Energy-saving and heat-dissipating hydraulic station
By installing an auxiliary mechanism on the baffle of the hydraulic station body and using a servo motor to drive the double fan blades to rotate, the problem of low heat dissipation efficiency of the hydraulic station is solved, achieving efficient heat dissipation and energy saving.
Patent Information
- Application Number
- CN202520811836.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-04-27
AI Technical Summary
The existing hydraulic power unit has low heat dissipation efficiency, which affects normal use.
An auxiliary mechanism, including a connecting cylinder, fan blades, a synchronizing component, and a drive mechanism, is installed on the baffle of the main body of the hydraulic station. A servo motor drives the drive wheel to rotate, and the fan blades blow air to cool the inside of the main body of the hydraulic station, achieving synchronous rotation of the two fan blades to improve the heat dissipation effect.
It improves the heat dissipation efficiency of the hydraulic station, achieves the rotation of dual fan blades through a single drive source, realizes energy-saving effect, and facilitates operation and maintenance.
Smart Images

Figure CN223908541U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of hydraulic station, especially a kind of energy-saving heat dissipation's hydraulic station. BACKGROUND
[0002] Hydraulic station is usually a kind of hydraulic source device or hydraulic device including control valve, and hydraulic station can usually provide lubrication and power for the operation of large and medium-sized industrial production machinery.
[0003] The hydraulic station of prior art usually includes hydraulic station body, hydraulic pump, driving motor, oil tank, directional valve, throttle valve, overflow valve and pipeline, and the oil tank and pipeline are usually installed on the heat of hydraulic station body, and the motor and hydraulic pump are placed on the hydraulic station body, when the hydraulic station is running, heat caused by oil temperature will be generated in the interior of hydraulic station body, in order to dissipate heat in the interior of hydraulic station body, usually, heat dissipation groove is set on the hydraulic station body, to utilize natural wind to cool the interior of hydraulic station body, but this kind of heat dissipation mode usually has the condition of low heat dissipation efficiency, which affects the normal use of hydraulic station, and has certain limitation. SUMMARY
[0004] The utility model aims at providing a kind of energy-saving heat dissipation's hydraulic station to solve the problems raised in the above background.
[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of energy-saving heat dissipation's hydraulic station, comprising:
[0006] Hydraulic station body, the front and back of the hydraulic station body are equipped with baffle, and the edge side of one of the baffles is symmetrically provided with ventilation slot;
[0007] Oil tank, the oil tank is installed in the interior of hydraulic station body;
[0008] Auxiliary mechanism, the auxiliary mechanism is located on the other baffle;
[0009] Driving mechanism, the driving mechanism is located on the other baffle, and the driving mechanism is used to cooperate with auxiliary mechanism to blow and dissipate heat in the interior of hydraulic station body.
[0010] Preferably, the auxiliary mechanism includes:
[0011] Connecting barrel, the connecting barrel is located on the other baffle;
[0012] Fan blade, the fan blade is located in the interior of connecting barrel;
[0013] Synchronization piece, the synchronization piece is located in the interior of connecting barrel, and the synchronization piece is used to drive fan blade to rotate;
[0014] A transmission element is located at the side of the connecting cylinder.
[0015] Preferably, the auxiliary mechanism further comprises:
[0016] A through slot is symmetrically provided on the other baffle, and the connecting cylinder is slidably connected with the inner cavity of the through slot.
[0017] A series plate is fixedly connected between adjacent connecting cylinders.
[0018] A dustproof net is fixedly embedded in the interior of the connecting cylinder.
[0019] A positioning column is fixedly connected to the side of the other baffle.
[0020] A fixed frame is fixedly connected to the exterior of the connecting cylinder, the fixed frame is sleeved on the exterior of the positioning column, the side of the fixed frame is threadedly connected with a locking bolt, and one end of the locking bolt is threadedly connected with the positioning column.
[0021] Preferably, the rotating element comprises:
[0022] A fixed frame is fixedly embedded in the interior of the connecting cylinder.
[0023] A rotating shaft is fixedly connected at the end thereof with the fan blade, the rotating shaft is rotatably connected at the middle portion thereof with the fixed frame, and the rotating shaft is rotatably connected at the middle portion thereof with the dustproof net.
[0024] Preferably, the synchronization element comprises:
[0025] A synchronization wheel is fixedly sleeved on the exterior of the rotating shaft.
[0026] A synchronization belt is sleeved on the exterior of the synchronization wheel.
[0027] Preferably, the driving mechanism comprises:
[0028] A support frame is fixedly connected to the side of the series plate.
[0029] An installation frame is located at the side of the support frame.
[0030] A servo motor is installed in the interior of the installation frame.
[0031] A driving wheel is located in the interior of the support frame and in the interior of the synchronization belt.
[0032] A bearing frame is fixedly embedded in the interior of the support frame and sleeved on the exterior of the driving wheel.
[0033] Preferably, the driving mechanism further comprises:
[0034] A connecting piece is arranged on the driving wheel, and the connecting piece is used for connecting the output end of the servo motor with the driving wheel.
[0035] Adjacent mounting plates are fixedly connected to the side portions of the supporting frame and the mounting frame, respectively.
[0036] Mounting bolts are threadedly connected to the adjacent mounting plates.
[0037] Preferably, the connecting piece comprises:
[0038] A square column is drivingly connected with the output end of the servo motor.
[0039] A square box is fixedly connected to the end portion of the driving wheel, and the square column is slidingly connected with the inner cavity of the square box.
[0040] The technical effects and advantages of the utility model are as follows:
[0041] The utility model discloses a driving wheel is rotated by the cooperation of connecting barrel, fan blade, rotating shaft, synchronous piece, supporting frame, mounting frame, servo motor and driving wheel, and the driving wheel drives two rotating shafts to rotate under the action of synchronous piece, and the rotating shaft drives fan blade to rotate, so that the inside of hydraulic station main part is blown and cooled, and then it is favorable to blow and cool the inside of hydraulic station, so as to improve the heat dissipation effect of the inside of hydraulic station, and simultaneously, a single driving source is adopted to make double fan blades rotate, so as to realize energy saving and convenient operation. BRIEF DESCRIPTION OF DRAWINGS
[0042] Figure 1 It is the whole structure schematic diagram of the utility model.
[0043] Figure 2 It is the supporting frame place plane structure schematic diagram of the utility model.
[0044] Figure 3 It is the connecting barrel place plane section structure schematic diagram of the utility model.
[0045] Figure 4 It is the supporting frame place plane section structure schematic diagram of the utility model.
[0046] In the drawing: 1, hydraulic station main part;2, baffle;3, auxiliary mechanism;31, connecting barrel;32, fan blade;33, fixed frame;34, rotating shaft;35, synchronous wheel;36, synchronous belt;37, series connection plate;38, dust screen;39, positioning column;310, fixed frame;4, driving mechanism;41, supporting frame;42, mounting frame;43, servo motor;44, driving wheel;45, square column;46, square box;47, bearing frame. DETAILED DESCRIPTION
[0047] The technical solutions in the embodiments of the utility model will be apparently and completely described in connection with 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 the other embodiments obtained by the ordinary skilled in the art without creative labor belong to the protection scope of the utility model.
[0048] The utility model provides a kind of energy-saving heat dissipation's hydraulic station as shown in Figures 1-4
[0049] Embodiment one
[0050] Including hydraulic station main body 1, oil tank, auxiliary mechanism 3 and driving mechanism 4, hydraulic station main body 1 is equipped with hydraulic pump, driving motor, oil tank, directional valve, throttle valve, overflow valve and pipeline, etc., oil pump is rotated by motor, mechanical energy is converted into pressure energy of hydraulic oil, then direction, pressure and flow are adjusted by hydraulic valve, finally transmission to the oil cylinder or oil motor of hydraulic machinery, control the direction transformation, strength size and speed of liquid motor, the front and back of hydraulic station main body 1 are both installed with baffle 2, the edge side of one baffle 2 is symmetrically provided with ventilation groove, it is favorable to form cooperation with the blowing of fan blade 32, heat is directly blown out to the outside of hydraulic station main body 1 through the inside of heat dissipation groove, to improve the heat dissipation effect of the inside of hydraulic station main body 1, oil tank is installed in the inside of hydraulic station main body 1, auxiliary mechanism 3 is located on another baffle 2, driving mechanism 4 is located on another baffle 2, driving mechanism 4 is used to cooperate with auxiliary mechanism 3, to blow and radiate heat to the inside of hydraulic station main body 1.
[0051] Further, auxiliary mechanism 3 includes connecting barrel 31, fan blade 32, synchronous piece and transmission piece, connecting barrel 31 is conducive to being directly installed on baffle 2, in turn, it is conducive to the installation of fan blade 32, fan blade 32 is conducive to being rotated to blow and cool the inside of hydraulic station main body 1, connecting barrel 31 is located on another baffle 2, fan blade 32 is located in the inside of connecting barrel 31, synchronous piece is located in the inside of connecting barrel 31, synchronous piece is used to drive fan blade 32 to rotate, transmission piece is located on the edge side of connecting barrel 31.
[0052] Further, the auxiliary mechanism 3 further comprises a through slot, a series plate 37, a dust screen 38, a positioning column 39 and a fixing frame 310, the through slot is beneficial for inserting the connecting cylinder 31 into the through slot, the series plate 37 is beneficial for connecting the two connecting cylinders 31 in series, so as to facilitate the synchronous installation of the two connecting cylinders 31, the dust screen 38 is beneficial for shielding the external dust, the positioning column 39 is beneficial for being inserted with the fixing frame 310, so as to facilitate the positioning of the installation of the connecting cylinder 31, the through slot is symmetrically arranged on the other baffle 2, the connecting cylinder 31 is slidably connected with the inner cavity of the through slot, the series plate 37 is fixedly connected between the adjacent connecting cylinders 31, the dust screen 38 is fixedly embedded in the inner part of the connecting cylinder 31, the positioning column 39 is fixedly connected to the side of the other baffle 2, the fixing frame 310 is fixedly connected to the outer part of the connecting cylinder 31, the fixing frame 310 is sleeved on the outer part of the positioning column 39, the side of the fixing frame 310 is threadedly connected with a locking bolt, which is beneficial for limiting the relative position of the fixing frame 310 and the positioning column 39, and further beneficial for installing and dismounting the connecting cylinder 31, facilitating the simultaneous removal and maintenance of the two connecting cylinders 31, and one end of the locking bolt is threadedly connected with the positioning column 39.
[0053] Specifically, the rotating member comprises a fixing frame 33 and a rotating shaft 34, the fixing frame 33 is beneficial for supporting the rotation of the rotating shaft 34 to install the fan blade 32, the rotating shaft 34 is beneficial for driving the fan blade 32 to rotate to blow and cool the inside of the hydraulic station body 1, the fixing frame 33 is fixedly embedded in the inner part of the connecting cylinder 31, the end of the rotating shaft 34 is fixedly connected with the fan blade 32, the rotating shaft 34 is rotatably connected to the middle part of the fixing frame 33, and the rotating shaft 34 is rotatably connected to the middle part of the dust screen 38.
[0054] Specifically, the synchronous member comprises a synchronous wheel 35 and a synchronous belt 36, the synchronous wheel 35 and the synchronous belt 36 are beneficial for being connected with the driving wheel 44, and further beneficial for driving the driving wheel 44 to rotate the two synchronous wheels 35 at the same time, so as to drive the two fan blades 32 at the same time to achieve energy-saving effect, the synchronous wheel 35 is fixedly sleeved on the outer part of the rotating shaft 34, and the synchronous belt 36 is sleeved on the outer part of the synchronous wheel 35.
[0055] Further, the driving mechanism 4 comprises a support frame 41, a mounting frame 42, a servo motor 43, a driving wheel 44 and a bearing frame 47, the support frame 41 is beneficial to support the driving wheel 44, the mounting frame 42 is beneficial to support and mount the servo motor 43, the servo motor 43 is electrically connected with an external power source through an external switch, the servo motor 43 is beneficial to rotate the driving wheel 44, the bearing frame 47 is beneficial to support the rotation of the driving wheel 44 and improve the stability of the rotation of the driving wheel 44, the support frame 41 is fixedly connected to the side of the series connection plate 37, the mounting frame 42 is located at the side of the support frame 41, the servo motor 43 is mounted in the mounting frame 42, the driving wheel 44 is located in the support frame 41, the driving wheel 44 is located in the synchronous belt 36, and the bearing frame 47 is fixedly embedded in the support frame 41 and sleeved with the driving wheel 44.
[0056] Further, the driving mechanism 4 further comprises a connecting piece, mounting plates and mounting bolts, the mounting bolts are beneficial to lock and fix adjacent two mounting plates, so as to mount and dismount the support frame 41 and the mounting frame 42, the connecting piece is located on the driving wheel 44 and is used for connecting the output end of the servo motor 43 with the driving wheel 44, the adjacent mounting plates are fixedly connected to the side of the support frame 41 and the mounting frame 42 respectively, and the mounting bolts are threadedly connected to the adjacent mounting plates.
[0057] Embodiment two
[0058] On the basis of the embodiment one, the connecting piece comprises a square column 45 and a square frame 46, the square column 45 is beneficial to be connected with the output end of the servo motor 43, the square frame 46 is beneficial to be inserted with the square column 45, so as to drive the driving wheel 44 to rotate, and is beneficial to mount and dismount the servo motor 43 and the driving wheel 44, so that the servo motor 43 can be conveniently taken out and maintained alone, the output end of the servo motor 43 is in transmission connection with the square column 45, the square frame 46 is fixedly connected to the end of the driving wheel 44, and the square column 45 is in sliding insertion connection with the inner cavity of the square frame 46.
[0059] Finally, it should be noted that: the above only describes the preferred embodiments of the present application and is not used to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified or some technical features can be replaced, 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. An energy-saving and heat-dissipating hydraulic station, characterized in that, The utility model relates to a kind of auxiliary mechanism and drive mechanism for hydraulic station, including: Hydraulic station body (1), the front and back of the hydraulic station body (1) are equipped with baffle (2), and one side of one of the baffle (2) is symmetrically provided with ventilation slot; Oil tank, the oil tank is installed in the inside of hydraulic station body (1); Auxiliary mechanism (3), the auxiliary mechanism (3) is located on the other baffle (2); Driving mechanism (4), the driving mechanism (4) is located on the other baffle (2), and the driving mechanism (4) is used to cooperate with auxiliary mechanism (3) to blow and heat dissipation in the inside of hydraulic station body (1).
2. The energy-saving and heat-dissipating hydraulic station according to claim 1, characterized in that, The auxiliary mechanism (3) includes: Connecting cylinder (31), the connecting cylinder (31) is located on the other baffle (2); Fan blade (32), the fan blade (32) is located in the inside of connecting cylinder (31); Synchronization piece, the synchronization piece is located in the inside of connecting cylinder (31), and the synchronization piece is used to drive fan blade (32) to rotate; Transmission part, the transmission part is located on the side of connecting cylinder (31).
3. The energy-saving and heat-dissipating hydraulic station according to claim 2, characterized in that, The auxiliary mechanism (3) further includes: Through slot, the through slot is symmetrically provided on the other baffle (2), and the connecting cylinder (31) is slidably connected with the inner cavity of through slot; Series board (37), the series board (37) is fixedly connected between adjacent connecting cylinder (31); Dust screen (38), the dust screen (38) is fixedly embedded in the inside of connecting cylinder (31); Positioning column (39), the positioning column (39) is fixedly connected on the side of the other baffle (2); Fixed frame (310), the fixed frame (310) is fixedly connected to the outside of connecting cylinder (31), the fixed frame (310) is sleeved on the outside of positioning column (39), and the side of the fixed frame (310) is threadedly connected with locking bolt, and one end of the locking bolt is threadedly connected with positioning column (39).
4. The energy-saving and heat-dissipating hydraulic station according to claim 2, characterized in that, The rotating member includes: Fixed frame (33), the fixed frame (33) is fixedly embedded in the inside of connecting cylinder (31); Rotating shaft (34), the end of the rotating shaft (34) is fixedly connected with fan blade (32), the rotating shaft (34) is rotatably connected to the middle of fixed frame (33), and the rotating shaft (34) is rotatably connected to the middle of dust screen (38).
5. The energy-saving and heat-dissipating hydraulic station according to claim 2, characterized in that, The synchronization piece includes: Synchronization wheel (35), the synchronization wheel (35) is fixedly sleeved on the outside of rotating shaft (34); Synchronization belt (36), the synchronization belt (36) is sleeved on the outside of synchronization wheel (35).
6. The energy-saving and heat-dissipating hydraulic station according to claim 1, characterized in that, The driving mechanism (4) includes: Support frame (41), the support frame (41) is fixedly connected on the side of series board (37); Mounting frame (42), the mounting frame (42) is located on the side of support frame (41); Servo motor (43), the servo motor (43) is installed in the inside of mounting frame (42); Driving wheel (44), the driving wheel (44) is located in the inside of support frame (41), and the driving wheel (44) is located in the inside of synchronization belt (36). A bearing frame (47) is fixedly embedded in the inside of the support frame (41), and the bearing frame (47) is sleeved on the outside of the driving wheel (44).
7. The energy-saving and heat-dissipating hydraulic station according to claim 6, characterized in that, The driving mechanism (4) further comprises: A connecting piece is arranged on the driving wheel (44), and the connecting piece is used for connecting the output end of the servo motor (43) with the driving wheel (44); Adjacent mounting plates are fixedly connected to the side portions of the support frame (41) and the mounting frame (42) respectively; Mounting bolts are threadedly connected to the adjacent mounting plates.
8. The energy-saving and heat-dissipating hydraulic station according to claim 7, characterized in that, The connecting piece comprises: A square column (45), and the output end of the servo motor (43) is drivingly connected with the square column (45); A square box (46) is fixedly connected to the end portion of the driving wheel (44), and the square column (45) is slidingly and penetratingly connected with the inner cavity of the square box (46).