Cooling liquid quantitative output mechanism for spinning forming machining device
By designing a coolant metering output mechanism for the spinning forming processing device, and utilizing a combination of connectors, baffles, and arc-shaped blades, the metering output and uniform adhesion of atomized coolant are achieved. This solves the problems of the spinning wheel heating affecting processing accuracy and high coolant consumption, and realizes low-cost, high-efficiency cooling and precision assurance.
Patent Information
- Application Number
- CN202520639349.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-07
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-07
AI Technical Summary
Existing spinning forming equipment is prone to deformation after the spinning wheel heats up, which affects the processing accuracy. In addition, high-precision equipment consumes a lot of coolant, resulting in high costs.
A quantitative coolant output mechanism for a spinning forming processing device was designed. Through the combination of connectors, partitions, arc blades and magnets, the quantitative output and uniform adhesion of atomized coolant are achieved. Cooling is driven by the spinning wheel itself, and the guide hole is sealed by magnetic attraction to prevent coolant from being output when not rotating.
It achieves uniform output of low-cost coolant, reduces coolant consumption and energy consumption, ensures uniform temperature of the spinning roller, improves machining accuracy and reduces costs.
Smart Images

Figure CN223946633U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of cooling liquid quantitative output mechanisms for spinning forming machining device, it is mainly used to quantitatively output atomized cooling liquid, make atomized cooling liquid uniformly adhere to the surface of spinning wheel in rotation process, to cool the spinning wheel in rotation process. BACKGROUND
[0002] The existing workpiece surface groove processing equipment spinning forming device mainly includes fixed seat driven by corresponding mobile drive mechanism, and spinning mechanism installed on fixed seat, and spinning mechanism generally includes spinning wheel, and spinning wheel is rotatably installed on fixed seat by corresponding adapter. In the processing process, fixed seat and spinning wheel are driven into position by mobile drive mechanism, so that spinning wheel contacts workpiece surface, and surface groove processing is carried out on the surface of workpiece in rotation process.
[0003] Spinning wheel is easy to form a certain degree of temperature rise in the process of spinning on workpiece surface, since the temperature rise is relatively small compared with the temperature rise of other machining, therefore, part of spinning forming device does not set cooling system directly, so that spinning wheel after temperature rise is easy to form a small amount of deformation, thereby affecting processing precision. And part of spinning forming machining precision requirement is higher, then cooling liquid is directly sprayed to cool the contact position of spinning wheel and workpiece, which consumes a large amount of cooling liquid, and cooling liquid recovery and recycling system needs to be set, which leads to relatively high processing cost. In order to achieve uniform cooling and temperature reduction of spinning wheel under the premise of low cost investment, cooling mechanism starts to be used, which atomizes condensate by atomizer and then outputs atomized cooling liquid to adhere to the surface of spinning wheel.
[0004] Therefore, a kind of cooling liquid quantitative output mechanism for spinning forming machining device is designed, which can quantitatively output atomized cooling liquid, so that atomized cooling liquid can uniformly adhere to the surface of spinning wheel in rotation process, thereby effectively cooling spinning wheel in rotation process. SUMMARY
[0005] In view of the above technical problems existing in the prior art, the utility model provides a kind of cooling liquid quantitative output mechanism for spinning forming machining device, which can effectively solve the above technical problems existing in the prior art.
[0006] The technical scheme of the utility model is:
[0007] A kind of cooling liquid quantitative output mechanism for spinning forming machining device, comprising:
[0008] The adapter is provided with a corresponding installation groove on the outer side thereof, and the spinning wheel is rotatably installed on the outer side of the installation groove through a corresponding adapter shaft.
[0009] The partition plate is provided with a corresponding guide hole in the middle portion thereof, and corresponding closing plates are fixedly connected to the two sides of the installation groove on the inner side of the partition plate.
[0010] The inlet mist guide pipe is installed on the adapter and is used for transmitting external atomized cooling liquid into the installation groove on the inner side of the partition plate.
[0011] The arc-shaped blade plates are rotatably arranged in the installation groove on the inner side of the partition plate, and the arc-shaped blade plates are rotated to push the cooling atomized liquid in the installation groove out to cool the spinning wheel when the spinning wheel rotates.
[0012] The arc-shaped blade plates are fixedly connected to the corresponding rotating wheels at equal intervals, and the rotating wheels are rotatably installed on the adapter through corresponding fixing shafts.
[0013] The fixing shafts are connected to the adapter shafts through a belt transmission mode.
[0014] The inner side of the partition plate is fixedly connected to a group of sealing plates on the upper and lower sides of the guide hole, the two sides of the sealing plates are fixedly connected to corresponding magnets, the rotating wheels are rotatably installed on the fixing shafts through corresponding one-way bearings, the outer end portions of the arc-shaped blade plates are fixedly connected to corresponding magnetic metal pieces on the front side of the arc-shaped blade plates in the rotatable direction of the one-way bearings, and the interval between the end portions of two or more adjacent arc-shaped blade plates is equal to the interval between the two magnets.
[0015] When the spinning wheel stops rotating, the magnetic metal pieces close to and facing the magnets are adsorbed and connected to the magnets under the action of the magnetic attraction force of the magnetic metal pieces and the magnets, so that the arc-shaped blade plates and the sealing plates cooperatively form a seal on the guide hole of the partition plate.
[0016] The bottom side of the adapter is provided with a condensate discharge hole.
[0017] The advantages of the utility model are as follows:
[0018] 1) The utility model discloses a set of buffer accommodation space on the mounting groove of the inside of the spinning wheel through the setting of the partition and the closing plate, and the outside atomized cooling liquid can enter the buffer accommodation space smoothly through the setting of the inlet mist guide pipe, and finally the cooling atomized liquid in the mounting groove is pushed out through the rotation of the plurality of arc blade plates arranged on the inside of the partition to cool the spinning wheel, thereby effectively outputting the atomized cooling liquid in a quantitative manner, and the atomized cooling liquid can be evenly attached to the surface of the spinning wheel in the rotating process, thereby effectively cooling the spinning wheel in the rotating process.
[0019] 2) The plurality of arc blade plates are fixed on the corresponding rotating wheels at equal intervals, the rotating wheels are rotatably installed on the connecting piece through the corresponding fixed shafts, and the fixed shafts are drivingly connected to the connecting shafts of the spinning wheels through the belt transmission mode. The driving power source of the plurality of arc blade plates directly adopts the spinning wheel itself, so that the atomized cooling liquid can be output synchronously to cool the spinning wheel during the rotation of the spinning wheel, that is, during the machining of the spinning wheel. The utility model can reduce the consumption of the cooling liquid and the energy consumption required for driving the arc blade plates, prevent the continuous output of the cooling liquid to the spinning wheel that does not rotate, prevent the temperature of the spinning wheel from being uneven, and ensure the practical effect of the utility model.
[0020] 3) A group of sealing plates are fixed on the inside of the partition at different heights, corresponding magnets are fixed on the two sides of the sealing plates, the rotating wheels are rotatably installed on the fixed shafts through the corresponding one-way bearings, the outer end portions of the arc blade plates are respectively fixed with the magnetically attracted metal pieces corresponding to the magnets on the front side in the rotatable direction of the one-way bearings, and the interval between the end portions of the adjacent two or more arc blade plates is equal to the interval between the two magnets. When the spinning wheel stops rotating, the magnetically attracted metal pieces close to and facing the magnets are adsorbed and connected to the magnets under the magnetic attraction of the magnets, so that the arc blade plates and the sealing plates cooperate to form a seal on the guide hole of the partition. The utility model can further ensure that the atomized cooling liquid is not output when the spinning wheel does not rotate, further ensure the uniformity of the overall temperature of the spinning wheel, and further ensure the practical effect of the utility model. DRAWINGS
[0021] Fig. 1 It is a structural schematic diagram of the utility model.
[0022] Fig. 2 It is an exploded view of the local parts of the utility model.
[0023] Fig. 3 It is a use state diagram of the utility model.
[0024] In the drawing: adapter 1, mounting groove 101, condensate discharge hole 102, spinning wheel 2, adapter shaft 201, drive mechanism 3, fixed seat 301, partition 4, guide hole 401, closure plate 5, mist inlet pipe 6, arc blade plate 7, runner 8, fixed shaft 9, sealing plate 10, magnet 11, one-way bearing 12, magnetically attracted metal part 13. DETAILED DESCRIPTION
[0025] For the convenience of those skilled in the art to understand, the structure of the utility model will be further described in detail in combination with the drawings:
[0026] Reference Figs. 1-3 A kind of cooling liquid quantitative output mechanism for spinning forming machining device, comprising:
[0027] Adapter 1 is used to rotate the corresponding spinning wheel 2 to be installed on the fixed seat 301 of drive mechanism 3, the outer side of the adapter 1 is inclinedly provided with corresponding mounting groove 101, and the spinning wheel 2 is rotatably installed on the outer side of the mounting groove 101 by corresponding adapter shaft 201;
[0028] Partition 4 is fixedly connected to the mounting groove 101 on the inner side of the spinning wheel 2, the middle part of the partition 4 is provided with corresponding guide hole 401, and the mounting groove 101 on the inner side of the partition 4 is fixedly connected with corresponding closure plate 5 on both sides;
[0029] Mist inlet pipe 6 is installed through the adapter 1, for transmitting external atomized cooling liquid into the mounting groove 101 on the inner side of the partition 4;
[0030] A plurality of arc blade plates 7 are rotatably arranged in the mounting groove 101 on the inner side of the partition 4, when the spinning wheel 2 rotates, a plurality of arc blade plates 7 rotate to push the cooling atomized liquid in the mounting groove 101 out to cool the spinning wheel 2.
[0031] The utility model discloses through the setting of partition 4 and closure plate 5, effectively form buffer accommodation space on the mounting groove 101 on the inner side of spinning wheel 2, again through the setting of mist inlet pipe 6, so that external atomized cooling liquid can enter the buffer accommodation space smoothly, finally, again through the rotation of a plurality of arc blade plates 7 arranged on the inner side of the partition 4 to push the cooling atomized liquid in the mounting groove 101 out to cool the spinning wheel 2. Thus, the atomized cooling liquid can be effectively quantitatively outputted, so that the atomized cooling liquid can be evenly attached to the surface of the spinning wheel 2 in the rotating process, and then the spinning wheel 2 in the rotating process is effectively cooled.
[0032] A plurality of arc-shaped blade plates 7 are fixed on the corresponding rotating wheels 8 at equal intervals, and the rotating wheels 8 are rotatably installed on the connecting piece 1 through corresponding fixed shafts 9.
[0033] The driving power source of the plurality of arc-shaped blade plates 7 directly adopts the spinning wheel 2 itself, so that the atomized cooling liquid can be output to cool the spinning wheel 2 during the rotation of the spinning wheel 2, i.e. during the processing of the spinning wheel 2. This can reduce the consumption of cooling liquid and the energy consumption required for driving the arc-shaped blade plates 7, and can prevent the continuous output of cooling liquid to the spinning wheel 2 which is not rotating, so as to prevent the temperature unevenness of the spinning wheel 2 as a whole, thereby ensuring the practical effect of the utility model.
[0034] The inner side of the partition plate 4 is fixed with a group of sealing plates 10 on the upper and lower sides of the guide hole 401, the two sides of the sealing plate 10 are respectively fixed with corresponding magnets 11, the rotating wheel 8 is rotatably installed on the fixed shaft 9 through the corresponding one-way bearing 12, and the outer end portion of the arc-shaped blade plate 7 is respectively fixed with a magnetic metal piece 13 corresponding to the magnet 11 on the front side in the rotatable direction of the one-way bearing 12.
[0035] When the spinning wheel 2 stops rotating, the magnetic metal piece 13 close to and facing the magnet 11 is adsorbed and connected to the magnet 11 under the action of the magnetic attraction force of the magnet 11, so that the arc-shaped blade plate 7 cooperates with the sealing plate 10 to form a closed state on the guide hole 401 of the partition plate 4.
[0036] The inner side of the partition plate 4 is fixed with a group of sealing plates 10, the two sides of the sealing plate 10 are respectively fixed with corresponding magnets 11, the outer end portion of the arc-shaped blade plate 7 is respectively fixed with a magnetic metal piece 13 corresponding to the magnet 11 on the front side in the rotatable direction of the one-way bearing 12, and the most important is that the end-to-end spacing of the three arc-shaped blade plates 7 is equal to the spacing between the two magnets 11. In this way, when the spinning wheel 2 stops rotating, the magnetic metal piece 13 close to and facing the magnet 11 is adsorbed and connected to the corresponding magnet 11 under the action of the magnetic attraction force of the magnet 11, so that the arc-shaped blade plate 7 cooperates with the sealing plate 10 to form a closed state on the guide hole 401 of the partition plate 4. This can further ensure that the atomized cooling liquid is not output when the spinning wheel 2 is not rotating, thereby further ensuring the uniformity of the overall temperature of the spinning wheel, and further ensuring the practical effect of the utility model.
[0037] The bottom side of the adapter 1 is provided with a condensate discharge hole 102, under the operation of the condensate discharge hole 102, a small amount of condensate is discharged, thereby ensuring the practical effect of the utility model.
[0038] The above only is the preferred embodiment of the present application, it should be pointed out that, for the ordinary skilled in the art, without departing from the principles of the present application, under the premise of, can also make a number of improvements and refinements, these improvements and refinements should also be considered as the protection scope of the present application.
Claims
1. A coolant metering output mechanism for a spinning forming processing apparatus, characterized in that, include: Connector (1) is used to rotatably mount the corresponding spinning wheel (2) onto the fixed seat (301) of the drive mechanism (3). The outer side of the connector (1) is provided with a corresponding mounting groove (101) that is inclined downwards. The spinning wheel (2) is rotatably mounted onto the outer side of the mounting groove (101) through the corresponding connecting shaft (201). The partition (4) is fixed to the mounting groove (101) on the inner side of the spinning wheel (2). The partition (4) has a corresponding guide hole (401) in the middle, and the mounting groove (101) on the inner side of the partition (4) is fixed to the two sides of the corresponding closing plate (5). A mist inlet duct (6) is installed through the connector (1) to transfer external atomized coolant to the mounting groove (101) inside the partition (4); Several arc-shaped blades (7) are rotatably disposed in the mounting groove (101) inside the partition (4). When the spinning wheel (2) rotates, the several arc-shaped blades (7) rotate to push out the cooling atomized liquid in the mounting groove (101) to cool the spinning wheel (2).
2. The coolant metering output mechanism for a spinning forming processing device according to claim 1, characterized in that, Several of the arc-shaped blade plates (7) are fixedly connected to the corresponding rotating wheels (8) at equal intervals. The rotating wheels (8) are rotatably installed onto the connecting member (1) through the corresponding fixed shaft (9).
3. The coolant metering output mechanism for a spinning forming apparatus according to claim 2, characterized in that, The fixed shaft (9) is connected to the connecting shaft (201) by belt drive.
4. The coolant metering output mechanism for a spinning forming processing device according to claim 3, characterized in that, A set of sealing plates (10) located on the upper and lower sides of the guide hole (401) are fixedly connected to the inner side of the partition plate (4). Corresponding magnets (11) are fixedly connected to both sides of the sealing plate (10). The rotating wheel (8) is rotatably mounted on the fixed shaft (9) through the corresponding one-way bearing (12). Along the rotatable direction of the one-way bearing (12), magnetic metal parts (13) corresponding to the magnets (11) are fixedly connected to the front side of the outer end of the arc blade plate (7). The end spacing of two or more adjacent arc blade plates (7) is equal to the spacing between the two magnets (11).
5. The coolant metering output mechanism for a spinning forming processing apparatus according to claim 4, characterized in that, When the spinning wheel (2) stops rotating, under the magnetic attraction of the magnetic metal part (13) and the magnet (11), the magnetic metal part (13) that is close to and facing the magnet (11) is attracted and connected to the magnet (11), so that the arc-shaped blade plate (7) and the sealing plate (10) cooperate to form a seal on the guide hole (401) on the partition plate (4).
6. The coolant metering output mechanism for a spinning forming apparatus according to claim 1, characterized in that, The bottom side of the connector (1) is provided with a condensate discharge hole (102).