Auxiliary crystal bar mounting device
By setting a restriction mechanism and a placement mechanism in the crystal rod auxiliary installation device, the precise alignment and stable installation of the crystal rod are achieved, and the installation problems caused by misalignment and offset of the insertion holes in the prior art are solved, thereby improving the positioning accuracy and the service life of the equipment.
Patent Information
- Application Number
- CN202510579389.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-07
- Publication Date
- 2025-06-20
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the prior art, crystal rods are prone to inaccurate insertion or uneven force during installation due to misalignment or offset of the insertion holes, which increases the risk of damage or rupture, and unnecessary friction during installation will cause surface damage, affecting performance and service life.
A crystal rod auxiliary installation device is designed. By setting a restriction mechanism and a placement mechanism, the position of the crystal rod can be accurately defined, and precise alignment in the horizontal direction is achieved through the stacking of multiple sliding plates, ensuring accurate positioning when the two ends of the crystal rod are inserted into the copper sleeve.
The positioning accuracy of the crystal rod insertion into the copper sleeve is improved through double positioning (horizontal and longitudinal), reducing the uneven pressure distribution during installation, reducing the risk of crystal rod damage, and extending the service life of the equipment.
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Figure CN120170910A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of auxiliary installation of crystal rods, and specifically to an auxiliary installation device for crystal rods. Background Art
[0002] An auxiliary installation device for crystal rods is usually used in the process of accurately installing and positioning crystal rods (such as optical crystals, semiconductor crystals, or other types of crystals) in experimental devices or equipment. Such devices need to take into account the fragility of the crystals, precision requirements, and simplicity of the installation process.
[0003] The patent application with the application number CN202421263135.2 discloses an auxiliary installation device for a crystal clamp. A chute is provided at the bottom of the crystal clamp. The auxiliary installation device includes: a mounting frame body: a bearing part is mounted on the mounting frame body, and a slide bar matching with the chute is arranged on the upper surface of the bearing part; a first driving part is mounted on the mounting frame body and is used for driving the bearing part to move in the up and down direction; a second driving part is mounted on the mounting frame body and is used for driving the bearing part to move in the left and right direction.
[0004] In the current prior art, when the insertion holes of two copper sleeves are not aligned, the two ends of the crystal rod will not be able to be smoothly inserted into the corresponding insertion holes. When the offset of the insertion holes is too large, additional force is required to push the two ends of the insertion holes to dock during the installation of the crystal rod. This uneven pressure distribution easily causes uneven stress on the crystal rod, increasing the risk of its damage or rupture. The crystal rod bears a large lateral stress or torsional force, and it is easy to cause deformation or wear of the crystal rod after long-term use. The crystal rod will be subjected to unnecessary friction during insertion, which not only increases the installation difficulty but also causes surface damage to the crystal rod, affecting its subsequent performance and service life. Summary of the Invention
[0005] Aiming at the deficiencies of the prior art, the present invention provides an auxiliary installation device for crystal rods to solve the problems raised in the above background art.
[0006] To achieve the above object, the present invention provides the following technical solution: an auxiliary installation device for crystal rods, including a bottom plate, a connection seat is fixedly connected to the top of the bottom plate, tracks are fixedly connected to both ends of the connection seat, the bottom of the tracks is fixedly connected to the bottom plate, and a limiting mechanism is fixedly connected to the top of the bottom plate;
[0007] The limiting mechanism includes:
[0008] Base, the bottom of the base is fixedly connected to the bottom plate, a first connecting plate is fixedly connected to the outside of the base, a chute is provided at the top of the first connecting plate, a slider is movably connected to the inner wall of the chute, a limiting plate is fixedly connected to the top of the slider, and a first sliding column is fixedly connected to the top of the base. This limiting plate is used to push and position the position of the crystal rod.
[0009] Sliding plate, the inner wall of the sliding plate is movably connected to the first sliding column, a padding piece is fixedly connected to the front end of the sliding plate, and a placement groove is provided at the top of the padding piece. This placement groove is used to place the crystal rod and position the front end of the crystal rod. By setting the limiting mechanism, when the crystal rod is placed in the placement groove, its front end position can be accurately limited. The stacked design of multiple sliding plates enables the crystal rods in each placement groove to be accurately aligned horizontally with the insertion holes, providing a basic positioning guarantee for inserting the two ends of the crystal rod into the copper sleeves. At the same time, with the installation of the limiting plate, the position of the crystal rod can be locked secondly from the rear, ensuring the precise alignment of the crystal rod and the insertion hole in the longitudinal position. Through the double positioning in the horizontal and longitudinal directions, the positioning accuracy when the two ends of the crystal rod are inserted into the copper sleeves is improved, providing a reliable support for the stable installation of the crystal rod.
[0010] According to the above technical solution, one end of the first connecting plate away from the base is fixedly connected to a second connecting plate, and a top plate is fixedly connected to the top of the limiting plate. The top of the second connecting plate and the top plate are detachably connected by bolts.
[0011] According to the above technical solution, support columns are fixedly connected to the tops of both tracks. An adjusting mechanism is movably connected to the outer wall of the left track, and a placing mechanism is movably connected to the outer wall of the right track. By setting the support columns, the bottommost padding piece can be supported, effectively avoiding the overall angular deviation caused by the unbalanced gravity when multiple padding pieces, sliding plates, and crystal rods are stacked, preventing such deviation from interfering with the alignment operation of the equipment, thereby further ensuring the positioning accuracy when the two ends of the crystal rod are inserted into the copper sleeves, optimizing the stability of the device, and providing a reliable guarantee for the installation process.
[0012] According to the above technical solution, the placing mechanism includes a first sliding seat, the bottom of the first sliding seat is movably connected to the track, a first sleeve is fixedly connected to the top of the first sliding seat, a first positioning rod is fixedly connected to the inner wall of the first sleeve, and a first copper sleeve is movably connected to the inner wall of the first sleeve. Slots with the same number and position as the first positioning rod are provided on the outer wall of the first copper sleeve, which is convenient for restricting the rotation of the first copper sleeve.
[0013] According to the above technical solution, one end of the first sleeve away from the first copper sleeve is fixedly connected with a first circular plate, the top of the first circular plate is fixedly connected with an induction module, and the top of the induction module is fixedly connected with an indicator light. When the induction module receives an infrared signal, it will drive the indicator light on the corresponding side to emit light.
[0014] According to the above technical solution, the adjustment mechanism includes a second sliding seat, the bottom of the second sliding seat is movably connected with the track, the top of the second sliding seat is fixedly connected with a first hollow column, the inner wall of the first hollow column is rotatably connected with a second sleeve through a bearing, the inner wall of the second sleeve is fixedly connected with a second positioning rod, and the inner wall of the second sleeve is movably connected with a second copper sleeve. The outer wall of the second copper sleeve is provided with notches with the same number and position as the second positioning rod, which is convenient for restricting the rotation of the first and second copper sleeves.
[0015] According to the above technical solution, one end of the second sleeve away from the second copper sleeve is fixedly connected with a first gear, one side of the first gear away from the second sleeve is fixedly connected with a second circular plate, the top of the second circular plate is fixedly connected with a transmitting module, and one side of the second circular plate away from the first gear is fixedly connected with a friction plate. The transmitting module is used to emit infrared signals. By setting the limiting mechanism, the crystal rod can be placed on the placement groove to limit the position of the front end of the crystal rod. The stacking of multiple sliding plates makes the crystal rods placed in each placement groove horizontally aligned with the insertion holes, which helps to ensure the accurate positioning of both ends of the crystal rod when inserted into the copper sleeve. At the same time, with the installation of the limiting plate, the position of the crystal rod can be locked again from the rear, making the crystal rod longitudinally aligned with the insertion hole, further improving the accurate positioning of both ends of the crystal rod when inserted into the copper sleeve.
[0016] According to the above technical solution, one end of the first hollow column away from the connecting seat is fixedly connected with a connecting column, the outer wall of the connecting column is rotatably connected with a second gear through a bearing, the second gear meshes with the first gear, one end of the connecting column away from the first hollow column is fixedly connected with a third connecting plate, one side of the third connecting plate away from the first hollow column is fixedly connected with a second hollow column, the inner wall of the second hollow column is movably connected with a second sliding column, one end of the second sliding column away from the first hollow column is fixedly connected with a handle, one end of the second sliding column away from the handle is fixedly connected with a fixing plate, and a spring is sleeved on the outer wall of the second sliding column. One end of the spring is fixedly connected with the handle, and the end of the spring away from the handle is fixedly connected with the fixing plate. The fixing plate presses on the friction plate to limit the rotation of the second sleeve. By setting the adjustment mechanism, after the alignment operation of the two copper sleeves is completed, the second sleeve carrying the second copper sleeve can be locked, effectively avoiding the angular deflection of the second sleeve caused by external forces during subsequent movement, preventing interference with the alignment accuracy of the equipment, stabilizing the relative position of the copper sleeves, and further ensuring the positioning accuracy of both ends of the crystal rod when inserted into the copper sleeve.
[0017] Compared with the prior art, the present invention provides a crystal rod auxiliary installation device, which has the following beneficial effects:
[0018] 1. By setting the placement mechanism and the adjustment mechanism, the present invention can accurately align the insertion holes of the first copper sleeve and the second copper sleeve in advance, ensure that both ends of the crystal rod can be accurately inserted into the corresponding copper sleeves, and further ensure the stability of the crystal rod installation. This design effectively avoids problems such as the inability to correctly insert the copper sleeve and unstable connection caused by the misalignment of the insertion holes at both ends of the crystal rod, and prevents adverse effects on the experimental results or equipment performance. When the copper sleeve and the crystal rod are aligned, their contact is more uniform and balanced, which can reduce the local pressure concentration caused by poor contact or offset, greatly reducing the risk of crystal rod wear and damage, and is beneficial to extending the service life of the equipment.
[0019] 2. By setting the limiting mechanism, the crystal rod is placed in the placement groove, and its front-end position can be accurately limited. The stacked design of multiple sliding plates enables the crystal rods in each placement groove to be accurately aligned with the insertion holes in the horizontal direction, providing a basic positioning guarantee for inserting both ends of the crystal rod into the copper sleeve. At the same time, with the installation of the limiting plate, the position of the crystal rod can be locked a second time from the rear, ensuring the precise alignment of the crystal rod and the insertion hole in the longitudinal position. Through the dual positioning in the horizontal and longitudinal directions, the positioning accuracy when both ends of the crystal rod are inserted into the copper sleeve is improved, providing a reliable support for the stable installation of the crystal rod.
[0020] 3. By setting the support columns, the bottom shim can be effectively supported, avoiding the overall angular deviation caused by the unbalanced gravity when multiple shims, sliding plates, and crystal rods are stacked, preventing such deviation from interfering with the equipment alignment operation, and further ensuring the positioning accuracy when both ends of the crystal rod are inserted into the copper sleeve, optimizing the device stability, and providing a reliable guarantee for the installation process.
[0021] 4. By setting the adjustment mechanism, after the alignment operation of the two copper sleeves is completed, the sleeve two carrying the second copper sleeve can be locked, effectively avoiding the angular deflection of the sleeve two caused by external forces during subsequent movement, preventing interference with the alignment accuracy of the equipment, stabilizing the relative position of the copper sleeve, and further ensuring the positioning accuracy when both ends of the crystal rod are inserted into the copper sleeve. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. They are used to explain the present invention together with the embodiments of the present invention, and do not constitute a limitation to the present invention. In the drawings:
[0023] Figure 1 is the overall structural schematic diagram of the present invention;
[0024] Figure 2 is the overall structural schematic diagram of the present invention;
[0025] Figure 3 It is a partial structural schematic diagram of the present invention;
[0026] Figure 4 It is a schematic diagram of the limiting mechanism of the present invention Figure 1 ;
[0027] Figure 5 It is a schematic diagram of the limiting mechanism of the present invention Figure 2 ;
[0028] Figure 6 It is a schematic diagram of the limiting mechanism of the present invention Figure 3 ;
[0029] Figure 7 It is a schematic diagram of the placement mechanism of the present invention Figure 1 ;
[0030] Figure 8 It is a schematic diagram of the placement mechanism of the present invention Figure 2 ;
[0031] Figure 9 It is a schematic diagram of the adjustment mechanism of the present invention Figure 1 ;
[0032] Figure 10 It is an exploded view of the adjustment mechanism of the present invention Figure 1 ;
[0033] Figure 11 It is an exploded view of the adjustment mechanism of the present invention Figure 2 ;
[0034] Figure 12 It is a schematic diagram of the adjustment mechanism of the present invention Figure 2 ;
[0035] Figure 13 It is a schematic diagram of the adjustment mechanism of the present invention Figure 3 。
[0036] In the figure: 1, bottom plate; 101, connecting seat; 102, track; 103, support column; 2, limiting mechanism; 201, base; 202, connecting plate one; 203, connecting plate two; 204, chute; 205, sliding column one; 206, slider; 207, limiting plate; 208, top plate; 209, sliding plate; 2010, shim; 2011, placement groove; 3, placement mechanism; 301, sliding seat one; 302, sleeve one; 303, circular plate one; 304, induction module; 305, indicator light; 306, positioning rod one; 307, copper sleeve one; 4, adjustment mechanism; 401, sliding seat two; 402, hollow column one; 403, sleeve two; 404, positioning rod two; 405, copper sleeve two; 406, gear one; 407, circular plate two; 408, transmitting module; 409, friction plate; 4010, connecting column; 4011, gear two; 4012, connecting plate three; 4013, hollow column two; 4014, sliding column two; 4015, handle; 4016, fixing plate; 4017, spring. Specific implementation mode
[0037] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0038] Examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the accompanying drawings are exemplary and are intended to explain the present invention and should not be construed as a limitation to the present invention.
[0039] In the present invention, unless otherwise clearly defined and limited, terms such as "installation", "connection", "connection", "fixation" and other terms should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.
[0040] Example 1: Refer to Figures 1 - 6, the present invention provides a technical solution: a crystal rod auxiliary installation device, including a bottom plate 1, a connection seat 101 is fixedly connected to the top of the bottom plate 1, both ends of the connection seat 101 are fixedly connected with rails 102, the bottom of the rails 102 is fixedly connected to the bottom plate 1, a limiting mechanism 2 is fixedly connected to the top of the bottom plate 1, support columns 103 are fixedly connected to the tops of both rails 102, an adjustment mechanism 4 is movably connected to the outer wall of the left rail 102, and a placement mechanism 3 is movably connected to the outer wall of the right rail 102, wherein the support column 103 plays a supporting role for the bottommost shim 2010.
[0041] In order to ensure that the crystal rod is aligned with the insertion port of the copper sleeve both horizontally and longitudinally, the limiting mechanism 2 is provided.
[0042] The limiting mechanism 2 includes: a base 201, the bottom of the base 201 is fixedly connected to the bottom plate 1, a first connecting plate 202 is fixedly connected to the outside of the base 201, a sliding groove 204 is opened at the top of the first connecting plate 202, a slider 206 is movably connected to the inner wall of the sliding groove 204, a limiting plate 207 is fixedly connected to the top of the slider 206, a first sliding column 205 is fixedly connected to the top of the base 201, and this limiting plate 207 is used to push and position the crystal rod. A sliding plate 209, the inner wall of the sliding plate 209 is movably connected to the first sliding column 205, a shim 2010 is fixedly connected to the front end of the sliding plate 209, and a placement groove 2011 is opened at the top of the shim 2010. This placement groove 2011 is used to place the crystal rod and position the front end of the crystal rod. One end of the first connecting plate 202 away from the base 201 is fixedly connected to a second connecting plate 203, and a top plate 208 is fixedly connected to the top of the limiting plate 207. Among them, the top of the second connecting plate 203 and the top plate 208 are detachably connected by bolts. When installing the crystal rod, it is necessary to first detach the limiting plate 207 and the top plate 208 from the sliding groove 204 and the second connecting plate 203, and then sleeved the sliding plate 209 on the first sliding column 205. After the first sliding plate 209 is sleeved, the first crystal rod is placed in the placement groove 2011, and then stacked in this order. After the crystal rods are placed, the slider 206 is pushed into the sliding groove 204. At this time, the pushing of the slider 206 will cause the limiting plate 207 to apply a thrust to the rear side of the crystal rod. The crystal rod is locked under the blocking at the front end of the placement groove 2011 and the pushing of the limiting plate 207. Then, the top plate 208 and the second connecting plate 203 are fixed together by bolts, and the slider 206 is fixed to the sliding groove 204 by bolts. Thus, the installation of the crystal rod is completed.
[0043] Embodiment 2: Please refer to Figures 7 - 13, based on the first embodiment, the present invention provides a technical solution: in order to ensure the alignment of the first copper sleeve 307 and the second copper sleeve 405, a placement mechanism 3 and an adjustment mechanism 4 are provided. The placement mechanism 3 includes a first sliding seat 301, the bottom of the first sliding seat 301 is movably connected to the track 102, the top of the first sliding seat 301 is fixedly connected to a first sleeve 302, the inner wall of the first sleeve 302 is fixedly connected to a first positioning rod 306, and the inner wall of the first sleeve 302 is movably connected to a first copper sleeve 307. The outer wall of the first copper sleeve 307 is provided with notches having the same number and position as the first positioning rod 306, which is convenient for restricting the rotation of the first copper sleeve 307. One end of the first sleeve 302 away from the first copper sleeve 307 is fixedly connected to a first circular plate 303, the top of the first circular plate 303 is fixedly connected to an induction module 304, and the top of the induction module 304 is fixedly connected to an indicator light 305. When the induction module 304 receives an infrared signal, it will drive the indicator light 305 on the corresponding side to emit light. When aligning the first copper sleeve 307 and the second copper sleeve 405, the first copper sleeve 307 is placed in the first sleeve 302, and the second copper sleeve 405 is placed in the first hollow column 402. Then, the emission module 408 is started to emit an infrared signal. At this time, if the induction module 304 receives the signal, the indicator light 305 in the corresponding direction will emit light, so as to indicate that the first copper sleeve 307 and the second copper sleeve 405 are not aligned. At this time, the second gear 4011 is rotated, and the rotating second gear 4011 will drive the second positioning rod 404 and the second circular plate 407 to rotate through the first gear 406. The rotating second positioning rod 404 and the second circular plate 407 will drive the second copper sleeve 405 and the emission module 408 to shift until the infrared signal emitted by the emission module 408 is at a right angle to the two induction modules 304. At this time, the indicator light 305 no longer emits light because the infrared signal cannot be received by the chute 204, indicating that the first copper sleeve 307 and the second copper sleeve 405 are aligned. At this time, the placement mechanism 3 and the adjustment mechanism 4 are further pushed to move along the trajectory of the track 102 to complete the installation of the crystal bar.
[0044] The adjustment mechanism 4 includes a second sliding seat 401. The bottom of the second sliding seat 401 is movably connected to the track 102. A first hollow column 402 is fixedly connected to the top of the second sliding seat 401. A second sleeve 403 is rotatably connected to the inner wall of the first hollow column 402 through a bearing. A second positioning rod 404 is fixedly connected to the inner wall of the second sleeve 403. A second copper sleeve 405 is movably connected to the inner wall of the second sleeve 403. The outer wall of the second copper sleeve 405 is provided with notches having the same quantity and position as the second positioning rod 404, which is convenient for restricting the rotation of the second copper sleeve 405. A first gear 406 is fixedly connected to one end of the second sleeve 403 away from the second copper sleeve 405. A second circular plate 407 is fixedly connected to the side of the first gear 406 away from the second sleeve 403. A transmitting module 408 is fixedly connected to the top of the second circular plate 407. A friction plate 409 is fixedly connected to the side of the second circular plate 407 away from the first gear 406. The transmitting module 408 is used for emitting infrared signals. A connecting column 4010 is fixedly connected to one end of the first hollow column 402 away from the connecting seat 101. A second gear 4011 is rotatably connected to the outer wall of the connecting column 4010 through a bearing. The second gear 4011 meshes with the first gear 406. A third connecting plate 4012 is fixedly connected to one end of the connecting column 4010 away from the first hollow column 402. A second hollow column 4013 is fixedly connected to the side of the third connecting plate 4012 away from the first hollow column 402. A second sliding column 4014 is movably connected to the inner wall of the second hollow column 4013. A handle 4015 is fixedly connected to one end of the second sliding column 4014 away from the first hollow column 402. A fixing plate 4016 is fixedly connected to the end of the second sliding column 4014 away from the handle 4015. A spring 4017 is sleeved on the outer wall of the second sliding column 4014. One end of the spring 4017 is fixedly connected to the handle 4015. The end of the spring 4017 away from the handle 4015 is fixedly connected to the fixing plate 4016. The fixing plate 4016 presses on the friction plate 409 for restricting the rotation of the second sleeve 403. When adjusting the angle of the second circular plate 407, it is necessary to first pull the handle 4015. The moving handle 4015 will drive the fixing plate 4016 away from the friction plate 409 through the second sliding column 4014, which serves to release the restriction on the rotation of the second sleeve 403. Then, the deflection angle of the second sleeve 403 is adjusted by rotating the second gear 4011. After the adjustment is completed, the handle 4015 is released, and the fixing plate 4016 is allowed to press on the friction plate 409 again under the elastic force of the spring 4017 to fix the second sleeve 403. Then, the placement mechanism 3 and the adjustment mechanism 4 are driven to move.
[0045] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.
[0046] Finally, it should be noted that the above are only preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.
Claims
1. A crystal rod auxiliary mounting device, comprising a base plate (1), the top of the base plate (1) being fixedly connected to a connecting seat (101), characterized in that: Both ends of the connection seat (101) are fixedly connected to tracks (102), the bottom of the track (102) is fixedly connected to the bottom plate (1), and the top of the bottom plate (1) is fixedly connected to a limiting mechanism (2); The limiting mechanism (2) comprises: A base (201), wherein the bottom of the base (201) is fixedly connected to the bottom plate (1), the outside of the base (201) is fixedly connected to a connecting plate (202), the top of the connecting plate (202) is provided with a slide groove (204), the inner wall of the slide groove (204) is movably connected to a slider (206), the top of the slider (206) is fixedly connected to a limiting plate (207), and the top of the base (201) is fixedly connected to a sliding column (205), and the limiting plate (207) is used to push and locate the position of the crystal rod; A sliding plate (209), wherein the inner wall of the sliding plate (209) is movably connected to the sliding column (205), and a pad (2010) is fixedly connected to the front end of the sliding plate (209), and a placement groove (2011) is provided on the top of the pad (2010), and the placement groove (2011) is used to place a crystal rod and locate the position of the front end of the crystal rod.
2. The crystal rod auxiliary installation device according to claim 1, characterized in that: The end of the connecting plate 1 (202) away from the base (201) is fixedly connected to the connecting plate 2 (203), and the top of the limiting plate (207) is fixedly connected to the top plate (208), wherein the top of the connecting plate 2 (203) and the top plate (208) are detachably connected by bolts.
3. A crystal rod auxiliary installation device according to claim 2, characterized in that: The tops of the two tracks (102) are fixedly connected with support columns (103), the outer wall of the track (102) on the left is movably connected with an adjustment mechanism (4), and the outer wall of the track (102) on the right is movably connected with a placement mechanism (3), wherein the support columns (103) play a supporting role for the bottommost pad (2010).
4. The crystal rod auxiliary installation device according to claim 3, characterized in that: The placement mechanism (3) comprises a sliding seat (301), the bottom of the sliding seat (301) is movably connected to the track (102), the top of the sliding seat (301) is fixedly connected to a sleeve (302), the inner wall of the sleeve (302) is fixedly connected to a positioning rod (306), the inner wall of the sleeve (302) is movably connected to a copper sleeve (307), wherein the outer wall of the copper sleeve (307) is provided with slots of the same number and position as the positioning rod (306), so as to facilitate limiting the rotation of the copper sleeve (307).
5. The crystal rod auxiliary installation device according to claim 4, characterized in that: One end of the sleeve 1 (302) away from the copper sleeve 1 (307) is fixedly connected to a circular plate 1 (303), the top of the circular plate 1 (303) is fixedly connected to a sensing module (304), the top of the sensing module (304) is fixedly connected to an indicator light (305), and when the sensing module (304) receives an infrared signal, it drives the indicator light (305) on the corresponding side to emit light.
6. The crystal rod auxiliary installation device according to claim 5, characterized in that: The adjustment mechanism (4) comprises a sliding seat (401) having a bottom movably connected to the track (102), a hollow column (402) fixedly connected to the top of the sliding seat (401), a sleeve (403) rotatably connected to the inner wall of the hollow column (402) via a bearing, a positioning rod (404) fixedly connected to the inner wall of the sleeve (403), a copper sleeve (405) movably connected to the inner wall of the sleeve (403), wherein the outer wall of the copper sleeve (405) is provided with slots having the same number and position as the positioning rod (404), so as to facilitate limiting the rotation of the copper sleeve (405) and the copper sleeve (405).
7. The crystal rod auxiliary installation device according to claim 6, characterized in that: The end of the sleeve 2 (403) away from the copper sleeve 2 (405) is fixedly connected to the gear 1 (406), the side of the gear 1 (406) away from the sleeve 2 (403) is fixedly connected to the circular plate 2 (407), the top of the circular plate 2 (407) is fixedly connected to the transmitting module (408), the side of the circular plate 2 (407) away from the gear 1 (406) is fixedly connected to the friction plate (409), and the transmitting module (408) is used to generate infrared signals.
8. The crystal rod auxiliary installation device according to claim 7, characterized in that: The end of the hollow column 1 (402) away from the connecting seat (101) is fixedly connected to the connecting column (4010), the outer wall of the connecting column (4010) is rotatably connected to the gear 2 (4011) through a bearing, the gear 2 (4011) is meshed with the gear 1 (406), the end of the connecting column (4010) away from the hollow column 1 (402) is fixedly connected to the connecting plate 3 (4012), the side of the connecting plate 3 (4012) away from the hollow column 1 (402) is fixedly connected to the hollow column 2 (4013), the inner wall of the hollow column 2 (4013) is movably connected to the sliding column 2 (4014), The end of the second sliding column (4014) away from the hollow column (402) is fixedly connected to the handle (4015), and the end of the second sliding column (4014) away from the handle (4015) is fixedly connected to the fixing plate (4016). The outer wall of the second sliding column (4014) is sleeved with a spring (4017), and one end of the spring (4017) is fixedly connected to the handle (4015), and the end of the spring (4017) away from the handle (4015) is fixedly connected to the fixing plate (4016), wherein the fixing plate (4016) is pressed on the friction plate (409) to limit the rotation of the second sleeve (403).
Citation Information
Patent Citations
Auxiliary installation equipment for crystal fixtures
CN222727030U