Anti-slip mineral resource exploration and detection equipment
By designing an anti-detachment mechanism in the mineral resource exploration and detection equipment, the problem of bolts and nuts falling off during vibration and working process of the equipment is solved, effective protection of the controller is achieved, and the stability and service life of the equipment are improved.
Patent Information
- Application Number
- CN202422314716.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-09-23
AI Technical Summary
During the vibration and operation of existing mineral resource exploration and detection equipment, bolts and nuts are prone to falling off, causing the controller to fall off, causing damage and shortening service life.
A mineral resource exploration and detection equipment is designed to prevent falling off. By setting up an anti-detachment mechanism between the controller and the rod body, including mounting plates, rotary plates, semi-ring plates, connecting plates, shells, limit rings and pull plates, the spring and chute mechanisms are used to fix the connecting plates and semi-ring plates in the working state to prevent the controller from falling off.
It effectively prevents the problem of bolts and nuts falling off during vibration and working of the detection equipment, avoids damage to the controller and shortens service life, and improves the stability and reliability of the equipment.
Smart Images

Figure CN222950798U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of mineral resource exploration, in particular to a mineral resource exploration and detection device which is anti-slip. Background Art
[0002] Mineral exploration is a practical geology that studies the geological conditions of mineral formation and distribution, the occurrence patterns of mineral deposits, the characteristics of ore body changes, and the most effective methods for identifying and evaluating industrial mineral deposits.
[0003] However, during the use of existing detection equipment, since the controller and the rod body of the existing detection equipment are connected by bolts, the bolts and nuts are very likely to fall off during the vibration and operation of the detection equipment, which will then cause the controller to fall off, thereby damaging the controller and affecting the service life of the controller. Utility Model Content
[0004] In order to make up for the shortcomings of the prior art, the controller and the rod body may become loose and fall off. The utility model provides an anti-slip mineral resource exploration and detection device.
[0005] The utility model solves the technical problem by adopting the following technical solution: an anti-slip mineral resource exploration and detection device, comprising a detector body, the detector body comprising a rod body, a detection head is installed at the bottom of the rod body, a controller is installed on the left side of the rod body, a connecting block is fixedly connected to the right side of the controller, a bolt is fixedly connected to the right side of the connecting block, the right side of the bolt penetrates to the right side of the rod body, a nut is threadedly connected to the right side of the bolt surface, and an anti-slip mechanism is arranged on the front side and the back side of the right side of the controller;
[0006] The anti-slip mechanism includes a mounting plate, the left side of the mounting plate is mounted on the right side of the controller, and the right side of the inner cavity of the mounting plate is movably connected with a rotating plate 1 and a rotating plate 2 respectively, the back side of the rotating plate 1 is fixedly connected with a semi-ring plate 1, the front side of the rotating plate 2 is fixedly connected with a semi-ring plate 2, the back side of the semi-ring plate 1 and the front side of the semi-ring plate 2 are both movably connected to the surface of the rod body, the top and bottom of the right side of the semi-ring plate 1 are fixedly connected with a connecting plate 1, the top and bottom of the right side of the semi-ring plate 2 are fixedly connected with a connecting plate 2, a shell 2 is mounted on the right side of the connecting plate 1, and a shell 1 is mounted on the right side of the connecting plate 2, the shell 2 and the top of the inner cavity of the shell 1 are movably connected with a semicircular plate 1, and the shell 2 and the bottom of the inner cavity of the shell 1 are movably connected with a semicircular plate 2.
[0007] Preferably, the inner cavity of the mounting plate is fixedly connected to a rotating shaft, the surface of the rotating shaft is movably connected to the inner cavities of rotating plate one and rotating plate two respectively, mounting columns are installed at the four corners of the inner cavity of the mounting plate, and the left side of the mounting plate is fixedly connected to the right side of the controller through the mounting columns.
[0008] Preferably, the top of the surface of the semicircular plate one is fixedly connected to a limiting ring one, the bottom of the surface of the semicircular plate two is fixedly connected to a limiting ring two, the inner cavities of the connecting plate one and the connecting plate two are both provided with a sliding groove, the bottom of the front side of the limiting ring two is fixedly connected to a pull plate two, the front side of the pull plate two penetrates to the front side of the outer shell two, the top of the back side of the limiting ring one is fixedly connected to a pull plate one, the back side of the pull plate one penetrates to the back side of the outer shell one, the left sides of the pull plates two and one are both fixedly connected to a sliding column, the left side of the sliding column penetrates to the inner cavity of the sliding groove and is fixedly connected to a slider, and the surface of the slider is movably connected to the inner cavity of the sliding groove.
[0009] Preferably, the front side of the inner cavity of the second shell and the back side of the inner cavity of the first shell are fixedly connected with guide columns, the surface of the guide columns is sleeved with spring one, the top of the spring one is fixedly connected to the bottom of the pull plate one and the top of the inner cavity of the second shell, the bottom of the spring one is fixedly connected to the top of the pull plate two and the bottom of the inner cavity of the first shell, the top and bottom of the inner cavities of the second shell and the first shell are both installed with mounting rods, and the left sides of the second shell and the first shell are respectively fixedly connected to the right sides of the connecting plate one and the connecting plate two through the mounting rods.
[0010] Preferably, the top of the detection head is fixedly connected to the base, the inner cavity of the base is movably connected to a rotating sleeve, the top of the rotating sleeve is fixedly connected to the bottom of the rod body, the inner cavities of the base and the rotating sleeve are movably connected to the insertion rod, the front and back sides of the surface of the insertion rod are movably connected to fixed plates, the surface of the rod body is sleeved with a connecting line, the bottom of the connecting line is connected to the detection head, and the top of the detection head is connected to the bottom of the controller.
[0011] Preferably, a fixing sleeve is fixedly connected to the top of the rod body surface, a support plate is fixedly connected to the left side of the fixing sleeve, a strap is movably connected to the inner cavity of the support plate, the strap is made of elastic material, an anti-slip sleeve is fixedly connected to the surface of the rod body, and an anti-slip sleeve is fixedly connected to the surface of the rod body.
[0012] Preferably, a fixing mechanism is provided at the bottom of the right side of connecting plate one and the top of the right side of connecting plate two, and the fixing mechanism includes a positioning rod, the left side of the positioning rod is fixedly connected to the right side of connecting plate one and connecting plate two, and the surface of the positioning rod is movably connected with a fixing hook, and the inner side of the fixing hook is movably connected to the mounting rod.
[0013] Preferably, the outer side of the fixing hook is fixedly connected with spring 2, the outer side of spring 2 is fixedly connected with a support block, the left side of the support block is fixedly connected to the right side of connecting plate 1 and connecting plate 2, and the right side of the positioning rod is fixedly connected with a limiting plate.
[0014] The utility model is beneficial in that:
[0015] The utility model pulls the pull plate one upward by hand, and pulls the pull plate two downward by hand, thereby driving the limit ring two and the limit ring one to rotate, and then driving the semicircular plate one and the semicircular plate two to rotate, and then making the surfaces of the semicircular plate one, the limit ring one, the limit ring two and the semicircular plate two all movably connected to the shell two and the inner cavity of the shell one, thereby achieving the effect of fixing and limiting the connecting plate one and the connecting plate two in the working state, and then achieving the effect of fixing the semi-ring plate one and the semi-ring plate two in the working state, thereby achieving the effect of preventing the controller from falling off in the working state, and solving the problem that the existing detection equipment is in use, because the controller and the rod body of the existing detection equipment are bolted, so the detection equipment is very likely to have bolts and nuts falling off during vibration and work, and then causing the controller to fall off, thereby damaging the controller and affecting the service life of the controller. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0017] Figure 1 It is a structural schematic diagram of the anti-slip cover of the utility model;
[0018] Figure 2 It is a structural schematic diagram of the plug rod of the utility model;
[0019] Figure 3 It is a structural schematic diagram of the mounting plate of the utility model;
[0020] Figure 4 It is a structural schematic diagram of the rotating shaft of the utility model;
[0021] Figure 5 It is a structural schematic diagram of the rotating plate 1 of the utility model;
[0022] Figure 6 It is a structural schematic diagram of the slideway of the utility model;
[0023] Figure 7 It is a structural schematic diagram of a spring 1 of the utility model;
[0024] Figure 8 It is a structural schematic diagram of the fixing hook of the utility model.
[0025] In the figure: 1. detector body; 101. rod body; 102. anti-slip cover; 103. fixing cover; 104. strap; 105. support plate; 106. controller; 107. connecting line; 108. detection head; 109. base; 110. rotating sleeve; 111. fixing plate; 112. plug rod; 113. connecting block; 114. nut; 115. bolt; 2. anti-slip mechanism; 201. mounting plate; 202. rotating shaft; 203. mounting column; 204. semi-ring plate 1; 205. rotating plate 1; 206. connecting plate 1; 207 , connecting plate two; 208, semi-ring plate two; 209, rotating plate two; 210, shell one; 211, mounting rod; 212, slide groove; 213, shell two; 214, semi-circular plate one; 215, limiting ring one; 216, limiting ring two; 217, semi-circular plate two; 218, guide column; 219, pull plate one; 220, spring one; 221, pull plate two; 222, slide column; 223, slider; 3, fixing mechanism; 301, positioning rod; 302, limiting plate; 303, support block; 304, spring two; 305, fixing hook. DETAILED DESCRIPTION
[0026] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0027] The following is combined with Figure 1-8 To further explain this application in detail,
[0028] The present application embodiment discloses a mineral resource exploration and detection device that prevents slipping. Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7 , a mineral resource exploration and detection equipment with anti-slip, including a detector body 1, the detector body 1 includes a rod body 101, a detection head 108 is installed at the bottom of the rod body 101, a controller 106 is installed on the left side of the rod body 101, a connecting block 113 is fixedly connected to the right side of the controller 106, a bolt 115 is fixedly connected to the right side of the connecting block 113, the right side of the bolt 115 penetrates to the right side of the rod body 101, a nut 114 is threadedly connected to the right side of the surface of the bolt 115, and an anti-slip mechanism 2 is arranged on the front and back sides of the right side of the controller 106;
[0029] The anti-slip mechanism 2 includes a mounting plate 201, the left side of the mounting plate 201 is mounted on the right side of the controller 106, the right side of the inner cavity of the mounting plate 201 is movably connected with a rotating plate 1 205 and a rotating plate 209, the back side of the rotating plate 1 205 is fixedly connected with a semi-ring plate 1 204, the front side of the rotating plate 209 is fixedly connected with a semi-ring plate 208, the back side of the semi-ring plate 1 204 and the front side of the semi-ring plate 208 are both movably connected to the surface of the rod body 101, and the semi-ring plate 1 209 is fixedly connected with a semi-ring plate 208. The top and bottom of the right side are fixedly connected with the connecting plate 1 206, the top and bottom of the right side of the semi-ring plate 208 are fixedly connected with the connecting plate 207, the right side of the connecting plate 1 206 is installed with the outer shell 213, the right side of the connecting plate 207 is installed with the outer shell 1 210, the outer shell 213 and the top of the inner cavity of the outer shell 1 210 are movably connected with the semicircular plate 1 214, and the outer shell 213 and the bottom of the inner cavity of the outer shell 1 210 are movably connected with the semicircular plate 217.
[0030] Reference Figure 4 and Figure 5 The inner cavity of the mounting plate 201 is fixedly connected with a rotating shaft 202, and the surfaces of the rotating shaft 202 are movably connected to the inner cavities of the rotating plate 1 205 and the rotating plate 2 209 respectively. The four corners of the inner cavity of the mounting plate 201 are installed with mounting columns 203. The left side of the mounting plate 201 is fixedly connected to the right side of the controller 106 through the mounting columns 203. Through the setting of the rotating shaft 202, the rotating plate 1 205 and the rotating plate 2 209 can be smoothly rotated in the inner cavity of the mounting plate 201, and then the semi-ring plate 1 204 is driven to rotate. Through the setting of the mounting column 203, it is easier for the operator to install and fix the mounting plate 201 and the controller 106, thereby achieving the effect of preventing the controller 106 from falling off in the working state.
[0031] Reference Figure 6 and Figure 7The top of the surface of the semicircular plate 1 214 is fixedly connected to the limiting ring 1 215, the bottom of the surface of the semicircular plate 217 is fixedly connected to the limiting ring 216, the inner cavities of the connecting plates 1 206 and 207 are both provided with a slide groove 212, the bottom of the front side of the limiting ring 216 is fixedly connected to the pull plate 221, the front side of the pull plate 221 penetrates to the front side of the shell 213, the top of the back side of the limiting ring 1 215 is fixedly connected to the pull plate 1 219, the back side of the pull plate 1 219 penetrates to the back side of the shell 1 210, the pull plate 221 and the pull plate 1 219 The left side of each is fixedly connected with a sliding column 222, the left side of the sliding column 222 passes through the inner cavity of the slide groove 212 and is fixedly connected with a sliding block 223, the surface of the sliding block 223 is movably connected to the inner cavity of the slide groove 212, and through the setting of the slide groove 212, the sliding column 222 and the sliding block 223 can move smoothly in the inner cavity of the slide groove 212, thereby not only guiding the pull plate 1 219 and the pull plate 2 221 in the moving state, but also facilitating the operator to subsequently fix the pull plate 1 219 and the pull plate 2 221 in the static state.
[0032] Reference Figure 6 and Figure 7 The front side of the inner cavity of the second shell 213 and the back side of the inner cavity of the first shell 210 are fixedly connected with a guide column 218, and the surface of the guide column 218 is sleeved with a spring 220. The top of the spring 220 is respectively fixedly connected to the bottom of the pull plate 219 and the top of the inner cavity of the second shell 213, and the bottom of the spring 220 is respectively fixedly connected to the top of the pull plate 221 and the bottom of the inner cavity of the first shell 210. The top and bottom of the inner cavity of the second shell 213 and the first shell 210 are both installed with mounting rods 211. The left sides of the second shell 213 and the first shell 210 are respectively connected by the mounting rods 211. It is fixedly connected to the right side of connecting plate 1 206 and connecting plate 207, and through the setting of guide column 218, the effect of guiding pull plate 1 219 and pull plate 2 221 in the moving state is achieved. Through the setting of spring 1 220, when pull plate 1 219 and pull plate 221 move, spring 1 220 will be extended to absorb the force generated. Further, when pull plate 1 219 and pull plate 221 lose their force, spring 1 220 will restore its deformation, thereby achieving the effect of making it easier for operators to prevent the controller 106 from falling off and disassembling.
[0033] Reference Figure 1 and Figure 2The top of the detection head 108 is fixedly connected to the base 109, and the inner cavity of the base 109 is movably connected to the rotating sleeve 110. The top of the rotating sleeve 110 is fixedly connected to the bottom of the rod body 101. The inner cavities of the base 109 and the rotating sleeve 110 are movably connected to the insertion rod 112. The front and back sides of the surface of the insertion rod 112 are movably connected to the fixing plate 111. The surface of the rod body 101 is sleeved with a connecting line 107, and the bottom of the connecting line 107 is connected to the detection head 108. The top of the detection head 108 is connected to the bottom of the controller 106. Through the setting of the base 109, the rotating sleeve 110 can be smoothly rotated in the inner cavity of the base 109, thereby achieving the effect of adjusting the angle of the rod body 101. Through the setting of the insertion rod 112 and the fixing plate 111, the effect of fixing the rotating sleeve 110 after adjusting the angle is achieved.
[0034] Reference Figure 1 and Figure 2 A fixing sleeve 103 is fixedly connected to the top of the surface of the rod body 101, a supporting plate 105 is fixedly connected to the left side of the fixing sleeve 103, a strap 104 is movably connected to the inner cavity of the supporting plate 105, and the strap 104 is made of elastic material. An anti-slip sleeve 102 is fixedly connected to the surface of the rod body 101, and an anti-slip sleeve 102 is fixedly connected to the surface of the rod body 101. Through the setting of the fixing sleeve 103 and the supporting plate 105, the supporting plate 105 is closely attached to the arm of the operator. Through the setting of the strap 104, the rod body 101 and the operator's arm are tightly bound. Through the setting of the anti-slip sleeve 102, the anti-slip effect between the operator's hand and the rod body 101 is achieved, thereby preventing the operator from slipping when taking the rod body 101.
[0035] Reference Figure 3 and Figure 8 The bottom of the right side of the connecting plate 1 206 and the top of the right side of the connecting plate 207 are both provided with a fixing mechanism 3, and the fixing mechanism 3 includes a positioning rod 301, and the left side of the positioning rod 301 is fixedly connected to the right side of the connecting plate 1 206 and the connecting plate 207, and the surface of the positioning rod 301 is movably connected with a fixing hook 305, and the inner side of the fixing hook 305 is movably connected to the mounting rod 211, and the fixing hook 305 is pulled outward by hand, and then the fixing hook 305 is rotated on the surface of the positioning rod 301, and at the same time, the spring 2 30 4 is stretched, and then the operator pulls the pull plate 1 219 and the pull plate 221, which then drives the slide column 222 and the slider 223 to move, and then when the slide column 222 reaches the specified position, the fixing hook 305 is released, and then the fixing hook 305 is restored to its original position under the action of the spring 2 304, and then the bottom of the fixing hook 305 is closely fitted with the surface of the slide column 222, thereby achieving the effect of fixing the slide column 222 in the working state, and then realizing the phenomenon of preventing the controller 106 in the working state from falling off.
[0036] Reference Figure 8 The outer side of the fixing hook 305 is fixedly connected to the spring 204, and the outer side of the spring 204 is fixedly connected to the support block 303. The left side of the support block 303 is fixedly connected to the right side of the connecting plate 1 206 and the connecting plate 207. The right side of the positioning rod 301 is fixedly connected to the limiting plate 302. Through the setting of the support block 303, the spring 204 in the working state is supported and stabilized. Through the setting of the spring 204, when the fixing hook 305 moves, the spring 204 will be compressed, so as to absorb the energy of the generated force. Further, when the fixing hook 305 loses its force, the spring 204 will restore its deformation, thereby achieving the effect of fixing the sliding column 222 in the working state. Through the setting of the limiting plate 302, the fixing hook 305 in the working state is limited, so as to prevent the fixing hook 305 from falling off from the inner cavity of the positioning rod 301 during the rotation.
[0037] Working principle: First, manually rotate the rod body 101, and then drive the rotating sleeve 110 to rotate in the inner cavity of the base 109, and then make the rod body 101 at a specified angle, and then make the rotating sleeve 110 in a stationary state in the inner cavity of the base 109, and then manually insert the plug rod 112 into the inner cavity of the base 109 and the rotating sleeve 110, and then manually install and fix the fixing plate 111 on the surface of the plug rod 112, and then manually put the mounting plate 201 on the right side of the controller 106, and then manually insert the mounting column 203 into the inner cavity of the mounting plate 201, and then achieve the effect of installing and fixing the controller 106 in the working state, and then manually move the controller 106, and then drive the connecting block 113 to move, and then insert the bolt 115 into the rod body 1 01, and then manually install and fix the bolt 115 on the surface of the nut 114, and then manually rotate the semi-ring plate 1 204 and the semi-ring plate 208, and then make the rotating plate 1 205 and the rotating plate 209 rotate around the surface of the rotating shaft 202, and then make the inner sides of the semi-ring plate 1 204 and the semi-ring plate 208 fit tightly with the surface of the rod body 101, and then make the inner sides of the connecting plate 1 206 and the connecting plate 2 207 fit tightly, and then manually pull the fixing hook 305 outward, and then make the fixing hook 305 rotate on the surface of the positioning rod 301, and at the same time make the spring 2 304 be extended, and then pull the pull plate 1 219 upward by hand, and pull the pull plate 2 221 downward by hand, and at the same time make the pull plate 1 219 and the pull plate 221 move on the surface of the guide column 218, and then the spring 1 220 is extended, and then the limiting ring 216 and the limiting ring 1 215 are driven to rotate, and then the semicircular plate 1 214 and the semicircular plate 217 are driven to rotate, and then the surfaces of the semicircular plate 1 214, the limiting ring 1 215, the limiting ring 216 and the semicircular plate 217 are movably connected to the inner cavity of the shell 213 and the shell 1 210, and then the connecting plate 1 206 and the connecting plate 2 207 in the working state are fixed and limited, and then the semi-ring plate 1 204 and the semi-ring plate 2 208 in the working state are fixed, so as to achieve the effect of preventing the controller 106 from falling off in the working state, and with At the same time, the movement of the pull plate 1 219 and the pull plate 221 drives the sliding column 222 and the slider 223 to move in the inner cavity of the slide groove 212, and then when the pull plate 1 219, the pull plate 221, the sliding column 222 and the slider 223 are in a static state, the fixing hook 305 is released, and then the fixing hook 305 is restored to its original position under the action of the spring 2 304, and then the bottom of the fixing hook 305 is tightly fitted with the surface of the sliding column 222, thereby fixing the sliding column 222 in the working state, and then preventing the controller 106 from falling off in the working state, and finally the operator's hand is placed on the front side of the support plate 105, and then the operator's arm and the support plate 105 are tied tightly by the strap 104.The operator can then lift the rod body 101 by holding the anti-slip cover 102, so as to prevent the anti-slip cover 102 and the rod body 101 from slipping in the working state, and then detect the mineral resources through the detection head 108.
[0038] The above shows and describes the basic principle, main features and advantages of the utility model. Those skilled in the art should understand that the utility model is not limited by the above embodiments, and the above embodiments and descriptions are only for explaining the principle of the utility model. Without departing from the spirit and scope of the utility model, the utility model may have various changes and improvements, and these changes and improvements fall within the scope of the utility model to be protected.
Claims
1. An anti-slip mineral resource exploration and detection equipment, characterized in that: The detector body (1) comprises a rod body (101), a detection head (108) is installed at the bottom of the rod body (101), a controller (106) is installed on the left side of the rod body (101), a connection block (113) is fixedly connected to the right side of the controller (106), a bolt (115) is fixedly connected to the right side of the connection block (113), the right side of the bolt (115) penetrates the right side of the rod body (101), a nut (114) is threadedly connected to the right side of the surface of the bolt (115), and an anti-slip mechanism (2) is arranged on the front side and the back side of the right side of the controller (106); The anti-slip mechanism (2) comprises a mounting plate (201), the left side of the mounting plate (201) is mounted on the right side of the controller (106), the right side of the inner cavity of the mounting plate (201) is movably connected to a rotating plate 1 (205) and a rotating plate 2 (209), the back side of the rotating plate 1 (205) is fixedly connected to a semi-ring plate 1 (204), the front side of the rotating plate 2 (209) is fixedly connected to a semi-ring plate 2 (208), the back side of the semi-ring plate 1 (204) and the front side of the semi-ring plate 2 (208) are both movably connected to the surface of the rod body (101), and the semi-ring plate 1 The top and bottom of the right side of (204) are fixedly connected with a connecting plate 1 (206), the top and bottom of the right side of the semi-ring plate 2 (208) are fixedly connected with a connecting plate 2 (207), the right side of the connecting plate 1 (206) is installed with a shell 2 (213), the right side of the connecting plate 2 (207) is installed with a shell 1 (210), the top of the inner cavity of the shell 2 (213) and the shell 1 (210) are movably connected with a semi-circular plate 1 (214), and the bottom of the inner cavity of the shell 2 (213) and the shell 1 (210) are movably connected with a semi-circular plate 2 (217).
2. The anti-slip mineral resource exploration and detection equipment according to claim 1 is characterized in that: The inner cavity of the mounting plate (201) is fixedly connected to a rotating shaft (202), and the surface of the rotating shaft (202) is movably connected to the inner cavities of rotating plate 1 (205) and rotating plate 2 (209), respectively. The four corners of the inner cavity of the mounting plate (201) are installed with mounting columns (203), and the left side of the mounting plate (201) is fixedly connected to the right side of the controller (106) through the mounting columns (203).
3. The anti-slip mineral resource exploration and detection equipment according to claim 1 is characterized in that: The top of the surface of the semicircular plate 1 (214) is fixedly connected to the limiting ring 1 (215), the bottom of the surface of the semicircular plate 2 (217) is fixedly connected to the limiting ring 2 (216), the inner cavities of the connecting plate 1 (206) and the connecting plate 2 (207) are both provided with a sliding groove (212), the bottom of the front side of the limiting ring 2 (216) is fixedly connected to the pulling plate 2 (221), the front side of the pulling plate 2 (221) penetrates to the front side of the shell 2 (213), A pull plate 1 (219) is fixedly connected to the top of the back side of the limiting ring 1 (215), and the back side of the pull plate 1 (219) extends through the back side of the outer shell 1 (210). The left sides of the pull plate 2 (221) and the pull plate 1 (219) are fixedly connected to a slide column (222), and the left side of the slide column (222) extends through the inner cavity of the slide groove (212) and is fixedly connected to a slider (223), and the surface of the slider (223) is movably connected to the inner cavity of the slide groove (212).
4. The anti-slip mineral resource exploration and detection equipment according to claim 1, characterized in that: The front side of the inner cavity of the second shell (213) and the back side of the inner cavity of the first shell (210) are fixedly connected with a guide column (218), and the surface of the guide column (218) is sleeved with a spring (220), and the top of the spring (220) is respectively fixedly connected to the bottom of the pull plate (219) and the top of the inner cavity of the second shell (213), and the bottom of the spring (220) is respectively fixedly connected to the top of the pull plate (221) and the bottom of the inner cavity of the first shell (210), and the top and bottom of the inner cavities of the second shell (213) and the first shell (210) are both installed with mounting rods (211), and the left sides of the second shell (213) and the first shell (210) are respectively fixedly connected to the right sides of the connecting plate (206) and the second connecting plate (207) through the mounting rod (211).
5. The anti-slip mineral resource exploration and detection equipment according to claim 1, characterized in that: The top of the detection head (108) is fixedly connected to a base (109), the inner cavity of the base (109) is movably connected to a rotating sleeve (110), the top of the rotating sleeve (110) is fixedly connected to the bottom of the rod body (101), the inner cavities of the base (109) and the rotating sleeve (110) are both movably connected to an insertion rod (112), the front side and the back side of the surface of the insertion rod (112) are both movably connected to a fixing plate (111), the surface of the rod body (101) is sleeved with a connecting line (107), the bottom of the connecting line (107) is connected to the detection head (108), and the top of the detection head (108) is connected to the bottom of the controller (106).
6. The anti-slip mineral resource exploration and detection equipment according to claim 1, characterized in that: A fixing sleeve (103) is fixedly connected to the top of the surface of the rod body (101), a support plate (105) is fixedly connected to the left side of the fixing sleeve (103), a binding strap (104) is movably connected to the inner cavity of the support plate (105), and the binding strap (104) is made of elastic material, and an anti-slip sleeve (102) is fixedly connected to the surface of the rod body (101), and the anti-slip sleeve (102) is fixedly connected to the surface of the rod body (101).
7. The anti-slip mineral resource exploration and detection equipment according to claim 1, characterized in that: The bottom of the right side of the connecting plate 1 (206) and the top of the right side of the connecting plate 2 (207) are both provided with a fixing mechanism (3), and the fixing mechanism (3) includes a positioning rod (301), the left side of the positioning rod (301) is fixedly connected to the right side of the connecting plate 1 (206) and the connecting plate 2 (207), and the surface of the positioning rod (301) is movably connected to a fixing hook (305), and the inner side of the fixing hook (305) is movably connected to the installation rod (211).
8. The anti-slip mineral resource exploration and detection equipment according to claim 7, characterized in that: The outer side of the fixing hook (305) is fixedly connected to spring 2 (304), the outer side of spring 2 (304) is fixedly connected to a support block (303), the left side of the support block (303) is fixedly connected to the right sides of connecting plate 1 (206) and connecting plate 2 (207), and the right side of the positioning rod (301) is fixedly connected to a limiting plate (302).