Three-dimensional tracking device for planting mobile phone
By introducing straight and inclined support cylinder structures and pattern identification plates into the planting mobile phone tracking device, the problem of small light propagation angle is solved, efficient real-time positioning of the planting mobile phone and navigation equipment is achieved, and the operational flexibility and accuracy of the device are improved.
Patent Information
- Application Number
- CN202421764509.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-07-24
AI Technical Summary
The light propagation angle of existing implant mobile phone tracking devices is relatively small, resulting in strict requirements on the relative position between the navigation device and the implant mobile phone, affecting the flexibility of use.
A straight first support cylinder and an inclined second support cylinder are used, combined with a pattern identification plate, to increase the light propagation angle and realize real-time interactive positioning between the planting mobile phone and the navigation device.
It improves the light propagation angle, enhances the real-time tracking and positioning capability of the planting mobile phone, simplifies the operation process, and improves the flexibility and accuracy of the device.
Smart Images

Figure CN223380653U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of dental implant equipment, in particular to a three-dimensional tracking device for real-time positioning of an implant mobile phone during a dental implant operation. Background Art
[0002] Dental implant surgery is a key technology in modern dentistry, playing a vital role in restoring tooth function, improving appearance, and enhancing patients' quality of life. The general process involves drilling an implant hole in the patient's mouth where a tooth is missing, inserting an implant into the hole, and then attaching an abutment, crown, and other components to the implant to create a complete implant structure. This complete implant structure, comprised of the implant, abutment, and crown, can replace a missing tooth.
[0003] During dental implant surgery, an implant handpiece is an essential piece of equipment, used to drill implant holes in the alveolar bone. During navigational implantation, the navigation device captures images from the handpiece's tracking device and analyzes the tracking device's real-time position. Because the handpiece and tracking device are fixed, the handpiece's real-time position can be determined from the tracking device's real-time position.
[0004] Ensuring that light can effectively propagate between the navigation device and the tracking device is a fundamental requirement for the tracking device to function. Existing tracking devices have a narrow effective angle and strict requirements for the relative positioning between the navigation device and the tracking device, making them difficult to deploy and use. Summary of the Invention
[0005] The technical problem to be solved by the present invention is that, in response to the above-mentioned defects of the prior art, a three-dimensional tracking device for a planting mobile phone is provided, which provides a larger light propagation angle through a flatly arranged first support cylinder and an inclinedly arranged second support cylinder, thereby facilitating the interaction between the planting mobile phone and the navigation device during operation, so as to better track and locate the planting mobile phone in real time.
[0006] The technical solutions adopted by the present invention to solve the technical problems are as follows:
[0007] A three-dimensional tracking device for a mobile phone for planting, comprising:
[0008] A first supporting cylinder, wherein a plurality of square side panels are provided on the first supporting cylinder, wherein two oppositely disposed short sides and two oppositely disposed long sides are formed on the square side panels, and adjacent square side panels are sequentially connected through their respective long sides to form the first supporting cylinder;
[0009] a second supporting cylinder, wherein the second supporting cylinder is provided with a plurality of trapezoidal side panels, wherein the trapezoidal side panels are provided with an upper bottom edge, a lower bottom edge and two oppositely arranged side waists, and adjacent trapezoidal side panels are sequentially connected through their respective side waists to form the second supporting cylinder, and the length of the upper bottom edge is shorter than the length of the lower bottom edge;
[0010] A connecting cylinder, the connecting cylinder being a bottleneck-shaped structure, one end of the connecting cylinder being connected to the implant mobile phone, the other end of the connecting cylinder being connected to the first supporting cylinder, and the first supporting cylinder being connected to the second supporting cylinder via an end away from the connecting cylinder;
[0011] The square side panels correspond to the trapezoidal side panels one by one, the short sides of the square side panels are connected to the lower bases of the trapezoidal side panels, the outer diameter of the first support cylinder is the same as the outer diameter of the second support cylinder near the lower base, and the outer diameter of the second support cylinder gradually decreases from the end near the lower base to the end near the upper base;
[0012] A pattern identification plate is provided on the square side panel and the trapezoidal side panel, and the pattern identification plate includes a first black identification area, a second black identification area, a first white identification area and a second white identification area, the first black identification area and the second black identification area are arranged at intervals from each other, and the first white identification area and the second white identification area are arranged at intervals from each other.
[0013] Compared with the existing technology, the beneficial effects of this technical solution are: the first supporting cylinder uses square side panels to make the pattern identification plate face one direction, and the second supporting cylinder uses trapezoidal side panels to make the pattern identification plate face another direction, so that the tracking device can reflect the detection light incident from multiple angles, which is convenient for operating the planting mobile phone and interacting with the navigation device to better track and locate the planting mobile phone in real time.
[0014] Furthermore, the square side panel and the trapezoidal side panel are provided with adhesive fixing grooves, the pattern identification plate is sleeved in the adhesive fixing grooves, and the pattern identification plate is fixed to the square side panel or the trapezoidal side panel through the adhesive fixing grooves.
[0015] The beneficial effect of adopting the above solution is that the pattern identification plate is fixed in the adhesive fixing groove on the square side plate or the trapezoidal side plate by bonding, which has the advantages of simple structure and good fixing effect.
[0016] Furthermore, the square side panels and the trapezoidal side panels are inwardly recessed to form the bonding and fixing grooves, a raised platform is formed at the bottom of the bonding and fixing grooves, and a glue guide groove is provided around the raised platform. The glue guide groove is provided around the raised platform.
[0017] An adhesive colloid is provided on the raised platform, and the pattern identification plate is fixed in the adhesive fixing groove by the adhesive colloid. The adhesive colloid is filled between the pattern identification plate, the raised platform and the adhesive guide groove.
[0018] The beneficial effect of adopting the above scheme is: a raised platform is provided in the adhesive fixing groove, and a glue guide groove is provided on the periphery of the raised platform. When the glue is fixed, the adhesive colloid is applied on the raised platform and then squeezed with the pattern identification plate. The adhesive colloid will be compressed and evenly distributed between the raised platform and the pattern identification plate, and the excess part will enter the glue guide groove, which can effectively prevent the colloid from overflowing.
[0019] Furthermore, the bonding and fixing groove is an elongated groove body, and the pattern identification plate is an elongated plate-shaped structure;
[0020] The pattern identification plate is formed with a first straight edge, a second straight edge, a first curved edge, and a second curved edge, wherein the first straight edge and the second straight edge are arranged opposite to each other, and the first curved edge and the second curved edge are arranged opposite to each other;
[0021] When the pattern identification plate is fixed in the adhesive fixing groove, the first straight side and the short side of the square side plate are parallel to or perpendicular to each other.
[0022] The beneficial effect of adopting the above scheme is that the pattern identification plate is a long plate structure. During the production of the tracking device, different pattern identification plates can be fixed horizontally or vertically at different positions according to actual needs, thereby increasing the complexity of the pattern identification in the entire device.
[0023] Furthermore, the connecting cylinder is hollowed out to form a plurality of conduit through holes, the conduit through holes are elliptical holes, and the plurality of conduit through holes are evenly distributed along the circumference on the connecting cylinder.
[0024] The beneficial effect of adopting the above solution is that a plurality of conduit holes are hollowed out on the connecting cylinder, which can reduce the overall weight of the tracking device and facilitate operation on the one hand, and can introduce water pipes through the conduit holes on the other hand.
[0025] Furthermore, the connecting cylinder is provided with an annular fixing portion, and the annular fixing portion is detachably provided on an end of the connecting cylinder away from the first supporting cylinder;
[0026] After the implant mobile phone is pre-fixed on the first supporting cylinder, the annular fixing portion is sleeved on the outside of the implant mobile phone, and the annular fixing portion presses and fixes the implant mobile phone on the first supporting cylinder by cooperating with the end of the first supporting cylinder.
[0027] The beneficial effect of adopting the above solution is that the implant mobile phone is fixed to the connecting cylinder through the detachable annular fixing part, which can be fixed during use and removed after use, making it easy to operate, store and disinfect.
[0028] Furthermore, an external threaded connection portion is provided at the end of the connecting cylinder, and an internal threaded connection portion is provided on the annular fixing portion. The end of the connecting cylinder and the annular fixing portion are detachably connected by threaded cooperation between the external threaded connection portion and the internal threaded connection portion.
[0029] The beneficial effect of adopting the above solution is that the end of the connecting cylinder and the annular fixing part are detachably connected through the threaded cooperation of the external thread connecting part and the internal thread connecting part, which has the advantages of simple structure, good fixing effect and easy disassembly and assembly.
[0030] Furthermore, the pattern identification plate is a ceramic plate.
[0031] The beneficial effect of adopting the above solution is: using a ceramic plate as a pattern identification plate, taking advantage of the fact that the ceramic material is not easily deformed, ensuring the stability of the optical path during use, thereby improving the accuracy of the tracking device.
[0032] Furthermore, there are 10 square side panels and 10 trapezoidal side panels respectively; each square side panel is provided with one pattern identification plate, and each trapezoidal side panel is provided with two pattern identification plates.
[0033] The beneficial effect of adopting the above solution is: the first supporting cylinder is formed by 10 square side panels, and the second supporting cylinder is formed by 10 trapezoidal side panels, so that the tracking device forms a 20-hedron, which greatly improves the optical applicability angle.
[0034] Furthermore, the first supporting cylinder, the second supporting cylinder and the connecting cylinder are an integrally formed aluminum alloy structure.
[0035] The beneficial effect of adopting the above solution is that the aluminum alloy structure is used as the first supporting cylinder, the second supporting cylinder and the connecting cylinder, which can improve the strength and reduce the weight. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] Figure 1 It is an overall schematic diagram of the utility model of a three-dimensional tracking device for planting mobile phones.
[0037] Figure 2 It is an exploded schematic diagram of the utility model of a three-dimensional tracking device for planting a mobile phone.
[0038] Figure 3 It is a schematic diagram of the bonding and fixing groove in the three-dimensional tracking device of the implant mobile phone of the present invention.
[0039] Figure 4 It is a schematic diagram of a pattern identification plate in the three-dimensional tracking device for planting mobile phones of the present invention.
[0040] In the figure, the components represented by each reference numeral are as follows:
[0041] First supporting cylinder 1, second supporting cylinder 2, connecting cylinder 3, planting mobile phone 4, pattern identification plate 5, adhesive fixing groove 6;
[0042] Square side panel 101;
[0043] Trapezoidal side panels 201;
[0044] The conduit through hole 301 and the annular fixing portion 302;
[0045] A first black recognition area 501, a second black recognition area 502, a first white recognition area 503, a second white recognition area 504, a first straight edge 505, a second straight edge 506, a first curved edge 507, and a second curved edge 508;
[0046] Raised platform 601 and glue guide groove 602. DETAILED DESCRIPTION
[0047] In order to make the purpose, technical solutions and advantages of the present invention more clear and distinct, the present invention is further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0048] In the description of this utility model, it should be understood that the terms "center," "upper," "lower," "front," "back," "left," and "right" and the like, indicating positions or relationships, are based on the positions or relationships shown in the accompanying drawings and are intended solely to facilitate the description of this utility model and simplify the description. They are not intended to indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0049] In the description of the present utility model, it should be noted that, unless otherwise clearly stipulated and limited, the terms "installed", "connected" and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or an indirect connection through an intermediate medium, or it can be a communication between the two components. When a component is referred to as being "fixed to" or "set on" another element, it can be directly on the other component or there can also be a central component. When a component is considered to be "connected" to another element, it can be directly connected to the other element or there may be a central element at the same time. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0050] Dental implant surgery is a key technology in modern dentistry, playing a vital role in restoring tooth function, improving appearance, and enhancing patients' quality of life. The general process involves drilling an implant hole in the patient's mouth where a tooth is missing, inserting an implant into the hole, and then attaching an abutment, crown, and other components to the implant to create a complete implant structure. This complete implant structure, comprised of the implant, abutment, and crown, can replace a missing tooth.
[0051] During dental implant surgery, an implant handpiece is an essential piece of equipment, used to drill implant holes in the alveolar bone. During navigational implantation, the navigation device captures images from the handpiece's tracking device and analyzes the tracking device's real-time position. Because the handpiece and tracking device are fixed, the handpiece's real-time position can be determined from the tracking device's real-time position.
[0052] Ensuring that light can effectively propagate between the navigation device and the tracking device is a fundamental requirement for the tracking device to function. Existing tracking devices have a narrow effective angle and strict requirements for the relative positioning between the navigation device and the tracking device, making them difficult to deploy and use.
[0053] like Figure 1 and Figure 2 As shown, to solve the above problems, the present invention provides a three-dimensional tracking device for planting mobile phones, comprising a first supporting cylinder 1, a second supporting cylinder 2, a connecting cylinder 3, and a pattern identification plate 5. The first supporting cylinder 1, the second supporting cylinder 2, and the connecting cylinder 3 constitute the main body of the tracking device in this technical solution, providing structural support, and the pattern identification plate 5 is used to receive and reflect detection light.
[0054] The first support cylinder 1 is provided with a plurality of square side panels 101. Combining the definition of a rectangle in geometry, it can be seen that the square side panels 101 are formed with two oppositely disposed short sides and two oppositely disposed long sides. Adjacent square side panels 101 are sequentially connected via their respective long sides to form the first support cylinder 1. Structurally, the plurality of square side panels 101 are arranged in sequence, and adjacent square side panels 101 are connected via their respective long sides to form the first support cylinder 1.
[0055] The second support cylinder 2 is provided with a plurality of trapezoidal side panels 201. According to the definition of a trapezoid in geometry, the trapezoidal side panels 201 are provided with an upper base, a lower base and two oppositely arranged side waists. Adjacent trapezoidal side panels 201 are connected in sequence through their respective side waists to form the second support cylinder 2. The length of the upper base is less than the length of the lower base. Structurally, the plurality of trapezoidal side panels 201 are arranged in sequence, and the adjacent trapezoidal side panels 201 are connected through their respective side waists to form the second support cylinder 2. Unlike the first support cylinder 1, which has a fixed outer diameter, the second support cylinder 2 is composed of a plurality of trapezoidal side panels 201, which naturally forms a structure with one end larger and the other end smaller.
[0056] The square side panels 101 and the trapezoidal side panels 201 correspond one to one, the short sides of the square side panels 101 are connected to the lower base of the trapezoidal side panels 201, the outer diameter of the first support cylinder 1 is the same as the outer diameter of the second support cylinder 2 near the lower base, and the outer diameter of the second support cylinder 2 gradually decreases from the end near the lower base to the end near the upper base. Assuming that there is a center line in the main structure of the tracking device, the vertical lines of the multiple square side panels 101 are perpendicular to the center line, and the vertical lines of the multiple trapezoidal side panels 201 form a certain angle with the center line. Through such a structure, the pattern identification plate 5 is oriented in different directions, so that the tracking device can receive detection light from more angles.
[0057] The connecting cylinder 3 is a bottleneck structure, one end of the connecting cylinder 3 is connected to the planting mobile phone 4, and the other end of the connecting cylinder 3 is connected to the first supporting cylinder 1. The first supporting cylinder 1 is connected to the second supporting cylinder 2 through an end away from the connecting cylinder 3.
[0058] The pattern identification plate 5 is provided on the square side panel 101 and the trapezoidal side panel 201. The pattern identification plate 5 includes a first black identification area 501, a second black identification area 502, a first white identification area 503 and a second white identification area 504. The first black identification area 501 and the second black identification area 502 are spaced apart from each other, and the first white identification area 503 and the second white identification area 504 are spaced apart from each other. It can be understood that the pattern identification plate 5 is actually a black and white grid, divided into 4 areas, and the two opposite areas have the same color. In this tracking device, the relative positions of multiple pattern identification plates 5 are fixed, and the color areas on each pattern identification plate 5 are also fixed. Before use, the device can be calibrated to collect the distribution of the pattern identification plates 5 at multiple angles. After calibration, during use, the real-time position of the tracking device can be determined by navigating the arrangement of different pattern identification plates 5 in the viewing angle, thereby determining the real-time position of the planting mobile phone 4.
[0059] Based on the above structure, the first supporting cylinder 1 uses the square side panel 101 to make the pattern identification plate 5 face in one direction, and the second supporting cylinder 2 uses the trapezoidal side panel 201 to make the pattern identification plate 5 face in another direction. The tracking device in this technical solution is composed of multiple first supporting cylinders 1 and second supporting cylinders 2, so that the pattern identification plate 5 can reflect the detection light incident from multiple angles, which is convenient for interacting with the navigation device when operating the planting mobile phone 4, so as to better track and locate the planting mobile phone 4 in real time.
[0060] Combine Figure 1 、 Figure 2 and Figure 3 It can be seen that the square side panel 101 and the trapezoidal side panel 201 are provided with adhesive fixing grooves 6, and the pattern identification plate 5 is sleeved in the adhesive fixing grooves 6. The pattern identification plate 5 is fixed to the square side panel 101 or the trapezoidal side panel 201 through the adhesive fixing grooves 6.
[0061] The pattern identification plate 5 forms an identification pattern based on its first black identification area 501, second black identification area 502, first white identification area 503, and second white identification area 504. The navigation device can lock onto the real-time location of the tracking device by using at least four pattern identification plates 5. In this tracking device, each square side plate 101 and each trapezoidal side plate 201 is provided with at least one adhesive fixing groove 6. Therefore, the pattern identification plate 5 is fixedly mounted in the adhesive fixing groove 6 of the square side plate 101 or trapezoidal side plate 201 by adhesive bonding, resulting in a simple structure and effective fixing effect.
[0062] like Figure 3As shown, preferably, the square side panel 101 and the trapezoidal side panel 201 are recessed inward to form the adhesive fixing groove 6, a raised platform 601 is formed at the bottom of the adhesive fixing groove 6, and a glue guide groove 602 is provided around the raised platform 601. The glue guide groove 602 is arranged around the raised platform 601. In layman's terms, the adhesive fixing groove 6 is formed on the square side panel 101 and the trapezoidal side panel 201 by recessing, the bottom of the adhesive fixing groove 6 is raised to form the raised platform 601, and a portion around the raised platform 601 is left unraised to form the glue guide groove 602.
[0063] The raised platform 601 is provided with an adhesive colloid, which secures the pattern identification plate 5 within the adhesive fixing groove 6. The adhesive colloid is filled between the pattern identification plate 5, the raised platform 601, and the adhesive guide groove 602. During assembly, the adhesive colloid is applied to the raised platform 601 and then squeezed with the pattern identification plate 5. The adhesive colloid is compressed and evenly distributed between the raised platform 601 and the pattern identification plate 5, with the excess entering the adhesive guide groove, effectively preventing the adhesive from overflowing. In the absence of a raised platform and adhesive guide groove, the adhesive colloid under pressure would overflow from the gap between the pattern identification plate and the adhesive fixing groove, negatively affecting the appearance of the tracking device and potentially introducing the risk of affecting light transmission.
[0064] like Figure 4 As shown, the adhesive fixing groove 6 is an elongated groove, and the pattern identification plate 5 is an elongated plate-like structure. Accordingly, the pattern identification plate 5 is formed with a first straight side 505, a second straight side 506, a first curved side 507, and a second curved side 508. The first straight side 505 and the second straight side 506 are disposed opposite each other, and the first curved side 507 and the second curved side 508 are disposed opposite each other. The so-called elongated plate-like structure is a rectangular structure with two curved structures added to each end. The first straight side 505, the second straight side 506, the first curved side 507, and the second curved side 508 form a plate-like structure. In this structure, the first straight side 505 and the second straight side 506 are parallel to each other. When the pattern identification plate 5 is fixed in the adhesive fixing groove 6, the first straight side 505 is parallel to or perpendicular to the short side of the square side panel 101.
[0065] In this tracking device, the first supporting cylinder 1 is composed of multiple square side panels 101. The orientation of the square side panels 101 defines the bonding direction of the pattern identification plate 5: when the first straight edge 505 and second straight edge 506 of the pattern identification plate 5 are parallel to the short sides of the square side panels 101, the pattern identification plate 5 is horizontally arranged; when the first straight edge 505 and second straight edge 506 of the pattern identification plate 5 are perpendicular to the short sides of the square side panels 101, the pattern identification plate 5 is vertically arranged. It should be noted that the pattern identification plate 5 can be arranged horizontally or vertically according to actual design requirements.
[0066] Based on the above structure, the pattern identification plate 5 is a long plate-shaped structure. During the production of this tracking device, different pattern identification plates 5 can be fixed horizontally or vertically at different positions according to actual needs, thereby increasing the complexity of the pattern identification in the entire device.
[0067] like Figure 1 and Figure 2 As shown, the connecting cylinder 3 is hollowed out to form a plurality of conduit holes 301. These conduit holes 301 are elliptical and evenly distributed along the circumference of the connecting cylinder 3. The hollowing out of the connecting cylinder 3 with multiple conduit holes 301 not only reduces the overall weight of the tracking device and facilitates operation, but also allows for the introduction of water conduits through the conduit holes 301.
[0068] like Figure 1 and Figure 2 As shown, an annular fixing portion 302 is provided on the connecting cylinder 3, and the annular fixing portion 302 is detachably provided on one end of the connecting cylinder 3 away from the first supporting cylinder 1; after the planting mobile phone 4 is pre-fixed on the first supporting cylinder 1, the annular fixing portion 302 is sleeved on the outside of the planting mobile phone 4, and the annular fixing portion 302 complies with the end of the first supporting cylinder 1 to crimp and fix the planting mobile phone 4 on the first supporting cylinder 1.
[0069] Based on the above structure, the planting phone 4 is fixed to the connecting cylinder 3 through the detachable annular fixing part 302, so that it can be fixed during use and removed after use: when the tracking device needs to be used, the planting phone 4 is fixed to the connecting cylinder 3 through the annular fixing part 302; when use is completed, the planting phone 4 is fixed and the connecting cylinder 3 is separated from each other by removing the annular fixing part 302, thereby facilitating operation, storage and disinfection.
[0070] Specifically, an external thread connection portion is provided at the end of the connecting cylinder 3, and an internal thread connection portion is provided on the annular fixing portion 302. The end of the connecting cylinder 3 and the annular fixing portion 302 are detachably connected by threaded cooperation between the external thread connection portion and the internal thread connection portion.
[0071] During installation, after the annular fixing part 302 is inserted into the planting mobile phone 4, the planting mobile phone 4 is pre-fixed on the end of the connecting cylinder 3, and then the annular fixing part 302 is rotated, and the end of the connecting cylinder 3 and the annular fixing part 302 are gradually tightened through the threaded cooperation of the external threaded connection part and the internal threaded connection part, thereby fixing the planting mobile phone 4 on the connecting cylinder 3; during disassembly, the annular fixing part 302 is rotated in the opposite direction, so that the end of the connecting cylinder 3 and the annular fixing part 302 are gradually separated until the two are completely separated, and the planting mobile phone 4 can be removed.
[0072] Based on the above structure, the end of the connecting cylinder 3 and the annular fixing portion 302 are detachably connected through the threaded cooperation of the external threaded connection portion and the internal threaded connection portion, which has the advantages of simple structure, good fixing effect and easy disassembly and assembly.
[0073] Specifically, the pattern identification plate 5 is a ceramic plate. Using a ceramic plate as the pattern identification plate 5 takes advantage of the fact that the ceramic material is not easily deformed, thereby ensuring a stable optical path during use, thereby improving the accuracy of the tracking device.
[0074] Specifically, ten square side panels 101 and ten trapezoidal side panels 201 are provided, each of which has one pattern identification plate 5, and each of which has two pattern identification plates 5. The ten square side panels 101 form the first support cylinder 1, while the ten trapezoidal side panels 201 form the second support cylinder 2, forming an icosahedron for the tracking device, significantly increasing the optical applicability angle.
[0075] Specifically, the first support cylinder 1, the second support cylinder 2 and the connecting cylinder 3 are an integrally formed aluminum alloy structure. Using an aluminum alloy structure as the first support cylinder 1, the second support cylinder 2 and the connecting cylinder 3 can improve strength and reduce weight.
[0076] It should be understood that the application of the present invention is not limited to the above examples. For ordinary technicians in this field, they can make improvements or changes based on the above description. All these improvements and changes should fall within the scope of protection of the claims attached to the present invention.
Claims
1. A three-dimensional tracking device for planting mobile phones, characterized in that: include: A first supporting cylinder, wherein a plurality of square side panels are provided on the first supporting cylinder, wherein two oppositely disposed short sides and two oppositely disposed long sides are formed on the square side panels, and adjacent square side panels are sequentially connected through their respective long sides to form the first supporting cylinder; a second supporting cylinder, wherein the second supporting cylinder is provided with a plurality of trapezoidal side panels, wherein the trapezoidal side panels are provided with an upper bottom edge, a lower bottom edge and two oppositely arranged side waists, and adjacent trapezoidal side panels are sequentially connected through their respective side waists to form the second supporting cylinder, and the length of the upper bottom edge is shorter than the length of the lower bottom edge; A connecting cylinder, the connecting cylinder being a bottleneck-shaped structure, one end of the connecting cylinder being connected to the implant mobile phone, the other end of the connecting cylinder being connected to the first supporting cylinder, and the first supporting cylinder being connected to the second supporting cylinder via an end away from the connecting cylinder; The square side panels correspond to the trapezoidal side panels one by one, the short sides of the square side panels are connected to the lower bases of the trapezoidal side panels, the outer diameter of the first support cylinder is the same as the outer diameter of the second support cylinder near the lower base, and the outer diameter of the second support cylinder gradually decreases from the end near the lower base to the end near the upper base; A pattern identification plate is provided on the square side panel and the trapezoidal side panel, and the pattern identification plate includes a first black identification area, a second black identification area, a first white identification area and a second white identification area, the first black identification area and the second black identification area are arranged at intervals from each other, and the first white identification area and the second white identification area are arranged at intervals from each other.
2. A three-dimensional tracking device for planting mobile phones according to claim 1, characterized in that: The square side panel and the trapezoidal side panel are provided with adhesive fixing grooves, the pattern identification plate is sleeved in the adhesive fixing grooves, and the pattern identification plate is fixed to the square side panel or the trapezoidal side panel through the adhesive fixing grooves.
3. A three-dimensional tracking device for planting mobile phones according to claim 2, characterized in that: The square side panels and the trapezoidal side panels are inwardly recessed to form the bonding and fixing grooves, a raised platform is formed at the bottom of the bonding and fixing grooves, and a glue guide groove is provided around the raised platform. The glue guide groove is arranged around the raised platform. An adhesive colloid is provided on the raised platform, and the pattern identification plate is fixed in the adhesive fixing groove by the adhesive colloid. The adhesive colloid is filled between the pattern identification plate, the raised platform and the adhesive guide groove.
4. The three-dimensional tracking device for planting mobile phones according to claim 2, characterized in that: The bonding and fixing groove is an elongated groove body, and the pattern identification plate is an elongated plate-shaped structure; The pattern identification plate is formed with a first straight edge, a second straight edge, a first curved edge, and a second curved edge, wherein the first straight edge and the second straight edge are arranged opposite to each other, and the first curved edge and the second curved edge are arranged opposite to each other; When the pattern identification plate is fixed in the adhesive fixing groove, the first straight side and the short side of the square side plate are parallel to or perpendicular to each other.
5. The three-dimensional tracking device for planting mobile phones according to claim 1, characterized in that: The connecting cylinder is hollowed out to form a plurality of conduit through holes, each of which is an elliptical hole. The plurality of conduit through holes are evenly distributed along the circumference on the connecting cylinder.
6. The three-dimensional tracking device for planting mobile phones according to claim 1, characterized in that: The connecting cylinder is provided with an annular fixing portion, and the annular fixing portion is detachably provided on an end of the connecting cylinder away from the first supporting cylinder; After the implant mobile phone is pre-fixed on the first supporting cylinder, the annular fixing portion is sleeved on the outside of the implant mobile phone, and the annular fixing portion presses and fixes the implant mobile phone on the first supporting cylinder by cooperating with the end of the first supporting cylinder.
7. The three-dimensional tracking device for planting mobile phones according to claim 6, characterized in that: An external threaded connection portion is provided at the end of the connecting cylinder, and an internal threaded connection portion is provided on the annular fixing portion. The end of the connecting cylinder and the annular fixing portion are detachably connected by threaded cooperation between the external threaded connection portion and the internal threaded connection portion.
8. A three-dimensional tracking device for planting mobile phones according to any one of claims 1 to 7, characterized in that: The pattern identification plate is a ceramic plate.
9. A three-dimensional tracking device for planting mobile phones according to any one of claims 1 to 7, characterized in that: There are 10 square side panels and 10 trapezoidal side panels respectively; each square side panel is provided with one pattern identification plate, and each trapezoidal side panel is provided with two pattern identification plates.
10. A three-dimensional tracking device for planting mobile phones according to any one of claims 1 to 7, characterized in that: The first supporting cylinder, the second supporting cylinder and the connecting cylinder are an integrally formed aluminum alloy structure.