A thermocouple bonding device for manufacturing a heat flow sensor
By combining a sliding column and a sliding plate driven by a servo motor, the problem of uneven glue application in thermocouple bonding devices is solved, achieving uniform glue distribution and rapid drying, thus improving work efficiency and appearance quality.
Patent Information
- Application Number
- CN202310700222.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-13
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2043-06-13
AI Technical Summary
Existing thermocouple bonding devices often result in uneven glue application, leading to waste, prolonged curing time, reduced work efficiency, and poor appearance.
The combination of a sliding column and a sliding plate driven by a servo motor enables the glue dispensing cylinder to move back and forth in the horizontal and vertical directions, and combined with a scraping brush, ensures that the glue is evenly distributed.
It achieves uniform glue application, saves on usage, shortens drying time, improves work efficiency, and enhances appearance.
Smart Images

Figure CN116899809B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of heat flow sensor manufacturing, and particularly relates to a thermocouple sticking device for heat flow sensor manufacturing. BACKGROUND
[0002] The thermocouple is a temperature measuring element commonly used in heat flow sensor manufacturing, and a patent application with the publication number CN205506251U discloses a patch type thermocouple, which comprises a temperature measuring probe, a group of connecting wires and a fixing clamp, wherein the temperature measuring probe is provided with a detection sheet, the contact area of the probe and the measured object is increased by arranging the detection sheet on the temperature measuring probe, the accuracy of temperature measurement of the thermocouple is effectively improved, and the response speed is also improved, however, the temperature measuring end of the patch type thermocouple in the prior art is usually fixed on the detection sheet by means of glue, so that the temperature measuring state is stable.
[0003] The thermocouple sticking device in the prior art fixes the detection sheet on the temperature measuring end of the thermocouple by means of a push plate, and then the glue is discharged on the detection sheet by means of a glue discharging cylinder, and then the temperature measuring end of the thermocouple is stuck on the glue, and the work is completed after the glue is completely solidified.
[0004] The thermocouple sticking device in the prior art has the following problems: the glue discharging cylinder is fixed, the glue cannot be uniformly discharged on the detection sheet when the glue is discharged by means of the glue discharging cylinder, the glue is accumulated on the detection sheet, the accumulated glue is used in a large amount, the glue is wasted, the accumulated glue is slow in air drying, the solidification time of the glue is prolonged, the work efficiency is reduced, the accumulated glue forms a large glue point after air drying, the use is hindered, and the appearance is affected.
[0005] Therefore, the application provides a thermocouple sticking device for heat flow sensor manufacturing. SUMMARY
[0006] In order to make up for the deficiencies of the prior art and solve at least one technical problem in the background art.
[0007] The technical scheme adopted by the present application to solve its technical problems is: a thermocouple sticking device for manufacturing heat flow sensors, comprising a workbench, a sliding groove one is formed in the workbench, a longitudinal sliding plate is slidably arranged in the sliding groove one, a sliding groove two is arranged above the longitudinal sliding plate, a transverse sliding plate is slidably arranged in the sliding groove two, a square hole is formed in the transverse sliding plate, a glue outlet cylinder is arranged on the transverse sliding plate, and a servo motor is arranged on the side of the longitudinal sliding plate away from the glue outlet cylinder; the servo motor is fixedly connected to the top surface of the workbench, a rotating shaft is fixedly connected to the output shaft of the servo motor, the rotating shaft is movably connected to a limiting disc, a spiral sliding groove is formed in the limiting disc, the limiting disc is fixedly connected to the top surface of the workbench through a connecting plate, a sliding column is slidably arranged in the sliding groove, a rotating disc is arranged above the limiting disc, the rotating disc is fixedly connected to the rotating shaft, a rectangular hole is formed in one side of the center of the rotating disc, the sliding column penetrates through the rectangular hole, a first sliding ring is arranged above the rotating disc, the sliding column penetrates through and is slidably connected to the first sliding ring, a first push rod is fixedly connected to one side of the first sliding ring, a sliding rod is fixedly connected to the first push rod, the sliding rod penetrates through the square hole in the transverse sliding plate, a support frame one is arranged on one side of the servo motor, a square hole is formed in the support frame one, the first push rod penetrates through the square hole formed in the support frame one, a second sliding ring is arranged above the first sliding ring, the sliding column penetrates through and is slidably connected to the second sliding ring, a second push rod is fixedly connected to one side of the second sliding ring, the second push rod is fixedly connected to the longitudinal sliding plate, a support frame two is arranged on one side of the servo motor, a square hole is formed in the support frame two, and the second push rod penetrates through the square hole formed in the support frame two; a limiting piece is fixedly connected to the bottom and the middle of the sliding column, and the limiting piece fixedly connected to the middle is arranged at the intermediate position of the rotating disc and the first sliding ring;
[0008] Specifically, when the detection piece reaches the specified position, the glue cylinder is above the detection piece. When the glue cylinder starts to slowly discharge glue, the servo motor starts to rotate in the positive direction at this time, driving the rotating shaft to rotate, the rotating shaft drives the rotating disc to rotate, the rotating disc drives the sliding column in the rectangular hole to move together. The limiting piece can ensure that the sliding column will not fall off and will not tilt under stress. At this time, due to the restriction of the spiral sliding groove on the limiting disc, the sliding column will spiral circumferentially slide in the sliding groove. And under the joint restriction of the sliding groove and the rectangular hole, while circumferentially sliding, the circumferential range of its circumferential motion will gradually increase. The sliding column drives the first sliding ring to move, the first sliding ring drives the first push rod to move synchronously, the first push rod slides in the square hole on the support frame one, the first push rod drives the sliding rod to move synchronously, the sliding rod penetrates through the square hole on the horizontal sliding plate, thereby driving the horizontal sliding plate to move horizontally, and the amplitude of the horizontal movement gradually increases. At the same time, the sliding column drives the second sliding ring to move, the second sliding ring drives the second push rod to move synchronously, the second push rod slides in the square hole on the support frame two, thereby driving the vertical sliding plate to move vertically, so that the vertical sliding plate drives the horizontal sliding plate to move vertically, and the amplitude of the vertical movement gradually increases. At this time, the horizontal sliding plate moves horizontally and vertically, and the amplitudes of the two movements gradually increase. The glue cylinder is arranged on the horizontal sliding plate, so that the glue cylinder moves horizontally and vertically when discharging glue, and the amplitudes of the two movements gradually increase. Eventually, when the glue cylinder discharges glue, it can gradually spread the glue on the detection piece, so that the glue is evenly arranged on the detection piece. When the glue cylinder works to the maximum range, the glue cylinder completes the glue discharge, at this time the servo motor starts to rotate in the reverse direction, driving the sliding column to the initial state before discharging glue, so as to solve the problem that the glue is easy to accumulate on the detection piece. Not only saves the amount of glue used, but also shortens the drying speed of the glue, improves the working efficiency, avoids the glue point formed after the glue dries, is convenient to use, and improves the appearance.
[0009] Preferably, a square hole is formed in the longitudinal sliding plate, and a hydraulic rod one is arranged in the square hole. The hydraulic rod one is fixedly connected to the top surface of the workbench. The output end of the hydraulic rod one is fixedly connected with a clamping plate one. The clamping plate one is parallel to the longitudinal sliding plate. A hydraulic rod two is fixedly connected to the workbench. The output end of the hydraulic rod two is fixedly connected with a clamping plate two. The clamping plate one is perpendicular to the clamping plate two. A baffle one is fixedly connected to the side of the workbench parallel to the clamping plate one. A baffle two is fixedly connected to the side of the workbench parallel to the clamping plate two.
[0010] Specifically, when the plurality of detection pieces are placed on the workbench, the first clamping plate is pushed by the first hydraulic rod, the plurality of detection pieces are pushed by the first clamping plate until the detection pieces abut against the first baffle, the second clamping plate is pushed by the second hydraulic rod, the plurality of detection pieces are pushed by the first clamping plate until the detection pieces abut against the second baffle, so that the detection pieces can be fixed at the required specified position, that is, the detection pieces are below the glue discharge cylinder, and the next glue discharging work can be performed.
[0011] Preferably, two side plates are fixedly connected on one side of the transverse sliding plate, a fixed sliding rod is fixedly connected between the two side plates, a plurality of glue discharge cylinders are slidably arranged on the fixed sliding rod, a top plate is fixedly connected above the two side plates, a glue discharging box is fixedly connected on the top plate, and the glue discharging box is communicated with the glue discharge cylinders through a pipeline.
[0012] Specifically, when the glue needs to be discharged, the glue discharging box is started, the glue discharging box discharges the glue into the glue discharge cylinders through the pipeline, and the glue discharge cylinders discharge the glue onto the detection pieces.
[0013] Preferably, a plurality of moving blocks one are slidably connected on the fixed sliding rod, and the glue discharge cylinders are fixedly connected on the side, away from the transverse sliding plate, of the moving blocks one.
[0014] Specifically, when the glue discharge cylinders need to discharge glue on detection pieces with different widths, the distance between the plurality of moving blocks one is adjusted, the moving blocks one drive the glue discharge cylinders to move synchronously, the distance between the plurality of glue discharge cylinders is adjusted, and the glue discharge cylinders can discharge glue on detection pieces with different widths.
[0015] Preferably, a sliding head is fixedly connected on the side, close to the transverse sliding plate, of the moving blocks one, an equidistance adjusting plate is arranged on the side, close to the transverse sliding plate, of the moving blocks one, vertical sliding grooves are formed in the sides, close to the equidistance adjusting plate, of the two side plates, the equidistance adjusting plate is slidably arranged in the vertical sliding grooves, a plurality of straight slot holes are formed in the equidistance adjusting plate, the sliding head is slidably arranged in the straight slot holes, a bottom plate is fixedly connected between the two side plates, an adjusting hydraulic rod is fixedly connected on the bottom plate, and the output end of the adjusting hydraulic rod is fixedly connected with the side wall of the equidistance adjusting plate through a connecting plate.
[0016] Specifically, when the distance between the plurality of glue cylinders needs to be adjusted, the equal-distance adjusting plate is driven to move upward or downward by starting the adjusting hydraulic rod, the equal-distance adjusting plate can adjust the distance position between the glue cylinders, and the distance position between the adjacent glue cylinders can be equal, since the straight slot hole is formed on the equal-distance adjusting plate, the sliding head is fixedly connected with the moving block one, and the moving block one is fixedly connected with the sliding rod, so the sliding head can only slide horizontally on the fixed sliding rod along with the moving block one, the equal-distance adjusting plate can drive the plurality of sliding heads to move through the straight slot hole, the plurality of sliding heads drive the plurality of moving blocks one to move, and the plurality of moving blocks one drive the plurality of glue cylinders to move, so that the distance position between the adjacent glue cylinders can be equal, and the plurality of glue cylinders can be arranged to discharge glue above the detection sheet of different sizes, thereby enhancing the functionality of the present application.
[0017] Preferably, the straight slot hole comprises a vertical slot hole and a plurality of groups of inclined slot holes symmetrically arranged on both sides of the vertical slot hole, and the distance between any two adjacent sliding heads in the straight slot hole is equal when the equal-distance adjusting plate is driven to move by the adjusting hydraulic rod.
[0018] Specifically, when the equal-distance adjusting plate moves upward or downward, the sliding head can slide in the straight slot hole through the straight slot hole arranged on the equal-distance adjusting plate, and the distance between the adjacent sliding heads is equal, at the same time, the sliding head drives the moving block one to move, and the moving block one drives the glue cylinder to move, so that the plurality of glue cylinders can be arranged to discharge glue above the detection sheet of different sizes, thereby enhancing the functionality of the present application.
[0019] Preferably, the glue cylinder is rotatably connected with a roller one, the roller one is fixedly connected with a scraping brush below, the fixed sliding rod is slidably provided with a moving block two on the end portion, the moving block two is fixedly connected with a motor, the motor output shaft is fixedly connected with a roller two below, the roller two is drivingly connected with a belt, and the belt is further drivingly connected with the roller one, the moving block two is provided with a connecting rod above, one end of the connecting rod is fixedly connected with the moving block two, and the other end of the connecting rod is fixedly connected with the moving block one farthest from the moving block two.
[0020] Specifically, when the glue cylinder slowly discharges glue onto the detection sheet, the driving roller one can drive the scraping brush to scrape the glue on the detection sheet, so that the glue is evenly distributed on the detection sheet, avoiding the accumulation of glue on the detection sheet, saving the amount of glue used, shortening the drying speed of the glue, improving the work efficiency, avoiding the formation of glue points after the glue dries, facilitating use, and improving the appearance.
[0021] Preferably, the baffle one is provided with a stop block one above, the stop block one is detachably connected with the baffle one, the baffle two is provided with a stop block two above, and the stop block two is detachably connected with the baffle two.
[0022] Specifically, the stop block one is used to limit the clamping of the detection sheet by the clamping plate one, and the stop block two is used to limit the clamping of the detection sheet by the clamping plate two, so as to prevent the detection sheet from being damaged by excessive clamping.
[0023] The beneficial effects of the present application are as follows:
[0024] 1. The hot wire sensor manufacturing thermocouple sticking device, through the first push rod driving the sliding rod synchronous movement, the sliding rod penetrates the square hole on the transverse sliding plate, thereby driving the transverse sliding plate to move transversely, and the second push rod drives the longitudinal sliding plate to move longitudinally, so that the glue cylinder moves transversely and longitudinally when discharging glue, and the amplitude of the two movements gradually increases, so that the glue cylinder can gradually scatter the glue on the detection sheet when discharging glue, and the glue is evenly discharged on the detection sheet, thereby solving the problem of easy accumulation of glue on the detection sheet, saving the amount of glue used, shortening the drying speed of the glue, improving the work efficiency, avoiding the formation of glue points after the glue dries, facilitating use, and improving the appearance.
[0025] 2. The thermocouple sticking device for heat flow sensor manufacturing, by starting the motor, the motor drives the roller two to rotate, the roller two drives the belt to rotate, the belt drives the roller one to rotate, the roller one can drive the scraping brush, the scraping brush scrapes the glue on the detection sheet, the glue is evenly distributed on the detection sheet, the glue is prevented from accumulating on the detection sheet, the use amount of the glue is saved, the airing speed of the glue is shortened, the work efficiency is improved, the glue point is prevented from being formed after the glue is aired, the use is prevented from being affected, and the appearance is prevented from being affected. BRIEF DESCRIPTION OF DRAWINGS
[0026] The application will be further described below in combination with the drawings.
[0027] Figure 1 is a perspective view of the application;
[0028] Figure 2 is a structure diagram of the clamping plate one and the clamping plate two in the application;
[0029] Figure 3 is another perspective view of the application; Figure 1
[0030] Figure 4 is a local enlarged view of A in the application; Figure 3
[0031] Figure 5 is an explosion view of the connection structure of the limiting disc and the rotating disc in the application;
[0032] Figure 6 is a structure diagram of the roller one and the roller two in the application;
[0033] Figure 7 is a structure diagram of the equidistance adjusting plate in the application;
[0034] In the figure: 1, workbench; 2, sliding groove one; 3, longitudinal sliding plate; 4, sliding groove two; 5, transverse sliding plate; 6, square hole; 7, glue outlet cylinder; 8, servo motor; 9, rotating shaft; 10, limiting disc; 11, sliding through groove; 12, sliding column; 13, rotating disc; 14, oblong hole; 15, connecting plate; 16, first sliding ring; 17, first push rod; 18, sliding rod; 19, support frame one; 20, second sliding ring; 21, second push rod; 22, support frame two; 23, limiting sheet; 24, hydraulic rod one; 25, clamping plate one; 26, hydraulic rod two; 27, clamping plate two; 28, baffle one; 29, baffle two; 30, side plate; 31, fixed sliding rod; 32, moving block one; 33, sliding head; 34, equidistance adjusting plate; 35, bottom plate; 36, adjusting hydraulic rod; 37, connecting long plate; 38, roller one; 39, scraping brush; 40, moving block two; 41, motor; 42, roller two; 43, belt; 44, connecting rod; 45, vertical sliding groove; 46, straight slot hole; 461, vertical slot hole; 462, inclined slot hole; 47, stopper one; 48, stopper two; 49, glue discharging box; 50, guide pipe; 51, top plate. DETAILED DESCRIPTION
[0035] In order to make the technical means, creative features, purposes and effects realized by the present application easy to understand, the present application is further described below in combination with specific embodiments.
[0036] Embodiment one
[0037] As Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5As shown, the hot-wire sensor manufacturing thermocouple pasting device comprises a workbench 1, a sliding groove one 2 is formed on the workbench 1, a longitudinal sliding plate 3 is slidably arranged in the sliding groove one 2, a sliding groove two 4 is arranged above the longitudinal sliding plate 3, a transverse sliding plate 5 is slidably arranged in the sliding groove two 4, a square hole 6 is formed on the transverse sliding plate 5, a glue outlet cylinder 7 is arranged on the transverse sliding plate 5, and a servo motor 8 is arranged on the side of the longitudinal sliding plate 3 away from the glue outlet cylinder 7; the servo motor 8 is fixedly connected to the top surface of the workbench 1, a rotating shaft 9 is fixedly connected to the output shaft of the servo motor 8, the rotating shaft 9 is movably connected to a limiting disc 10, a spiral sliding channel 11 is formed on the limiting disc 10, the limiting disc 10 is fixedly connected to the top surface of the workbench 1 through a connecting plate 15, a sliding column 12 is slidably arranged in the sliding channel 11, a rotating disc 13 is arranged above the limiting disc 10, the rotating disc 13 is fixedly connected to the rotating shaft 9, a long hole 14 is formed on one side of the center of the rotating disc 13, the sliding column 12 penetrates the long hole 14, a first sliding ring 16 is arranged above the rotating disc 13, the sliding column 12 penetrates and slidably connects the first sliding ring 16, a first push rod 17 is fixedly connected to one side of the first sliding ring 16, a sliding rod 18 is fixedly connected to the first push rod 17, the sliding rod 18 penetrates the square hole 6 on the transverse sliding plate 5, a support frame one 19 is arranged on one side of the servo motor 8, a square hole is formed on the support frame one 19, the first push rod 17 penetrates the square hole formed on the support frame one 19, a second sliding ring 20 is arranged above the first sliding ring 16, the sliding column 12 penetrates and slidably connects the second sliding ring 20, a second push rod 21 is fixedly connected to one side of the second sliding ring 20, the second push rod 21 is fixedly connected to the longitudinal sliding plate 3, a support frame two 22 is arranged on one side of the servo motor 8, a square hole is formed on the support frame two 22, and the second push rod 21 penetrates the square hole formed on the support frame two 22; a limiting piece 23 is fixedly connected to the bottom and the middle of the sliding column 12, and the limiting piece 23 fixedly connected to the middle is located between the rotating disc 13 and the first sliding ring 16;
[0038] Specifically, when the detection piece reaches the specified position, the glue cylinder 7 is above the detection piece. When the glue cylinder 7 starts to slowly discharge glue, the servo motor 8 starts to rotate in the forward direction at this time, driving the rotating shaft 9 to rotate, the rotating shaft 9 drives the rotating disc 13 to rotate, the rotating disc 13 drives the sliding column 12 in the oblong hole 14 to move together, the limiting piece 23 can ensure that the sliding column 12 will not fall off and will not tilt under the force. At this time, due to the restriction of the spiral sliding groove 11 on the limiting disc 10, the sliding column 12 will spiral circumferentially slide in the sliding groove 11, and under the joint restriction of the sliding groove 11 and the oblong hole 14, the circumferential range of the circumferential movement of the sliding column 12 will gradually increase, and the sliding column 12 drives the first sliding ring 16 to move, the first sliding ring 16 drives the first push rod 17 to move synchronously, the first push rod 17 slides in the square hole on the support frame one 19, the first push rod 17 drives the sliding rod 18 to move synchronously, the sliding rod 18 penetrates the square hole 6 on the transverse sliding plate 5, thereby driving the transverse sliding plate 5 to move transversely, and the amplitude of the transverse movement gradually increases. At the same time, the sliding column 12 drives the second sliding ring 20 to move, the second sliding ring 20 drives the second push rod 21 to move synchronously, the second push rod 21 slides in the square hole on the support frame two 22, thereby the second push rod 21 drives the longitudinal sliding plate 3 to move longitudinally, so that the longitudinal sliding plate 3 drives the transverse sliding plate 5 to move longitudinally, and the amplitude of the longitudinal movement gradually increases. At this time, the transverse sliding plate 5 moves transversely and longitudinally, and the amplitudes of the two movements gradually increase. The glue cylinder 7 is arranged on the transverse sliding plate 5, so that the glue cylinder 7 moves transversely and longitudinally when discharging glue, and the amplitudes of the two movements gradually increase. Finally, when the glue cylinder 7 discharges glue, the glue can be gradually scattered on the detection piece, so that the glue is uniformly arranged on the detection piece. When the glue cylinder 7 works to the maximum range, the glue cylinder 7 completes the glue discharge. At this time, the servo motor 8 starts to rotate in the reverse direction, driving the sliding column 12 to the initial state before discharging glue, so that the next glue discharge work can be carried out, so that the glue will not accumulate on the detection piece, not only saving the amount of glue used, but also shortening the glue drying speed, improving the working efficiency, avoiding the glue points formed after the glue dries, facilitating use, and improving the appearance.
[0039] As Figure 1 , Figure 2The longitudinal sliding plate 3 is provided with a square hole, a hydraulic rod one 24 is arranged in the square hole, the hydraulic rod one 24 is fixedly connected to the top surface of the workbench 1, the output end of the hydraulic rod one 24 is fixedly connected with a clamping plate one 25, the clamping plate one 25 is parallel to the longitudinal sliding plate 3, the workbench 1 is fixedly connected with a hydraulic rod two 26, the output end of the hydraulic rod two 26 is fixedly connected with a clamping plate two 27, the clamping plate one 25 is perpendicular to the clamping plate two 27, the workbench 1 is fixedly connected with a baffle one 28 on the side parallel to the clamping plate one 25, and the workbench 1 is fixedly connected with a baffle two 29 on the side parallel to the clamping plate two 27;
[0040] Specifically, when a plurality of detection pieces are placed on the workbench 1, the clamping plate one 25 is pushed by the hydraulic rod one 24, the plurality of detection pieces are pushed by the clamping plate one 25, until the detection pieces abut against the baffle one 28, the clamping plate two 27 is pushed by the hydraulic rod two 26, the plurality of detection pieces are pushed by the clamping plate one 25, until the detection pieces abut against the baffle two 29, so that the detection pieces can be fixed at the required specified position, that is, the detection pieces are below the glue cylinder 7, and the next step of discharging glue can be performed.
[0041] As shown in Figure 1 , Figure 6 , one side of the transverse sliding plate 5 is fixedly connected with two side plates 30, the two side plates 30 are fixedly connected with a fixed sliding rod 31, a plurality of glue cylinders 7 are slidingly arranged on the fixed sliding rod 31, the top plate 51 is fixedly connected above the two side plates 30, the glue discharging box 49 is fixedly connected to the top plate 51, and the glue discharging box 49 is communicated with the glue cylinder 7 through the conduit 50.
[0042] Specifically, when the glue needs to be discharged, the glue discharging box 49 is started, the glue is discharged into the glue cylinder 7 through the conduit 50, and the glue cylinder 7 discharges the glue onto the detection piece.
[0043] As shown in Figure 1 , Figure 6 , a plurality of moving blocks one 32 are slidingly connected to the fixed sliding rod 31, and the glue cylinder 7 is fixedly connected to the side, away from the transverse sliding plate 5, of the moving block one 32.
[0044] Specifically, when the glue cylinder 7 needs to discharge glue on detection pieces with different widths, the distance between the plurality of moving blocks one 32 is adjusted, the moving block one 32 drives the glue cylinder 7 to move synchronously, the distance between the plurality of glue cylinders 7 is adjusted, and the glue cylinder 7 can discharge glue on detection pieces with different widths.
[0045] As shown in Figure 6 , Figure 7As shown, the moving block one 32 is fixedly connected with a sliding head 33 on one side of the transverse sliding plate 5, and an equidistant adjusting plate 34 is arranged on the side of the moving block one 32 close to the transverse sliding plate 5, two vertical sliding grooves 45 are formed on the side of the two side plates 30 close to the equidistant adjusting plate 34, the equidistant adjusting plate 34 is slidably arranged in the vertical sliding grooves 45, a plurality of straight slot holes 46 are formed on the equidistant adjusting plate 34, and the sliding head 33 is slidably arranged in the straight slot holes 46. The bottom plate 35 is fixedly connected between the two side plates 30, the adjusting hydraulic rod 36 is fixedly connected to the side wall of the equidistant adjusting plate 34 through the connecting long plate 37.
[0046] Specifically, when the distance between the plurality of glue cylinders 7 needs to be adjusted, the adjusting hydraulic rod 36 is started to drive the equidistant adjusting plate 34 to move upward or downward, the equidistant adjusting plate 34 can adjust the distance position between the glue cylinders 7, and the distance position between the adjacent glue cylinders 7 can be equal. Since the straight slot holes 46 are formed on the equidistant adjusting plate 34, the sliding head 33 is fixedly connected with the moving block one 32, and the moving block one 32 is fixedly connected with the fixed sliding rod 31, so the sliding head 33 can only slide horizontally on the fixed sliding rod 31 along with the moving block one 32. The equidistant adjusting plate 34 can drive a plurality of sliding heads 33 to move through the straight slot holes 46, the plurality of sliding heads 33 drive the plurality of moving blocks one 32 to move, and the plurality of moving blocks one 32 drive the plurality of glue cylinders 7 to move, so that the distance position between the adjacent glue cylinders 7 can be equal, and the plurality of glue cylinders 7 can discharge glue above the detection sheet of different sizes, thereby enhancing the functionality of the present application.
[0047] As shown in Figure 6 , Figure 7 , the straight slot hole 46 comprises a vertical slot hole 461 and a plurality of groups of inclined slot holes 462 symmetrically arranged on both sides of the vertical slot hole 461. When the equidistant adjusting plate 34 is driven to move by the adjusting hydraulic rod 36, the distance between any two adjacent sliding heads 33 in the straight slot hole 46 is equal.
[0048] Specifically, when the equidistant adjusting plate 34 moves upward or downward, the straight slot holes 46 arranged on the equidistant adjusting plate 34 can drive the sliding heads 33 to slide in the straight slot holes 46, and the distance between the adjacent sliding heads 33 is equal. At the same time, the sliding heads 33 drive the moving block one 32 to move, and the moving block one 32 drives the glue cylinder 7 to move, so that the plurality of glue cylinders 7 can discharge glue above the detection sheet of different sizes, thereby enhancing the functionality of the present application.
[0049] As shown in Figure 1 , the baffle one 28 is provided with a stop block one 47 above, and the stop block one 47 is detachably connected with the baffle one 28. The baffle two 29 is provided with a stop block two 48 above, and the stop block two 48 is detachably connected with the baffle two 29.
[0050] Specifically, the stopper one 47 is used to limit the clamping of the detection sheet by the clamping plate one 25, and the stopper two 48 is used to limit the clamping of the detection sheet by the clamping plate two 27, so as to prevent the detection sheet from being clamped too much and damaged. The detachable connection is used to adjust the resistance position when clamping detection sheets of different sizes.
[0051] Embodiment two
[0052] As shown in Figure 6 the comparative embodiment one, in order to solve the problem that the glue is prone to glue points due to uneven distribution on the detection sheet, which hinders use and affects appearance, another embodiment of the present application is: the moving block two 40 is slidably arranged on the end of the fixed sliding rod 31, the motor 41 is fixedly connected to the moving block two 40, the roller two 42 is fixedly connected below the output shaft of the motor 41, the roller two 42 and the plurality of rollers one 38 are drivingly connected through the belt 43, the roller one 38 is rotatably connected to the glue outlet cylinder 7, the scraping brush 39 is fixedly connected below the roller one 38, the connecting rod 44 is arranged above the moving block two 40, one end of the connecting rod 44 is fixedly connected to the moving block two 40, and the other end of the connecting rod 44 is fixedly connected to the moving block one 32 farthest from the moving block two 40.
[0053] Specifically, the motor 41 is started to drive the roller two 42 to rotate, the belt 43 is driven to rotate by the roller two 42, the roller one 38 is driven to rotate by the belt 43, and the scraping brush 39 can be driven by the roller one 38. The scraping brush 39 can scrape the glue on the detection sheet. When the glue outlet cylinder 7 slowly discharges glue onto the detection sheet, the scraping brush 39 can be driven by the roller one 38 to scrape the glue on the detection sheet. The glue is evenly distributed on the detection sheet, avoiding glue accumulation on the detection sheet. Not only saves the amount of glue used, but also shortens the glue drying time, improves work efficiency, avoids glue points formed after glue drying, facilitates use, and improves appearance. By arranging the connecting rod 44, the moving block two 40 and the moving block one 32 are fixedly connected, so that the distance between the moving block two 40 and the moving block one 32 remains unchanged, and when the equidistant adjustment plate 34 drives the moving block one 32 to move along the fixed sliding rod 31, the belt 43 is prevented from falling off the roller two 42 and the roller one 38.
[0054] The working principle is that when the plurality of detection pieces are placed on the workbench 1, the clamping plate 1 is pushed by the hydraulic rod 24, the clamping plate 1 pushes the plurality of detection pieces until the detection pieces abut against the baffle 1, the clamping plate 2 is pushed by the hydraulic rod 26, the clamping plate 1 pushes the plurality of detection pieces until the detection pieces abut against the baffle 2, the stopper 1 is used to limit the clamping of the clamping plate 1 to the detection pieces, the stopper 2 is used to limit the clamping of the clamping plate 2 to the detection pieces, and the detection pieces are prevented from being clamped excessively and damaged, and the detachable connection is used so that when the detection pieces of different sizes are clamped, the abutting position can be adjusted. The detection pieces can be fixed at the required specified position, that is, the detection pieces are made to be below the glue cylinder 7, and the next step of discharging glue can be performed.
[0055] When the detection piece reaches the specified position, the glue cylinder 7 is above the detection piece. When the glue cylinder 7 starts to slowly discharge glue, the servo motor 8 starts to rotate in the positive direction at this time, driving the rotating shaft 9 to rotate, the rotating shaft 9 drives the rotating disc 13 to rotate, the rotating disc 13 drives the sliding column 12 in the rectangular hole 14 to move together, the limiting piece 23 can ensure that the sliding column 12 will not fall off and will not tilt under the force, at this time, due to the restriction of the spiral sliding groove 11 on the limiting disc 10, the sliding column 12 will spiral circumferentially slide in the sliding groove 11, and under the joint restriction of the sliding groove 11 and the rectangular hole 14, the circumferential range of the circumferential movement of the sliding column 12 will gradually increase, and the sliding column 12 drives the first sliding ring 16 to move, the first sliding ring 16 drives the first push rod 17 to move synchronously, the first push rod 17 slides in the square hole on the support frame one 19, the first push rod 17 drives the sliding rod 18 to move synchronously, the sliding rod 18 penetrates through the square hole 6 on the transverse sliding plate 5, thereby driving the transverse sliding plate 5 to move transversely back and forth, and the amplitude of the transverse back and forth movement gradually increases, at the same time, the sliding column 12 drives the second sliding ring 20 to move, the second sliding ring 20 drives the second push rod 21 to move synchronously, the second push rod 21 slides in the square hole on the support frame two 22, thereby the second push rod 21 drives the longitudinal sliding plate 3 to move longitudinally back and forth, so that the longitudinal sliding plate 3 drives the transverse sliding plate 5 to move longitudinally back and forth, and the amplitude of the longitudinal back and forth movement gradually increases, at this time, the transverse sliding plate 5 moves back and forth transversely and longitudinally, and the amplitudes of the two movements gradually increase, the glue cylinder 7 is arranged on the transverse sliding plate 5, thereby making the glue cylinder 7 move back and forth transversely and longitudinally when discharging glue, and the amplitudes of the two movements gradually increase, finally making the glue cylinder 7 gradually scatter the glue on the detection piece when discharging glue, so that the glue is uniformly arranged on the detection piece, when the glue cylinder 7 works to the maximum range, the glue cylinder 7 completes the glue discharge, at this time, the servo motor 8 starts to rotate in the reverse direction, driving the sliding column 12 to the initial state before discharging glue, so as to carry out the next glue discharge work, thereby making the glue not accumulate on the detection piece, not only saving the amount of glue used, but also shortening the glue drying speed, improving the work efficiency, avoiding the glue points formed after the glue dries, being convenient to use, and improving the appearance;
[0056] When it is necessary to discharge glue, the glue discharge box 49 is started, the glue discharge box 49 discharges glue into the glue cylinder 7 through the conduit 50, and the glue cylinder 7 discharges the glue onto the detection piece;
[0057] When the glue cylinder 7 needs to discharge glue on detection pieces of different widths, the distance between the plurality of moving blocks one 32 is adjusted, the moving blocks one 32 drive the glue cylinder 7 to move synchronously, thereby adjusting the distance between the plurality of glue cylinders 7, so that the glue cylinder 7 can discharge glue on detection pieces of different widths;
[0058] When it is necessary to adjust the distance between the plurality of glue cylinders 7, the equal distance adjusting plate 34 can adjust the distance position between the glue cylinders 7 and make the distance position between the adjacent glue cylinders 7 equal by driving the equal distance adjusting plate 34 to move up or down, and since the straight slot hole 46 is formed on the equal distance adjusting plate 34, the sliding head 33 is fixedly connected to the moving block one 32, and the moving block one 32 is fixedly connected to the sliding rod 31, so the sliding head 33 can only slide horizontally on the fixed sliding rod 31 along with the moving block one 32, the equal distance adjusting plate 34 can drive the plurality of sliding heads 33 to move through the straight slot hole 46, the plurality of sliding heads 33 drive the plurality of moving blocks one 32 to move, and the plurality of moving blocks one 32 drive the plurality of glue cylinders 7 to move, so that the distance position between the adjacent glue cylinders 7 can be equal, and the plurality of glue cylinders 7 can discharge glue above the detection sheet of different sizes, thereby enhancing the functionality of the present application.
[0059] When the equal distance adjusting plate 34 moves up or down, the sliding head 33 can slide in the straight slot hole 46 through the straight slot hole 46 arranged on the equal distance adjusting plate 34, and the distance between the adjacent sliding heads 33 is equal, at the same time, the sliding head 33 drives the moving block one 32 to move, and the moving block one 32 drives the glue cylinder 7 to move, so that the plurality of glue cylinders 7 can discharge glue above the detection sheet of different sizes, thereby enhancing the functionality of the present application.
[0060] When the glue cylinder 7 slowly discharges glue onto the detection sheet, the motor 41 drives the roller two 42 to rotate through the starting of the motor 41, the roller two 42 drives the belt 43 to rotate, the belt 43 drives the roller one 38 to rotate, and the roller one 38 drives the scraping brush 39 to move, so that the scraping brush 39 can scrape the glue discharged by the glue cylinder 7 on the detection sheet, the roller one 38 can drive the scraping brush 39 to scrape the glue discharged by the glue cylinder 7 on the detection sheet through the driving of the roller one 38, so that the glue is uniformly distributed on the detection sheet, the glue is prevented from accumulating on the detection sheet, the use amount of glue is saved, the airing speed of the glue is shortened, the working efficiency is improved, the glue point formed after the glue is aired is avoided, the use is facilitated, the appearance is improved, the moving block two 40 and the moving block one 32 are fixedly connected through the setting of the connecting rod 44, so that the distance between the moving block two 40 and the moving block one 32 remains unchanged, and when the equal distance adjusting plate 34 drives the moving block one 32 to move along the fixed sliding rod 31, the belt 43 is prevented from falling off the roller two 42 and the roller one 38.
[0061] The above shows and describes the basic principles, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above-mentioned embodiments, and the above-mentioned embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A thermocouple sticking device for heat flow sensor manufacturing, characterized by: Including workbench (1), the workbench (1) is opened in sliding groove one (2), sliding groove one (2) is slidably provided with longitudinal sliding plate (3), the top of longitudinal sliding plate (3) is provided with sliding groove two (4), sliding groove two (4) is slidably provided with transverse sliding plate (5), transverse sliding plate (5) is provided with glue outlet cylinder (7); The side of longitudinal sliding plate (3) away from glue outlet cylinder (7) is provided with servo motor (8), the top of workbench (1) is fixedly connected with servo motor (8), the output shaft of servo motor (8) is fixedly connected with rotating shaft (9), the rotating shaft (9) is movably connected with limit disc (10), the limit disc (10) is opened in helical sliding channel (11), the top of workbench (1) is fixedly connected with limit disc (10) through connecting plate (15), the sliding channel (11) is slidably provided with sliding column (12), the top of limit disc (10) is provided with rotary disc (13), the rotary disc (13) is fixedly connected with rotating shaft (9), the side of rotary disc (13) center is opened in rectangle hole (14), the sliding column (12) penetrates rectangle hole (14), the top of rotary disc (13) is provided with first sliding ring (16), the sliding column (12) penetrates and slidably connects first sliding ring (16), the side of first sliding ring (16) is fixedly connected with first push rod (17), the first push rod (17) is fixedly connected with sliding rod (18), the transverse sliding plate (5) is opened in square hole (6), the sliding rod (18) penetrates the square hole (6) in the transverse sliding plate (5), the side of servo motor (8) is provided with support frame one (19), the support frame one (19) is opened in square hole, the first push rod (17) penetrates the square hole opened in support frame one (19), the top of first sliding ring (16) is provided with second sliding ring (20), the sliding column (12) penetrates and slidably connects second sliding ring (20), the side of second sliding ring (20) is fixedly connected with second push rod (21), the side of second push rod (21) is fixedly connected with longitudinal sliding plate (3), the side of servo motor (8) is provided with support frame two (22), the support frame two (22) is opened in square hole, the second push rod (21) penetrates the square hole opened in support frame two (22).
2. The thermocouple sticking device for a heat flow sensor manufacturing according to claim 1, wherein: The top of longitudinal sliding plate (3) is opened in square hole, the square hole is provided with hydraulic rod one (24), the top of workbench (1) is fixedly connected with hydraulic rod one (24), the output end of hydraulic rod one (24) is fixedly connected with clamping plate one (25), the position of clamping plate one (25) is parallel to longitudinal sliding plate (3), the top of workbench (1) is fixedly connected with hydraulic rod two (26), the output end of hydraulic rod two (26) is fixedly connected with clamping plate two (27), clamping plate one (25) and clamping plate two (27) are perpendicular, the side of workbench (1) parallel to clamping plate one (25) is fixedly connected with baffle one (28), the side of workbench (1) parallel to clamping plate two (27) is fixedly connected with baffle two (29).
3. The thermocouple sticking device for heat flow sensor manufacturing according to claim 1, characterized in that: Two side plates (30) are fixedly connected on one side of the transverse sliding plate (5), and a fixed sliding rod (31) is fixedly connected between the two side plates (30), a plurality of glue outlet barrels (7) are slidably arranged on the fixed sliding rod (31), a top plate (51) is fixedly connected above the two side plates (30), a glue discharging box (49) is fixedly connected to the top plate (51), and the glue discharging box (49) is communicated with the glue outlet barrels (7) through a pipeline (50).
4. The thermocouple sticking device for a heat flow sensor manufacturing according to claim 3, wherein: A plurality of moving blocks one (32) are slidably connected to the fixed sliding rod (31), and the glue outlet barrels (7) are fixedly connected to one side of the moving blocks one (32) away from the transverse sliding plate (5).
5. The thermocouple sticking device for a heat flow sensor manufacturing according to claim 4, characterized in that: A sliding head (33) is fixedly connected to one side of the moving blocks one (32) close to the transverse sliding plate (5), an equidistant adjusting plate (34) is arranged on one side of the moving blocks one (32) close to the transverse sliding plate (5), vertical sliding grooves (45) are formed in the two side plates (30) close to the equidistant adjusting plate (34), the equidistant adjusting plate (34) is slidably arranged in the vertical sliding grooves (45), a plurality of straight slot holes (46) are formed in the equidistant adjusting plate (34), the sliding head (33) is slidably arranged in the straight slot holes (46), a bottom plate (35) is fixedly connected between the two side plates (30), an adjusting hydraulic rod (36) is fixedly connected to the bottom plate (35), and an output end of the adjusting hydraulic rod (36) is fixedly connected to a side wall of the equidistant adjusting plate (34) through a connecting long plate (37).
6. The thermocouple sticking device for heat flow sensor manufacturing according to claim 5, wherein: The straight slot holes (46) comprise vertical slot holes (461) and a plurality of groups of inclined slot holes (462) symmetrically arranged on both sides of the vertical slot holes (461), and when the equidistant adjusting plate (34) is moved by the adjusting hydraulic rod (36), the distance between any two adjacent sliding heads (33) in the straight slot holes (46) is equal.
7. The thermocouple sticking device for heat flow sensor manufacturing according to claim 4, characterized in that: A roller one (38) is rotatably connected to each glue outlet barrel (7), a scraping brush (39) is fixedly connected below each roller one (38), a moving block two (40) is slidably arranged on the fixed sliding rod (31), a motor (41) is fixedly connected to one side of the moving block two (40), a roller two (42) is fixedly connected below an output shaft of the motor (41), and the roller two (42) is drivingly connected with the plurality of roller ones (38) through a belt (43).
8. The thermocouple sticking device for heat flow sensor manufacturing according to claim 3, characterized in that: A limiting piece (23) is fixedly connected to the bottom and the middle of the sliding column (12), and the limiting piece (23) fixedly connected to the middle is located at the middle position of the rotating disc (13) and the first sliding ring (16).
9. The thermocouple sticking device for heat flow sensor manufacturing according to claim 7, characterized in that: A connecting rod (44) is arranged above the moving block two (40), one end of the connecting rod (44) is fixedly connected to the moving block two (40), and the other end of the connecting rod (44) is fixedly connected to one moving block one (32) farthest from the moving block two (40).
10. The thermocouple sticking device for heat flow sensor manufacturing according to claim 2, characterized in that: A blocking piece one (47) is arranged above the baffle one (28), the blocking piece one (47) is detachably connected with the baffle one (28), a blocking piece two (48) is arranged above the baffle two (29), and the blocking piece two (48) is detachably connected with the baffle two (29).
Citation Information
Patent Citations
SMD thermocouple
CN205506251U
End cover surface spraying device for air conditioner compressor
CN115889042A
Spiral actuator for aerosol powdered suspension product
US4354638A