Ice maker with bubble removing function
By welding a vibrating plate onto the evaporator tube and increasing the vibration amplitude using a vibration motor assembly, combined with a buffer and shock absorption structure, the problem of existing ice makers being unable to effectively remove tiny air bubbles has been solved, achieving highly efficient defoaming and de-icing effects.
Patent Information
- Application Number
- CN202520110036.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-17
AI Technical Summary
Existing vibrating ice makers cannot effectively remove tiny air bubbles from the inner wall of the ice tray during the ice-making process, and the vibration amplitude is insufficient, resulting in low ice removal efficiency.
Vibrating plates are welded onto the evaporator tubes, and vibration force is transmitted to the evaporator tubes through a vibration motor assembly to increase the vibration amplitude of the evaporator tubes. At the same time, a buffer and shock absorption structure is set to prevent component collisions, thereby achieving large-amplitude defoaming and rapid de-icing.
It improves the defoaming effect and ice removal efficiency of the evaporator tube, ensuring rapid separation of ice from the evaporator tube during the ice-making process, and enhancing the defoaming performance and ice removal efficiency.
Smart Images

Figure CN223726650U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to ice maker equipment technical field, especially a kind of ice maker with bubble removing function. BACKGROUND
[0002] The existing patent with the announcement number CN221122608U discloses a kind of oscillation ice maker, it includes ice making component, the ice making component includes ice making tray, evaporative pipe being located above the ice making tray and several immersion rods being connected with the evaporative pipe, the ice making tray is abutted with oscillation device at one end away from the evaporative pipe, the oscillation device includes installation cavity and oscillation component being located in the installation cavity
[0003] But the oscillation ice maker has the following shortcomings: the ice maker is driven by oscillation device to oscillate the ice making tray by oscillation component, so that the bubbles in ice can be removed during ice making process in ice making tray, but the vibration amplitude of oscillation component acting on ice making tray is small during ice making process in this ice maker, cannot effectively remove the tiny bubbles adhering to the inner wall of ice making tray, and improvement is urgently needed. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a kind of ice maker with bubble removing function, with the effect of big vibration amplitude, good bubble removing performance and improved ice removal efficiency.
[0005] The above technical purpose of the utility model is realized by the following technical scheme: a kind of ice maker with bubble removing function, including water receiving frame, ice making module being located in the water receiving frame, the ice making module includes ice making tray and evaporative pipe, further including vibration motor assembly and vibration sheet, the vibration sheet includes vibration input end and vibration output end, the vibration motor assembly is fixedly connected to the vibration input end, the vibration output end is fixedly connected to the evaporative pipe, and the vibration motor assembly and the water receiving frame, the vibration motor assembly and the ice making tray are avoided and are matched.
[0006] By adopting the above technical scheme, the cold quantity generated by the evaporative pipe gradually condenses the water in the ice making tray into ice block, in the ice making process, the vibration force generated by the vibration motor assembly is transmitted to the vibration input end of the vibration sheet, the vibration sheet transmits the received vibration force to the vibration output end, and the vibration output end outputs the vibration force to the evaporative pipe, so that the evaporative pipe continuously vibrates during refrigeration process, since the vibration force generated by the vibration motor assembly is transmitted to the suspended evaporative pipe through the vibration sheet, the vibration amplitude of the evaporative pipe is increased, thereby improving the vibration bubble-removing effect of the evaporative pipe on the ice water in the ice making tray, in addition, when the water in the ice making tray is completed, the evaporative pipe with large amplitude can realize the rapid separation of ice block and evaporative pipe, thereby improving the ice removal efficiency of the utility model, with the effect of big vibration amplitude, good bubble removing performance and improved ice removal efficiency.
[0007] The utility model discloses further provide: the evaporation pipe presents U type setting, the both ends of evaporation pipe are connected with the refrigerant delivery pipe, the vibration piece fixed connection in evaporation pipe is away from the one end of refrigerant delivery pipe.
[0008] By adopting the above technical scheme, since the one end of the evaporation pipe away from the refrigerant delivery pipe is suspended in the ice-making tray, the vibration force transmitted by the vibration piece can improve the vibration amplitude of the evaporation pipe.
[0009] The utility model discloses further provide: the water receiving frame is set with the hole of giving place to the vibration piece, and the vibration input end of the vibration piece is arranged outside the water receiving frame through the hole of giving place, so that the vibration input end and the vibration output end are relatively arranged on both sides of the water receiving frame.
[0010] By adopting the above technical scheme, the vibration motor assembly fixedly connected to the vibration input end is relatively far away from the ice-making tray, which can effectively prevent the vibration motor assembly from colliding with the ice-making tray when vibrating, and the space layout of the utility model is more reasonable.
[0011] The utility model discloses further provide: the vibration piece includes the vibration transmission part between the vibration input end and vibration output end, and the vibration input end and vibration output end are relatively bent and arranged at both ends of the vibration transmission part.
[0012] By adopting the above technical scheme, the vibration input end and the vibration output end bent and arranged at both ends of the vibration transmission part can improve the vibration amplitude of the vibration output end.
[0013] The utility model discloses further provide: the side branch of vibration transmission part extends the fixed part, and the vibration output end is welded and fixed on the evaporation pipe, and the fixed part is fixedly connected on the water receiving frame.
[0014] By adopting the above technical scheme, the fixed part is added, which is beneficial to prevent the vibration piece from vibrating disorderly and causing component collision due to the excessive vibration force generated by the vibration motor assembly.
[0015] The utility model discloses further provide: the water receiving frame is set with the mounting groove corresponding the fixed part, and the mounting groove is vertically set on the upper end surface of the water receiving frame from top to bottom, and the fixed part is fixedly connected on the bottom of the mounting groove through the bolt.
[0016] By adopting the above technical scheme, the fixed part of the vibration piece can be installed by being pressed from top to bottom to the bottom of the mounting groove, improving the installation convenience of the vibration piece.
[0017] The further setting of the utility model discloses: vibration motor assembly including mounting plate, the vibration motor of being fixed on the mounting plate, the eccentric wheel of being located on the vibration motor output shaft, the mounting plate fixed connection is in the vibration input end of vibration piece.
[0018] Through adopting above-mentioned technical scheme, vibration motor rotates and drives eccentric wheel to rotate, and vibration force in radial direction is generated when eccentric wheel rotates, thereby reversely acting on vibration motor to generate vibration, and vibration motor drives vibration piece to vibrate synchronously.
[0019] The further setting of the utility model discloses: water receiving frame and vibration piece and / or vibration motor between being equipped with buffer shock absorbing structure.
[0020] Through adopting above-mentioned technical scheme, buffer shock absorbing structure can reduce vibration amplitude of vibration piece, and can prevent the situation that vibration amplitude of vibration piece is too large to cause component collision.
[0021] The further setting of the utility model discloses: buffer shock absorbing structure is equipped with shock absorbing spring, and shock absorbing spring is located between vibration piece and water receiving frame.
[0022] The further setting of the utility model discloses: buffer shock absorbing structure is equipped with shock absorbing spring, and shock absorbing spring is located between vibration motor and water receiving frame, and shock absorbing spring is equipped with two, and two shock absorbing springs are symmetrically arranged on both sides of vibration output end.
[0023] Summarized above, the utility model has following beneficial effect:
[0024] Adopting in evaporation pipe welding fixed vibration piece, vibration piece other end fixed connection vibration motor assembly, and the cold quantity of evaporation pipe gradually condenses into ice block in ice making tray, in the ice making process, the vibration force of vibration motor assembly is transmitted to the vibration input end of vibration piece, and vibration piece is transmitted to the vibration output end to the vibration force received, and vibration output end exports vibration force to evaporation pipe, makes evaporation pipe continuously vibrate in the refrigeration process, since the vibration force of vibration motor assembly is transmitted to the evaporation pipe of being suspendedly arranged through vibration piece, thereby increasing the vibration amplitude of evaporation pipe, and then improve the vibration defoaming effect of evaporation pipe to ice water in ice making tray, in addition, when the water in ice making tray is completed, the ice block and evaporation pipe can be quickly separated from the evaporation pipe of large amplitude, thereby improving the ice removal efficiency of the utility model, with the effect that vibration amplitude is large, defoaming performance is good, and ice removal efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 It is the structure diagram of the first embodiment of the utility model.
[0026] Figure 2is a structure diagram of another perspective of the embodiment one of the utility model.
[0027] Figure 3 is the utility model Figure 2 is a local amplification view of A area in the middle.
[0028] Figure 4 is the longitudinal section view of the ice making module in the embodiment one of the utility model.
[0029] Figure 5 is the explosion view of the evaporation pipe and the vibration motor assembly with the vibration piece welded in the embodiment one of the utility model.
[0030] Figure 6 is the horizontal section view at the vibration motor position in the embodiment two of the utility model.
[0031] Figure 7 is the horizontal section view at the vibration motor position in the embodiment three of the utility model.
[0032] In the drawing: 1, water receiving frame;11, avoiding hole;12, installation groove;2, ice making tray;3, evaporation pipe;31, refrigerant delivery pipe;32, immersion rod;4, vibration motor assembly;41, installation plate;42, vibration motor;43, eccentric wheel;5, vibration piece;51, vibration input end;52, vibration output end;53, vibration transmission part;531, fixed part;6, shock absorbing spring;7, main shell. Specific implementation
[0033] The utility model will be further explained in connection with the drawings. Embodiment one
[0035] An ice maker with bubble removing function, such as Figures 1-4As shown, including the main shell 7, the main shell 7 is provided with water receiving frame 1, water receiving frame 1 is provided with ice making module, ice making module includes ice making tray 2 and evaporation pipe 3, also includes vibration motor assembly 4 and vibration piece 5, evaporation pipe 3 is provided with several to extend into the immersion rod 32 in the cavity of ice making tray 2, the refrigerant transported by evaporation pipe 3 is transmitted to the water in ice making tray 2 through immersion rod 32 vibration piece 5 includes vibration input end 51 and vibration output end 52, vibration motor assembly 4 is fixedly connected to vibration input end 51, vibration output end 52 is fixedly connected to evaporation pipe 3, and the vibration motor assembly 4 and water receiving frame 1, the vibration motor assembly 4 and ice making tray 2 between the avoidance clearance is formed to avoid; Evaporation pipe 3 is U-shaped, both ends of evaporation pipe 3 are connected with refrigerant conveying pipe 31, vibration piece 5 is fixedly connected to the end of evaporation pipe 3 away from refrigerant conveying pipe 31, since the end of evaporation pipe 3 away from refrigerant conveying pipe 31 is suspended in ice making tray 2, therefore the vibration force transmitted by vibration piece 5 can improve the vibration amplitude of evaporation pipe 3; Water receiving frame 1 is provided with avoiding hole 11 corresponding to vibration piece 5, vibration input end 51 of vibration piece 5 is provided outside water receiving frame 1 through avoiding hole 11, so that vibration input end 51 and vibration output end 52 are relatively arranged on both sides of water receiving frame 1, so that the vibration motor assembly 4 fixedly connected to the vibration input end is relatively far away from ice making tray 2, which can effectively prevent the vibration motor assembly 4 from colliding with ice making tray 2 when vibrating, and the space layout of the utility model is more reasonable.
[0036] As Figures 3-5As shown, the vibration piece 5 includes a vibration transmission part 53 between a vibration input end 51 and a vibration output end 52, the vibration input end 51 and the vibration output end 52 are oppositely bent and arranged at two ends of the vibration transmission part 53, the vibration input end 51 and the vibration output end 52 bent and arranged at the two ends of the vibration transmission part 53 can improve the vibration amplitude of the vibration output end 52; a side part of the vibration transmission part 53 extends a fixing part 531, the vibration output end 52 is welded and fixed on the evaporation pipe 3, the fixing part 531 is fixedly connected to the water receiving frame 1, the fixing part 531 is additionally provided, which is beneficial to prevent the vibration piece 5 from shaking disorderly and causing component collision due to excessive vibration force generated by the vibration motor assembly 4; the water receiving frame 1 is provided with a mounting groove 12 corresponding to the fixing part 531, the mounting groove 12 is vertically arranged on the upper end surface of the water receiving frame 1 from top to bottom, the fixing part 531 is fixedly connected to the bottom of the mounting groove 12 through a bolt, the fixing part 531 of the vibration piece 5 can be installed by being pressed from top to bottom to the bottom of the mounting groove 12, and the installation convenience of the vibration piece 5 is improved; the vibration motor assembly 4 includes a mounting plate 41, a vibration motor 42 fixedly arranged on the mounting plate 41, and an eccentric wheel 43 arranged on the output shaft of the vibration motor 42, the mounting plate 41 is fixedly connected to the vibration input end 51 of the vibration piece 5, the vibration motor 42 drives the eccentric wheel 43 to rotate, the eccentric wheel 43 generates a vibration force in the radial direction when rotating, thereby reversely acting on the vibration motor 42 to generate vibration, and the vibration motor 42 drives the vibration piece 5 to vibrate synchronously.
[0037] The basic working principle of the utility model is as follows: the vibration piece 5 is welded and fixed on the evaporation pipe 3, the other end of the vibration piece 5 is fixedly connected to the vibration motor assembly 4, the cold quantity generated by the evaporation pipe 3 gradually condenses the water in the ice making tray 2 into ice blocks, in the ice making process, the vibration force generated by the vibration motor assembly 4 is transmitted to the vibration input end 51 of the vibration piece 5, the vibration piece 5 transmits the received vibration force to the vibration output end 52, the vibration output end 52 outputs the vibration force to the evaporation pipe 3, so that the evaporation pipe 3 continuously vibrates in the refrigeration process, the vibration amplitude of the evaporation pipe 3 is increased due to the fact that the vibration force generated by the vibration motor assembly 4 is transmitted to the evaporation pipe 3 arranged in suspension through the vibration piece 5, thereby improving the vibration defoaming effect of the evaporation pipe 3 on the ice water in the ice making tray 2, in addition, when the water in the ice making tray 2 is completed, the evaporation pipe 3 with large amplitude can realize the rapid separation of the ice blocks from the evaporation pipe 3, thereby improving the ice removal efficiency of the utility model, and the utility model has the effects of large vibration amplitude, good defoaming performance and improved ice removal efficiency. Specific embodiment two
[0039] An ice maker with a defoaming function, as shown in Figure 6As shown, the difference between the embodiment and the specific embodiment one is that the buffering and damping structure is arranged between the water receiving frame 1 and the vibration sheet 5, the buffering and damping structure is damping spring 6, the damping spring 6 can reduce the vibration amplitude of the vibration sheet 5, and the situation that the vibration amplitude of the vibration sheet 5 is too large to cause component collision can be prevented.
[0040] The embodiment is same as the other structures of the specific embodiment one, and details are not described herein. Specific embodiment three
[0042] An ice maker with bubble removing function, like Figure 7 As shown, the difference between the embodiment and the specific embodiment two is that the buffering and damping structure is arranged between the water receiving frame 1 and the vibration motor 42, the buffering and damping structure is damping spring 6, the damping spring 6 is arranged between the vibration motor 42 and the water receiving frame 1, and the damping spring 6 is provided with two, and the two damping springs 6 are symmetrically arranged on the two sides of the vibration output end 52.
[0043] The embodiment is same as the other structures of the specific embodiment two, and details are not described herein.
[0044] The above is only the preferred embodiment of the present application, so equivalent changes or modifications made according to the structure, features and principles of the present application patent application range are included in the present application patent application range.
Claims
1. An ice maker with bubble removing function, comprising a water receiving frame (1) and an ice making module arranged in the water receiving frame (1), the ice making module comprising an ice making tray (2) and an evaporation pipe (3), characterized in that: Further comprising a vibration motor assembly (4) and a vibration sheet (5), the vibration sheet (5) comprising a vibration input end (51) and a vibration output end (52), the vibration motor assembly (4) being fixedly connected to the vibration input end (51), the vibration output end (52) being fixedly connected to the evaporation pipe (3), and the vibration motor assembly (4) being in avoiding cooperation with the water receiving frame (1) and the ice making tray (2).
2. The ice maker having a bubble removing function according to claim 1, wherein: The evaporation pipe (3) is arranged in a U shape, and two ends of the evaporation pipe (3) are connected with refrigerant conveying pipes (31), and the vibration sheet (5) is fixedly connected to one end of the evaporation pipe (3) away from the refrigerant conveying pipes (31).
3. The ice maker having a bubble removing function according to claim 1, wherein: The water receiving frame (1) is provided with an avoiding hole (11) corresponding to the vibration sheet (5), the vibration input end (51) of the vibration sheet (5) is arranged outside the water receiving frame (1) through the avoiding hole (11), and the vibration input end (51) and the vibration output end (52) are arranged on the two sides of the water receiving frame (1) in a relative manner.
4. The ice maker having a bubble removing function according to claim 1, wherein: The vibration sheet (5) comprises a vibration transmission part (53) between the vibration input end (51) and the vibration output end (52), and the vibration input end (51) and the vibration output end (52) are arranged at two ends of the vibration transmission part (53) in a relative bending manner.
5. The ice maker having a bubble removing function according to claim 4, wherein: A fixing part (531) is extended on one side of the vibration transmission part (53), the vibration output end (52) is welded and fixed on the evaporation pipe (3), and the fixing part (531) is fixedly connected to the water receiving frame (1).
6. The ice maker having a bubble removing function according to claim 5, wherein: The water receiving frame (1) is provided with a mounting groove (12) corresponding to the fixing part (531), the mounting groove (12) is vertically arranged on the upper end face of the water receiving frame (1) from top to bottom, and the fixing part (531) is fixedly connected to the bottom of the mounting groove (12) through a bolt.
7. The ice maker having a bubble removing function according to claim 1, wherein: The vibration motor assembly (4) comprises a mounting plate (41), a vibration motor (42) fixedly arranged on the mounting plate (41), and an eccentric wheel (43) arranged on an output shaft of the vibration motor (42), and the mounting plate (41) is fixedly connected to the vibration input end (51) of the vibration sheet (5).
8. The ice maker having a bubble removing function according to claim 7, wherein: A buffer damping structure is arranged between the water receiving frame (1) and the vibration sheet (5) and / or the vibration motor (42).
9. The ice maker having a bubble removing function according to claim 8, wherein: The buffer damping structure is a damping spring (6) arranged between the vibration sheet (5) and the water receiving frame (1).
10. The ice maker having a bubble removing function according to claim 8, wherein: The buffer damping structure is a damping spring (6) arranged between the vibration motor (42) and the water receiving frame (1), and two damping springs (6) are symmetrically arranged on the two sides of the vibration output end (52).
Citation Information
Patent Citations
Oscillation type ice maker
CN221122608U