A precision electric micro slide structure for industrial equipment
By designing a precision electric micro slide structure and combining longitudinal and lateral movement functions, the positioning and quantitative conveying of the slide are realized, which solves the shortcomings of existing slide devices in lateral accuracy and automated quantitative conveying, and improves processing efficiency and flexibility.
Patent Information
- Application Number
- CN202411599564.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2044-11-11
AI Technical Summary
Existing slide table devices lack lateral accuracy alignment when adjusting workpiece position, requiring additional lateral drive equipment, and are difficult to automate quantitative conveying, thus failing to meet the processing requirements of positioning and quantitative control.
A precision electric micro slide structure was designed, comprising a slide body, a drive motor, a lead screw body, a product storage component, and a product quantitative output component. The longitudinal and lateral movements are achieved through the lead screw body and the lateral telescopic rod. Combined with the product storage component and the quantitative output component, automated quantitative conveying is realized.
The functionality of the slide table has been improved, enabling positioning and quantitative conveying. It is suitable for various processing steps, reduces space occupation, improves work efficiency and flexibility, and requires no additional power drive.
Smart Images

Figure CN119217082B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of slide table structure technology, specifically relating to a precision electric micro slide table structure for industrial equipment. Background Technology
[0002] The position of a workpiece is usually adjusted by moving it using a slide table. In current slide table devices, the workpiece is generally mounted on the upper end of the slide table, and the lower end of the slide table is placed directly at the desired position. It can slide along a set track to move the workpiece. Existing slide table devices are mainly used for moving small workpieces. Most slide tables are driven by motors, and the workpiece can be moved by setting the moving distance.
[0003] Existing slides often lack lateral precision alignment, requiring the use of product placement area and additional lateral drive equipment to move the product in both lateral and longitudinal directions, which is cumbersome and requires manual adjustment of the lateral position by staff.
[0004] Existing slide tables are difficult to automate quantitative product delivery. When the slide table moves the product, it cannot output multiple products one by one according to the usage requirements. Instead, it often outputs all the products on the top of the slide table at once. Although the emergence of slide tables makes product transportation more convenient, for some processing steps with positioning and quantitative requirements, existing slide tables do not meet the usage standards and still need further optimization and improvement. To address this issue, we propose a precision electric micro slide table structure for industrial equipment. Summary of the Invention
[0005] The purpose of this invention is to provide a precision electric miniature slide structure for industrial equipment to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a precision electric miniature slide structure for industrial equipment, comprising a slide body, a drive motor, a lead screw body connected to one side of the drive motor, and the lead screw body connected to the slide body; a slide body top is provided on the top of the slide body; and further comprising:
[0007] A lead screw fixing seat is provided on the side wall under the slide body, and the lead screw fixing seat is connected to the end of the lead screw body by a lead screw fixing bolt;
[0008] Product storage components are detachably mounted on the top of the slide body;
[0009] The product quantitative output component is located on one side of the bottom of the product storage component, and there is a gap between the product quantitative output component and the side wall on the slide body.
[0010] Preferably, the drive motor has a motor knob on the side away from the lead screw body, and a lead screw connecting post on the side of the drive motor closer to the lead screw body, and the lead screw body is connected to the output shaft of the drive motor through the lead screw connecting post;
[0011] A limiting slide rod is also provided between the slide body and the drive motor, and the limiting slide rod is located on both sides of the lead screw body. The three are arranged parallel to each other, and there is a gap between the limiting slide rod and the lead screw body.
[0012] Preferably, the top of the slide body is provided with a fixed cover plate recess, and the top of the slide body is provided with multiple mounting holes around the fixed cover plate recess. The side wall of the slide body is provided with a first corner display plate, and the lower side wall of the slide body is provided with a second corner display plate that works in conjunction with the first corner display plate. Both the second corner display plate and the first corner display plate are provided with scales on their surfaces.
[0013] The slide body is provided with a protective plate seat on the side wall of the slide body away from the first corner display panel.
[0014] Preferably, the slide body has a threaded moving seat inside, and the threaded moving seat has an internal threaded layer that cooperates with the lead screw body.
[0015] The top of the threaded movable seat is provided with a cylindrical stop, and the cylindrical stop is fixed to the threaded movable seat by a limiting internal screw. The ends of the two cylindrical stops are provided with cylindrical fixed seats, and the bottom of the cylindrical fixed seats is connected to the bottom of the slide body. A transverse telescopic rod is also provided on one side of the cylindrical fixed seat, between the two cylindrical stops, and the end of the transverse telescopic rod away from the cylindrical fixed seat is connected to the slide body.
[0016] A second arc-shaped guide rail seat is provided on the side of the slide body away from the protective plate seat, and an arc-shaped groove is provided on the side wall of the second arc-shaped guide rail seat. A first arc-shaped guide rail seat is provided on the slide body near the second arc-shaped guide rail seat, and an arc-shaped protrusion is provided on the side wall of the first arc-shaped guide rail seat to cooperate with the arc-shaped groove.
[0017] Preferably, the product storage component includes a product storage box, the top of which has an inlet, one side of which has a protective shell, and the other side of which has a U-shaped mounting base.
[0018] The surface of the U-shaped mounting base is provided with a fixing cover plate body, and the fixing cover plate body is used in conjunction with the fixing cover plate recess. The surface of the U-shaped mounting base is provided with multiple connecting round holes at the position of the fixing cover plate body, and the connecting round holes are all used in conjunction with the cylindrical fixing base.
[0019] Preferably, the product storage box has multiple filling baffles inside, which form an inclined storage groove inside the product storage box. The inclined storage groove is connected to the inlet, and the bottom of the inclined storage groove is connected to the protective shell.
[0020] Preferably, the product metering output component includes a first partition and a second partition, and the product metering output component is located at the bottom of the product storage component;
[0021] At least one product body is placed between the first partition and the second partition. A first quantitative output plate and a second quantitative output plate that are perpendicular to each other are respectively provided between the first partition and the second partition. A plurality of limiting rectangular grooves are opened on the surface of the first partition and the second partition. The first quantitative output plate and the second quantitative output plate pass through the first partition and the second partition respectively through the limiting rectangular grooves.
[0022] The first partition and the second partition are parallel to each other, the first quantitative output plate and the second quantitative output plate are parallel to each other, and the first quantitative output plate is perpendicular to both the first partition and the second partition, and the second quantitative output plate is perpendicular to both the first partition and the second partition.
[0023] Preferably, a rotary motor is provided between the first quantitative output plate and the second quantitative output plate. The output shaft end of the rotary motor is provided with a drive gear, and the rotary motor is fixed to one side of the second partition plate through a connecting plate. The end of the drive gear is rotatably connected to one side of the second partition plate through a linkage limiting shaft.
[0024] The bottom wall of the first quantitative output plate and the top wall of the second quantitative output plate are both provided with toothed posts, and the toothed posts are meshed with the drive gear.
[0025] Preferably, the side wall of the second partition is provided with two opposing limiting sliding seats, and the ends of the limiting sliding seats are provided with limiting inner sliding parts. The top wall of the first quantitative output plate and the bottom wall of the second quantitative output plate are provided with limiting sliding grooves, and the limiting sliding grooves are used in conjunction with the limiting inner sliding parts.
[0026] Preferably, when the first quantitative output plate and the second quantitative output plate move, they move simultaneously in opposite directions at the same speed, and the length of the second quantitative output plate is greater than the length of the first quantitative output plate, and one end of the first quantitative output plate and the second quantitative output plate are always located in the defined rectangular groove on the second partition.
[0027] Compared with the prior art, the beneficial effects of the present invention are:
[0028] This invention improves the functionality of the slide table, enabling it to not only have positioning but also quantitative effects. It achieves multi-functionality and is suitable for conveying various processing steps, resulting in excellent practical effects. Furthermore, it can be moved laterally and calibrated according to actual usage, reducing the space occupied by the top product placement area. This invention realizes a slide table with multiple functions such as integration, convenience, and miniaturization, greatly improving work efficiency.
[0029] The cylindrical fixing seat and the horizontal telescopic rod set at the bottom of the slide body can realize the lateral movement of the slide body, while the slide body itself can realize the longitudinal movement through the lead screw body with high precision. This greatly improves the flexibility of conveying products on the slide body, and does not occupy the product placement area at the top of the slide body, reducing space occupation. At the same time, the first corner display board and the second corner display board can play a calibration role. By observing the data of the scale, the product movement information can be obtained in time.
[0030] Furthermore, the junction of the second corner display panel and the first corner display panel is an arc-shaped structure. This makes the slide body more stable when it moves laterally via the horizontal telescopic rod. It will not deviate and can only move horizontally according to the arc angle of the second and first corner display panels. This has a limiting effect on the movement process, so that the first arc-shaped guide rail can only move according to the set track, making the displacement more stable.
[0031] The product storage component can store and utilize gravity to move products. After multiple product bodies are placed in the product storage component, the special settings of the inclined storage tank and filling baffle achieve the effect of storing multiple products. At the same time, the inclined storage tank and filling baffle, together with gravity, can play a conveying role. When the product body at the bottom is output, the other product bodies in the inclined storage tank will move to fill the position of the previous product. It has a high degree of automation, does not require additional power drive, and saves resources.
[0032] The quantitative output component achieves quantitative conveying. When multiple product bodies are located between the first and second partitions, the first and second quantitative output plates can restrict the product bodies. When the first quantitative output plate contacts the first partition, the product body located at the top of the first quantitative output plate can no longer move to the bottom. At this time, only one product body can be output quantitatively according to the demand. At the same time, the opposite movement of the first and second quantitative output plates is carried out simultaneously, which is very convenient and fast to use, and no manual adjustment by the staff is required. Attached Figure Description
[0033] Figure 1 This is a schematic diagram of the structure of the present invention;
[0034] Figure 2 This is a perspective view of the slide body of the present invention;
[0035] Figure 3 This is a perspective view of the lateral telescopic rod of the present invention;
[0036] Figure 4 This is a perspective view of the built-in threaded layer of the present invention;
[0037] Figure 5 This is a perspective view of the first arc-shaped guide rail base of the present invention;
[0038] Figure 6 This is a perspective view of the main body of the fixing cover plate of the present invention;
[0039] Figure 7 This is a perspective view of the product storage component of the present invention;
[0040] Figure 8 This is a perspective view of the inclined storage tank of the present invention;
[0041] Figure 9 This is a perspective view of the product quantitative output component of the present invention;
[0042] Figure 10 This is a perspective view of the rotating motor of the present invention;
[0043] Figure 11 This is a perspective view of the tooth post of the present invention;
[0044] Figure 12 This is a three-dimensional schematic diagram of the defined groove of the present invention;
[0045] In the picture:
[0046] 100. On the slide body; 101. Protective plate seat; 102. First corner display panel; 103. Fixed cover plate recess; 104. Mounting hole; 105. Cylindrical fixing seat; 106. Cylindrical stop seat; 107. Lateral telescopic rod; 108. Limiting internal screw; 109. Threaded moving seat; 110. Internal threaded layer; 111. First arc-shaped guide rail seat; 112. Arc-shaped protrusion;
[0047] 200. Lower part of the slide body; 201. Second corner display panel; 202. Scale; 203. Arc-shaped groove; 204. Second arc-shaped guide rail seat;
[0048] 300. Screw fixing seat; 301. Screw fixing bolt;
[0049] 400. Limiting slide bar; 401. Lead screw body;
[0050] 500. Drive motor; 501. Motor knob; 502. Lead screw connecting post;
[0051] 600. Product storage assembly; 601. Product storage box; 602. Feed inlet; 603. Protective shell; 604. Connecting round hole; 605. Fixing cover body; 606. U-shaped mounting base; 607. Inclined storage groove; 608. Filling baffle;
[0052] 700. Product quantitative output component; 701. Product body; 702. First partition; 703. Second partition; 704. Limiting sliding seat; 705. First quantitative output plate; 706. Second quantitative output plate; 707. Toothed column; 708. Linkage limiting shaft; 709. Rotating motor; 710. Limiting slide groove; 711. Limiting inner slide; 712. Drive gear; 713. Limiting rectangular groove. Detailed Implementation
[0053] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0054] Please see Figures 1 to 12 This invention provides a technical solution: a precision electric miniature slide structure for industrial equipment, including a lower slide body 200, a drive motor 500, a lead screw body 401 connected to one side of the drive motor 500, and the lead screw body 401 connected to the lower slide body 200. The top of the lower slide body 200 is provided with an upper slide body 100, and the structure further includes:
[0055] The lead screw fixing seat 300 is disposed on the side wall of the lower 200 of the slide body, and the lead screw fixing seat 300 is connected to the end of the lead screw body 401 by the lead screw fixing bolt 301.
[0056] Product storage component 600 is detachably mounted on the top of the slide body 100;
[0057] The product quantitative output component 700 is located on one side of the bottom of the product storage component 600, and there is a gap between the product quantitative output component 700 and the side wall of the slide body 100.
[0058] This invention improves the functionality of the slide table, enabling it to not only have positioning but also quantitative effects. It achieves multi-functionality and is suitable for conveying various processing steps, resulting in excellent practical effects. Furthermore, it can be moved laterally and calibrated according to actual usage, reducing the space occupied by the top product placement area. This invention realizes a slide table with multiple functions such as integration, convenience, and miniaturization, greatly improving work efficiency.
[0059] The cylindrical fixing seat 105 and the horizontal telescopic rod 107 set at the bottom of the slide body 100 can realize the horizontal movement of the slide body 100. The slide body 100 itself can also realize the vertical movement through the lead screw body 401 with high precision, which greatly improves the flexibility of the slide body 100 when conveying products, and does not occupy the product placement area at the top of the slide body 100, reducing space occupation. At the same time, the first corner display board 102 and the second corner display board 201 can play a calibration role. By observing the data of the scale 202, the product movement information can be obtained in time.
[0060] In this embodiment, preferably, a motor knob 501 is provided on the side of the drive motor 500 away from the lead screw body 401, and a lead screw connecting post 502 is provided on the side of the drive motor 500 close to the lead screw body 401, and the lead screw body 401 is connected to the output shaft of the drive motor 500 through the lead screw connecting post 502.
[0061] A limiting slide bar 400 is provided between the slide body 200 and the drive motor 500, and the limiting slide bar 400 is located on both sides of the lead screw body 401. The three are arranged parallel to each other, and there is a gap between the limiting slide bar 400 and the lead screw body 401.
[0062] When the lower 200 and upper 100 of the slide body move longitudinally, the two limiting rods 400 can limit the movement, so that the lower 200 of the slide body can move without shifting or shaking.
[0063] In this embodiment, preferably, as follows: Figure 2 , Figure 3 , Figure 4 The top of the slide body 100 is provided with a fixing cover plate recess 103. The top of the slide body 100 is provided with multiple mounting holes 104 around the fixing cover plate recess 103. The side wall of the slide body 100 is provided with a first corner display plate 102. The side wall of the lower slide body 200 is provided with a second corner display plate 201 that works with the first corner display plate 102. Both the second corner display plate 201 and the first corner display plate 102 are provided with scales 202.
[0064] Protective plate seats 101 are provided on the side walls of the upper 100 and lower 200 of the slide body away from the first corner display panel 102.
[0065] The recess 103 and mounting hole 104 on the fixed cover plate are both used to connect external tools, such as... Figure 1 , Figure 6 This can increase the functionality of the product.
[0066] In this embodiment, preferably, as follows: Figure 2 , Figure 3, Figure 4 The slide body 200 has a threaded moving seat 109 inside, and the threaded moving seat 109 has an internal threaded layer 110 that works with the lead screw body 401.
[0067] The top of the threaded moving seat 109 is provided with a cylindrical stop 106, and the cylindrical stop 106 is fixed to the threaded moving seat 109 by a limiting internal screw 108. The ends of the two cylindrical stops 106 are provided with cylindrical fixing seats 105, and the bottom of the cylindrical fixing seats 105 is connected to the lower 200 of the slide body. A transverse telescopic rod 107 is also provided on one side of the cylindrical fixing seat 105, between the two cylindrical stops 106, and the end of the transverse telescopic rod 107 away from the cylindrical fixing seat 105 is connected to the upper 100 of the slide body.
[0068] A second arc-shaped guide rail seat 204 is provided on the side of the slide body 200 away from the protective plate seat 101, and an arc-shaped groove 203 is provided on the side wall of the second arc-shaped guide rail seat 204. A first arc-shaped guide rail seat 111 is provided on the upper part of the slide body 100 near the second arc-shaped guide rail seat 204, and an arc-shaped protrusion 112 is provided on the side wall of the first arc-shaped guide rail seat 111 to cooperate with the arc-shaped groove 203.
[0069] When the lead screw body 401 rotates, the lead screw body 401 and the threaded moving seat 109 rotate together, thereby causing the threaded moving seat 109 to move in the direction of the lead screw body 401. The threaded moving seat 109 is located inside the lower 200 of the slide body, which drives the lower 200 of the slide body and the upper 100 of the slide body to move. At the same time, the upper 100 of the slide body can move laterally relative to the lower 200 of the slide body.
[0070] Operating the horizontal telescopic rod 107 causes the slide body 100, the first arc-shaped guide rail seat 111, and the first corner display plate 102 to move laterally. Since the connection between the second arc-shaped guide rail seat 204 and the first arc-shaped guide rail seat 111 is an arc structure, it can only move horizontally without any deviation or shaking. The slide body 100 itself can also move longitudinally through the lead screw body 401 with high precision, which greatly improves the flexibility of the slide body 100 when transporting products. It does not occupy the product placement area on the top of the slide body 100, reducing space occupation. At the same time, the first corner display plate 102 and the second corner display plate 201 can serve as a calibration effect. By observing the data of the scale 202, product movement information can be obtained in a timely manner.
[0071] Furthermore, the junction of the second corner display panel 201 and the first corner display panel 102 is an arc-shaped structure. This makes the slide body 100 more stable when it moves laterally via the horizontal telescopic rod 107. It will not deviate and can only move horizontally according to the arc angle of the second corner display panel 201 and the first corner display panel 102. The arc protrusion 112 plays a limiting role in the movement process, so that the first arc-shaped guide rail seat 111 can only move according to the set track, making the displacement more stable.
[0072] In this embodiment, preferably, as follows: Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 The product storage component 600 includes a product storage box 601. The top of the product storage box 601 is provided with a feed port 602. One side of the bottom of the product storage box 601 is provided with a protective shell 603. The other side of the bottom of the product storage box 601 is provided with a U-shaped mounting base 606.
[0073] The surface of the U-shaped mounting base 606 has a fixing cover body 605, which cooperates with the fixing cover recess 103. Multiple connecting holes 604 are formed on the surface of the U-shaped mounting base 606 at the position of the fixing cover body 605, and all connecting holes 604 cooperate with the cylindrical fixing base 105. The special shape of the U-shaped mounting base 606 makes it very convenient to install the product storage component 600. Due to the large opening area, after placing bolts in the connecting holes 604 and mounting holes 104, the U-shaped structure of the U-shaped mounting base 606 allows for quick installation or removal of bolts, saving effort and making it very convenient. At the same time, the fixing cover body 605 and the fixing cover recess 103 provide a locking and limiting effect, making the installation and fixation of the product storage component 600 more stable.
[0074] The product storage component 600 can store and move products using gravity. After multiple product bodies 701 are placed in the product storage component 600, the special settings of the inclined storage slot 607 and the filling baffle 608 can store multiple products. At the same time, the inclined storage slot 607 and the filling baffle 608, together with gravity, can play a conveying role. When the product body 701 at the bottom is output, the other product bodies 701 in the inclined storage slot 607 will move to fill the position of the previous product. It has a high degree of automation, does not require additional power drive, and saves resources.
[0075] In this embodiment, preferably, as follows: Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 The product storage box 601 is provided with multiple filling baffles 608 inside. The multiple filling baffles 608 form an inclined storage groove 607 inside the product storage box 601. The inclined storage groove 607 is connected to the feed port 602, and the bottom of the inclined storage groove 607 is connected to the protective shell 603.
[0076] For details regarding the internal structure of the product storage component 600, please refer to [link / reference]. Figure 7 The specific shapes of the inclined storage tank 607 and the filling baffle 608 can also be considered. Figure 7 When the product body 701 is placed into the feed port 602, it will move by gravity within the inclined storage tank 607 and eventually land at the position of the product quantitative output component 700. The product quantitative output component 700 is located inside the protective shell 603, which protects the product quantitative output component 700 and reduces direct contact between the product quantitative output component 700 and the outside.
[0077] In this embodiment, preferably, as follows: Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 The product dispensing component 700 includes a first partition 702 and a second partition 703, and the product dispensing component 700 is located at the bottom of the product storage component 600;
[0078] At least one product body 701 is placed between the first partition 702 and the second partition 703. A first quantitative output plate 705 and a second quantitative output plate 706 perpendicular to each other are respectively provided between the first partition 702 and the second partition 703. A plurality of limiting rectangular grooves 713 are opened on the surface of the first partition 702 and the second partition 703. The first quantitative output plate 705 and the second quantitative output plate 706 pass through the first partition 702 and the second partition 703 respectively through the limiting rectangular grooves 713.
[0079] The first partition 702 and the second partition 703 are parallel to each other, the first quantitative output plate 705 and the second quantitative output plate 706 are parallel to each other, and the first quantitative output plate 705 is perpendicular to both the first partition 702 and the second partition 703, and the second quantitative output plate 706 is perpendicular to both the first partition 702 and the second partition 703.
[0080] For details regarding the shape and position of the first partition 702, the second partition 703, the first quantitative output plate 705, and the second quantitative output plate 706, please refer to [reference needed]. Figure 10 .
[0081] by Figure 10 For example, in Figure 10 In the process, when the first quantitative output plate 705 moves to the left, the second quantitative output plate 706 moves to the right at the same time. The two move simultaneously and in opposite directions, thereby achieving the effect of quantitative output. Only one product body 701 can be output at a time.
[0082] In this embodiment, preferably, as follows: Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 A rotary motor 709 is provided between the first quantitative output plate 705 and the second quantitative output plate 706. The output shaft end of the rotary motor 709 is provided with a drive gear 712. The rotary motor 709 is fixed to one side of the second partition 703 through a connecting plate. The end of the drive gear 712 is rotatably connected to one side of the second partition 703 through a linkage limiting shaft 708.
[0083] The bottom wall of the first quantitative output plate 705 and the top wall of the second quantitative output plate 706 are both provided with toothed posts 707, and the toothed posts 707 are meshed with the drive gear 712.
[0084] When the rotary motor 709 starts operating, it drives the drive gear 712 to rotate. The drive gear 712 meshes with the toothed posts 707, causing the first metering output plate 705 and the second metering output plate 706 to move horizontally, thus changing their displacement. It is worth noting that when the drive gear 712 meshes with the toothed posts 707 and drives the first metering output plate 705 and the second metering output plate 706 to change their displacement, their directions of movement are opposite.
[0085] The quantitative delivery component 700 achieves quantitative delivery. When multiple product bodies 701 are located between the first partition 702 and the second partition 703, the first quantitative output plate 705 and the second quantitative output plate 706 can restrict the product bodies 701. When the first quantitative output plate 705 contacts the first partition 702, the product body 701 located at the top of the first quantitative output plate 705 can no longer move to the bottom. At this time, only one product body 701 can be quantitatively output according to the demand. At the same time, the opposite movement of the first quantitative output plate 705 and the second quantitative output plate 706 is carried out simultaneously, which is very convenient and quick to use, and no manual adjustment by the staff is required.
[0086] In this embodiment, preferably, as follows: Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 The side wall of the second partition 703 is provided with two opposing limiting sliding seats 704. The ends of the limiting sliding seats 704 are provided with limiting inner sliding parts 711. The top wall of the first quantitative output plate 705 and the bottom wall of the second quantitative output plate 706 are provided with limiting grooves 710, and the limiting grooves 710 and the limiting inner sliding parts 711 are used in conjunction.
[0087] When the first quantitative output plate 705 or the second quantitative output plate 706 is moving, the stability can be further improved by limiting the inner slide member 711 and limiting the slide groove 710. When the first quantitative output plate 705 moves, the limiting inner slide member 711 moves within the limiting slide groove 710. The width of both sides of the limiting inner slide member 711 is greater than the width of the limiting sliding seat 704, so the first quantitative output plate 705 is very stable when moving and will not separate from or fall off the first quantitative output plate 705.
[0088] In this embodiment, preferably, as follows: Figure 1 , Figure 2 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 When the first quantitative output plate 705 and the second quantitative output plate 706 move, they move simultaneously in opposite directions at the same speed. The length of the second quantitative output plate 706 is greater than the length of the first quantitative output plate 705. One end of the first quantitative output plate 705 and the second quantitative output plate 706 are always located in the defined rectangular groove 713 on the second partition 703.
[0089] Since the main body 701 is a cylindrical structure, when two main bodies 701 are placed together, there will still be a gap between the side walls of the two main bodies 701. At this time, as long as the end of the first quantitative output plate 705 is located at this gap, it can prevent the top main body 701 from falling, thereby realizing quantitative output.
[0090] Working principle and usage process: When the lead screw body 401 rotates, the lead screw body 401 and the threaded moving seat 109 rotate threadedly, thereby causing the threaded moving seat 109 to move in the direction of the lead screw body 401. The threaded moving seat 109 is located inside the lower 200 of the slide body, which drives the lower 200 of the slide body and the upper 100 of the slide body to move. At the same time, the upper 100 of the slide body can move laterally relative to the lower 200 of the slide body.
[0091] Operating the horizontal telescopic rod 107 causes the slide body 100, the first arc-shaped guide rail seat 111, and the first corner display plate 102 to move laterally. Since the connection between the second arc-shaped guide rail seat 204 and the first arc-shaped guide rail seat 111 is an arc structure, it can only move horizontally without deviation or shaking. The slide body 100 itself can also move longitudinally through the lead screw body 401 with high precision, which greatly improves the flexibility of the slide body 100 when conveying products. It does not occupy the product placement area on the top of the slide body 100, reducing space occupation. At the same time, the first corner display plate 102 and the second corner display plate 201 can serve as a calibration effect. By observing the data of the scale 202, product movement information can be obtained in time.
[0092] Multiple product bodies 701 are placed in the product storage box 601 through the inlet 602. The product bodies 701 will move by gravity into the inclined storage trough 607 and eventually flow between the second partition 703 and the first partition 702. At this time, the rotating motor 709 can be operated, which drives the drive gear 712 to rotate. The drive gear 712 meshes with the toothed post 707 on the surface of the first quantitative output plate 705 and the second quantitative output plate 706, thereby changing the displacement of the first quantitative output plate 705 and the second quantitative output plate 706. This makes the side wall of the first quantitative output plate 705 and the inner wall of the second partition 703 in the same plane, while the second quantitative output plate 706 is located between the first partition 702 and the second partition 703, so that the product body 701 can no longer move downward.
[0093] When only one product body 701 needs to be output, the rotating motor 709 is operated in the same way, causing the rotating motor 709 to rotate in the opposite direction. This causes the rotating motor 709 to drive the drive gear 712 to rotate. The drive gear 712 meshes with the toothed post 707 on the surface of the first quantitative output plate 705 and the second quantitative output plate 706, thereby changing the displacement of the first quantitative output plate 705 and the second quantitative output plate 706. This causes the side wall of the first quantitative output plate 705 to move to a position close to the first partition 702. The end of the first quantitative output plate 705 passes through the defined rectangular groove 713 and is located between the first partition 702 and the second partition 703. Meanwhile, the second quantitative output plate 706 moves away from the first partition 702, causing the bottom of the first partition 702 and the second partition 703 to open. At this time, one product body 701 can be output.
[0094] Since the main body 701 is a cylindrical structure, when two main bodies 701 are placed together, there will still be a gap between the side walls of the two main bodies 701. At this time, as long as the end of the first quantitative output plate 705 is located at this gap, it can prevent the top main body 701 from falling, thereby realizing quantitative output.
[0095] The above is only used to illustrate the technical solution of the present invention and is not intended to limit it. Other modifications or equivalent substitutions made to the technical solution of the present invention by ordinary technicians in this field should be included in the scope of the claims of the present invention as long as they do not depart from the spirit and scope of the technical solution of the present invention.
Claims
1. A precision electric miniature slide structure for industrial equipment, comprising a slide body lower (200) and a drive motor (500), wherein a lead screw body (401) is connected to one side of the drive motor (500), and the lead screw body (401) is connected to the slide body lower (200), and a slide body upper (100) is provided on the top of the slide body lower (200), characterized in that: Also includes: A lead screw fixing seat (300) is disposed on the side wall of the slide body (200), and the lead screw fixing seat (300) is connected to the end of the lead screw body (401) by a lead screw fixing bolt (301); a product storage assembly (600) is detachably installed on the top of the slide body (100); a product quantitative output assembly (700) is disposed on the bottom side of the product storage assembly (600), and a gap is provided between the product quantitative output assembly (700) and the side wall of the slide body (100); The drive motor (500) has a motor knob (501) on the side away from the lead screw body (401), and a lead screw connecting post (502) on the side of the drive motor (500) close to the lead screw body (401). The lead screw body (401) is connected to the output shaft of the drive motor (500) through the lead screw connecting post (502). A limiting slide rod (400) is also provided between the slide body (200) and the drive motor (500). The limiting slide rod (400) is located on both sides of the lead screw body (401). The three are arranged parallel to each other, and there is a gap between the limiting slide rod (400) and the lead screw body (401). The top of the slide body (100) is provided with a fixing cover plate recess (103), and the top of the slide body (100) is provided with multiple mounting holes (104) around the fixing cover plate recess (103). The side wall of the slide body (100) is provided with a first corner display plate (102), and the side wall of the lower slide body (200) is provided with a second corner display plate (201) that works in conjunction with the first corner display plate (102). The surfaces of the second corner display plate (201) and the first corner display plate (102) are both provided with scales (202). The side walls of the slide body (100) and the lower slide body (200) away from the first corner display plate (102) are provided with protective plate seats (101). The slide body (200) is provided with a threaded moving seat (109) inside. The threaded moving seat (109) is provided with an internal thread layer (110) that works with the lead screw body (401). The top of the threaded moving seat (109) is provided with a cylindrical stop (106), and the cylindrical stop (106) is fixed to the threaded moving seat (109) by a limiting internal screw (108). The ends of the two cylindrical stops (106) are provided with cylindrical fixing seats (105), and the bottom of the cylindrical fixing seats (105) is connected to the slide body (200). A transverse telescopic rod (107) is provided on one side of the cylindrical fixing seat (105) between the two cylindrical stops (106), and the end of the transverse telescopic rod (107) away from the cylindrical fixing seat (105) is connected to the slide body (100). A second arc-shaped guide rail seat (204) is provided on the side of the slide body (200) away from the protective plate seat (101), and an arc-shaped groove (203) is provided on the side wall of the second arc-shaped guide rail seat (204). A first arc-shaped guide rail seat (111) is provided on the slide body (100) near the second arc-shaped guide rail seat (204), and an arc-shaped protrusion (112) is provided on the side wall of the first arc-shaped guide rail seat (111) to cooperate with the arc-shaped groove (203). The product storage component (600) includes a product storage box (601), with an inlet (602) at the top of the product storage box (601), a protective shell (603) on one side of the bottom of the product storage box (601), and a U-shaped mounting base (606) on the other side of the bottom of the product storage box (601). A fixing cover body (605) is provided on the surface of the U-shaped mounting base (606), and the fixing cover body (605) cooperates with the fixing cover recess (103). A plurality of connecting round holes (604) are provided on the surface of the U-shaped mounting base (606) at the position of the fixing cover body (605), and the connecting round holes (604) are all used in conjunction with the cylindrical fixing base (105).
2. The precision electric miniature slide structure for industrial equipment according to claim 1, characterized in that: The product storage box (601) is provided with multiple filling baffles (608) inside. The multiple filling baffles (608) form an inclined storage groove (607) inside the product storage box (601). The inclined storage groove (607) is connected to the feed port (602), and the bottom of the inclined storage groove (607) is connected to the protective shell (603).
3. The precision electric miniature slide structure for industrial equipment according to claim 2, characterized in that: The product quantitative output component (700) includes a first partition (702) and a second partition (703), and the product quantitative output component (700) is located at the bottom of the product storage component (600); at least one product body (701) is placed between the first partition (702) and the second partition (703), and a first quantitative output plate (705) and a second quantitative output plate (706) that are perpendicular to each other are respectively provided between the first partition (702) and the second partition (703), and a plurality of limiting rectangular grooves (713) are opened on the surface of the first partition (702) and the second partition (703), and the first quantitative output plate (705) and the second quantitative output plate (706) pass through the first partition (702) and the second partition (703) respectively through the limiting rectangular grooves (713); The first partition (702) and the second partition (703) are parallel to each other, the first quantitative output plate (705) and the second quantitative output plate (706) are parallel to each other, and the first quantitative output plate (705) is perpendicular to both the first partition (702) and the second partition (703), and the second quantitative output plate (706) is perpendicular to both the first partition (702) and the second partition (703).
4. The precision electric miniature slide structure for industrial equipment according to claim 3, characterized in that: A rotating motor (709) is provided between the first quantitative output plate (705) and the second quantitative output plate (706). The output shaft end of the rotating motor (709) is provided with a drive gear (712). The rotating motor (709) is fixed to one side of the second partition (703) through a connecting plate. The end of the drive gear (712) is rotatably connected to one side of the second partition (703) through a linkage limiting shaft (708). The bottom wall of the first quantitative output plate (705) and the top wall of the second quantitative output plate (706) are both provided with toothed posts (707), and the toothed posts (707) are meshed with the drive gear (712).
5. The precision electric miniature slide structure for industrial equipment according to claim 4, characterized in that: The side wall of the second partition (703) is provided with two opposing limiting sliding seats (704), and the ends of the limiting sliding seats (704) are provided with limiting inner sliding parts (711). The top wall of the first quantitative output plate (705) and the bottom wall of the second quantitative output plate (706) are provided with limiting grooves (710), and the limiting grooves (710) are used in conjunction with the limiting inner sliding parts (711).
6. The precision electric miniature slide structure for industrial equipment according to claim 5, characterized in that: When the first quantitative output plate (705) and the second quantitative output plate (706) move, they move simultaneously in opposite directions at the same speed. The length of the second quantitative output plate (706) is greater than the length of the first quantitative output plate (705), and one end of the first quantitative output plate (705) and the second quantitative output plate (706) are always located in the defined rectangular groove (713) on the second partition (703).
Citation Information
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