Thickness measuring ruler fixing support for measuring quartz weight
By designing a thickness measuring ruler fixing bracket for quartz weights, the adjustment of the slide and support frame body in three directions is solved, and the measurement error problem caused by the instability of the handheld thickness measuring ruler is achieved, and the stability and accuracy of the measurement are achieved.
Patent Information
- Application Number
- CN202422428502.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-10-09
AI Technical Summary
In the prior art, the thickness measurement of quartz weight is unstable due to the unstable handheld thickness measurement ruler, resulting in the measurement accuracy that cannot meet the needs and the numerical value jumps randomly.
A thickness measuring ruler fixed bracket for measuring quartz weights is designed, including a first slide, a lift and a second slide. The support frame body consists of a vertical rod and a cross rod. Through the adjustment of the slide in three directions, the thickness measuring ruler remains stable during the measurement process.
The stability of the thickness measuring ruler during the measurement process is achieved, the measurement accuracy is ensured, the numerical jumps are avoided, and the measurement accuracy is improved.
Smart Images

Figure CN223154169U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of thickness measuring instruments, and more specifically, relates to a thickness gauge fixing bracket for measuring a quartz ingot. Background Art
[0002] The quartz ingot is an important basic blank for manufacturing various quartz products in the shapes of tubes, rods, plates, etc. During the production process of the quartz ingot, the thickness is usually measured manually by holding a thickness gauge. The accuracy of the thickness gauge is 0.01 mm. When using the thickness gauge to measure the wall thickness of the quartz ingot, since the thickness gauge cannot be stably measured by hand, the value of the thickness gauge jumps randomly, which cannot meet the measurement requirements. Content of the Utility Model
[0003] The purpose of the utility model is to provide a thickness gauge fixing bracket for measuring a quartz ingot, aiming to ensure the measurement accuracy of the thickness gauge.
[0004] To achieve the above purpose, the technical solution adopted by the utility model is: providing a thickness gauge fixing bracket for measuring a quartz ingot, including a first sliding seat, a lifting seat, a second sliding seat and a support frame body. The first sliding seat is arranged along the X-axis direction, and the lifting seat is slidably arranged on the first sliding seat; the lifting seat has a degree of freedom along the Z-axis direction. The second sliding seat is located at the upper end of the lifting seat and is arranged along the Y-axis direction, and the support frame body is slidably arranged on the second sliding seat; the support frame body includes a vertical rod and a horizontal rod. The horizontal rod extends along the X-axis direction, and an installation plate for installing a thickness gauge is provided at the free end of the horizontal rod.
[0005] As another embodiment of this application, there is an extension section between the free end of the horizontal rod and the installation plate. The extension section is horizontally arranged with the horizontal rod and extends along the Y-axis direction.
[0006] As another embodiment of this application, the installation plate includes a fixed plate body and two groups of limiting pieces arranged at intervals along the X-axis direction; the limiting pieces are fixed below the fixed plate body by bolts, and the extension arm of the thickness gauge is fixed between the fixed plate body and the limiting pieces.
[0007] As another embodiment of this application, the fixed plate body is of an I-shaped structure, and bolt holes are opened at the four corners of the fixed plate body.
[0008] As another embodiment of this application, the first sliding seat includes a first track and a first slider, and the first slider is located at the bottom of the lifting seat.
[0009] As another embodiment of this application, the lifting seat is a pneumatic lifting table or a screw rod lifting table; when the lifting seat is the screw rod lifting table, a driving screw rod is provided inside the lifting seat, and a manual driving part is provided at the end of the driving screw rod.
[0010] As another embodiment of the present application, the lifting seat has a bottom plate, a top plate and an X-shaped connecting rod. The lower end of the bottom plate is slidably matched with the first sliding seat. The fixed ends of the X-shaped connecting rod are hinged to the bottom plate and the top plate, and the movable ends of the X-shaped connecting rod are connected to the driving lead screw. The driving lead screw is used to drive the X-shaped connecting rod to rotate so as to drive the top plate to lift and lower.
[0011] As another embodiment of the present application, two groups of the X-shaped connecting rods are arranged at intervals along the length direction of the bottom plate, and both groups of the X-shaped connecting rods are connected to the driving lead screw.
[0012] As another embodiment of the present application, a scale extending along the Z-axis direction is provided between the top plate and the bottom plate.
[0013] As another embodiment of the present application, a sliding lead screw arranged along the Y-axis direction is provided in the middle of the base of the second sliding seat. The movable end of the sliding lead screw is connected to the moving plate at the upper end of the second sliding seat, and the sliding lead screw rotates to drive the moving plate to move along the Y-axis direction.
[0014] The beneficial effect of the thickness gauge fixing bracket for measuring quartz ingots provided by the present utility model is as follows: Compared with the prior art, the thickness gauge fixing bracket for measuring quartz ingots of the present utility model realizes the adjustment of the support frame body and the thickness gauge in three directions by using the first sliding seat, the lifting seat and the second sliding seat. The vertical rod of the support frame body extends upward, the cross rod extends forward along the X-axis direction, and the thickness gauge is fixed on the mounting plate at the end of the cross rod. At this time, the middle part of the extension arm of the thickness gauge is fixed, and its length direction is attached to one side of the cross rod. When measuring the quartz ingot, the thickness gauge moves forward under the drive of the first sliding seat, ensuring that the thickness gauge is always in a stable state during the measurement process, thereby ensuring the measurement accuracy and avoiding the random jumping of the numerical value of the thickness gauge. Description of the Drawings
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0016] Figure 1 It is a schematic structural diagram of the thickness gauge fixing bracket for measuring quartz ingots provided by the embodiment of the present utility model;
[0017] Figure 2 It is a top view of the mounting plate provided by the embodiment of the present utility model.
[0018] In the figure: 1. First track; 2. Base plate; 3. Bottom plate; 4. X-shaped connecting rod; 5. Driving lead screw; 6. Top plate; 7. Base; 8. Manual knob; 9. Moving plate; 10. Guide plate; 11. Frame plate; 12. Vertical rod; 13. Cross bar; 14. Reinforcing rib; 15. Mounting plate; 16. Limiting piece; 17. Extension section; 18. Fixed plate body; 19. Corner plate body. Detailed implementation manners
[0019] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present utility model clearer, the present utility model 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 only used to explain the present utility model and are not used to limit the present utility model.
[0020] Please refer to Figure 1 and Figure 2 Now, a thickness gauge fixing bracket for measuring a quartz ingot provided by the present utility model will be described. The thickness gauge fixing bracket for measuring a quartz ingot includes a first sliding seat, a lifting seat, a second sliding seat and a support frame body. The first sliding seat is arranged along the X-axis direction, and the lifting seat is slidably arranged on the first sliding seat; the lifting seat has a degree of freedom along the Z-axis direction, the second sliding seat is located at the upper end of the lifting seat and is arranged along the Y-axis direction, and the support frame body is slidably arranged on the second sliding seat; the support frame body includes a vertical rod 12 and a cross bar 13, the cross bar 13 extends along the X-axis direction, and a mounting plate 15 for installing a thickness gauge is provided at the free end of the cross bar 13.
[0021] Both the first sliding seat and the placement table of the quartz ingot are arranged on the workbench, and their length directions are both the X-axis direction. The lifting seat drives the thickness gauge at its upper end to move along the length direction of the first sliding seat, so as to move the thickness gauge forward to adjust the measurement point position of the thickness gauge. The lifting seat is installed on the first sliding seat, and the lifting seat drives the support frame body to move up and down, and then drives the thickness gauge installed on the support frame body to move up and down, so as to adapt to the measurement of quartz ingots of different heights.
[0022] Compared with the prior art, the thickness gauge fixing bracket for measuring a quartz ingot provided by the present utility model realizes the adjustment of the support frame body and the thickness gauge in three directions by using the first sliding seat, the lifting seat and the second sliding seat. The vertical rod 12 of the support frame body extends upward, the cross bar 13 extends forward along the X-axis direction, and the thickness gauge is fixed on the mounting plate 15 at the end of the cross bar 13. At this time, the middle part of the extension arm of the thickness gauge is fixed, and its length direction fits on one side of the cross bar 13; when measuring a quartz ingot, the thickness gauge moves forward under the drive of the first sliding seat, ensuring that the thickness gauge is always in a stable state during the measurement process, thereby ensuring the measurement accuracy and avoiding the random jumping of the numerical value of the thickness gauge.
[0023] The thickness gauge includes an extension arm and a micrometer. The extension arm is a U-shaped rod structure with an opening facing forward, which includes an upper rod and a lower rod. The upper rod has a handle hole for easy hand-holding; a dial indicator is installed at the end of the upper rod. The lower rod is spaced from the upper rod and is in a horizontal state with the upper rod. The lower rod extends into the hollow inner cavity of the quartz weight, and the free end of the lower rod abuts against the inner side wall of the quartz weight to facilitate stabilizing the thickness gauge and ensuring measurement accuracy. This bracket device is mainly used to fix the handle of the extension arm, fix the mounting plate 15 and the handle, make the upper rod fit against one side of the cross bar 13, and ensure that the upper rod is in a horizontal state.
[0024] The vertical rod 12 of the support frame body is vertically arranged. The lower end of the vertical rod 12 is perpendicularly welded to the frame plate 11, and the frame plate 11 is bolted to the moving plate 9 at the upper end of the second sliding seat. The upper end of the vertical rod 12 is perpendicularly connected to the cross bar 13, and the extending direction of the cross bar 13 is the same as the moving direction of the first sliding seat. The cross bar 13 is horizontally arranged. There is also a reinforcing rib 14 between the cross bar 13 and the vertical rod 12. The reinforcing rib 14 is inclined, and the two ends of the reinforcing rib 14 are respectively connected to the cross bar 13 and the vertical rod 12. The reinforcing rib 14 is welded and fixed to both the cross bar 13 and the vertical rod 12. There is an extension section 17 between the free end of the cross bar 13 and the mounting plate 15. The extension section 17 is horizontally arranged with the cross bar 13 and extends along the Y-axis direction.
[0025] The frame plate 11, the vertical rod 12, the cross bar 13, the extension section 17 and the mounting plate 15 are all made of metal materials, and the adjacent two are welded and fixed. Among them, the vertical rod 12 and the cross bar 13 can be made of angle iron. The mounting plate 15 and the frame plate 11 are both plate bodies, and the extension section 17 can be made of angle iron or a plate body.
[0026] As Figure 2 shown, the mounting plate 15 includes a fixed plate body 18 and two groups of limiting pieces 16 arranged at intervals along the X-axis direction; the limiting pieces 16 are bolted to the lower part of the fixed plate body 18 and fix the extension arm of the thickness gauge between the fixed plate body 18 and the limiting pieces 16. The fixed plate body 18 is connected to the extension section 17, and the length direction of the fixed plate body 18 is along the X-axis direction. There are limiting pieces 16 below both ends of the fixed plate body 18 in the length direction. The limiting pieces 16 are arranged along the Y-axis direction, and the two groups of limiting pieces 16 are distributed at intervals along the X-axis direction. When fixing the thickness gauge, the fixed plate body 18 is located in the handle hole, and both ends of the fixed plate body 18 fix the position of the handle by means of the limiting pieces 16.
[0027] Specifically, both ends of the fixed plate body 18 are provided with plate body structures protruding outward, so that the entire fixed plate body 18 forms an I-shaped structure, and bolt holes are provided at the four corners of the I-shaped structure. Two bolt holes at any one end in the X-axis direction are cooperatively connected with the same limiting piece 16 through bolts. The limiting piece 16 is a long strip-shaped sheet body, through holes are provided at both ends in the length direction of the limiting piece 16, the limiting piece 16 is arranged along the Y-axis direction, and is connected to the two ends of the fixed plate body 18. Optionally, the fixed plate body 18 may include a straight plate and corner plate bodies 19 located at the four corners of the straight plate, and bolt holes are provided on the corner plate bodies 19. Both the straight plate and the corner plate bodies 19 are made of metal and are welded together.
[0028] The bolt longitudinally penetrates downward through the bolt hole, and the nut fits against the upper end surface of the fixed plate body 18. The lower end of the bolt extends to the lower end of the fixed plate body 18, the bolt passes through the through hole of the limiting piece 16 and is fixed by a nut. The limiting piece 16 is connected to the fixed plate body 18 by bolts at both ends, and an installation space is formed between the two bolts. This installation space is used to limit the holding position below the handle hole of the extension arm.
[0029] In some possible embodiments, please refer to Figure 1 , for the adjustment of the support frame body and the thickness gauge in three directions, it is necessary to pass through the first sliding seat, the lifting seat and the second sliding seat. The first sliding seat includes a first track 1 and a first slider, and the first slider is located at the bottom of the lifting seat. The first track 1 is arranged along the X-axis direction, and the first slider located on the first track 1 is connected to the lower end surface of the lifting seat by bolts. Or a cushion plate 2 is installed on the first slider, and the bottom plate 3 of the lifting seat is bolted to the cushion plate 2.
[0030] The lifting seat is a pneumatic lifting table or a screw lifting table; when the lifting seat is a screw lifting table, a driving screw 5 is provided inside the lifting seat, and a manual driving part is provided at the end of the driving screw 5. To improve the convenience of adjustment, the lifting seat adopts a manually driven screw lifting table. The lifting seat has a bottom plate 3, a top plate 6 and an X-shaped connecting rod 4. The lower end of the bottom plate 3 is slidably matched with the first sliding seat; the fixed end of the X-shaped connecting rod 4 is hinged to the bottom plate 3 and the top plate 6, and the movable end of the X-shaped connecting rod 4 is connected to the driving screw 5. The driving screw 5 is used to drive the X-shaped connecting rod 4 to rotate to drive the top plate 6 to lift. The lifting seat is selected as a multi-layer scissor lifting table driven by a manual screw.
[0031] The bottom plate 3 of the lifting seat is connected to the first slider. The upper end of the bottom plate 3 of the lifting seat is hinged with an X-shaped connecting rod 4 structure. This connecting structure realizes lifting through the rotation of the angle of its own hinge part. An active block of the driving screw 5 is connected to the hinge shaft in the middle of the X-shaped connecting rod 4 structure. The active block is in threaded cooperation with the driving screw 5. When the driving screw 5 rotates, the active block drives the X-shaped connecting rod 4 to rotate around its central rotation axis, so that the X-shaped connecting rod 4 longitudinally extends or shortens.
[0032] Optionally, two sets of X-shaped linkages 4 are arranged at intervals along the length direction of the bottom plate 3, and both sets of X-shaped linkages 4 are connected to the driving lead screw 5. When there are two sets of X-shaped linkages 4, two movable blocks can be installed on the driving lead screw 5, and the two movable blocks are located on the two closest hinge shafts of the two sets of X-shaped linkages 4. The two movable blocks move towards each other to make the X-shaped linkages 4 extend simultaneously; the two movable blocks move in opposite directions to make the X-shaped linkages 4 shorten simultaneously. Correspondingly, the driving lead screw 5 is divided into two sections of threads, the two sections of threads are distributed at intervals, and the thread directions are opposite. At this time, when the driving lead screw 5 rotates to one side, the two movable blocks can move in the same direction or in opposite directions.
[0033] There is a scale extending along the Z-axis direction between the top plate 6 and the bottom plate 3. The scale is longitudinally located at the edges of the bottom plate 3 and the top plate 6. The scale includes two parts. The first part is located on the bottom plate 3 and extends upwards, and the second part is located on the top plate 6 and extends downwards. The scale values of the two parts are matched to read the elevation dimension of the top plate 6.
[0034] A second sliding seat is installed at the upper end of the top plate 6 of the lifting seat. A sliding lead screw arranged along the Y-axis direction is provided in the middle of the base 7 of the second sliding seat. The movable end of the sliding lead screw is connected to the moving plate 9 at the upper end of the second sliding seat. The sliding lead screw rotates to drive the moving plate 9 to move along the Y-axis direction. The sliding lead screw is arranged along the Y-axis direction, the movable end of the sliding lead screw is connected to the moving plate 9 of the second sliding seat, the sliding lead screw rotates to drive the moving plate 9 to move along the Y-axis direction, and a manual knob 8 is provided at the end of the sliding lead screw. Correspondingly, a guide plate 10 is also provided on one side of the base 7 of the second sliding seat, and a guide hole along the Y-axis direction is opened on the guide plate 10; the height of the guide hole is flush with the moving plate 9; a guide block is installed on one side of the moving plate 9, and the guide block extends into the guide hole and is slidably matched with the guide hole. Optionally, the guide block can be a bolt.
[0035] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. Thickness gauge fixing bracket for measuring quartz weights, characterized in that, It includes a first sliding seat, a lifting seat, a second sliding seat and a support frame. The first sliding seat is arranged along the X-axis direction, and the lifting seat is slidably arranged on the first sliding seat; the lifting seat has a degree of freedom along the Z-axis direction. The second sliding seat is located at the upper end of the lifting seat and is arranged along the Y-axis direction, and the support frame is slidably arranged on the second sliding seat; the support frame includes a vertical rod (12) and a cross rod (13). The cross rod (13) extends along the X-axis direction, and a mounting plate (15) for installing a thickness gauge is provided at the free end of the cross rod (13).
2. The thickness gauge fixing bracket for measuring quartz blanks according to claim 1, characterized in that, There is an extension section (17) between the free end of the cross rod (13) and the mounting plate (15). The extension section (17) is horizontally arranged with the cross rod (13), and the extension section (17) extends along the Y-axis direction.
3. The thickness gauge fixing bracket for measuring quartz blanks according to claim 1, characterized in that, The mounting plate (15) includes a fixed plate body (18) and two groups of limiting pieces (16) arranged at intervals along the X-axis direction; the limiting pieces (16) are fixed below the fixed plate body (18) by bolts, and the extension arm of the thickness gauge is fixed between the fixed plate body (18) and the limiting pieces (16).
4. The thickness gauge fixing bracket for measuring a quartz bob as described in claim 3, characterized in that, The fixed plate body (18) is of an I-shaped structure, and bolt holes are provided at the four corners of the fixed plate body (18).
5. The thickness gauge fixing bracket for measuring a quartz bob as claimed in claim 1, characterized in that, The first sliding seat includes a first track (1) and a first slider, and the first slider is located at the bottom of the lifting seat.
6. The thickness gauge fixing bracket for measuring a quartz ingot according to claim 1, wherein, The lifting seat is a pneumatic lifting table or a screw lifting table; when the lifting seat is the screw lifting table, a driving screw (5) is provided inside the lifting seat, and a manual driving part is provided at the end of the driving screw (5).
7. The thickness gauge fixing bracket for measuring quartz ingots as described in claim 6, characterized in that, The lifting seat has a bottom plate (3), a top plate (6) and an X-shaped connecting rod (4). The lower end of the bottom plate (3) is slidably matched with the first sliding seat; the fixed end of the X-shaped connecting rod (4) is hinged to the bottom plate (3) and the top plate (6), and the movable end of the X-shaped connecting rod (4) is connected to the driving screw (5). The driving screw (5) is used to drive the X-shaped connecting rod (4) to rotate to drive the top plate (6) to lift and lower.
8. The thickness gauge fixing bracket for measuring a quartz ingot according to claim 7, characterized in that, Two groups of the X-shaped connecting rods (4) are arranged at intervals along the length direction of the bottom plate (3), and both groups of the X-shaped connecting rods (4) are connected to the driving screw (5).
9. The thickness gauge fixing bracket for measuring a quartz ingot as claimed in claim 7, characterized in that, There is a scale extending along the Z-axis direction between the top plate (6) and the bottom plate (3).
10. The thickness gauge fixing bracket for measuring a quartz bob as described in claim 1, characterized in that, A sliding screw arranged along the Y-axis direction is provided in the middle of the base (7) of the second sliding seat. The movable end of the sliding screw is connected to a moving plate (9) at the upper end of the second sliding seat, and the sliding screw rotates to drive the moving plate (9) to move along the Y-axis direction.