 300 and ensure balanced stress during the process of pressing and fixing the mobile phone 300 to the second vertical surface 213, thus helping to improve the placement stability of the mobile phone 300.

[0051] In some embodiments, the rotating handle 260 and the head of the adjusting bolt 240 can be fixedly connected by welding, so that the connection strength between the rotating handle 260 and the head of the adjusting bolt 240 is higher and more stable, ensuring the firm and reliable connection between the two, which is beneficial to extending the service life. The adjusting protection gasket 250 and the tail of the adjusting bolt 240 can be fixedly connected by pasting, making the connection method simpler and more convenient, and also helping to disassemble and replace in time when the adjusting protection gasket 250 is damaged.

[0052] In some embodiments, as Figure 8As shown in the figure, the mobile phone holder 200 may further include: a shock absorption mechanism 270, which is arranged on the inner surface of the U-shaped groove and is used to reduce or eliminate the vibration of the mobile phone 300 in the U-shaped groove. Since the ore sorting device 100 will shake during operation, when the mobile phone holder 200 is fixed inside the ore sorting device 100, it will also shake with the shaking of the device. At this time, if the mobile phone 300 is placed in the U-shaped groove, it will rub or collide with the inside of the U-shaped groove as the support body 210 shakes. Therefore, the use safety of the mobile phone 300 can be improved, and the damage of the mobile phone 300 caused by being placed in the U-shaped groove can be avoided or reduced. Then, the shock absorption mechanism 270 arranged on the inner surface of the U-shaped groove protects the mobile phone 300 to reduce or eliminate the vibration of the mobile phone 300 in the U-shaped groove, and improves the service life and stability of the mobile phone 300.

[0053] In some examples, the shock absorption mechanism 270 may include: elastic gaskets, which are arranged at any one or more of the following positions: the surface of the first vertical surface 211 facing the second vertical surface 213, the upper surface of the bottom surface 212, and the surface of the second vertical surface 213 facing the first vertical surface 211. To enhance the shock absorption effect, the shock absorption mechanism 270 is composed of gaskets made of elastic materials. Then, when the mobile phone 300 is placed in the U-shaped groove, the elastic gaskets can increase the friction with other surfaces, which helps to prevent the mobile phone 300 from sliding or moving in the U-shaped groove and stabilizes the placement position of the mobile phone 300. Moreover, during use, the elastic gaskets will deform under the pressure of the mobile phone 300, absorb and reduce the vibration and impact received by the mobile phone 300 during use, provide a certain shock absorption and buffering effect, thereby reducing or eliminating the vibration of the mobile phone 300 in the U-shaped groove, effectively protecting the mobile phone 300 from the influence of vibration, and improving the service life and stability of the mobile phone 300. The types of elastic gaskets may include, but are not limited to, any one of the following: rubber gaskets, silicone gaskets, polyurethane gaskets, fiber gaskets, etc. The specific type can be determined according to actual needs. Among them, the size and thickness of the elastic gaskets can both be determined according to actual needs and are not limited here.

[0054] To enable the elastic gaskets to effectively protect the mobile phone 300, the elastic gaskets can be arranged at any one or more of the positions: the surface of the first vertical surface 211 facing the second vertical surface 213, the upper surface of the bottom surface 212, and the surface of the second vertical surface 213 facing the first vertical surface 211. Then, it can be avoided that the mobile phone 300 directly contacts the surface of the U-shaped groove, reducing friction and wear, and thus helping to protect the appearance and surface quality of the mobile phone.

[0055] In some examples, when the mobile phone 300 is placed in the U-shaped groove, the probability that the screen side of the mobile phone faces the first vertical surface 211 is much greater than the probability that the screen side of the mobile phone faces the second vertical surface 213. Then, an elastic gasket is arranged on the surface of the first vertical surface 211 facing the second vertical surface 213 to reduce the friction or collision between the mobile phone screen and the surface of the first vertical surface 211 facing the second vertical surface 213, stabilize the mobile phone, and thus achieve the purpose of protecting the safety of the mobile phone screen.

[0056] In other examples, when the mobile phone 300 is placed in the U-shaped groove, the probability that the screen side of the mobile phone faces the second vertical surface 213 is much greater than the probability that the screen side of the mobile phone faces the first vertical surface 211. Then, an elastic gasket is arranged on the surface of the second vertical surface 213 facing the first vertical surface 211 to reduce the friction or collision between the mobile phone screen and the surface of the second vertical surface 213 facing the first vertical surface 211, stabilize the mobile phone, and thus achieve the purpose of protecting the safety of the mobile phone screen.

[0057] In still other examples, the elastic gasket can cover the inside of the U-shaped groove. Further, when the mobile phone 300 is placed in the U-shaped groove, it can protect the mobile phone 300 from damage caused by collision or friction with the inside of the U-shaped groove in multiple directions, and thus can effectively protect the mobile phone 300 from the influence of vibration, and improve the service life and stability of the mobile phone 300.

[0058] In some optional implementation scenarios, such as Figure 10As shown in the figure, the mobile phone holder 200 provided by the present disclosure may include: a holder body 210, a position fixing mechanism 220, a second bolt 230, an adjusting bolt 240, an adjusting protection gasket 250, a rotating handle 260, and a shock absorption mechanism 270. Among them, the holder body 210 is provided with a U-shaped groove with an upward opening. The U-shaped groove includes a first vertical surface 211 and a second vertical surface 213 connected by a bottom surface 212. The position fixing mechanism 220 includes a hook 221, a first bolt 222, and a magnet 223. The hook 221 includes a first side surface 2211 and a second side surface 2213 connected to the first side surface 2211 through an upper baffle 2212. The first side surface 2211 and the second vertical surface 213 are fixedly connected by a second bolt 230; the first bolt 222 presses and fixes the target component to the first side surface 2211 by passing through a fixing screw hole on the second side surface 2213. The magnet 223 is fixedly connected to the outer side surface of the second vertical surface 213, and is used to fix the holder body 210 to the target component inside the ore sorting device 100 by magnetic attraction. The adjusting bolt 240 passes through the first vertical surface 211 through an adjusting screw hole on the first vertical surface 211, so that the adjusting protection gasket 250 connected to the tail of the adjusting bolt 240 is suspended inside the U-shaped groove to contact the mobile phone 300 and press and fix the mobile phone 300 to the second vertical surface 213; the rotating handle 260 provided at the head of the adjusting bolt 240 is suspended outside the holder body 210, and the rotating handle 260 is used to adjust the penetration length of the tail of the adjusting bolt 240 inside the U-shaped groove. The shock absorption mechanism 270 is arranged on the surface of the second vertical surface 213 facing the first vertical surface 211.

[0059] According to the above mobile phone holder 200, through the hook 221, the first bolt 222, and the magnet 223 of the position fixing mechanism 220, the way of fixing the holder body 210 to the target component can be freely selected according to the working conditions of the target component inside the ore sorting device 100, so that the fixing flexibility of the mobile phone holder 200 can be improved. Moreover, according to the thickness of the mobile phone 300, the mobile phone 300 can be pressed and fixed to the second vertical surface 213 by the adjusting bolt 240, so that the adaptability to the mobile phone 300 can be effectively improved, and the stability of the mobile phone 300 placed in the U-shaped groove can be ensured. Through the shock absorption mechanism 270 arranged on the surface of the second vertical surface 213 facing the first vertical surface 211, the influence of vibration on the mobile phone 300 during use in the ore sorting device 100 can be effectively eliminated or reduced, and the risk of the mobile phone 300 being squeezed or bumped can be avoided or reduced, thereby contributing to improving the service life and stability of the mobile phone 300.

[0060] This application uses specific terms to describe the embodiments of this application. For example, "an embodiment", "one embodiment", and / or "some embodiments" mean a certain feature, structure, or characteristic related to at least one embodiment of this application. Therefore, it should be emphasized and noted that the "one embodiment" or "an embodiment" or "an alternative embodiment" mentioned twice or more at different positions in this specification does not necessarily refer to the same embodiment. In addition, certain features, structures, or characteristics in one or more embodiments of this application can be appropriately combined.

[0061] In the context of this application, unless the context clearly indicates an exception, words such as "a", "an", "one", and / or "the" are not specifically singular and may also include the plural. Generally speaking, the terms "comprising" and "including" only indicate the inclusion of the steps and elements that have been clearly identified, and these steps and elements do not constitute an exclusive list. The method or device may also include other steps or elements.

[0062] Similarly, it should be noted that, in order to simplify the description of this application disclosure and thus help the understanding of one or more application embodiments, in the previous description of the embodiments of this application, sometimes multiple features are grouped into one embodiment, drawing, or description thereof. However, this disclosure method does not mean that the features required by the object of this application are more than those mentioned in the claims. In fact, the features of the embodiment are less than all the features of the single embodiment disclosed above.

[0063] The basic concepts have been described above. Obviously, for those skilled in the art, the above disclosure is only an example and does not constitute a limitation to this application. Although not explicitly stated here, those skilled in the art may make various modifications, improvements, and corrections to this application. Such modifications, improvements, and corrections are proposed in this application, so such modifications, improvements, and corrections still fall within the spirit and scope of the embodiments of this application.

Claims

1. A mobile phone holder for fixing a mobile phone inside an ore sorting device, comprising: A holder body provided with a U-shaped groove opening upward. The inside of the U-shaped groove is used to place the mobile phone. The U-shaped groove includes a first vertical surface and a second vertical surface connected by a bottom surface. The first vertical surface and the second vertical surface are used to protect the mobile phone, and the bottom surface is used to support the mobile phone; A position fixing mechanism provided on the second vertical surface for fixing the holder body inside the ore sorting device so that the mobile phone placed in the U-shaped groove can collect media data inside the ore sorting device.

2. The mobile phone holder according to claim 1, wherein, The position fixing mechanism includes: a hook fixedly connected to the second vertical surface for hanging the holder body on a target component of the ore sorting device.

3. The mobile phone holder according to claim 2, wherein, The hook includes: a first side surface and a second side surface connected to the first side surface by an upper baffle. The first side surface is used for fixedly connecting with the second vertical surface, and the second side surface includes a fixing screw hole; The position fixing mechanism further includes: a first bolt for passing through the fixing screw hole to press and fix the target component and the first side surface.

4. The mobile phone holder according to claim 3, wherein, It further includes: A second bolt; The second vertical surface is fixedly connected to the first side surface by the second bolt.

5. The mobile phone holder according to any one of claims 1-4, wherein, The position fixing mechanism includes: a magnet fixedly connected to the outer side surface of the second vertical surface for magnetically fixing the holder body on a target component inside the ore sorting device.

6. The mobile phone holder according to claim 1, wherein, The first vertical surface includes an adjustment screw hole; the mobile phone holder further includes: An adjustment bolt and an adjustment protection gasket; the adjustment bolt passes through the first vertical surface through the adjustment screw hole; the adjustment protection gasket is connected to the tail of the adjustment bolt and suspended inside the U-shaped groove for contacting the mobile phone to press and fix the mobile phone and the second vertical surface.

7. The mobile phone holder according to claim 6, wherein, The head of the adjustment bolt is provided with a rotating handle suspended outside the holder body. The rotating handle is used to adjust the penetration length of the tail of the adjustment bolt inside the U-shaped groove.

8. The mobile phone holder according to claim 7, wherein, The rotating handle is fixedly connected to the head of the adjustment bolt by welding; The adjustment protection gasket is fixedly connected to the tail of the adjustment bolt by pasting.

9. The mobile phone holder according to claim 1, wherein, It further includes: A shock absorption mechanism provided on the inner surface of the U-shaped groove for reducing or eliminating the vibration of the mobile phone inside the U-shaped groove.

10. The mobile phone holder according to claim 9, wherein, The shock absorption mechanism includes: an elastic gasket provided at any one or more of the following positions: The surface of the first vertical surface facing the second vertical surface, the upper surface of the bottom surface, the surface of the second vertical surface facing the first vertical surface.