Bidirectional high-straightness circular knitting needle heat treatment device
By combining an electric slide rail hoisting and clamping mechanism with a filtration mechanism, efficient heat treatment of circular needles and recycling of coolant are achieved, solving the problem of coolant non-recyclability in existing technologies, reducing costs and improving heat treatment effect and syringe life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-26
- Publication Date
- 2026-03-27
AI Technical Summary
In the existing technology, the coolant in the circular needle cannot be recycled, resulting in frequent coolant replacement, which increases costs and resource consumption. At the same time, it cannot effectively filter impurities in the coolant, affecting the heat treatment effect.
A bidirectional high-flatness circular needle heat treatment device was designed. It uses an electric slide rail and a lifting mechanism to achieve efficient lifting of the syringe, a clamping mechanism to ensure stable heating, and a filtration mechanism to achieve coolant circulation filtration through a transmission pipe and a storage box. The fixing plate is easily cleaned using a limiting component to ensure the cleanliness of the coolant.
This enables the recycling of coolant, reduces coolant consumption, lowers costs, improves work efficiency, and ensures the stability of heat treatment results and the service life of syringes.
Smart Images

Figure CN224047464U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of circular machine needle heat treatment technology in the field of textile machinery, especially a kind of two-way high flatness circular machine needle heat treatment device. BACKGROUND
[0002] Circular machine needle is an important component of circular knitting machine, which is finely processed from high-quality steel, and is widely used in clothing manufacturing, home textile products and industrial textiles. It has the advantages of high efficiency, good fabric quality, strong adaptability and high durability. It can meet the needs of different knitting processes and various markets. The two-way high flatness heat treatment device is of great significance to circular machine needle, which can ensure high precision, improve strength and toughness, improve surface quality, meet the requirements of high-end knitting equipment and adapt to diversified knitting processes. It comprehensively improves the performance of circular machine needle to help the development of high-quality and high-efficiency knitting industry.
[0003] After searching, the patent CN215887144U discloses a circular machine needle heat treatment quenching device, which includes a quenching pool, a quenching chamber connected to the outside at the top of the quenching pool, a water filtration treatment device arranged on the quenching pool, the water filtration treatment device includes a plurality of collection covers fixedly installed on the wall of the quenching chamber at equal intervals in a linear manner and a support cylinder arranged in the quenching chamber, the bottom end of the collection cover is fixedly installed with a conveying pipe, the water filtration treatment device further includes a booster pump arranged outside the quenching pool, a water inlet pipe fixedly installed on the water inlet end pipe body of the booster pump, the conveying pipe is fixedly installed on the water inlet pipe, and a water outlet pipe fixedly installed on the support cylinder is arranged on the water outlet end pipe body of the booster pump. A filter screen cylinder is fixedly installed on the support cylinder. The utility model can filter water and perform heat exchange operation, which is convenient to use.
[0004] The above patent specification mentions the beneficial effect of "ensuring that the booster pump can work during use, which can convey the water and impurities in the quenching chamber to the filter screen cylinder for filtration operation. After the filtration operation is completed, the impurities can be blocked on the filter screen cylinder, and the water can continue to flow into the quenching chamber through the filter screen cylinder, which facilitates the filtration operation of the impurities in the quenching chamber, is convenient to use, solves the problem that the conventional quenching pool cannot filter the water in the pool body before conveying it to the pool body for continuous use, and cannot perform filtration operation, which causes the water to contain more impurities, affects the subsequent quenching treatment effect, and brings inconvenience to the user". Although the above patent can filter impurities in water, it cannot disassemble the filter core. Therefore, a two-way high flatness circular machine needle heat treatment device is proposed to solve the above problems. UTILITY MODEL CONTENTS
[0005] In order to make up for the above shortcomings, the utility model provides a kind of two-way high flatness round machine needle heat treatment device, to improve the problem that cannot be realized to cooling liquid recycling in prior art.
[0006] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:
[0007] A kind of two-way high flatness round machine needle heat treatment device, including bottom plate, the top of the bottom plate is fixedly connected with electric slide rail, the inside of the electric slide rail is slidably connected with lifting mechanism, the top of the bottom plate is connected with cooling pool, the outside of the cooling pool is fixedly connected with filter mechanism, the top of the bottom plate is fixedly connected with heating ring, the inside of the heating ring is slidably connected with needle cylinder, the outside of the needle cylinder is slidably connected with multiple clamping mechanisms, the top of the bottom plate is fixedly connected with control box;
[0008] The filter mechanism includes transmission pipe, another end of the transmission pipe is fixedly connected with storage box, the inside of the storage box is fixedly connected with three limit frames, the inside of the limit frame is slidably connected with fixed plate, the fixed plate is slidably connected with limit assembly;
[0009] Through the above technical scheme: needle cylinder is placed in heating ring, is fixed by clamping mechanism, starts electric slide rail, utilizes lifting mechanism and moves needle cylinder to heating ring above and is lowered and is heated, after heating is completed, is taken out by lifting mechanism, is moved to cooling pool above and is put into pool and is cooled, during cooling process, water pump outside cooling pool starts, and cooling liquid is sent to storage box by transmission pipe, and cooling liquid is filtered by fixed plate in limit frame, then is pumped back to cooling pool by another water pump and is recycled, when needing to clean fixed plate, limit assembly is operated, and fixed plate can be removed for cleaning, ensure that cooling liquid remains clean, guarantee heat treatment effect, and the operation of device can be controlled by control box.
[0010] As a further description of the above technical scheme:
[0011] The limit assembly includes two limit shells, the outside of the limit shell is slidably connected on the top of the fixed plate, the inside of the limit shell is slidably connected with two sliding rods, and the proximal end of the two sliding rods is fixedly connected with spring one.
[0012] Through the above technical scheme: when cleaning fixed plate, pull sliding rod, make spring one compression, limit shell slides from the top of fixed plate, and the limit of fixed plate is removed, and fixed plate can be removed for cleaning, when fixed plate is put back, sliding rod is loosened, spring one resets sliding rod, and limit shell is driven to re-clamp fixed plate, and the fixing is completed.
[0013] As a further description of the above technical scheme:
[0014] The lifting mechanism comprises a support, a retractable device is fixedly connected to the outer side of the support, a hook is slidingly connected to the outer side of the retractable device, and a connecting disc is fixedly connected to the outer side of the hook;
[0015] Through the above technical scheme: starting the retractable device, the connecting disc is lifted by the hook, when the needle cylinder needs to be lifted, the retractable device lowers the hook and the connecting disc, the connecting disc is connected with the needle cylinder, the retractable device is retracted, the connecting disc is pulled up by the hook, and then the needle cylinder is stably lifted and moved to a specified position, thereby realizing efficient lifting of the needle cylinder.
[0016] Further description of the above technical scheme:
[0017] The clamping mechanism comprises a housing, a motor is fixedly connected in the housing, a driving end of the motor is fixedly connected with a rotating disc, two fixed blocks are fixedly connected to the outer side of the rotating disc, and two rotating plates are rotatably connected in the housing.
[0018] Through the above technical scheme: starting the motor, the motor drives the rotating disc to rotate, the rotating disc drives the fixed blocks to move, the fixed blocks press the rotating plates from above, the bottom of the rotating plates is turned inward, the two rotating plates are close to each other from both sides, the needle cylinder is tightly clamped, the position of the needle cylinder is stable during heating, and subsequent heat treatment operation is facilitated.
[0019] Further description of the above technical scheme:
[0020] A second spring is fixedly connected in the housing, and the other end of the second spring is fixedly connected to the outer side of the rotating plate.
[0021] Through the above technical scheme: when the motor stops working, the second spring rebounds and pushes the outer side of the rotating plate to reset and open, the needle cylinder is easily taken out, preparation is made for next operation, and impact on the rotating plate is reduced.
[0022] Further description of the above technical scheme:
[0023] The outer side of the fixed block is slidingly connected to the outer side of the rotating plate, and the inner side of the rotating plate is slidingly connected to the outer side of the needle cylinder.
[0024] Through the above technical scheme: the motor drives the rotating disc to make the fixed block slide and press the rotating plate, the inner side of the rotating plate clamps the needle cylinder, and the sliding cooperation of the fixed block and the rotating plate ensures stable and accurate fixation of the needle cylinder.
[0025] Further description of the above technical scheme:
[0026] A hole is formed in the inner side of the limiting frame, and one end of the sliding rod away from the first spring is slidingly connected in the inner side of the hole.
[0027] Through the technical scheme, the sliding rod is pulled to be separated from the limiting frame hole, the limiting shell and the fixed plate can be taken out for cleaning, and after being loosened, the sliding rod slides into the hole under the action of the spring to fix the limiting shell and the fixed plate again.
[0028] Further description of the technical scheme is as follows:
[0029] The bottom of the storage box is fixedly connected to the top of the bottom plate, and one end of the transmission pipe away from the storage box is fixedly connected to the outside of the cooling pool.
[0030] Through the technical scheme, the cooling liquid in the cooling pool flows into the storage box through the transmission pipe, and then flows back to the cooling pool through the transmission pipe after being filtered, so that the storage box and the transmission pipe cooperate to realize the circulating filtration of the cooling liquid.
[0031] The utility model has the advantages of:
[0032] 1. In the utility model, the transmission pipe cooperates with the storage box, the storage box cooperates with the limiting frame, the limiting frame cooperates with the fixed plate, the fixed plate cooperates with the limiting shell, the limiting shell cooperates with the sliding rod, and the sliding rod cooperates with the spring one, so that the circulating use of the cooling liquid is realized, the cooling liquid is recycled, frequent replacement of the cooling liquid is avoided, the consumption of the cooling liquid is reduced, the cost and resources of purchasing the cooling liquid are saved, and the concept of sustainable development is met.
[0033] 2. In the utility model, the motor drives the rotating disc, the rotating disc drives the fixed block, and the fixed block drives the rotating disc, so that the fixing of the needle cylinder is realized, the whole fixing process is driven by the motor, the fixing of the needle cylinder can be completed by starting the motor, manual operation is not needed, the labor input is reduced, the working efficiency is improved, and the error and instability caused by manual operation are reduced. BRIEF DESCRIPTION OF DRAWINGS
[0034] Figure 1 A three-dimensional schematic view of a bidirectional high-flatness circular machine needle heat treatment device is provided for the utility model;
[0035] Figure 2 A structure schematic view of a support of a bidirectional high-flatness circular machine needle heat treatment device is provided for the utility model;
[0036] Figure 3 For Figure 2 An enlarged view of A in the middle;
[0037] Figure 4 For Figure 2 An enlarged view of B in the middle.
[0038] LEGEND:
[0039] 1, bottom plate; 2, electric slide rail; 3, heating ring; 4, lifting mechanism; 401, support; 402, folding device; 403, hook; 404, connecting disc; 5, needle cylinder; 6, cooling pool; 7, filtering mechanism; 701, transmission pipe; 702, storage box; 703, limiting frame; 704, fixed plate; 705, limiting assembly; 7051, limiting shell; 7052, sliding rod; 7053, spring one; 8, clamping mechanism; 801, shell; 802, motor; 803, rotating disc; 804, fixed block; 805, rotating plate; 806, spring two; 9, control box. DETAILED DESCRIPTION
[0040] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0041] Referring to Figures 1 to 3 An embodiment provided by the utility model: a bidirectional high-flatness circular machine needle heat treatment device, comprising a bottom plate 1, the bottom plate 1 is made of solid and durable metal material, provides stable support basis for the whole device, ensures that no shaking or displacement occurs during equipment operation, guarantees the normal work of the device components, the top of the bottom plate 1 is fixedly connected with an electric slide rail 2, the electric slide rail 2 can accurately control the moving position and speed of the lifting mechanism 4, runs stably, can realize efficient needle cylinder 5 hoisting operation, provides a convenient transfer mode for subsequent heat treatment process, the inside of the electric slide rail 2 is slidably connected with the lifting mechanism 4, the lifting mechanism 4 can flexibly slide along the electric slide rail 2, can accurately reach the position of the needle cylinder 5, stably hoist and transfer it to the designated area, greatly improves the convenience and accuracy of operation;
[0042] The top of the bottom plate 1 is connected with multiple cooling pools 6, multiple cooling pools 6 can simultaneously cool multiple needle cylinders 5, effectively improves the cooling efficiency, speeds up the speed of the whole heat treatment process, ensures that the needle cylinder 5 can be cooled in time after heating, guarantees its performance, the outside of the cooling pool 6 is fixedly connected with a filtering mechanism 7, the filtering mechanism 7 can circulate and filter the coolant in the cooling pool 6, removes the impurities therein, guarantees that the coolant is always in a clean state, thereby ensuring that the cooling effect on the needle cylinder 5 is stable and consistent, prolongs the service life of the needle cylinder 5, the top of the bottom plate 1 is fixedly connected with a heating ring 3, the heating ring 3 can generate uniform and stable heat, efficiently heats the needle cylinder 5 placed therein, makes the needle cylinder 5 heat evenly, meets the accurate requirement of temperature in the heat treatment process, ensures that the needle cylinder 5 obtains good heat treatment effect;
[0043] The inside of the heating ring 3 is slidably connected with a needle cylinder 5, which can smoothly enter and exit the heating ring 3, facilitating placement before heating and removal after heating. The sliding connection between the needle cylinder 5 and the heating ring 3 ensures convenient operation, helping to improve the efficiency of the entire heat treatment process. The outside of the needle cylinder 5 is slidably connected with multiple clamping mechanisms 8, which can firmly clamp the needle cylinder 5, ensuring its stable position during heating and transferring, preventing shaking or falling, and ensuring the safety and accuracy of the heat treatment process. The top of the bottom plate 1 is fixedly connected with a control box 9, which can be used to control the temperature. The filtering mechanism 7 includes a transmission pipe 701, which is responsible for delivering the cooling liquid in the cooling pool 6 to a storage box 702. The pipe design is reasonable, the delivery process is smooth, and the cooling liquid can be transmitted at a stable flow rate, providing a guarantee for subsequent filtering and recycling.
[0044] The other end of the transmission pipe 701 is fixedly connected with the storage box 702, which is used to temporarily store the cooling liquid delivered from the cooling pool 6. The internal space is designed reasonably, can accommodate a certain amount of cooling liquid, and provides sufficient time and space for filtering operation. The end of the transmission pipe 701 away from the storage box 702 is fixedly connected to the outside of the cooling pool 6. This connection allows the cooling liquid to flow smoothly from the cooling pool 6 into the transmission pipe 701 and then into the storage box 702, realizing the circulation path of the cooling liquid and ensuring the normal operation of the cooling system. The bottom of the storage box 702 is fixedly connected to the top of the bottom plate 1. This fixing method ensures that the storage box 702 is stably installed on the device and will not shift due to the flow of cooling liquid or the operation of the device, ensuring the stable operation of the filtering mechanism 7.
[0045] Three limiting frames 703 are fixedly connected inside the storage box 702. The three limiting frames 703 are arranged in layers, which can filter impurities in the cooling liquid multiple times, improve the filtering effect, ensure that the cooling liquid entering the cooling pool 6 has higher purity, and improve the cooling quality of the needle cylinder 5. Holes are provided in the limiting frame 703. The holes are designed cleverly and cooperate with the sliding rod 7052 to limit and fix the position of the limiting shell 7051. When filtering normally, the fixed plate 704 works stably, and when cleaning is needed, the fixed plate 704 can be easily removed. The fixed plate 704 is slidably connected with a limiting assembly 705, which can effectively fix the fixed plate 704, preventing it from shifting due to the impact of the cooling liquid during filtering, ensuring stable filtering effect, and facilitating operation when cleaning the fixed plate 704.
[0046] Specifically, the bottom plate 1 provides stable support, the electric sliding rail 2 precisely controls the movement of the lifting mechanism 4, the lifting mechanism 4 can flexibly lift the needle cylinder 5, the plurality of cooling pools 6 can improve the cooling efficiency, the filtering mechanism 7 circulates the cooling liquid to ensure the cooling effect and prolong the service life of the needle cylinder 5, the heating ring 3 uniformly heats the needle cylinder 5, the sliding connection between the needle cylinder 5 and the heating ring 3 facilitates operation, the clamping mechanism 8 firmly clamps the needle cylinder 5 to ensure the safety of heat treatment, the transmission pipe 701 of the filtering mechanism 7 is responsible for conveying the cooling liquid, the storage box 702 provides storage space, the three limiting frames 703 and the fixed plate 704 filter impurities, the limiting assembly 705 is fixedly connected to the fixed plate 704 to ensure the filtering effect and facilitate cleaning, and the overall device is efficient, stable and easy to maintain.
[0047] The limiting assembly 705 comprises two limiting shells 7051, which stably limit the fixed plate 704 from both sides of the top of the fixed plate 704, ensuring that the fixed plate 704 does not deviate or shake during the process of filtering impurities in the cooling liquid, maintaining a stable filtering state. The outer side of the limiting shell 7051 is slidingly connected to the top of the fixed plate 704. This sliding connection ensures that the limiting shell 7051 can tightly fit the top of the fixed plate 704, providing good fixing effect, and when the fixed plate 704 needs to be cleaned, the limiting shell 7051 can be easily removed by sliding along the top of the fixed plate 704, which is flexible and convenient to operate.
[0048] The limiting shell 7051 is slidingly connected to two sliding rods 7052 inside. The two sliding rods 7052 can smoothly slide inside the limiting shell 7051. By pushing and pulling them, the connection and separation state of the limiting shell 7051 and the fixed plate 704 can be effectively controlled, providing a simple and reliable way to maintain the filtering system. The proximal end of the two sliding rods 7052 is fixedly connected to a spring 7053. The spring 7053 has good elastic recovery ability. When the sliding rod 7052 is pulled outward, the spring 7053 is compressed to store elastic potential energy. When the sliding rod 7052 is released, the spring 7053 releases the elastic potential energy to push the sliding rod 7052 back to its original position, causing the limiting shell 7051 to automatically recover to the limiting state of the fixed plate 704 without the need for manual re-fixing, greatly improving the operation efficiency. The end of the sliding rod 7052 away from the spring 7053 is slidingly connected inside the hole. The sliding connection between the hole on the limiting frame 703 and the sliding rod 7052 precisely limits the movement trajectory of the sliding rod 7052, ensuring the stability of the sliding rod 7052 during movement, and thus ensuring that the limiting shell 7051 can accurately limit or release the fixed plate 704, improving the reliability of the entire filtering assembly.
[0049] Specifically, two limiting shells 7051 are stably limited from the top of the fixing plate 704 on both sides, which are slidingly connected with the fixing plate 704, facilitating removal and cleaning, the sliding rod 7052 is slidingly connected in the limiting shell 7051, and is controlled and separated by pushing and pulling, the spring 7053 utilizes elastic potential energy to realize automatic reset, improving operation efficiency, the hole of the limiting frame 703 is slidingly connected with the sliding rod 7052, ensuring movement stability and improving reliability of the filtering assembly.
[0050] With reference to Figure 1 , Figure 2 and Figure 4 , the lifting mechanism 4 comprises a support 401, which is stable in structure and provides a reliable mounting basis for the retractable device 402, so that stability can be ensured during the entire lifting process and tilting or shaking will not occur due to bearing the weight of the retractable device 402 and the object to be lifted, the outer side of the support 401 is fixedly connected with the retractable device 402, the retractable device 402 can accurately control the lifting height of the hook 403, and through flexible retracting and releasing operation, the hook 403 can be accurately sent to the position to be connected with the needle cylinder 5, so that the accuracy and convenience of the lifting operation are greatly improved.
[0051] The outer side of the retractable device 402 is slidingly connected with the hook 403, the hook 403 can smoothly slide up and down on the outer side of the retractable device 402, when the retractable device 402 is started, the hook 403 can quickly respond and accurately reach the specified height, thereby providing an efficient execution mode for connecting the needle cylinder 5 and lifting it, the outer side of the hook 403 is fixedly connected with the connecting disc 404, the connecting disc 404 enlarges the contact area with the needle cylinder 5, so that when the needle cylinder 5 is lifted, the force is more evenly distributed, the needle cylinder 5 can be firmly connected, the needle cylinder 5 is prevented from falling off due to uneven force during lifting, and the safety of the lifting process is ensured.
[0052] Specifically, the support 401 is stable in structure and provides a reliable mounting basis for the retractable device 402, so that stability can be ensured during the entire lifting process, the retractable device 402 can accurately control the lifting height of the hook 403, the hook 403 can smoothly slide, respond quickly, the connecting disc 404 enlarges the contact area with the needle cylinder 5, so that the force is evenly distributed, the needle cylinder 5 is firmly connected, the needle cylinder 5 is prevented from falling off during lifting, the safety of the lifting is ensured, and the accuracy and convenience of the lifting operation are improved.
[0053] The clamping mechanism 8 comprises a shell 801 which provides a stable external frame for the whole clamping mechanism 8, protects the internal motor 802 and other components from external interference, and is fixedly connected with the motor 802 inside. The motor 802 is powerful and stable in operation, can provide continuous and accurate power output for the whole clamping action, ensures that the rotating disc 803 rotates at a set speed and direction, and is fixedly connected with the driving end of the motor 802. The rotating disc 803 rotates stably under the driving of the motor 802, and accurately converts the rotating motion of the motor 802 into a pushing action on the rotating plate 805 through the fixed block 804 connected to the outside thereof.
[0054] The rotating disc 803 is fixedly connected with two fixed blocks 804 which are evenly distributed on the outside of the rotating disc 803. When the rotating disc 803 rotates, they can simultaneously and equally push the rotating plate 805, ensuring that the rotating plate 805 is evenly stressed, so as to stably clamp the needle cylinder 5. The inside of the shell 801 is rotatably connected with two rotating plates 805 which can rotate flexibly inside the shell 801. Under the pushing of the fixed block 804, they can quickly rotate inward to accurately clamp the needle cylinder 5, and the rotating process is smooth and will not cause scratches or other damage to the surface of the needle cylinder 5. The outside of the fixed block 804 is slidably connected to the outside of the rotating plate 805. This sliding connection allows the fixed block 804 to smoothly move along the outside of the rotating plate 805, efficiently transmitting the rotation of the rotating disc 803 to the rotation of the rotating plate 805, ensuring the smooth progress of the clamping action.
[0055] The inside of the rotating plate 805 is slidably connected to the outside of the needle cylinder 5. The sliding connection between the inside of the rotating plate 805 and the needle cylinder 5 can ensure tight adhesion to the needle cylinder 5 during clamping, providing sufficient clamping force, and can smoothly separate from the needle cylinder 5 when it needs to be released, facilitating subsequent operation. The inside of the shell 801 is fixedly connected with a spring 806 which has good elasticity. After the motor 802 stops working, it can quickly rebound to provide a reset power for the rotating plate 805, so that the rotating plate 805 quickly returns to the initial position, facilitating the clamping operation of the needle cylinder 5 next time. The other end of the spring 806 is fixedly connected to the outside of the rotating plate 805. Through this connection, the spring 806 can accurately act on the rotating plate 805 and timely and effectively push the rotating plate 805 back to its position when needed, ensuring efficient and cyclic work of the clamping mechanism 8.
[0056] Specific, clamping mechanism 8 outside shell 801 is a stable frame, protect internal components, motor 802 power, stable operation, provide accurate power to the clamping, drive rotating disc 803 smooth rotation, rotating disc 803 outside evenly distributed two fixed block 804, the motor 802 rotation accurate translation into the equal force pushing rotating plate 805, ensure that rotating plate 805 uniform stress, two rotating plate 805 can be flexible and smooth rotation in the shell 801, accurate clamping needle cylinder 5, and not damage its surface, fixed block 804 and rotating plate 805 sliding connection, efficient power transmission, rotating plate 805 and needle cylinder 5 sliding connection, guarantee clamping force and separation convenience, spring two 806 good elasticity, motor 802 stop rotating after rebound, accurate push rotating plate 805 reset, guarantee clamping mechanism 8 efficient cycle work.
[0057] Working principle: when the staff need to heat treatment of needle cylinder 5 can be placed first to the needle cylinder 5 in multiple rotating plate 805 inside, this time by starting the motor 802, through the motor 802 will rotating disc 803 drive, this time when rotating disc 803 rotation can be through rotating disc 803 outside connected two fixed block 804, make the outside of the fixed block 804 will rotating plate 805 extrusion, this time rotating plate 805 is rotating in the inside of the shell 801, while the fixed block 804 on rotating plate 805 extrusion position is in the upper part of rotating plate 805, when the upper part of rotating plate 805 is extruded, the bottom of rotating plate 805 will turn inside, this time can be through rotating plate 805 clamping needle cylinder 5, in the inside of heating ring 3 to place needle cylinder 5 to heat the needle cylinder 5, when the needle cylinder 5 heating is completed can be through the retractable device 402 hook 403 pull up, when the hook 403 is pulled up can be connected with the disc 404 together, while the connection disc 404 is connected with connecting rod around, this time can be through the retractable device 402 from the inside of heating ring 3 to take out the needle cylinder 5, this time in the electric slide rail 2 start, through the electric slide rail 2 will support 401 drive, make the support 401 slide to the top of cooling pool 6, this time in the retractable device 402 start, through the retractable device 402 down to place the needle cylinder 5, make the needle cylinder 5 placed in the inside of cooling pool 6.
[0058] At this time, the inside of the cooling pool 6 needs to be filled with cooling liquid and water in advance, and when the cooling of the needle cylinder 5 is completed, the needle cylinder 5 can be pulled up again, at this time, the water pump connected outside the cooling pool 6 can be started, and the cooling liquid in the inside of the cooling pool 6 is transmitted to the inside of the transmission pipe 701, at this time, the cooling liquid is transmitted to the inside of the storage box 702 through the transmission pipe 701, and the inside of the storage box 702 is provided with three limiting frames 703, and the inside of the limiting frame 703 slides the fixed plate 704, the impurities in the cooling liquid are filtered through the fixed plate 704, when the cooling liquid passes through the three fixed plates 704, it will be extracted to the inside of another transmission pipe 701 by the water pump connected outside the storage box 702, and the cooling liquid is transmitted to the inside of the cooling pool 6 again through the transmission pipe 701, and when the fixed plate 704 needs to be cleaned, the handle fixed outside the sliding rod 7052 can be pulled to the inside of the limiting shell 7051 through the sliding rod 7052, so as to cancel the limitation of the limiting shell 7051, at this time, the limiting shell 7051 can be taken out from the inside of the limiting frame 703, and after the handle is released, the compressed spring 7053 in the inside of the limiting shell 7051 will be ejected.
[0059] Finally, it should be pointed out that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application, should be included in the protection scope of the present application.
Claims
1. A two-way high flatness round needle heat treatment device comprising a base plate (1), characterized in that: The top of the bottom plate (1) is fixedly connected with an electric sliding rail (2), the inside of the electric sliding rail (2) is slidably connected with a lifting mechanism (4), the top of the bottom plate (1) is connected with a plurality of cooling pools (6), the outside of the cooling pool (6) is fixedly connected with a filtering mechanism (7), the top of the bottom plate (1) is fixedly connected with a heating ring (3), the inside of the heating ring (3) is slidably connected with a needle cylinder (5), the outside of the needle cylinder (5) is slidably connected with a plurality of clamping mechanisms (8), and the top of the bottom plate (1) is fixedly connected with a control box (9). The filtering mechanism (7) comprises a transmission pipe (701), one end of the transmission pipe (701) is fixedly connected with a storage box (702), the inside of the storage box (702) is fixedly connected with three limiting frames (703), the inside of the limiting frame (703) is slidably connected with a fixed plate (704), and the fixed plate (704) is slidably connected with a limiting assembly (705).
2. A high flatness two-way circular needle heat treatment device according to claim 1, characterized in that: The limiting assembly (705) comprises two limiting shells (7051), the outside of the limiting shell (7051) is slidably connected to the top of the fixed plate (704), the inside of the limiting shell (7051) is slidably connected with two sliding rods (7052), and one end of the two sliding rods (7052) is fixedly connected with a spring (7053).
3. The apparatus according to claim 1, wherein: The lifting mechanism (4) comprises a support (401), the outside of the support (401) is fixedly connected with a retractable device (402), the outside of the retractable device (402) is slidably connected with a hook (403), and the outside of the hook (403) is fixedly connected with a connecting disc (404).
4. The apparatus according to claim 1, wherein: The clamping mechanism (8) comprises a shell (801), the inside of the shell (801) is fixedly connected with a motor (802), the driving end of the motor (802) is fixedly connected with a rotating disc (803), the outside of the rotating disc (803) is fixedly connected with two fixed blocks (804), and the inside of the shell (801) is rotatably connected with two rotating plates (805).
5. A high flatness two-way circular needle heat treatment device according to claim 4, characterized in that: The inside of the shell (801) is fixedly connected with a spring (806), and the other end of the spring (806) is fixedly connected to the outside of the rotating plate (805).
6. A high flatness two-way circular needle heat treatment device according to claim 5, characterized in that: The outside of the fixed block (804) is slidably connected to the outside of the rotating plate (805), and the inside of the rotating plate (805) is slidably connected to the outside of the needle cylinder (5).
7. The apparatus according to claim 2, wherein: The inside of the limiting frame (703) is provided with a hole, and the end of the sliding rod (7052) away from the spring (7053) is slidably connected in the inside of the hole.
8. The apparatus according to claim 1, wherein: The bottom of the storage box (702) is fixedly connected to the top of the bottom plate (1), and one end of the transmission pipe (701) away from the storage box (702) is fixedly connected to the outside of the cooling pool (6).
Citation Information
Patent Citations
Heat treatment quenching device for circular knitting needle
CN215887144U