A miniature, low-destructive, rapid cutting device

By utilizing the cutting, adjustment, and limiting mechanisms of the micro-destructive rapid cutting equipment, the problems of long cutting time and clamping damage for stalagmite samples have been solved, achieving efficient and precise cutting and waste collection.

CN119748658BActive Publication Date: 2026-03-06INST OF EARTH ENVIRONMENT CHINESE ACAD OF SCI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Existing stalagmite cutting equipment suffers from problems such as long cutting time, difficulty in meeting the requirements of high-resolution, rapid, and precise cutting, and easy damage to stalagmite samples during clamping.

Method used

The equipment employs a miniature, low-damage, rapid cutting device, which includes a cutting mechanism, an adjustment mechanism, and a limiting mechanism. The limiting mechanism stabilizes the position of the stalagmite sample, while the adjustment mechanism and drive motor drive the saw blade for precise cutting. A liquid collection frame collects the waste material.

Benefits of technology

It enables efficient and precise cutting of stalagmite samples, prevents clamping damage, improves cutting efficiency, and facilitates the installation of cooling equipment and collection of cutting waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of cutting equipment technology, and more particularly to a miniature, low-destruction, rapid cutting device, comprising: a cutting mechanism, which includes a base, side plates, a mounting plate, first moving rails, a moving stage, a mounting seat, and a drive motor. Two side plates are provided, both fixedly connected to the top of the base. The mounting plate is fixedly connected to the opposite outer surfaces of the two side plates by bolts. Two first moving rails are provided, both fixedly connected to one outer surface of the mounting plate. In use, according to the actual specifications of the stalagmite sample and the required cutting location, the limiting mechanism is inserted into the top of the carrier plate through a rotating seat and positioning holes. Then, by rotating the push rods, the two rotating push rods drive the two push pieces to gradually approach each other, allowing the plastic patch to adhere tightly to both ends of the stalagmite sample under the support of the push pieces and clamping blocks. Finally, by rotating the locking bolts, the locking bolts can press and adhere to the outer surface of the corresponding push piece.
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Description

Technical Field

[0001] This invention belongs to the field of cutting equipment technology, specifically a miniature, low-damage, rapid cutting device. Background Technology

[0002] Stalagmites are formed when water rich in calcium bicarbonate drips from fissures in the cave ceiling or from stalactites to the cave floor. This process occurs due to both water evaporation and the lower CO2 partial pressure inside the cave compared to water. As a result, dissolved CO2 escapes, causing calcium carbonate to precipitate and deposit at the cave floor. Over time, stalagmites grow upwards, while stalactites grow downwards. Stalagmites resemble bamboo shoots emerging from the ground. Collecting stalagmites, cutting and processing samples, and then testing their age and stable isotopes can be used for climate change research.

[0003] However, in the existing technology, most stalagmite cutting equipment uses diamond wire cutting machines. Although diamond wire cutting machines can meet the requirements of micro-destruction cutting by selecting the diameter of the diamond wire, the actual cutting time is relatively long. As a result, diamond wire cutting machines cannot meet the actual needs of high-resolution, rapid and precise cutting. At the same time, since the stalagmite sample is a cone-shaped pile structure and the material hardness of the stalagmite sample is not good, it is easily subjected to compression and wear from the clamping parts with higher hardness. This makes it impossible to clamp and limit the stalagmite sample relatively stably during the actual cutting process. At the same time, excessive clamping force can easily damage the stalagmite sample, resulting in poor actual performance of existing stalagmite cutting equipment. Summary of the Invention

[0004] The purpose of this invention is to provide a miniature, low-damage, rapid cutting device that can efficiently and precisely cut stalagmite samples, while also firmly fixing and restricting the position of the stalagmite samples during the cutting process and effectively preventing clamping damage to the stalagmite samples.

[0005] The technical solution adopted in this invention is as follows: A miniature, low-damage, rapid cutting device includes: a cutting mechanism, which includes a base, side plates, a mounting plate, a first moving rail, a moving stage, a mounting seat, and a drive motor. Two side plates are provided, both fixedly connected to the top of the base. The mounting plate is bolted between the opposite outer surfaces of the two side plates. Two first moving rails are provided, both fixedly connected to one outer surface of the mounting plate. The moving stage is slidably sleeved between the outer surfaces of the two first moving rails. The mounting seat is fixedly connected to one outer surface of the moving stage. A saw blade is sleeved on the output end of the drive motor.

[0006] An adjusting mechanism, mounted on the cutting mechanism, includes a first adjusting platform, a connecting seat, adjusting rails, a second adjusting platform, and adjusting components. The connecting seat is bolted to the top of the first adjusting platform. Two adjusting rails are provided, each inserted into the outer surface of one side of the connecting seat. The second adjusting platform is slidably fitted between the outer surfaces of the two adjusting rails. A carrier plate is fixedly connected to the top of the second adjusting platform, and the carrier plate has multiple positioning holes on its top. The adjusting components are mounted on the first and second adjusting platforms.

[0007] The limiting mechanism is provided in two sets. Each set of the limiting mechanism includes a rotating seat, a push rod, a push plate and a clamping component. The rotating seat is inserted into the top of the carrier plate through a positioning hole. The push rod is threaded to the outer surface of one side of the rotating seat. The push plate is rotatably connected to one end of the push rod. The clamping component is provided on the push plate.

[0008] The base has a liquid collection frame fixedly connected to its bottom, and a second moving rail is fixedly connected to the top of the base near both sides.

[0009] The mounting plate has two first support seats fixedly connected to one side of its outer surface, and a first moving rod rotatably connected between the two first support seats. The base has two second support seats fixedly connected to its top, and a second moving rod rotatably connected between the two second support seats.

[0010] The first moving rod and the moving table are threadedly connected, and the outer surfaces of both sides of the moving table are threadedly connected with first positioning bolts. One end of each first positioning bolt is attached to the outer surface of the corresponding first moving rail.

[0011] The drive motor is fitted with a transparent frame on its outer surface, and the mounting plate is fixedly connected to a mounting frame on the other side of its outer surface.

[0012] The adjusting component includes an adjusting rod, two second positioning bolts, and two third support seats. The two second positioning bolts are respectively threaded to the outer surfaces of the two sides of the first adjusting platform. The two third support seats are fixedly connected to the bottom of the second adjusting platform. The adjusting rod is rotatably connected between the interiors of the two third support seats. The adjusting rod and the connecting seat are threaded together.

[0013] The first adjustment platform is slidably sleeved between the outer surfaces of the two second moving rails, and one end of each second positioning bolt is in contact with the outer surface of the corresponding second moving rail.

[0014] Each set of clamping components includes a plastic patch and two clamping blocks. The two clamping blocks are fixedly connected to the outer surface of the corresponding push plate, and the plastic patch is inserted between the opposite outer surfaces of the two clamping blocks.

[0015] Each of the rotating seats has a bolt threaded onto one side of its outer surface, and one end of each bolt is in contact with the outer surface of the corresponding push plate.

[0016] A method for using a miniature, low-destructive, rapid cutting device includes the following steps:

[0017] S1. Positioning: Based on the actual specifications of the stalagmite sample and the required cutting area, the limiting mechanism is inserted into the top of the carrier plate through the rotating seat and positioning hole. At this time, by rotating the push rod, the two push rods drive the two push pieces to gradually approach each other, so that the plastic patch can be tightly attached to both ends of the stalagmite sample under the support of the push piece and the clamping block. Then, by rotating the latch, the latch can be pressed and attached to the outer surface of the corresponding push piece, so that the stalagmite sample can be firmly clamped between the two plastic patches. The position of the latch can be adjusted according to the actual cutting requirements, and then the rotation angle of the push piece can be adjusted again, thereby adjusting the cutting area of ​​the stalagmite sample.

[0018] S2. Cutting Adjustment: Based on actual cutting needs, the second moving rod is rotated to move the first adjusting table closer to or further away from the saw blade. Rotating the adjusting rod again moves the second adjusting table along the saw blade's cutting direction. During this movement, the stalagmite sample at the top of the carrier plate is moved to a position below the saw blade. The drive motor is then activated, causing the saw blade to rotate at high speed. Rotating the first moving rod adjusts the height of the adjusting table, which, in conjunction with the mounting base, adjusts the height of the drive motor. This allows for control of the depth of the saw blade's cut on the stalagmite sample. Simultaneously, rotating the adjusting rod, driven by the second adjusting table, allows the saw blade to perform longer cuts. Combined with rotating the adjusting blade to adjust the pusher angle, efficient cutting of the stalagmite sample in different directions is possible.

[0019] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:

[0020] (1) In this invention, when in use, according to the actual specifications of the stalagmite sample and the actual required cutting part, the limiting mechanism is inserted into the top of the carrier plate through the rotating seat and positioning hole. At this time, by rotating the push rod, the two rotating push rods drive the two push plates to gradually approach each other, so that the plastic patch can be tightly attached to both ends of the stalagmite sample under the support of the push plate and the clamping block. Then, by rotating the latch, the latch can be squeezed and attached to the outer surface of the corresponding push plate, so that the stalagmite sample can be firmly clamped between the two plastic patches. Then, according to the actual cutting requirements, the position of the latch can be adjusted, and then the rotation angle of the push plate can be adjusted again, so as to facilitate the adjustment of the cutting part of the stalagmite sample and improve the actual cutting efficiency.

[0021] (2) In this invention, during use, according to actual cutting needs, the second moving rod is rotated and adjusted so that the rotating second moving rod can drive the first adjusting table closer to or away from the saw blade. Then, by rotating the adjusting rod, the second adjusting table can be moved along the cutting direction of the saw blade. During the movement of the first and second adjusting tables, the stalagmite sample located at the top of the carrier plate can move the part to be cut below the saw blade. At this time, by controlling the start of the drive motor, the drive motor can drive the saw blade to rotate at high speed. Then, by rotating the first moving rod, the height of the moving table can be adjusted. Then, the moving table, together with the mounting base, can adjust the height of the drive motor. This allows control over the depth of the saw blade cutting the stalagmite sample. At the same time, by rotating the adjusting rod, the saw blade can perform a longer cutting process under the drive of the second adjusting table. Simultaneously, by rotating and adjusting the angle of the pusher blade, the stalagmite sample can be cut efficiently in different directions. This allows the equipment to quickly perform fine cutting of the stalagmite sample and efficiently realize its intended functions.

[0022] (3) In this invention, when in use, the existing electronic equipment is installed and set up through the mounting frame, which facilitates the control and adjustment of the operating status of the drive motor. The existing cooling equipment of different specifications can be installed and set up conveniently and synchronously through the carrier plate, which can efficiently perform cooling treatment during cutting. At the same time, under the obstruction of the transparent frame, the waste generated during the cutting process can be collected and treated in the liquid collection frame, preventing the waste generated during the cutting process from affecting the surrounding environment and operators, so that the equipment can efficiently realize its intended functions. Attached Figure Description

[0023] Figure 1 This is a first-view perspective perspective view of the present invention;

[0024] Figure 2 This is a second-view perspective perspective view of the present invention;

[0025] Figure 3 This is a third-view perspective view of the present invention;

[0026] Figure 4 This is a perspective view of the cutting mechanism of the present invention;

[0027] Figure 5 This is a perspective view of the adjustment mechanism of the present invention;

[0028] Figure 6 This is a perspective view of the adjustment mechanism of the present invention.

[0029] Figure 7 This is a perspective view of the limiting mechanism of the present invention.

[0030] Figure 8 For the present invention Figure 7 Enlarged view of section A in the middle.

[0031] The diagram shows the following markings: 1. Cutting mechanism; 101. Base; 102. Liquid collection frame; 103. Second moving rail; 104. Second support seat; 105. Second moving rod; 106. Side plate; 107. Mounting plate; 108. First support seat; 109. Mounting frame; 110. First moving rod; 111. First moving rail; 112. Moving table; 113. Mounting seat; 114. Drive motor; 115. Saw blade; 116. Transparent cover frame; 2. Adjustment mechanism; 201. First adjustment table; 202. Connecting seat; 203. Adjustment rail; 204. Second adjustment table; 205. Third support seat; 206. Adjustment rod; 207. Carrier plate; 208. Second positioning bolt; 3. Limiting mechanism; 301. Rotating seat; 302. Push rod; 303. Push plate; 304. Clamping block; 305. Plastic patch; 306. Locking bolt. Detailed Implementation

[0032] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0033] Example 1, please refer to Figures 1-3 A miniature, low-damage, rapid cutting device, comprising a cutting mechanism 1, an adjusting mechanism 2, and a limiting mechanism 3.

[0034] The details are as follows:

[0035] Please see Figure 4The cutting mechanism 1 includes a base 101, side plates 106, a mounting plate 107, first moving rails 111, a moving stage 112, a mounting base 113, and a drive motor 114. Two side plates 106 are provided, both fixedly connected to the top of the base 101. The mounting plate 107 is bolted between the opposing outer surfaces of the two side plates 106. Two first moving rails 111 are provided, both fixedly connected to one outer surface of the mounting plate 107. The moving stage 112 is slidably mounted on the two first moving rails 111. Between the outer surfaces, the mounting base 113 is fixedly connected to one side of the outer surface of the moving table 112. The output end of the drive motor 114 is fitted with a saw blade 115. A liquid collection frame 102 is fixedly connected to the bottom of the base 101. Second moving rails 103 are fixedly connected to the top of the base 101 near both sides. Two first support seats 108 are fixedly connected to one side of the outer surface of the mounting plate 107. A first moving rod 110 is rotatably connected between the two first support seats 108. Two second support seats 104 are fixedly connected to the top of the base 101. The two second support seats 104 are internally connected to... A second moving rod 105 is rotatably connected between the first moving rod 110 and the moving table 112. First positioning bolts are threaded onto the outer surfaces of both sides of the moving table 112. One end of each first positioning bolt is fitted to the outer surface of one side of the corresponding first moving rail 111. A transparent cover frame 116 is fitted onto the outer surface of the drive motor 114. A mounting frame 109 is fixedly connected to the outer surface of the mounting plate 107 on the other side. By controlling the start of the drive motor 114, the drive motor 114 can drive the saw blade 115 to rotate at high speed, thereby rotating the first moving rod 110. The rotating first moving rod 110 can move and adjust the height of the moving table 112, which in turn allows the moving table 112, in conjunction with the mounting base 113, to move and adjust the height of the drive motor 114. This, in turn, allows control over the depth of the saw blade 115 in cutting the stalagmite sample. Simultaneously, during the cutting process, by rotating the adjusting rod 206, the saw blade 115 can perform a longer cutting distance under the drive of the second adjusting table 204. Furthermore, by rotating and adjusting the angle of the pusher 303, the stalagmite sample can be cut efficiently in different directions.

[0036] Please see Figure 5 and Figure 6The adjustment mechanism 2 is mounted on the cutting mechanism 1. The adjustment mechanism 2 includes a first adjustment platform 201, a connecting seat 202, an adjustment rail 203, a second adjustment platform 204, and adjustment components. The connecting seat 202 is fixedly connected to the top of the first adjustment platform 201 by bolts. Two adjustment rails 203 are provided, each inserted into the outer surface of one side of the connecting seat 202. The second adjustment platform 204 is slidably sleeved between the outer surfaces of the two adjustment rails 203. A carrier plate 207 is fixedly connected to the top of the second adjustment platform 204, and the carrier plate 207 has multiple positioning holes on its top. The adjustment components are mounted on the first adjustment platform 201 and the second adjustment platform 204. The adjustment components include an adjustment rod 206, two second positioning bolts 208, and two third support seats 205. The two second positioning bolts 208 are threadedly connected to the outer surfaces of both sides of the first adjustment platform 201, and the two third support seats 205 are threadedly connected to the outer surfaces of both sides of the first adjustment platform 201. The base 205 is fixedly connected to the bottom of the second adjustment platform 204. The adjustment rod 206 is rotatably connected between the two third support bases 205. The adjustment rod 206 and the connecting base 202 are threadedly connected. The first adjustment platform 201 is slidably sleeved between the outer surfaces of the two second moving rails 103. One end of each second positioning bolt 208 is in contact with the outer surface of the corresponding second moving rail 103. By rotating the second moving rod 105, the rotating second moving rod 105 can drive the first adjustment platform 201 to move closer to or away from the saw blade 115. Then, by rotating the adjustment rod 206, the rotating adjustment rod 206 can drive the second adjustment platform 204 to move along the cutting direction of the saw blade 115. Thus, during the position movement of the first adjustment platform 201 and the second adjustment platform 204, the stalagmite sample located on the top of the carrier plate 207 can move the part to be cut to below the saw blade 115.

[0037] Please see Figure 7 and Figure 8The limiting mechanism 3 consists of two sets. Each set of limiting mechanisms 3 includes a rotating seat 301, a push rod 302, a push plate 303, and a clamping component. The rotating seat 301 is inserted into the top of the carrier plate 207 through a positioning hole. The push rod 302 is threaded to one side of the outer surface of the rotating seat 301. The push plate 303 is rotatably connected to one end of the push rod 302. The clamping component is disposed on the push plate 303. Each set of clamping components includes a plastic patch 305 and two clamping blocks 304. The two clamping blocks 304 are fixedly connected to one side of the outer surface of the corresponding push plate 303. The plastic patch 305 is inserted between the opposite outer surfaces of the two clamping blocks 304. Each rotating seat 301 has a bolt 306 threadedly connected to one side of its outer surface. One end of each bolt 306 is connected to the corresponding push plate. The outer surface of one side of 303 is fully attached. The limiting mechanism 3 is inserted into the top of the carrier plate 207 through the rotating seat 301 and the positioning hole. At this time, by rotating the push rod 302, the two push rods 302 drive the two push plates 303 to gradually approach each other. Then, the plastic patch 305 can be tightly attached to both ends of the stalagmite sample under the support of the push plate 303 and the clamping block 304. Then, by rotating the latch 306, the latch 306 can be squeezed and attached to the outer surface of the corresponding push plate 303, so that the stalagmite sample can be firmly clamped between the two plastic patches 305. The position of the latch 306 can be adjusted according to the actual cutting requirements, and then the rotation angle of the push plate 303 can be adjusted again, so as to facilitate the adjustment of the cutting part of the stalagmite sample.

[0038] The following provides a detailed description of the method of using a miniature, low-destructive, rapid cutting device provided in an embodiment of the present invention. The method of use includes the following steps:

[0039] Step 1, Positioning: Based on the actual specifications of the stalagmite sample and the required cutting area, the limiting mechanism 3 is inserted into the top of the carrier plate 207 through the rotating seat 301 and the positioning hole. At this time, by rotating the push rod 302, the two rotating push rods 302 drive the two push plates 303 to gradually approach each other, so that the plastic patch 305 can be tightly attached to both ends of the stalagmite sample under the support of the push plate 303 and the clamping block 304. Then, by rotating the latch 306, the latch 306 can be pressed and attached to the outer surface of the corresponding push plate 303, so that the stalagmite sample can be firmly clamped between the two plastic patches 305. The position of the latch 306 can be adjusted according to the actual cutting requirements, and the angle of the push plate 303 can be rotated and adjusted again, so as to facilitate the adjustment of the cutting area of ​​the stalagmite sample and improve the actual cutting efficiency.

[0040] Step 2, Cutting Adjustment: Based on actual cutting requirements, the second moving rod 105 is rotated and adjusted so that it can move the first adjusting table 201 closer to or further away from the saw blade 115. Then, the adjusting rod 206 is rotated so that it can move the second adjusting table 204 along the cutting direction of the saw blade 115. During the movement of the first adjusting table 201 and the second adjusting table 204, the stalagmite sample located at the top of the carrier plate 207 can move the part to be cut below the saw blade 115. At this time, the drive motor 114 is started, causing it to drive the saw blade 115 to rotate at high speed. Then, the first moving rod 201 is rotated and adjusted so that it can move the first adjusting table 201 closer to or further away from the saw blade 115. The first moving rod 110, which rotates, can move and adjust the height of the moving table 112. In turn, the moving table 112, in conjunction with the mounting base 113, can move and adjust the height of the drive motor 114. This allows for control of the depth of the saw blade 115 in cutting the stalagmite sample. Simultaneously, during the cutting process, by rotating the adjusting rod 206, the saw blade 115 can perform longer-distance cutting under the drive of the second adjusting table 204. In conjunction with rotating and adjusting the angle of the pusher 303, the equipment can efficiently cut the stalagmite sample in different directions. This enables the equipment to quickly and precisely cut the stalagmite sample, and to efficiently perform its intended functions.

[0041] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A micro-micro fast cutting device, characterized in that, The utility model relates to cutting mechanism (1) including base (101), side plate (106), mounting plate (107), first mobile track (111), moving platform (112), mounting seat (113) and drive motor (114), two side plates (106) are provided in common, two side plates (106) are all fixedly connected to the top of base (101), the mounting plate (107) is fixedly connected between the opposite outer surfaces of two side plates (106) through bolt, two first mobile tracks (111) are provided in common, two first mobile tracks (111) are all fixedly connected to the one side outer surface of mounting plate (107), the moving platform (112) is slidably sleeved between the outer surfaces of two first mobile tracks (111), the mounting seat (113) is fixedly connected to the one side outer surface of moving platform (112), the output of drive motor (114) is sleeved with saw blade (115). Adjusting mechanism (2) is arranged on cutting mechanism (1), and adjusting mechanism (2) includes first adjusting platform (201), connecting seat (202), adjusting rail (203), second adjusting platform (204) and adjusting part, the connecting seat (202) is fixedly connected on the top of first adjusting platform (201) through bolt, two adjusting rails (203) are provided in common, two adjusting rails (203) are all inserted to the one side outer surface of connecting seat (202), the second adjusting platform (204) is slidably sleeved between the outer surfaces of two adjusting rails (203), the top of second adjusting platform (204) is fixedly connected with the load plate (207), a plurality of positioning holes are formed in the top of load plate (207), and the adjusting part is arranged on first adjusting platform (201) and second adjusting platform (204). Limiting mechanism (3) is provided in two groups, each group of limiting mechanism (3) includes rotating seat (301), push rod (302), push piece (303) and clamping part, the rotating seat (301) is inserted into the top of load plate (207) through the positioning hole, the push rod (302) is threadedly connected to the one side outer surface of rotating seat (301), the push piece (303) is rotatably connected to one end of push rod (302), the clamping part is arranged on the push piece (303), each group of clamping parts includes plastic patch (305) and two clamping blocks (304), two clamping blocks (304) are all fixedly connected to the one side outer surface of corresponding push piece (303), the plastic patch (305) is inserted between the opposite outer surfaces of two clamping blocks (304), the one side outer surface of each rotating seat (301) is threadedly connected with a clamping bolt (306), and one end of each clamping bolt (306) and the one side outer surface of corresponding push piece (303) are attached. The bottom of base (101) is fixedly connected with liquid collecting frame (102), and the top of base (101) is fixedly connected with second mobile track (103) near both side edges.

2. A micro-micro fast cutting device as claimed in claim 1, characterized in that: ​ 3. A micro-micro fast cutting device as claimed in claim 2, characterized in that: Two first supporting bases (108) are fixedly connected to one side of the outer surface of the mounting plate (107), and a first moving rod (110) is rotatably connected between the interiors of the two first supporting bases (108).

4. A micro-micro fast cutting device as claimed in claim 3, characterized in that: The first moving rod (110) and the moving table (112) are threadedly connected, the outer surfaces of the two sides of the moving table (112) are both threadedly connected with first positioning pegs, and one end of each first positioning peg is attached to the outer surface of one side of a corresponding first moving rail (111).

5. A micro-micro fast cutting device as claimed in claim 4, characterized in that: The outer surface of the driving motor (114) is sleeved with a transparent cover (116), and the other side of the outer surface of the mounting plate (107) is fixedly connected with a mounting frame (109).

6. A micro-micro fast cutting device as claimed in claim 5, characterized in that: The adjusting component comprises an adjusting rod (206), two second positioning pegs (208) and two third supporting bases (205), the two second positioning pegs (208) are threadedly connected to the outer surfaces of the two sides of a first adjusting table (201) respectively, the two third supporting bases (205) are both fixedly connected to the bottom of a second adjusting table (204), the adjusting rod (206) is rotatably connected between the interiors of the two third supporting bases (205), and the adjusting rod (206) is threadedly connected with a connecting base (202).

7. A micro-micro fast cutting device as claimed in claim 6, characterized in that: The first adjusting table (201) is sleeved between the outer surfaces of the two second moving rails (103), and one end of each second positioning peg (208) is attached to the outer surface of one side of a corresponding second moving rail (103).

8. A method of using a micro-micro fast cutting device, characterized in that, The micro micro-loss rapid cutting device is applied to the micro micro-loss rapid cutting device in claim 7 and comprises the following steps. S1, position placement: according to the actual specifications and the actual required cutting parts of the stalagmite sample, the limiting mechanism (3) is inserted into the top of the carrier plate (207) through the rotating seat (301) and the positioning hole, at this time, the two rotating push rods (302) drive the two push pieces (303) to gradually approach by rotating the push rod (302), and then the plastic patch (305) can be tightly attached to the two ends of the stalagmite sample under the support of the push piece (303) and the clamping block (304), and then the clamping block (306) can be extruded and attached to the outer surface of one side of a corresponding push piece (303) by rotating the clamping block (306), so that the stalagmite sample can be stably clamped between the two plastic patches (305), and then the position of the clamping block (306) can be adjusted according to the actual cutting requirement, and then the rotation adjustment of the angle of the push piece (303) can be performed again, so as to adjust the cutting part of the stalagmite sample. S2, cutting adjustment: according to the actual cutting demand, then through the rotation adjustment second moving rod (105), make the rotating second moving rod (105) can drive the first adjustment platform (201) close to or away from the saw blade (115), again through the rotation adjustment rod (206), make the rotating adjustment rod (206) can drive the second adjustment platform (204) along the saw blade (115) cutting direction movement, then in the first adjustment platform (201) and the second adjustment platform (204) position movement process, make the stalagmite sample located at the top of the carrier plate (207) can move the part to be cut to the lower side of the saw blade (115), at this time through the control start drive motor (114), make the drive motor (114) can drive the saw blade (115) high speed rotation, then through the rotation first moving rod (110), make the rotating first moving rod (110) can move the adjustment moving platform (112) use height, then make the moving platform (112) cooperate with the mounting seat (113) can move the adjustment drive motor (114) use height, then can control the adjustment saw blade (115) to the stalagmite sample cutting part depth regulation and control, at the same time in the cutting process through the rotation adjustment rod (206), then under the drive of the second adjustment platform (204), make the saw blade (115) can carry on the longer distance cutting processing, at the same time cooperate with the rotation adjustment push piece (303) use angle, then can efficiently carry on the stalagmite sample different direction cutting processing.

Citation Information

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