Geological exploration shoe and geological exploration device

The geological exploration shoe with integrated sensors and a camera simplifies and enhances the precision of geological surveys by collecting data beneath the feet during walking, addressing the neglect of this area in traditional equipment.

DE202025104792U1Active Publication Date: 2025-12-04MEISHAN MIDDLE SCHOOL OF CHANGXING COUNTY PROVINCE ZHEJIANG +2
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Patent Information

Application Number
DE202025104792
Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-08-15
Publication Date
2025-12-04
Estimated Expiration
2035-08-31

AI Technical Summary

Technical Problem

Current geological exploration equipment fails to perform precise surveys of the ground beneath the feet, leading to unintentional neglect of this area during operations.

Method used

A geological exploration shoe equipped with a measuring component, including sensors and a camera, that allows for real-time geological data collection while walking, enhancing accuracy and efficiency.

Benefits of technology

Enables accurate and efficient geological exploration by simplifying the process and improving data collection underfoot, ensuring safer and more reliable survey outcomes.

✦ Generated by Eureka AI based on patent content.

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Abstract

Geological exploration shoe (10), characterized in that it comprises the following: one sole (100); a shoe body (200) wherein a receiving space is formed within the shoe body, the shoe body (200) is arranged on the top of the sole (100), and a measuring component (300) is arranged on the front of the shoe body (200), and the measuring component (300) is designed to detect geological conditions at a current location.
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Description

[0001] The present utility model relates to the field of geological exploration technology, in particular a geological exploration shoe and a geological exploration device.

[0002] In current geological exploration, specialized exploration equipment is typically used to investigate geological conditions. However, this specialized equipment cannot perform a precise geological survey of all areas of the ground during operation, particularly under the soles of the feet. This leads to the unintentional neglect of geological exploration beneath the feet. Therefore, there is a need for a device that enables geological exploration of the conditions underfoot.

[0003] The present utility model aims to solve at least one of the technical problems existing in the prior art. To this end, one objective of the present utility model is to propose a geological exploration shoe equipped with a measuring device that makes it possible to carry out geological explorations while walking, thereby simplifying the process and increasing efficiency.

[0004] One objective of the present utility model is to propose a geological exploration device comprising the geological exploration shoe described above.

[0005] The invention relates to an exploration shoe with the features of claim 1. Exemplary embodiments are given with reference to the dependent claims.

[0006] The geological exploration shoe according to the embodiment of the present utility model comprises a sole and a shoe body, wherein a receiving space is formed within the shoe body, the shoe body is arranged on the top of the sole, and a measuring component is arranged on the front of the shoe body, and the measuring component is configured to detect geological conditions at a current location.

[0007] In the geological exploration shoe according to the embodiment of the present utility model, by providing the measuring component at the front of the shoe body during use of the geological exploration shoe, it is possible to carry out geological exploration using the measuring component, which simplifies the geological exploration process, increases the efficiency of the geological exploration and enables a more accurate and reliable exploration effect of the geological exploration shoe.

[0008] In some embodiments, the measuring component includes several sensors and a camera, and the several sensors include at least: a temperature sensor and a humidity sensor.

[0009] In some embodiments, a limiting component is provided on the side of the sole facing away from the shoe body, wherein the limiting component comprises several limiting tips that are arranged at intervals from each other.

[0010] In some embodiments, the limiting tip has a conical cut.

[0011] In some embodiments, several first boundary sections are spaced apart on an outer circumferential side of the sole, and several second boundary sections are spaced apart on an outer circumferential side of the shoe body, wherein the first boundary sections and the second boundary sections are selectively adapted to each other for boundary purposes.

[0012] In some embodiments, the sole is provided with a first guide section on the side facing the shoe body, while the shoe body is provided with a second guide section on the side facing the sole, wherein the first guide section and the second guide section are adapted to each other for guiding.

[0013] In some embodiments, a lighting component is provided at the front of the shoe body, wherein the lighting component is a removable LED lamp.

[0014] In some embodiments, a wireless communication component is provided on the upper side of the shoe body, wherein one end of the wireless communication component is communicatively connected to the measuring component and the wireless communication component is connected to a controller.

[0015] In some embodiments, a positioning gyroscope is provided at the front end of the shoe body.

[0016] A geological exploration device according to an embodiment of the present utility model comprises the geological exploration shoe described above.

[0017] In the geological exploration device according to the embodiment of the present utility model, the previously shown geological exploration shoe is provided within the geological exploration apparatus. Therefore, by providing the measuring component at the front of the shoe body during use of the geological exploration shoe, it is possible to carry out the geological exploration using the measuring component, which simplifies the geological exploration process, increases the efficiency of the geological exploration, and enables a more accurate and reliable exploration effect of the geological exploration shoe.

[0018] Further aspects and advantages of the present utility model are partly set out in the following description and partly can be seen from the following description or can be learned through the practical application of the present utility model.

[0019] The aforementioned and / or further aspects and advantages of the present utility model will become apparent and easily understandable from the description of the exemplary embodiment in conjunction with the following drawings, wherein: Fig. Figure 1 shows a schematic, structural representation of a geological exploration shoe according to an embodiment of the present utility model; Fig. Figure 2 shows a schematic, structural representation of a geological exploration shoe according to an embodiment of the present utility model;

[0020] The embodiment of the present utility model is described in detail below, and the embodiment described with reference to the drawings is exemplary.

[0021] The geological exploration shoe 10 according to the embodiment of the present utility model is described below with reference to Fig.As described in 1-2, comprising: a sole 100 and a shoe body 200.

[0022] In particular, a receiving space is formed within the shoe body 200, the shoe body 200 is arranged on the upper side of the sole 100, and a measuring component 300 is arranged on the front of the shoe body 200, and the measuring component 300 is designed to record geological conditions at a current location.

[0023] It should be noted that during geological exploration work, users often have to pay attention to their walking environment while ignoring the geological conditions beneath their feet, and that the geological exploration effect while walking is more important. Therefore, a geological exploration shoe 10 can be provided.

[0024] In particular, the geological exploration shoe 10 is designed to comprise a sole 100 and a shoe body 200, with the shoe body 200 being worn on top of the sole 100 to make the structural design of the shoe body 200 more reliable. Simultaneously, the sole 100 has a specific thickness to ensure high usability and also a specific height to prevent the impact of sharp debris on the structure of the geological exploration shoe 10 during geological exploration. This significantly improves the safety of users during geological exploration after wearing the geological exploration shoes 10.

[0025] Furthermore, the measuring component 300 is positioned at the front of the shoe body 200, so that when the user wears the geological exploration shoes 10 for geological exploration, the measuring component 300 can perform geological surveys in conjunction with the user's walking, thus simplifying the geological exploration process and increasing its efficiency. The use of the measuring component 300 results in a more accurate geological exploration effect.

[0026] In the geological exploration shoe 10 according to the embodiment of the present utility model, by providing the measuring component 300 at the front of the shoe body 200 during the use of the geological exploration shoe 10, it is possible to carry out geological exploration using the measuring component 300, which simplifies the geological exploration process, increases the efficiency of the geological exploration and enables a more accurate and reliable exploration effect of the geological exploration shoe 10.

[0027] In some embodiments, the measuring component 300 comprises several sensors and a camera, and the several sensors include at least a temperature sensor and a humidity sensor. This means that the measuring component 300 is suitable for recording multiple geological conditions, such as temperature and humidity. Therefore, a temperature sensor and a humidity sensor can be provided. Furthermore, a camera can also be provided so that the camera can capture and record images of the geological conditions, thereby enhancing the exploration effectiveness of the geological exploration shoe 10.

[0028] In some embodiments, a limiting component 400 is provided on the side of the sole 100 facing away from the shoe body 200. This limiting component 400 comprises several limiting prongs 410, which are arranged at intervals from one another. It is understandable that the user, while wearing the geological exploration shoes 10, can explore conditions at various locations during geological exploration. During exploration, it must be ensured that the user can walk safely. For this purpose, a limiting component 400 can be provided on the sole 100 to increase safety when walking with the geological exploration shoes 10 during exploration. In particular, the limiting component 400 comprises several limiting prongs 410, each of which can engage with the ground to improve the performance characteristics of the limiting component 400.

[0029] In some embodiments, the limiting tip 410 has a conical cut. This conical shape facilitates stable positioning of the geological exploration shoe 10 on the ground. As a result, the limiting tip 410 engages with the ground more easily, enabling simpler and more reliable use of the limiting component 400.

[0030] In some embodiments, several first limiting sections are spaced apart on an outer circumferential side of the sole 100, and several second limiting sections are spaced apart on an outer circumferential side of the shoe body 200, wherein the first limiting sections and the second limiting sections are selectively adapted to one another for limiting purposes. That is, by using the first limiting sections and the second limiting sections for limiting adaptation, a detachable connection is created between the sole 100 and the shoe body 200, thereby simplifying the assembly process and increasing assembly efficiency. Furthermore, the sole 100 can be adapted to the structural properties and usage requirements to optimize the applicability of the geological exploration shoe 10.

[0031] In some embodiments, the sole 100 is provided with a first guide section on the side facing the shoe body 200, while the shoe body 200 is provided with a second guide section on the same side, the first and second guide sections being adapted to each other for guiding purposes. In this way, the assembly process is further simplified and assembly efficiency is increased by using the first and second guide sections for guiding.

[0032] In some embodiments, a lighting component 500 is provided at the front of the shoe body 200, wherein the lighting component 500 is a removable LED lamp. That is, to cope with various road conditions, especially poor visibility where there is a risk of an accident, a lighting component 500 is provided at the front of the shoe body 200 so that the lighting component 500 can illuminate the road conditions and the user can wear the geological exploration shoes 10 more safely and reliably.

[0033] In some embodiments, a wireless communication component 600 is provided on the upper side of the shoe body 200, wherein one end of the wireless communication component 600 is communicatively connected to the measuring component 300 and the wireless communication component 600 is connected to a controller. It is understood that during geological exploration, the geological conditions detected and collected by the measuring component 300 can be transmitted via the wireless communication component 600 so that the controller can analyze and store the acquired sensor data, thereby making the use of the geological exploration shoe 10 more stable and reliable.

[0034] In some embodiments, a positioning gyroscope 700 is provided at the front of the shoe body 200. It is understood that the positioning gyroscope 700, located at the front of the shoe body 200, can collect data and detect the user's posture in order to prevent falls and increase safety during geological exploration.

[0035] A geological exploration device according to the embodiment of the present utility model comprises the previously described geological exploration shoe 10. In this way, since the previously shown geological exploration shoe 10 is provided in the geological exploration device, it is possible to carry out geological exploration by means of the measuring component 300 at the front of the shoe body 200 during the use of the geological exploration shoe 10, which simplifies the geological exploration process, increases the efficiency of the geological exploration and enables a more accurate and reliable exploration effect of the geological exploration shoe 10.

[0036] The other components and the functioning of the geological exploration device according to the embodiment of the present utility model are known to experts in this field and are therefore not described in detail here.

[0037] In the description of this specification, terms such as "one embodiment," "some embodiments," "schematic embodiment," "example," "specific example," or "some examples," etc., mean that the specific features, structures, materials, or properties described by that embodiment or example are included in at least one embodiment or example of the present utility model. In this description, the schematic expression of the above terms does not necessarily refer to the same embodiment or example.

[0038] Although exemplary embodiments of the present utility model have been shown and described, it is understandable to a person skilled in the art that these exemplary embodiments can be changed, modified, replaced and varied in many different ways. Reference symbol list: 10 Geological exploration shoe, 100 soles, 200 shoe bodies, 300 measuring components, 400 Limiting component, 410 Limiting tip, 500 lighting components, 600 Wireless communication component, 700 positioning gyroscopes.

Claims

[1] Geological exploration shoe (10), characterized by that it includes the following: one sole (100); a shoe body (200) wherein a receiving space is formed within the shoe body, the shoe body (200) is arranged on the top of the sole (100), and a measuring component (300) is arranged on the front of the shoe body (200), and the measuring component (300) is designed to detect geological conditions at a current location. [2] Geological exploration shoe (10) according to claim 1, characterized by , that the measuring component (300) includes several sensors and a camera, and the several sensors include at least one temperature sensor and one humidity sensor. [3] Geological exploration shoe (10) according to any one of the preceding claims, characterized by, that a limiting component (400) is provided on the side of the sole (100) facing away from the shoe body (200), wherein the limiting component (400) comprises several limiting tips (410) which are arranged at intervals from each other. [4] Geological exploration shoe (10) according to claim 3, characterized by , that the boundary tip (410) has a conical cut. [5] Geological exploration shoe (10) according to one of the preceding claims , characterized by , that several first limiting sections are spaced apart on an outer circumferential side of the sole (100), several second limiting sections are spaced apart on an outer circumferential side of the shoe body (200), wherein the first limiting sections and the second limiting sections are selectively adapted to each other for limiting purposes. [6] Geological exploration shoe (10) according to one of the preceding claims , characterized by, that the sole (100) is provided with a first guide section on the side facing the shoe body (200), while the shoe body (200) is provided with a second guide section on the side facing the sole (100), wherein the first guide section and the second guide section are adapted to each other for guiding. [7] Geological exploration shoe (10) according to one of the preceding claims , characterized by , that a lighting component (500) is provided on the front of the shoe body (200), wherein the lighting component (500) is a removable LED lamp. [8] Geological exploration shoe (10) according to one of the preceding claims , characterized by, that a wireless communication component (600) is provided on the upper side of the shoe body (200), wherein one end of the wireless communication component (600) is communicatively connected to the measuring component and the wireless communication component (600) is connected to a controller. [9] Geological exploration shoe (10) according to one of the preceding claims , characterized by , that a positioning gyroscope (700) is provided at the front end of the shoe body (200). [10] Geological exploration facility, characterized by , that it comprises a geological exploration shoe (10) according to any one of claims 1 to 9.