Metal block slitting device for metal analysis
The sample is stably held by the vertical clamping component and the side top component of the clamping stage, and the debris is collected by the blade cover and the chip-blocking curtain. This solves the safety hazards and precious metal loss problems when cutting metal samples, and realizes a safe and efficient cutting operation.
Patent Information
- Application Number
- CN202422918175.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-11-28
AI Technical Summary
Metal samples are difficult to hold stably during cutting, and flying precious metal fragments cause damage and safety hazards. Existing equipment is inconvenient to operate.
The sample is held by a vertical clamping assembly and a side-top assembly on the clamping table, and debris is collected by a blade cover and a chip-blocking curtain to prevent splashing.
It effectively prevents samples from flying out and causing injury, reduces the loss of precious metals, and improves operational safety and convenience.
Smart Images

Figure CN223512997U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of metal cutting technology, and in particular relates to a metal block cutting device for metal analysis. Background Technology
[0002] Metal samples need to be cut into small pieces before content analysis. However, due to the irregular shape of the samples, it is difficult to cut along the required tangent line. Therefore, repeated alignment and cutting are necessary, which is inconvenient. Furthermore, there is a risk of sample pieces flying out under the high-speed rotation of the blade during cutting, causing injury to personnel. In addition, when cutting precious metals such as gold and palladium, the resulting debris is extremely difficult to recover and causes loss of precious metals, resulting in economic losses.
[0003] To address these issues, we provide a metal block slitting device for metal analysis. Utility Model Content
[0004] The purpose of this invention is to provide a metal block cutting device for metal analysis. The sample is held by the moving and fixed clamping arms in the vertical clamping assembly on the clamping table, and one end of the sample is supported by the top receiving plate at one end of the side top slider in the side top assembly, preventing the cut and separated parts from flying out under the rotation of the cutting blade and causing injury to personnel. By covering the outside of the cutting blade with a blade cover, the debris generated when cutting precious metals is blocked by the blade cover and falls down from the debris port of the clamping table along the chip-blocking curtains on both sides, so as to facilitate the collection of debris and reduce the loss of precious metals and economic losses.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] This utility model relates to a metal block cutting device for metal analysis, comprising a clamping table and a cutting component. The clamping table includes a vertical clamping assembly and a side-top assembly. The cutting component includes a cutting motor, a pushing cylinder, and a debris anti-splash assembly. A vertical plate is fixedly mounted on one side of the clamping table, and a horizontal plate is fixedly mounted on the top of the vertical plate. The horizontal plate is fixed on the side of the vertical plate near the clamping table. The pushing cylinder is mounted above the horizontal plate, and its telescopic end extends downward through the horizontal plate. A motor sleeve is fixedly fitted to the outside of the cutting motor, and the telescopic end of the pushing cylinder is fixedly connected to the outside of the motor sleeve. A cutting blade is fixedly mounted on the output shaft of the cutting motor, with the output shaft facing away from the vertical plate. The debris anti-splash assembly is fixed to one end of the output shaft of the cutting motor and fitted onto the outside of the cutting blade. The vertical clamping assembly is mounted on the clamping table at the end away from the vertical plate, and the side-top assembly is mounted on the surface of the vertical plate.
[0007] The present invention is further configured such that a motor sleeve groove is provided on the side of the vertical plate near the horizontal plate, and the motor sleeve is slidably installed in the motor sleeve groove.
[0008] The present invention is further configured such that the vertical clamping assembly includes a fixed clamping arm and a movable clamping arm. One end of the fixed clamping arm is fixedly provided with a clamping arm seat, and the bottom end of the clamping arm seat is fixedly provided with a fixing post. The bottom end of the fixing post is fixedly installed on the table surface of the clamping platform. The clamping arm seat has a movable clamping arm slide groove above the fixed clamping arm, and one end of the movable clamping arm is slidably installed in the movable clamping arm slide groove.
[0009] The present invention is further configured such that the vertical clamping assembly includes a vertical lead screw, a vertical transition partition is fixedly provided on the upper side of the movable clamping arm, a through hole is provided on the plate surface of the vertical transition partition, one end of the vertical lead screw is rotatably installed in the through hole of the vertical transition partition, and a threaded through hole is provided at the top of the movable clamping arm slide groove of the clamping arm seat, and the vertical lead screw spirally passes through the threaded through hole.
[0010] The present invention is further configured such that a clamping head is fixedly provided at one end of the fixed clamping arm and the movable clamping arm near the cutting blade, one side of the clamping head is an inner arc surface, the inner arc surface of the clamping head at one end of the fixed clamping arm faces upward, and the inner arc surface of the clamping head at one end of the movable clamping arm faces downward.
[0011] The present invention is further configured such that a guide post is fixedly provided on the upper surface of the plate at the end of the fixed clamping arm away from the clamping head, and a through hole is provided on the plate at the end of the movable clamping arm away from the clamping head, and the through hole on the plate of the movable clamping arm is slidably sleeved on the guide post.
[0012] The present invention is further configured such that the side top assembly includes a side top slider and a transverse lead screw. A set of slide rods is fixed on the end of the vertical plate near the horizontal plate. The side top slider is slidably sleeved on the slide rods. A threaded through hole is opened on the surface of the vertical plate. A transverse transition partition is fixed on the side of the side top slider near the vertical plate. One end of the transverse lead screw is rotatably installed in the transverse transition partition. The transverse lead screw spirally passes through the threaded through hole on the surface of the vertical plate. A top receiving plate is fixed on the side of the side top slider away from the vertical plate.
[0013] The present invention is further configured such that the debris anti-splash assembly includes a blade cover, which is a semi-circular shell shape. One side of the blade cover is fixed to one end of the cutting motor, and the opening end of the blade cover is vertically downward. On the two end plates of the blade cover, chip-blocking edges are fixed on both sides of the opening end. A chip-blocking curtain is fixedly installed between the two chip-blocking edges on each side of the blade cover.
[0014] The present invention is further configured such that a chip outlet is provided on the table surface of the clamping table, and the chip-blocking edges on both sides of the blade cover are slidably fitted into the chip outlet.
[0015] This utility model has the following beneficial effects:
[0016] This invention uses the moving and fixed clamping arms in the vertical clamping assembly on the clamping platform to hold the sample, and uses the top receiving plate at one end of the side top slider in the side top assembly to abut one end of the sample, preventing the cut and separated part from flying out under the rotation of the cutting blade and causing injury to personnel.
[0017] This invention features a blade cover over the outside of the cutting blade. When cutting precious metals, the flying debris generated by the blade cover is blocked by the blade cover and falls down from the debris port of the clamping table along the chip-blocking curtains on both sides, so as to facilitate the collection of debris and reduce the loss of precious metals and economic losses.
[0018] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0019] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a schematic diagram of a metal block cutting device used for metal analysis.
[0021] Figure 2 This is an exploded view of the cut component.
[0022] Figure 3 This is an exploded view of the vertical clamping assembly.
[0023] Figure 4 This is a schematic diagram of the installation of the side-top assembly.
[0024] Figure 5 This is a schematic diagram of the installation of the cutting components.
[0025] The attached diagram lists the components represented by each number as follows:
[0026] 1-Clamping platform, 101-Vertical clamping assembly, 101a-Fixed clamping arm, 101a-1-Clamping arm seat, 101a-2-Fixed post, 101a-3-Moving clamping arm slide, 101a-4-Guide post, 101b-Moving clamping arm, 101b-1-Vertical lead screw, 101b-2-Vertical transition partition, 101c-Clamping head, 102-Side top assembly, 102a-Side top slider, 102a-1-Transverse lead screw, 102a- 2- Horizontal transfer partition, 102a-3- Top receiving plate, 102b- Slide rod, 103- Vertical plate, 103a- Horizontal plate, 103b- Motor sleeve slide groove, 104- Crusher opening, 2- Cutting component, 201- Cutting motor, 201a- Motor sleeve, 201b- Cutting blade, 202- Push cylinder, 203- Crusher anti-splash assembly, 203a- Blade cover, 203a-1- Chip-blocking edge, 203a-2- Chip-blocking curtain. Detailed Implementation
[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model. Example 1
[0028] Please see Figures 1 to 4 This utility model is a metal block cutting device for metal analysis, including a clamping table 1 and a cutting component 2. The clamping table 1 includes a vertical clamping assembly 101 and a side-top assembly 102. The cutting component 2 includes a cutting motor 201, a pushing cylinder 202 and a debris anti-splash assembly 203. The sample is clamped by the moving clamping arm 101b and the fixed clamping arm 101a in the vertical clamping assembly 101 on the clamping table 1, and one end of the sample is supported by the top receiving plate 102a-3 at one end of the side-top slider 102a in the side-top assembly 102, to prevent the cut and separated part from flying out under the rotation of the cutting blade 201b and causing injury to personnel.
[0029] Specifically, a vertical plate 103 is fixedly mounted on one side of the table surface of the clamping table 1, and a horizontal plate 103a is fixedly mounted on the top of the vertical plate 103. The horizontal plate 103a is fixed on the side of the vertical plate 103 near the clamping table 1. A push cylinder 202 is installed above the horizontal plate 103a, and the telescopic end of the push cylinder 202 extends downward through the horizontal plate 103a. A motor sleeve 201a is fixedly fitted on the outside of the cutting motor 201. The telescopic end of the push cylinder 202 is fixedly connected to the outside of the motor sleeve 201a. A cutting blade 201b is fixedly mounted on the output shaft of the cutting motor 201. The output shaft of the cutting motor 201 faces away from the vertical plate 103. A debris anti-splash assembly 203 is fixed to one end of the output shaft of the cutting motor 201 and fitted on the outside of the cutting blade 201b. A vertical clamping assembly 101 is installed on the table surface of the clamping table 1 at the end away from the vertical plate 103. A side-top assembly 102 is installed on the surface of the vertical plate 103.
[0030] Furthermore, a motor sleeve groove 103b is provided on the side of the vertical plate 103 near the horizontal plate 103a, and the motor sleeve 201a is slidably installed in the motor sleeve groove 103b to stabilize the lifting and lowering of the cutting motor 201.
[0031] Furthermore, the vertical clamping assembly 101 includes a fixed clamping arm 101a and a movable clamping arm 101b. One end of the fixed clamping arm 101a is fixedly provided with a clamping arm seat 101a-1, and the bottom end of the clamping arm seat 101a-1 is fixedly provided with a fixing post 101a-2. The bottom end of the fixing post 101a-2 is fixedly installed on the table surface of the clamping platform 1. The clamping arm seat 101a-1 has a movable clamping arm slide groove 101a-3 above the fixed clamping arm 101a. One end of the movable clamping arm 101b is slidably installed in the movable clamping arm slide groove 101a-3.
[0032] Furthermore, the vertical clamping assembly 101 also includes a vertical lead screw 101b-1, a vertical transition partition 101b-2 fixed on the upper side of the movable clamping arm 101b, a through hole on the surface of the vertical transition partition 101b-2, one end of the vertical lead screw 101b-1 being rotatably installed in the through hole of the vertical transition partition 101b-2, and a threaded through hole on the top of the movable clamping arm slide groove 101a-3 of the clamping arm seat 101a-1, the vertical lead screw 101b-1 spirally passing through the threaded through hole, rotating the vertical lead screw 101b-1 causes the movable clamping arm 101b to move downward and clamp the sample with the fixed clamping arm 101a.
[0033] Furthermore, a clamping head 101c is fixedly provided at one end of the fixed clamping arm 101a and the movable clamping arm 101b near the cutting blade 201b. One side of the clamping head 101c is an inner arc surface. The inner arc surface of the clamping head 101c at one end of the fixed clamping arm 101a faces upward, and the inner arc surface of the clamping head 101c at one end of the movable clamping arm 101b faces downward.
[0034] Furthermore, a guide post 101a-4 is fixedly provided on the upper surface of the end plate of the fixed clamping arm 101a away from the clamping head 101c, and a through hole is provided on the end plate of the movable clamping arm 101b away from the clamping head 101c. The through hole on the plate of the movable clamping arm 101b is slidably sleeved on the guide post 101a-4, so that the up and down movement of the movable clamping arm 101b is stable.
[0035] Furthermore, the side-top assembly 102 includes a side-top slider 102a and a transverse lead screw 102a-1. A set of slide rods 102b are fixed on the end of the vertical plate 103 near the horizontal plate 103a. The side-top slider 102a is slidably sleeved on the slide rods 102b. A threaded through hole is opened on the surface of the vertical plate 103. A transverse transition partition 102a-2 is fixed on the side of the side-top slider 102a near the vertical plate 103. One end of the transverse lead screw 102a-1 is rotatably installed in the transverse transition partition 102a-2. The transverse lead screw 102a-1 spirally passes through the threaded through hole on the surface of the vertical plate 103. A top receiving plate 102a-3 is fixed on the side of the side-top slider 102a away from the vertical plate 103. Rotating the transverse lead screw 102a-1 causes the side-top slider 102a to move toward the sample and causes the top receiving plate 102a-3 to hold one end of the sample.
[0036] The operation process in this embodiment is as follows:
[0037] The sample is placed on the inner arc surface of the clamping head 101c at one end of the fixed clamping arm 101a. The vertical screw 101b-1 is rotated to move the movable clamping arm 101b downward in the movable clamping arm slide groove 101a-3 to clamp the sample. The horizontal screw 102a-1 is rotated to make the top receiving plate 102a-3 of the side top slider 102b abut against the side of the sample. When the cutting motor 201 cuts the sample, the top receiving plate 102a-3 abuts against the sample separated by the cutting to prevent it from being thrown out by the cutting blade 201b. Example 2
[0038] Please see Figures 1 to 5 Based on Embodiment 1, the debris anti-splash assembly 203 includes a blade cover 203a. By covering the outside of the cutting blade 201b with the blade cover 203a, the debris generated during the cutting of precious metals is blocked by the blade cover 203a and falls down from the debris port 104 of the clamping table 1 along the chip-blocking curtains 203a-2 on both sides, so as to facilitate the collection of debris and reduce the loss of precious metals and economic losses.
[0039] Specifically, the blade cover 203a is a semi-circular shell shape. One side of the blade cover 203a is fixed to one end of the cutting motor 201. The opening end of the blade cover 203a is vertically downward. On the two end plates of the blade cover 203a, chip-blocking edges 203a-1 are fixed on both sides of the opening end. A chip-blocking curtain 203a-2 is fixedly installed between the two chip-blocking edges 203a-1 on each side of the blade cover 203a.
[0040] Furthermore, a chip outlet 104 is provided on the table surface of the clamping table 1, and the chip-blocking edges 203a-1 on both sides of the blade cover 203a are slidably fitted into the chip outlet 104, and the blocked chips fall out of the chip outlet 104.
[0041] The operation process in this embodiment is as follows:
[0042] The cutting motor 201 is lowered so that the cutting blade 201b is aligned with the position of the sample to be cut. The cutting motor 201 and the push cylinder 202 are started. The push cylinder 202 pushes the motor sleeve 201a downward, so that the cutting blade 201b of the cutting motor 201 cuts the sample. The flying debris generated by cutting is blocked by the blade cover 203a and falls off from the chip-blocking edges 203a-1 at both ends. At the same time, the flying debris hits the chip-blocking curtain 203a-2 and is buffered and absorbed by the chip-blocking curtain 203a-2 to prevent the debris from rebounding and flying again. Finally, the debris falls from the debris outlet 104 for collection.
[0043] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0044] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A metal block cutting device for metal analysis, comprising a clamping table (1) and a cutting component (2), characterized in that: The clamping table (1) includes a vertical clamping assembly (101) and a side-top assembly (102). The cutting component (2) includes a cutting motor (201), a push cylinder (202), and a debris anti-splash assembly (203). A vertical plate (103) is fixedly mounted on one side of the table surface of the clamping table (1). A horizontal plate (103a) is fixedly mounted on the top of the vertical plate (103). The horizontal plate (103a) is fixed on the side of the vertical plate (103) near the clamping table (1). The push cylinder (202) is installed above the horizontal plate (103a). The telescopic end of the push cylinder (202) extends downward through the horizontal plate (103a). The cutting motor (201)... A motor sleeve (201a) is fixedly fitted on the outside. The telescopic end of the push cylinder (202) is fixedly connected to the outside of the motor sleeve (201a). A cutting blade (201b) is fixedly installed on the output shaft of the cutting motor (201). The output shaft of the cutting motor (201) faces away from the vertical plate (103). The debris anti-splash assembly (203) is fixed to one end of the output shaft of the cutting motor (201) and fitted on the outside of the cutting blade (201b). The vertical clamping assembly (101) is installed on the table surface of the clamping table (1) away from the vertical plate (103). The side top assembly (102) is installed on the plate surface of the vertical plate (103).
2. The metal block cutting device for metal analysis according to claim 1, characterized in that: The vertical plate (103) has a motor sleeve groove (103b) on the side near the horizontal plate (103a), and the motor sleeve (201a) is slidably installed in the motor sleeve groove (103b).
3. A metal block cutting device for metal analysis according to claim 2, characterized in that: The vertical clamping assembly (101) includes a fixed clamping arm (101a) and a movable clamping arm (101b). One end of the fixed clamping arm (101a) is fixedly provided with a clamping arm seat (101a-1). The bottom end of the clamping arm seat (101a-1) is fixedly provided with a fixing post (101a-2). The bottom end of the fixing post (101a-2) is fixedly installed on the table surface of the clamping platform (1). The clamping arm seat (101a-1) has a movable clamping arm slide groove (101a-3) above the fixed clamping arm (101a). One end of the movable clamping arm (101b) is slidably installed in the movable clamping arm slide groove (101a-3).
4. A metal block cutting device for metal analysis according to claim 3, characterized in that: The vertical clamping assembly (101) also includes a vertical lead screw (101b-1). A vertical transition partition (101b-2) is fixed on the upper side of the movable clamping arm (101b). A through hole is opened on the plate surface of the vertical transition partition (101b-2). One end of the vertical lead screw (101b-1) is rotatably installed in the through hole of the vertical transition partition (101b-2). The clamping arm seat (101a-1) has a threaded through hole at the top of the movable clamping arm slide groove (101a-3). The vertical lead screw (101b-1) spirally passes through the threaded through hole.
5. A metal block cutting device for metal analysis according to claim 4, characterized in that: The fixed clamping arm (101a) and the movable clamping arm (101b) are each fixed with a clamping head (101c) at one end near the cutting blade (201b). One side of the clamping head (101c) is an inner arc surface. The inner arc surface of the clamping head (101c) at one end of the fixed clamping arm (101a) faces upward, and the inner arc surface of the clamping head (101c) at one end of the movable clamping arm (101b) faces downward.
6. A metal block cutting device for metal analysis according to claim 5, characterized in that: A guide post (101a-4) is fixed above the end plate of the fixed clamping arm (101a) away from the clamping head (101c). A through hole is opened on the end plate of the movable clamping arm (101b) away from the clamping head (101c). The through hole on the plate of the movable clamping arm (101b) is slidably sleeved on the guide post (101a-4).
7. A metal block cutting device for metal analysis according to claim 1, characterized in that: The side-top assembly (102) includes a side-top slider (102a) and a transverse lead screw (102a-1). A set of slide rods (102b) is fixed on the end of the vertical plate (103) near the horizontal plate (103a). The side-top slider (102a) is slidably sleeved on the slide rods (102b). A threaded through hole is opened on the surface of the vertical plate (103). A transverse transition partition (102a-2) is fixed on the side of the side-top slider (102a) near the vertical plate (103). One end of the transverse lead screw (102a-1) is rotatably installed in the transverse transition partition (102a-2). The transverse lead screw (102a-1) spirally passes through the threaded through hole on the surface of the vertical plate (103). A top receiving plate (102a-3) is fixed on the side of the side-top slider (102a) away from the vertical plate (103).
8. A metal block cutting device for metal analysis according to claim 1, characterized in that: The debris anti-splash assembly (203) includes a blade cover (203a), which is a semi-circular shell. One side of the blade cover (203a) is fixed to one end of the cutting motor (201). The opening end of the blade cover (203a) is vertically downward. On the two end plates of the blade cover (203a), chip-blocking edges (203a-1) are fixed on both sides of the opening end. A chip-blocking curtain (203a-2) is fixedly installed between the two chip-blocking edges (203a-1) on each side of the blade cover (203a).
9. A metal block cutting device for metal analysis according to claim 8, characterized in that: The clamping table (1) has a chip outlet (104) on its surface, and the chip-blocking edges (203a-1) on both sides of the blade cover (203a) are slidably fitted into the chip outlet (104).