Deep-well pump ring piece mounting device
By designing the deep well pump ring installation device, the automatic installation of oil seals and sandproof seats is realized, solving the problem of low production efficiency in the existing technology, and improving production efficiency and installation quality.
Patent Information
- Application Number
- CN202422232168.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-09-11
AI Technical Summary
During the production process of existing deep well pumps, the assembly of oil seals and sand prevention seats needs to be carried out in batches, which consumes time and labor, resulting in low production efficiency and cumbersome operation.
A deep well pump ring installation device is designed, including a frame, a workbench, an oil seal feeding device, a sandproof seat feeding device, a feeding device, a first material transfer device and a fixture system to realize the automatic installation of the oil seal and a sandproof seat.
Through automated installation, the operation process is simplified, production efficiency and installation quality are improved, and labor costs are reduced.
Smart Images

Figure CN223012353U_ABST
Abstract
Description
Technical Field
[0001] The present technical solution relates to the field of deep well pump processing, and particularly refers to an installation device for deep well pump ring parts. Background Art
[0002] A deep well pump is a type of pump equipment that directly dives into a groundwater well for pumping and transporting water. It is usually composed of a pump body, a motor, a cable, etc. Its working principle is that the motor drives the impeller to rotate, and uses centrifugal force to draw water from the bottom of the well and push it to the ground.
[0003] During the existing production and processing of deep well pumps, in order to complete the assembly of the deep well pump, an operator needs to first install the oil seal into the motor housing and sleeved on the motor shaft inside the motor housing, and then install the sand guard seat. See Figure 9 , including an oil seal 100 and a sand guard seat 200. There is a through hole one 300 in the middle of the oil seal 100, and a through hole two 400 in the middle of the sand guard seat 200.
[0004] The above assembly method of the oil seal and the sand guard seat requires the installation of the oil seal and the sand guard seat in batches, which requires more time and more labor input costs, has low production efficiency, relies on manual installation, makes the operation cumbersome, and needs to be improved. Summary of the Invention
[0005] The present technical solution provides an installation device for deep well pump ring parts in order to improve the problem of cumbersome manual installation of the oil seal and the sand guard seat of the deep well pump.
[0006] The purpose of the present technical solution is achieved as follows:
[0007] An installation device for deep well pump ring parts includes a frame and a workbench arranged inside the frame, and further includes an oil seal feeding device for feeding the oil seal to the feeding device;
[0008] A sand guard seat feeding device for feeding the sand guard seat to the feeding device;
[0009] A feeding device installed on the workbench. The feeding device includes a feeding seat and a feeding motor. A storage groove one and a storage groove two are arranged on the feeding seat, and the feeding motor drives the feeding seat to move between a first position and a second position;
[0010] When the feeding seat is in the first position, the storage groove one receives the discharge port of the oil seal feeding device, and the storage groove two receives the discharge port of the sand guard seat feeding device; when the feeding seat is in the second position, the storage groove one and the storage groove two prepare the oil seal and the sand guard seat;
[0011] The first material transfer device is slidably arranged on the frame and above the workbench. A first driving member is provided on the frame, and the first driving member drives the first material transfer device to slide, for sending the oil seal and the sand control seat from the loading seat to the workpiece.
[0012] A second adjusting device is arranged at the lower part of the first material transfer device. A first fixture for obtaining the oil seal and a second fixture for obtaining the sand control seat are arranged at the lower part of the second adjusting device. The second adjusting device drives the first fixture and the second fixture to slide, for sequentially installing the oil seal and the sand control seat.
[0013] Through the above technical solution, when the deep well pump ring part installation device is in normal use, when the loading seat is in the first position, the discharge port of the oil seal feeding device is connected to the storage tank one and is arranged in alignment. It drives the oil seal to be fed into the storage tank one. The discharge port of the sand control seat feeding device is connected to the storage tank two and is arranged in alignment. It drives the sand control seat to be fed into the storage tank two. The loading motor drives the loading seat to slide. At this time, the loading seat is in the second position, so that each of the two storage tanks prepares an oil seal and a sand control seat, realizing that one workpiece is independently separated for use.
[0014] The positions of the first fixture and the second fixture are arranged corresponding to the two storage tanks. The first material transfer device drives the two fixtures to approach the loading seat and descend towards the workpiece, so that the first fixture obtains the oil seal, and the second fixture obtains the sand control seat. Then it lifts and resets. The first driving member drives the first material transfer device to move towards the installation station. First, the second adjusting device drives the first fixture to align with the deep well pump, and the first material transfer device and the first fixture cooperate to install the oil seal. Secondly, the second adjusting device drives the second fixture to align with the deep well pump, and the first material transfer device and the second fixture cooperate to install the sand control seat, thus completing the installation. The automated installation operation makes the operation more convenient, improves the installation quality, and further improves the production efficiency.
[0015] Preferably, on one side of the storage tank one and the storage tank two facing the feeding direction of the discharge port, a feeding port is formed through the side wall of the loading seat.
[0016] The loading seat is provided with a first baffle plate and a second baffle plate. When the loading seat is in the second position, the feeding port is horizontally misaligned with the discharge port. The first baffle plate blocks the feeding port of the storage tank one, and the second baffle plate blocks the feeding port of the storage tank two, for respectively restricting the oil seal and the sand control seat from separating.
[0017] Through the above technical solution, feed ports for workpieces to enter are formed on the side walls of the stock bins I and II that penetrate the feeding base, which can be aligned with the discharge ports one by one, facilitating the embedding of the oil seals and anti-sand seats into the two stock bins from the docking position. When the feeding motor drives the feeding base to move to the second position, the feeding base slips and misaligns relative to the two discharge ports, restricting the subsequent entry of the oil seals and anti-sand seats, driving the movement of one oil seal and one anti-sand seat for use. The baffle I blocks the feed port of the stock bin I to prevent the oil seal from detaching from the bin, and the baffle II blocks the feed port of the stock bin II to prevent the anti-sand seat from detaching from the bin, improving the stability of the feeding process and further enhancing the production efficiency.
[0018] Preferably, the first material transfer device includes a transfer plate that slides on the frame, a transfer rack that slides on the transfer plate, and a second driving member disposed on the transfer plate;
[0019] The first driving member drives the transfer plate to slide, the second driving member drives the transfer rack to slide, the sliding direction of the transfer rack is perpendicular to the sliding direction of the transfer plate, and the second adjusting device is disposed at the lower part of the transfer rack.
[0020] Through the above technical solution, the first driving member drives the transfer plate to slide, thereby driving the transfer rack and the second driving member disposed thereon to move synchronously, so as to realize the overall sliding of the first material transfer device, moving back and forth in the horizontal direction to achieve the switching between the material taking station and the installation station. The second driving member drives the transfer rack to move up and down in the vertical direction, thereby driving the two jigs to descend to obtain the workpiece. After switching to the installation station, the second driving member cooperates with the first driving member to enable the two jigs to operate the workpiece to move the position, thus completing the installation operation.
[0021] Preferably, the second adjusting device includes an adjusting rack that slides on the transfer rack and a third driving member, and both the first jig and the second jig are disposed at the lower part of the adjusting rack;
[0022] The third driving member drives the adjusting rack to slide, and the sliding direction of the adjusting rack is perpendicular to the sliding directions of both the transfer plate and the transfer rack at the same time, for switching the use of the first jig and the second jig.
[0023] Through the above technical solution, the third driving member drives the adjusting rack to slide left and right. Based on the fact that the first jig and the second jig are disposed at the lower part of the adjusting rack, driving the two jigs to move synchronously. Through the cooperation of the second driving member and the third driving member, the two jigs are switched for use, so as to install the oil seal first and then the anti-sand seat, and further complete the installation operation.
[0024] Preferably, the first fixture includes a first mounting driving member disposed on the adjusting frame, a first clamping sleeve, and a first core column disposed on the first mounting driving member. The first core column is inserted into the first clamping sleeve, and the first mounting driving member drives the first core column to axially slide for passing through the oil seal and clamping with it.
[0025] The second fixture includes a second mounting driving member disposed on the adjusting frame, a second clamping sleeve, and a second core column disposed on the second mounting driving member. The second core column is inserted into the second clamping sleeve, and the second mounting driving member drives the second core column to axially slide for passing through the sand control seat and clamping with it.
[0026] Through the above technical solution, after the first fixture and the second fixture approach the oil seal and the sand control seat respectively, the first mounting driving member drives the first core column, which axially slides downward along the first clamping sleeve until it extends out of the lower end outlet of the first clamping sleeve. The cross-sectional size of the first core column is adapted to the channel cross-section of the first inner through-hole of the oil seal and can be embedded and clamped in the through-hole 1, so that the first fixture drives the oil seal to move synchronously. After the oil seal is aligned with the motor shaft, the first core column is driven to retract into the first clamping sleeve, and then the oil seal is pushed off to complete the installation.
[0027] Similarly, the second mounting driving member drives the second core column, which axially slides downward along the second clamping sleeve until it extends out of the lower end outlet of the second clamping sleeve. The cross-sectional size of the second core column is adapted to the channel cross-section of the second inner through-hole of the sand control seat and can be embedded and clamped in the through-hole 2, so that the second fixture drives the sand control seat to move synchronously. The second core column is driven to retract into the second clamping sleeve, and then the sand control seat is pushed off to complete the installation, realizing precise positioning and installation and further improving the installation efficiency.
[0028] Preferably, the first clamping sleeve has an extension portion protruding from the lower end of the first clamping sleeve. When the second clamping sleeve abuts against the sand control seat, the first clamping sleeve can abut against the oil seal through the extension portion.
[0029] Through the above technical solution, since the heights of the oil seal and the sand control seat are different, in order to enable the first clamping sleeve and the second clamping sleeve to contact the oil seal and the sand control seat simultaneously, an extension portion is provided to protrude from the lower end of the first clamping sleeve to make up for the height difference, ensuring that both are stably obtained simultaneously and ensuring the subsequent synchronous movement and installation process.
[0030] Preferably, the loading seat has a abutting portion, and a buffer seat is provided on the workbench. There are two buffer seats, and the two buffer seats are respectively located on the opposite sides of the abutting portion along the sliding direction of the loading seat, and the two buffer seats cooperate to limit the sliding of the loading seat.
[0031] Through the above technical solution, the abutting portion extends between the two buffer seats, and the buffer seats on both sides cooperate to limit the sliding of the loading seat and provide a certain buffering effect, improving the positioning accuracy to meet the stability of the two-position switching.
[0032] Preferably, the material transfer rack is provided with guide posts, and the material transfer plate is correspondingly provided with guide sleeves, and the guide posts are respectively inserted into the guide sleeves;
[0033] A limit ring is provided at the upper end of the guide post, and the limit rings are sequentially connected between the respective guide posts for sliding limit.
[0034] Through the above technical solution, the guide sleeve is installed on the material transfer plate, the guide rod slides freely along the through direction of the guide sleeve, the axial direction of the guide rod is correspondingly set along the sliding direction of the material transfer rack, guiding the moving path of the material transfer rack, providing sufficient support and guidance for the sliding of the material transfer rack, and improving the stability of the sliding motion.
[0035] The limit rings are sequentially connected to the upper ends of the respective guide posts to form an integral structure, providing a stop function when the material transfer plate slides downward, preventing the guide posts from sliding excessively or disengaging from the guide sleeves, and enhancing the reliability of the guide rod.
[0036] Preferably, it further includes a mounting seat, and both the oil seal feeding device and the sand prevention seat feeding device are arranged on the mounting seat;
[0037] The oil seal feeding device includes a storage bin one, a vibrating disk one for placing oil seals, and an oil seal transmission pipe for conveying oil seals. The storage bin one can replenish oil seals to the vibrating disk two. One end of the oil seal transmission pipe communicates with the vibrating disk one, and the other end can be arranged in alignment with the storage tank one;
[0038] The sand prevention seat feeding device includes a storage bin two, a vibrating disk two for placing sand prevention seats, and a sand prevention seat transmission pipe for conveying sand prevention seats. The storage bin two can replenish sand prevention seats to the vibrating disk two. One end of the sand prevention seat transmission pipe communicates with the vibrating disk two, and the other end can be arranged in alignment with the storage tank two.
[0039] Through the above technical solution, both the oil seal feeding device and the sand prevention seat feeding device are fixed on the mounting seat. Put oil seals into the storage bin one, the storage bin one conveys the oil seals to fall into the vibrating disk one. One end of the oil seal transmission pipe communicates with the vibrating disk one, which is used to receive the oil seals in the vibrating disk one, arrange them in order and then export them. The other end outlet can be aligned with the inlet of the storage tank one and is on the same level, ensuring that the oil seals can be accurately fed into the storage tank one, avoiding the oil seals from getting stuck or falling during the transmission process.
[0040] Similarly, put sand prevention seats into the storage bin two, the storage bin two conveys the sand prevention seats to fall into the vibrating disk two. One end of the sand prevention seat transmission pipe communicates with the vibrating disk two, which is used to receive the sand prevention seats in the vibrating disk one, arrange them in order and then export them. The other end outlet can be aligned with the inlet of the storage tank two and is on the same level, ensuring that the sand prevention seats can be accurately fed into the storage tank two, avoiding the sand prevention seats from getting stuck or falling during the transmission process, realizing automatic feeding operation, and further improving the production efficiency.
[0041] Preferably, a support base is provided on the mounting base, and a first support portion and a second support portion are provided on the support base;
[0042] The first support portion is used to support the oil seal transmission pipe;
[0043] The second support portion is used to support the sand control seat transmission pipe.
[0044] Through the above technical solution, a support base is provided on the mounting base. The first support portion in the support base supports below the oil seal transmission pipe, and the second support portion supports below the sand control seat transmission pipe, providing sufficient strength and stability to support the transmission pipe to maintain a horizontal or predetermined angle and height to adapt to different transmission requirements.
[0045] The prominent and beneficial technical effects of this technical solution compared with the prior art are:
[0046] 1. In this technical solution, when the loading plate is in the first position, the oil seal feeding device feeds the oil seal to the first storage tank, and the sand control seat feeding device feeds the sand control seat to the second storage tank. After driving the loading plate to the second position, the workpiece is prepared. The first material transfer device cooperates with the second adjustment device, so that the first fixture and the second fixture respectively obtain the workpiece and perform installation, making the operation more convenient and improving the production efficiency;
[0047] 2. In this technical solution, a first baffle plate and a second baffle plate are provided on the loading seat. The first baffle plate blocks the feeding port of the first storage tank. After the loading seat slides and is misaligned, the second baffle plate blocks the feeding port of the second storage tank, restricting the oil seal and the sand control seat in the tank from separating, improving the stability of the feeding process and further enhancing the production efficiency;
[0048] 3. In this technical solution, the first jacket has an extension portion that protrudes from the lower end of the first jacket. When the second jacket abuts against the sand control seat, the first jacket can simultaneously abut against the oil seal through the extension portion to supplement the height difference, ensuring that both are stably obtained at the same time and ensuring the subsequent synchronous movement and installation process. BRIEF DESCRIPTION OF THE DRAWINGS
[0049] Figure 1 is a schematic diagram of the overall structure of this embodiment;
[0050] Figure 2 is a schematic diagram of a partial structure of the frame in the embodiment;
[0051] Figure 3 is of this embodiment Figure 2 schematic diagram of another perspective;
[0052] Figure 4 is a partial cross-sectional schematic diagram of this embodiment;
[0053] Figure 5For this embodiment Figure 4 Partial enlarged schematic diagram;
[0054] Figure 6 It is a schematic diagram of the partial structure of the workbench in the embodiment;
[0055] Figure 7 It is an exploded structure schematic diagram of the feeding device in the embodiment;
[0056] Figure 8 It is a partial structure schematic diagram of the mounting seat in the embodiment;
[0057] Figure 9 It is an overall structure schematic diagram of the oil seal and the sand control seat in the background art.
[0058] Reference numerals: 1, frame; 2, workbench; 3, oil seal feeding device; 31, storage bin 1; 32, vibrating disk 1; 33, oil seal transmission pipe; 4, sand control seat feeding device; 41, storage bin 2; 42, vibrating disk 2; 43, sand control seat transmission pipe; 5, feeding device; 51, feeding seat; 52, feeding motor; 6, storage tank 1; 7, storage tank 2; 8, first material transfer device; 81, transfer plate; 82, transfer rack; 83, second driving member; 9, first driving member; 10, second adjusting device; 101, adjusting rack; 102, third driving member; 11, first fixture; 111, mounting driving member 1; 112, jacket 1; 113, core column 1; 12, second fixture; 121, mounting driving member 2; 122, jacket 2; 123, core column 2; 13, baffle plate 1; 14, baffle plate 2; 15, extension part; 16, abutting part; 17, buffer seat; 18, guide post; 19, guide sleeve; 20, limit ring; 21, mounting seat; 22, support seat; 23, support part 1; 24, support part 2; 100, oil seal; 200, sand control seat. Detailed implementation manners
[0059] The following further elaborates on the detailed implementation manners of the technical solution in conjunction with the drawings.
[0060] Embodiment:
[0061] Refer to Figure 1 , a deep well pump ring installation device, including a frame 1, and further including a mounting seat 21 which is placed beside the frame 1. An oil seal feeding device 3 and a sand control seat feeding device 4 are installed on the mounting seat 21. Among them, the oil seal feeding device 3 is used to convey the oil seal 100, and the sand control seat feeding device 4 is used to convey the sand control seat 200.
[0062] Refer to Figure 2 and Figure 3, further comprising a workbench 2, which is located inside the frame 1 and has a certain height. A first material transfer device 8 is provided on the frame 1, which is slidably arranged at the upper end of the frame 1 and is located above the workbench 2. The first material transfer device 8 includes a material transfer plate 81, a material transfer frame 82 and a second driving member 83. The second driving member 83 is fixed on the upper end surface of the material transfer plate 81, and the material transfer frame 82 is arranged below the material transfer plate 81. A first driving member 9 is provided on the frame, and the first driving member 9 uses a cylinder or a motor, which drives the material transfer plate 81 to slide back and forth in the horizontal direction, thereby driving the whole first material transfer device 8 to move. When moving to the front end, it is located above the deep well pump, and when moving to the rear end, it is located above the workbench 2.
[0063] The material transfer frame 82 is slidably connected to the material transfer plate 81. The second driving member 83 drives the material transfer frame 82 to slide up and down in the vertical direction and is perpendicular to the sliding direction of the material transfer plate 81. Specifically, the sliding guiding method is that the material transfer frame 82 has guiding columns 18. There are four guiding columns 18, and the four guiding columns 18 are distributed in a rectangle. Each length direction corresponds to the sliding direction of the material transfer frame 82. Four guiding sleeves 19 are fixedly provided on the material transfer plate 81 corresponding to the guiding columns 18 one by one. Each guiding column 18 is correspondingly inserted into the guiding sleeve 19. The guiding column 18 is provided with a limiting ring 20. The shape of the limiting ring 20 is adapted to the distribution position of the four guiding columns 18. It is located at the top of the guiding column 18 and is sequentially connected between the four guiding columns 18 for sliding limit to prevent the guiding column 18 from detaching from below the guiding sleeve 19.
[0064] A second adjusting device 10 is arranged at the lower part of the first material transfer device 8. Specifically, the second adjusting device 10 is located at the lower end surface of the material transfer frame 82. The second adjusting device 10 includes an adjusting frame 101 and a third driving member 102. The third driving member 102 uses a cylinder or a motor. The third driving member 102 is fixed on the adjusting frame 101, and its output shaft is fixed on the material transfer frame 82. The third driving member 102 drives the adjusting frame 101 to slide by using the reaction force, and its sliding direction is perpendicular to both the sliding direction of the material transfer plate 81 and the sliding direction of the material transfer frame 82.
[0065] A first clamp 11 and a second clamp 12 are arranged at the lower part of the second adjusting device 10. Specifically, they are installed on the adjusting frame 101 and are located at the lower end surface of the adjusting frame 101, and both extend towards the direction of the workbench 2. The sliding of the adjusting frame 101 drives the two clamps to move synchronously, which is used to switch the use of the first clamp 11 and the second clamp 12. The first clamp 11 is used to obtain the oil seal 100, and the second clamp 12 is used to obtain the sand control seat 200.
[0066] See Figure 2 and Figure 6A loading device 5 is provided on the workbench 2, and the loading device 5 includes a loading seat 51 and a loading motor 52. The loading motor 52 drives the loading seat 51 to slide, and its sliding direction is horizontally parallel to the sliding direction of the adjusting frame 101. The loading motor 52 drives the loading seat 51 to move and switch between the first position and the second position. The loading seat 51 has a supporting portion 16, and the supporting portion 16 protrudes relative to the front side of the loading seat 51. A buffer seat 17 is provided on the workbench 2, and two of them are provided. The two buffer seats 17 are located one by one on the opposite sides of the supporting portion 16 along the sliding direction of the loading seat 51, limiting the sliding range of the loading seat 51, so that it is correctly within the two position ranges, and providing an elastic buffering function.
[0067] See also Figure 7 The upper end surface of the loading seat 51 is provided with a material storage groove 1 6 and a material storage groove 2 7, and the material storage groove 1 6 and the material storage groove 2 7 are respectively passed through the side wall of the loading seat 51 toward the side away from the abutting portion 16, forming two feed ports, and the two feed ports are both located on the same side; when the loading seat 51 is in the first position, the feed port of the material storage groove 1 6 can be aligned with the discharge port of the oil seal feeding device 3, and the shape and size of the material storage groove 1 6 are compatible with the oil seal 100, so that an oil seal 100 can be embedded, and the feed port of the material storage groove 2 7 can be aligned with the discharge port of the sand control seat feeding device 4, and the shape and size of the material storage groove 2 7 are compatible with the sand control seat 200, so that a sand control seat 200 can be embedded.
[0068] The workbench 2 is also provided with a baffle plate 13 and a baffle plate 14, which are located in a one-to-one correspondence with the material storage trough 16 and the material storage trough 27. The positions of the two baffle plates are fixed relative to the loading seat 51. When the loading seat 51 is in the second position, the loading seat 51 is laterally offset from the two feed ports to block the supply of workpieces. The height of the baffle plate 13 is the same as that of the oil seal 100, and the height of the baffle plate 2 14 is the same as that of the sand prevention seat 200. The baffle plate 13 blocks the feed port of the side wall of the material storage trough 6, and the baffle plate 2 14 blocks the feed port of the side wall of the material storage trough 27. At this time, an oil seal 100 is prepared in the material storage trough 6, and a sand prevention seat 200 is prepared in the material storage trough 27. The two positioning plates can limit the two workpieces from detaching.
[0069] See also Figure 4 and Figure 5The position of the material storage slot 6 is set corresponding to the first fixture 11, and the position of the material storage slot 7 is set corresponding to the second fixture 12. The first fixture 11 includes a mounting drive member 111, a jacket 112 and a core column 113. The mounting drive member 111 adopts a motor, which is fixed on the upper end surface of the adjustment frame 101. The jacket 112 is fixed on the lower end surface of the adjustment frame 101 away from the mounting drive member 111. The core column 113 is inserted in the jacket 112, and one end of the core column 113 is connected to the output shaft of the mounting drive member 111. The driving member 111 drives the core column 113 to slide, and its sliding direction is parallel to the sliding direction of the material moving frame 82, and it stretches up and down vertically relative to the jacket 112. The oil seal 100 has a through hole 1 in the middle, and the cross-sectional size of the core column 113 is adapted to the channel cross-sectional size of the through hole 1. The lower end of the jacket 112 has an extension portion 15, which protrudes from the lower end surface of the jacket 112. When the jacket 112 is close to the oil seal 100, the core column 113 extends out of the lower end opening of the jacket 112 and is embedded in the through hole 1, so that it is clamped with the oil seal 100.
[0070] The second fixture 12 includes a second installation drive member 121, a second jacket 122, and a second core column 123. The second installation drive member 121 uses a motor, which is fixed to the upper end surface of the adjustment frame 101. The second jacket 122 is fixed to the lower end surface of the adjustment frame 101 away from the second installation drive member 121. The second core column 123 is inserted into the second jacket 122, and one end of the second core column 123 is connected to the output shaft of the second installation drive member 121. The second installation drive member 121 drives the second core column 123 to slide, and its sliding direction is parallel to the sliding direction of the first core column 113, and moves along the vertical direction. As for the upward and downward extension of the jacket 122, there is a through hole 2 in the middle of the sand control seat 200, and the cross-sectional size of the core column 123 is adapted to the channel cross-sectional size of the through hole 2. When the extension portion 15 approaches the oil seal 100, the jacket 122 can approach the sand control seat 200 at the same time, and the core column 123 extends out of the lower end opening of the jacket 122 and is embedded in the through hole 2 so as to be clamped with the sand control seat 200. Through the second, the first driving member 9 cooperates with the second driving member 83 to deliver the oil seal 100 and the sand control seat 200 from the loading seat 51 to the workpiece.
[0071] See also Figure 9 The oil seal 100 and the sand control seat 200 have different heights. The height difference of the extension portion 15 allows the two jackets to simultaneously contact the corresponding workpieces. Alternatively, the depth of the material storage groove 1 6 can be greater than the depth of the material storage groove 2 7, and the bottom of the material storage groove 1 6 can be lower than the bottom of the material storage groove 2 7, so that the jacket 1 112 and the jacket 2 122 can be flush and contact at the same time.
[0072] See also Figure 8, the oil seal feeding device 3 includes a first storage bin 31, a first vibrating bowl 32, and an oil seal transmission pipe 33. The first storage bin 31 is installed beside the first vibrating bowl 32, and its guide plate extends above the first vibrating bowl 32. The first vibrating bowl 32 is a prior art and will not be elaborated here. It can stably output the oil seals 100 inside. One end of the oil seal transmission pipe 33 is connected to the inside of the first vibrating bowl 32. The first vibrating bowl 32 outputs the oil seals 100, causing the oil seals 100 to be arranged in the oil seal transmission pipe 33. The other end extends to the loading seat 51, so that the discharge port can be aligned and connected to the feed port of the first storage tank 6.
[0073] The sand prevention seat feeding device 4 includes a second storage bin 41, a second vibrating bowl 42, and a sand prevention seat transmission pipe 43. The second storage bin 41 is installed beside the second vibrating bowl 42, and its guide plate extends above the second vibrating bowl 42. The second vibrating bowl 42 is a prior art and will not be elaborated here. It can stably output the sand prevention seats 200 inside. One end of the sand prevention seat transmission pipe 43 is connected to the inside of the second vibrating bowl 42. The second vibrating bowl 42 outputs the sand prevention seats 200, causing the sand prevention seats 200 to be arranged in the sand prevention seat transmission pipe 43. The other end extends to the loading seat 51, so that the discharge port can be aligned and connected to the feed port of the second storage tank 7.
[0074] A support seat 22 is provided on the mounting seat 21. The support seat 22 is located on the side of the mounting seat 21 close to the frame 1. A first support portion 23 and a second support portion 24 are provided on the support seat 22, and they are fixed to the upper end surface of the support seat 22. The first support portion 23 is arranged corresponding to the oil seal feeding device 3 and is used to support the oil seal transmission pipe 33. The second support portion 24 is arranged corresponding to the sand prevention seat feeding device 4 and is used to support the sand prevention seat transmission pipe 43.
[0075] The specific working process of this solution is as follows:
[0076] In this technical solution, when the loading seat 51 is in the first position, the oil seal feeding device 3 provides the oil seals 100 to the first storage tank 6, and the sand prevention seat feeding device 4 provides the sand prevention seats 200 to the second storage tank 7. The loading motor 52 drives the loading seat 51 to slide. At this time, the loading seat 51 is in the second position. Each of the two storage tanks contains an oil seal 100 and a sand prevention seat 200. The first baffle 13 and the second baffle 14 respectively separate one workpiece for standby. The first driving member 9 cooperates with the first material transfer device 8 to drive the first fixture 11 and the second fixture 12 to send the oil seal 100 and the sand prevention seat 200 from the loading seat 51 to the installation station. The first fixture 11 installs the oil seal 100, and the second adjusting device 10 drives to switch to the second fixture 12. The second fixture 12 installs the sand prevention seat 200, thus completing the installation. The automated installation operation makes the operation more convenient, improves the installation quality, and further improves the production efficiency.
[0077] The basic principles, main features and advantages of the present technical solution have been shown and described above. Those skilled in the art should understand that the present technical solution is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present technical solution. Without departing from the spirit and scope of the present technical solution, the present technical solution will have various changes and improvements, and these changes and improvements all fall within the scope of the present technical solution claimed. The scope of protection required by the present technical solution is defined by the appended claims and their equivalents.
Claims
1. A deep well pump ring installation device, comprising a frame (1) and a workbench (2) arranged inside the frame (1), characterized in that: Also includes An oil seal feeding device (3) for feeding the oil seal to the upper feeding device; A sand-proof seat feeding device (4) for feeding the sand-proof seat to the upper feeding device; A feeding device (5) is installed on the workbench (2), the feeding device (5) comprises a feeding seat (51) and a feeding motor (52), the feeding seat (51) is provided with a first material storage slot (6) and a second material storage slot (7), and the feeding motor (52) drives the feeding seat (51) to move between a first position and a second position; When the loading seat (51) is in the first position, the material storage groove 1 (6) receives the discharge port of the oil seal feeding device (3), and the material storage groove 2 (7) receives the discharge port of the sand control seat feeding device (4); when the loading seat (51) is in the second position, the material storage groove 1 (6) and the material storage groove 2 (7) prepare the oil seal and the sand control seat; A first material moving device (8) is slidably arranged on the frame (1) and is located above the workbench (2); a first driving member (9) is provided on the frame (1); the first driving member (9) drives the first material moving device (8) to slide, so as to deliver the oil seal and the sand-proof seat from the loading seat (51) to the workpiece; A second adjusting device (10) is arranged at the bottom of the first material moving device (8), and a first clamp (11) for obtaining an oil seal and a second clamp (12) for obtaining an anti-sand seat are arranged at the bottom of the second adjusting device (10). The second adjusting device (10) drives the first clamp (11) and the second clamp (12) to slide, so as to sequentially install the oil seal and the anti-sand seat.
2. The deep well pump ring installation device according to claim 1 is characterized in that: The material storage trough 1 (6) and the material storage trough 2 (7) penetrate the side wall of the loading seat (51) on one side facing the feeding direction of the discharge port to form a feeding port; The loading seat (51) is provided with a first baffle plate (13) and a second baffle plate (14). When the loading seat (51) is in the second position, the feed port is laterally offset relative to the discharge port. The first baffle plate (13) blocks the feed port of the first storage tank (6), and the second baffle plate (14) blocks the feed port of the second storage tank (7), so as to respectively limit the detachment of the oil seal and the anti-sand seat.
3. The deep well pump ring installation device according to claim 1 is characterized in that: The first material moving device (8) comprises a material moving plate (81) sliding on the frame (1), a material moving frame (82) sliding on the material moving plate (81), and a second driving member (83) arranged on the material moving plate (81); The first driving member (9) drives the material moving plate (81) to slide, and the second driving member (83) drives the material moving frame (82) to slide. The sliding direction of the material moving frame (82) is perpendicular to the sliding direction of the material moving plate (81). The second adjusting device (10) is arranged at the lower part of the material moving frame (82).
4. The deep well pump ring installation device according to claim 3 is characterized in that: The second adjusting device (10) comprises an adjusting frame (101) sliding on the material moving frame (82) and a third driving member (102), and the first clamp (11) and the second clamp (12) are both arranged at the lower part of the adjusting frame (101); The third driving member (102) drives the adjusting frame (101) to slide, and the sliding direction of the adjusting frame (101) is perpendicular to the sliding direction of the material moving plate (81) and the material moving frame (82), so as to switch between the first clamp (11) and the second clamp (12).
5. The deep well pump ring installation device according to claim 4 is characterized in that: The first clamp (11) comprises a mounting drive member (111) arranged on the adjustment frame (101), a jacket (112), and a core column (113) arranged on the mounting drive member (111), the core column (113) being inserted into the jacket (112), and the mounting drive member (111) driving the core column (113) to slide axially so as to pass through the oil seal and clamp therewith; The second clamp (12) comprises a second mounting drive member (121) arranged on the adjustment frame (101), a second jacket (122) and a second core column (123) arranged on the second mounting drive member (121), wherein the second core column (123) is inserted into the second jacket (122), and the second mounting drive member (121) drives the second core column (123) to slide axially so as to pass through the sand control seat and clamp therewith.
6. The deep well pump ring installation device according to claim 5, characterized in that: The jacket 1 (112) has an extension portion (15) which is protrudingly arranged at the lower end of the jacket 1 (112). When the jacket 2 (122) contacts the sand-proof seat, the jacket 1 (112) can contact the oil seal at the same time through the extension portion (15).
7. The deep well pump ring installation device according to claim 1 is characterized in that: The loading seat (51) has a supporting portion (16), and a buffer seat (17) is provided on the workbench (2). Two buffer seats (17) are provided, and the two buffer seats (17) are located one by one on opposite sides of the supporting portion (16) along the sliding direction of the loading seat (51). The two buffer seats (17) cooperate to limit the sliding of the loading seat (51).
8. The deep well pump ring installation device according to claim 3 is characterized in that: The material moving frame (82) has a guide column (18), and the material moving plate (81) is correspondingly provided with a guide sleeve (19), and the guide columns (18) are inserted into the guide sleeve (19) in a one-to-one correspondence; A limiting ring (20) is provided at the upper end of the guide column (18), and the limiting ring (20) is sequentially connected between each of the guide columns (18) for sliding limiting.
9. The deep well pump ring installation device according to claim 1, further comprising a mounting seat (21), characterized in that: The oil seal feeding device (3) and the sand control seat feeding device (4) are both arranged on the mounting seat (21); The oil seal feeding device (3) comprises a storage bin (31), a vibration plate (32) for placing oil seals, and an oil seal transmission pipe (33) for conveying oil seals. The storage bin (31) can replenish oil seals to the vibration plate (32). One end of the oil seal transmission pipe (33) is connected to the vibration plate (32), and the other end can be arranged in alignment with the storage tank (6). The sand-proof seat feeding device (4) comprises a second storage bin (41), a second vibration disk (42) for placing the sand-proof seat, and a sand-proof seat transmission pipe (43) for conveying the sand-proof seat. The second storage bin (41) can replenish the sand-proof seat to the second vibration disk (42). One end of the sand-proof seat transmission pipe (43) is connected to the second vibration disk (42), and the other end can be arranged in alignment with the second storage trough (7).
10. The deep well pump ring installation device according to claim 9, characterized in that: The mounting seat (21) is provided with a support seat (22), and the support seat (22) is provided with a support portion 1 (23) and a support portion 2 (24); A supporting portion 1 (23), which is used to support the oil seal transmission pipe (33); The second supporting part (24) is used to support the sand control seat transmission pipe (43).