CN208808284U - Reliability and durability detachable blender - Google Patents

Reliability and durability detachable blender Download PDF

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Publication number
CN208808284U
CN208808284U CN201820938087.0U CN201820938087U CN208808284U CN 208808284 U CN208808284 U CN 208808284U CN 201820938087 U CN201820938087 U CN 201820938087U CN 208808284 U CN208808284 U CN 208808284U
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China
Prior art keywords
gear
pin
head
agitating shaft
reliability
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Active
Application number
CN201820938087.0U
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Chinese (zh)
Inventor
李一峰
黄富华
曾啟峰
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Bear Electrical Appliance Co Ltd
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Bear Electrical Appliance Co Ltd
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Priority to CN201820938087.0U priority Critical patent/CN208808284U/en
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Abstract

The utility model discloses a kind of reliability and durability detachable blender, it include: head, pedestal, the stirring container on pedestal and the mixing component being fixed on head with driving motor, the mixing component includes at least the agitating shaft being connected with driving motor transmission and the blender for being fixed on agitating shaft lower end, and head is set on pedestal by bracket;It is fixed on the first gear rotated synchronously on agitating shaft with agitating shaft with first direction;Set on the outer gear ring of stirring container lateral surface;Second gear for driving stirring container to rotate in the opposite direction towards first party, the second gear are connected with the outer tooth engagement of outer gear ring and are connected by gear transmission structure with first gear transmission.The utility model rotates backward the food stirring realized in stirring container without dead angle to improve stirring efficiency by stirring container and agitating shaft, has many advantages, such as high reliablity, easy for operation.

Description

Reliability and durability detachable blender
Technical field
The utility model relates to household electrical appliance, more particularly, to a kind of reliability and durability detachable blender.
Background technique
Blender is widely used as food stirring, stirring of beating eggs as a kind of kitchen small household appliances, knead dough and face etc. operates, because making With simple and convenient to obtain liking for more and more people.During the work time, head drives mixing component stirring to blender It is rotated in container, head needs to have new line function to facilitate the taking and placing food into stirring container in actual use Deng.
Chinese patent application CN 2017102446701 is related to a kind of stirring container rotation and revolves again eggbeater, include pedestal, Host, stirring container and the blender driven by host inner motor drive deceleration mechanism snapped connection with pedestal;In host Between pedestal, deceleration mechanism is connected with gear drive;It is connected with planetary gear train in the gear drive in pedestal, row The star wheel series planet wheel spindle that wherein a planetary gear is fixedly connected stretches out pedestal, and the upper end is equipped with turntable, stirring container and turntable It is detachably fixed connection.It is able to achieve the rotation of stirring container planet wheels and revolves again although the technical solution has the drawback that Stirring efficiency is improved, but needs that gear drive is arranged between host and pedestal, which includes quantity Numerous gear sets, structure is complicated and cost of implementation is higher;Also, blender high-speed rotation when due to stirring, thus to stirring Container, which generates lateral torsion, causes stirring container to separate with turntable, not only reduces stirring efficiency and even results in blender damage, deposits In the defect that reliability is poor.
Utility model content
The utility model is intended to solve the prior art to a certain extent and asks in the presence of the technology that structure is complicated and poor reliability is low Topic proposes a kind of reliability and durability detachable blender.
The utility model discloses a kind of reliability and durability detachable blender, comprising: head 1 with driving motor, Pedestal 3, the stirring container 4 on pedestal 3 and the mixing component 5 being fixed on head 1, the mixing component 5 include at least with The connected agitating shaft 51 of driving motor transmission and the blender 52 for being fixed on 51 lower end of agitating shaft, and head 1 is set by bracket 2 In on pedestal 3;It is fixed on the first gear 53 rotated synchronously on agitating shaft 51 with agitating shaft 51 with first direction;Hold set on stirring The outer gear ring 41 of 4 lateral surface of device;Second gear 28 for driving stirring container 4 to rotate in the opposite direction towards first party, should Second gear 28 is connected with the outer tooth engagement of outer gear ring 41 and is connected by gear transmission structure with the transmission of first gear 53.
Wherein, be fixed on agitating shaft 51 can rotation axle sleeve 54, bracket 2 is equipped with axis hole 200, and agitating shaft 51 passes through Axis hole 200, axle sleeve 54 are located among axis hole 200 and are clearance fit between axle sleeve 54 and axis hole 200.
Wherein, second gear 28 is directly connected with the outer tooth engagement of first gear 53, alternatively, second gear 28 and first gear It is equipped with 1 grade between 53 or Multi-stage transmission gear is rotated with ensuring that first gear 53 is able to drive second gear 28.
Wherein, the side of the pedestal 3 extends upward support portion 30, the lower end of bracket 2, the upper end of support portion 30 One of them be respectively equipped with by multiple cell walls 302 be sequentially connected formed side with notch installation position slot 301, can be from installation The notch of position slot 301 enters to the mounting end 20 among installation position slot 301.
Wherein, 302 medial surface of one of cell wall adjacent with notch in installation position slot 301 be equipped with limit sliding chutes 32 and Lateral evagination extends to the positioning column 33 in installation position slot 301, and the lower end of the limit sliding chutes 32, upper end are respectively equipped with reset Location hole 321 and new line location hole 322;Movable pin 24, the first limit hole 22 are equipped on mounting end 20 and for controlling Movable pin 24 carries out the switch block of limit cooperation, and the end of positioning column 33 with reset location hole 321 or new line location hole 322 End is located in the first limit hole 22.
Wherein, mounting end 20 is equipped with pin hole 23, and the one of pin ends 242 of movable pin 24 are from pin hole 23 Exposed, when head 1 is in original state with respect to pedestal 3, pin ends 242, which are located at, resets among location hole 321, when 1 phase of head Pin ends 242 when being in new line state after one predetermined angle of rotation of pedestal 3 are located among new line location hole 322.
Wherein, the arc-shaped setting of limit sliding chutes 32.
Wherein, switch block includes button portion 21 and the pushing part 25 that is arranged between button portion 21 and movable pin 24.
Wherein, movable pin 24 includes elastic portion 241 and two pin ends for being separately positioned on 241 liang of ends of elastic portion 242, one of pin ends 242 are fixed on mounting end 20, and another pin ends 242 is mobilizable exposes outside peace End 20 is filled, and there is force transferring structure between each pin ends 242 and pushing part 25.
Wherein, elastic portion 241 is pressure spring.
Wherein, force transferring structure includes: that setting is being used to make two pin ends when by external force in pin ends 242 242, toward each other close to the pin stress surface 2421 of movement, push away on pushing part 25 with what pin stress surface 2421 was in contact Power face 251.
Wherein, force transferring structure includes: the guide post 2422 being arranged in pin ends 242, oblique on pushing part 25 Guide groove 252, the guide post 2422 are located among the oblique guide groove 252.
Correspondingly, a kind of detachable blender is also disclosed in the utility model, including the head 1 with driving motor, bottom Seat 3 and is fixed on mixing component 5 on head 1 at the stirring container 4 on pedestal 3;And the head-lifting mechanism of the blender.
Wherein, mixing component 5 includes at least the agitating shaft 51 being connected with driving motor transmission and is fixed under agitating shaft 51 The blender 52 of end, the blender 52 can protrude into stirring container 4.
Compared with prior art, the utility model has the following beneficial effects:
1. the utility model provides rotational power, first gear to stirring container by the way that first gear is arranged on agitating shaft The second gear transmission being connected by tooth engagement outside the outer gear ring with stirring container is connected to drive stirring container and agitating shaft It rotates backward, so as to improve stirring efficiency, realizes the food stirring in stirring container without dead angle.
2. the utility model by agitating shaft be arranged can rotation axle sleeve, allow axle sleeve pass through bracket axis hole and with Axis hole clearance fit eliminates as much as the lateral torsion generated in agitating shaft rotation process by axle sleeve and axis hole clearance fit, Ensure to generate the failure for jumping tooth between first gear, second gear and outer gear ring, so that the work for improving blender is steady Qualitative and reliability, and axle sleeve is durable with axis hole, is conducive to the service life for improving blender.
3. due to passing through new line machine there is no being fixed by components such as screws between installation position slot and mounting end Structure realization activity is cooperatively connected, and the simple and reliable property of overall structure is high.Specifically reality is matched with the first limit hole by positioning column The now axially position of new line handoff procedure, and pass through the reset location hole or new line location hole between pin ends and limit sliding chutes Limit positioning is carried out, not only allow head in new line shape head and is reset to the simple to operate of original state, additionally provides head By realizing dismountable mounting structure between bracket and pedestal, thus the actual use needs convenient to use to meet user.
Detailed description of the invention
Fig. 1 is structural schematic diagram of the detachable blender under original state (or stirring).
Fig. 2 is structural schematic diagram of the blender under new line state.
Fig. 3 is the structural schematic diagram of head and mixing component.
Fig. 4 is the structural schematic diagram of the pedestal of blender, bracket, wherein bracket with longitudinal center line rotate 180 ° after with Pedestal is installed.
Fig. 5 is the structural schematic diagram of switch block in bracket in one embodiment.
Fig. 6 is the decomposition texture schematic diagram of switch block in Fig. 5.
Fig. 7 is that switch block is mounted on the structural schematic diagram in the bottom end of bracket in another embodiment.
Fig. 8 is the decomposed structural schematic diagram of switch block in corresponding diagram 7 (Fig. 8 is not drawn into button portion 21).
Specific embodiment
Further to illustrate that the application is the technical means and efficacy reaching predetermined purpose and being taken, below in conjunction with attached drawing And preferred embodiment, to specific embodiment, structure, feature and its effect according to the application, detailed description is as follows.Following In explanation, what different " embodiment " or " embodiment " referred to is not necessarily the same embodiment.In addition, in one or more embodiments Special characteristic, structure or feature can be combined by any suitable form.
In conjunction with shown in Fig. 1, Fig. 2 and Fig. 3.The utility model proposes a kind of detachable blender (hereinafter referred to as " stirrings Machine "), comprising: the head 1 with handle 11 is equipped with driving motor in the head 1;Pedestal 3, the side of the pedestal 3 is longitudinally upward Extend support portion 30;It is fixed on the bracket 2 of 1 lower end surface of head, which can be an integral molding structure with head 1;The bottom of set on Mobilizable stirring container 4 on seat 3;It is fixed on mixing component 5 on head 1, which includes at least passes with driving motor The agitating shaft 51 being connected and the blender 52 for being fixed on 51 lower end of agitating shaft are moved, which can protrude into stirring container 4; Rotating device for allowing stirring container 4 to be rotated in the opposite direction in whipping process relative to blender 52.
Specifically, rotating device includes: the first gear 53 being fixed on agitating shaft 51 and axle sleeve 54, the first gear 53 rotate synchronously with agitating shaft 51, which can voluntarily rotate, i.e., axle sleeve 54 is mobilizable is fixed on agitating shaft 51;It is set to Second gear 28 on bracket 2, the second gear 28 are connected by gear transmission structure with the transmission of first gear 53;Set on stirring The outer gear ring 41 of 4 lateral surface of container, the outer gear ring 41 are connected with the outer tooth engagement of second gear 28;Axis hole on bracket 2 is set 200, agitating shaft 51 passes through the axis hole 200, and axle sleeve 54 is located among axis hole 200 and is gap between axle sleeve 54 and axis hole 200 Cooperation.Wherein, second gear 28 is connected with the transmission of first gear 53 by gear transmission structure and refers to that second gear 28 can be direct It is connected with the outer tooth engagement of first gear 53, alternatively, being equipped with 1 grade or Multi-stage transmission gear between second gear 28 and first gear 53 It is rotated with ensuring that first gear 53 is able to drive second gear 28.
When blender is stirred work, the driving motor in head 1 drives agitating shaft 51 to rotate with first direction, from And first gear 53 is synchronous with agitating shaft 51 is rotated with first direction;First gear 53 drives second gear 28 to rotate, and by the The outer tooth engagement outer gear ring 41 of two gear 28 is to drive stirring container 4 to rotate in the opposite direction towards first party, so as to mention High stirring efficiency realizes the food stirring in stirring container 4 without dead angle.
It is well known that when stirring load is heavier, for example when blender progress and face operation, agitating shaft 51 is in rotation process In will receive very big lateral torsion, have very big frictional force between axle sleeve 54 and axis hole 200 at this time, 54 frictionally of axle sleeve is solid It is scheduled on axis hole 200 not rotate, pivoting friction is generated between agitating shaft 51 and the inner hole of axle sleeve 54, and agitating shaft 51 is hardware material Rapid heat dissipation, axle sleeve 54 is lubrication antifriction plastics, to ensure that agitating shaft 51 and axle sleeve 54 in the longevity by high load frictional rotation Durability is ordered, thus the transverse shakiness generated by the lateral torsion for slowing down agitating shaft 51 between axle sleeve 54 and axis hole 200;Due to The transverse shakiness that agitating shaft 5 generates is smaller, so as to prevent first gear 53 from occurring jumping tooth problem, reaches raising reliable operation The purpose of property;Also, it, will not because axle sleeve 54 and axis hole 200 are a small amount of clearance fits when the light load of stirring is not by lateral torsion Frictional force is generated, at this moment axle sleeve 54 and agitating shaft 51 rotate synchronously, and prevent 54 excessive wear of axle sleeve at this time, increase using the longevity Life.
Further combined with shown in Fig. 1, Fig. 2 and Fig. 4, the utility model proposes blender further include: setting bracket 2 with Head-lifting mechanism between support portion 30, the head-lifting mechanism are used to that head 1 to be allowed to rotate towards the direction far from pedestal 3 in the initial state One predetermined angle switches to new line state and head 1 can be allowed from new line state Rapid reset to original state.Specifically, it holds in the palm There is rotatably mounted structure, which includes: to hold in the palm between the lower end of seat 2 and the upper end of support portion 30 One of lower end or the upper end of support portion 30 of seat 2, which are respectively equipped with, is sequentially connected formed side by multiple cell walls 302 Installation position slot 301 with notch can enter to mounting end 20 among installation position slot 301 from the notch of installation position slot 301. In structure shown in the utility model attached drawing, the upper end of support portion 30 is arranged in installation position slot 301, and mounting end 20 is set to support The lower end of seat 2.Of course, it is possible to by installation position slot 301 be arranged in bracket 2 lower end and mounting end 20 be set to support portion 30 Upper end.Therefore, head-lifting mechanism is arranged between installation position slot 301 and mounting end 20.
Under original state (or stirring) shown in Fig. 1, mounting end 20 is located among installation position slot 301, blender 52 are located in stirring container 4, and the state between head 1 and pedestal 3 passes through head as original state (or stirring) at this time Driving motor drives agitating shaft 51 to rotate in 1, so that allowing blender 52 to be stirred the food in stirring container 4 makes to eat Object is broken, uniformly mixed etc..It needs to add stirring food in whipping process to stirring container 4 or stirring is completed to need the bottom of from When cancelling stirring container 4 on seat 3, need to rotate a predetermined angle towards the direction far from pedestal 3 by head 1 by head-lifting mechanism New line state shown in Fig. 2 is switched to, allows head 1 to drive mixing component 5 synchronous and moves to allow blender 52 towards far from pedestal 3 It is taken out from stirring container 4;Then, then by head-lifting mechanism can allow it is light, quickly by head 1 from new line shown in Fig. 2 State switches to original state shown in FIG. 1.
As shown in connection with fig. 4, head-lifting mechanism is arranged between installation position slot 301 and mounting end 20, which includes: The limit sliding chutes 32 and lateral evagination that 302 medial surface of one of cell wall adjacent with notch in installation position slot 301 is arranged in are prolonged Extend to the positioning column 33 in installation position slot 301, wherein the lower end of the arc-shaped setting of the limit sliding chutes 32 and the limit sliding chutes 32 End, upper end, which are respectively equipped with, resets location hole 321 and new line location hole 322;The removable pin being horizontally installed on mounting end 20 Nail 24, for controlling the laterally movable switch block of movable pin 24, the first limit hole 22 for accommodating positioning column 33 and use In the exposed pin hole 23 of the pin ends 242 of offer activity pin 24, the one of pin ends 242 of activity pin 24 from Pin hole 23 is exposed and is located among reset location hole 321 or new line location hole 322, which includes button portion 21 and set The pushing part 25 between button portion 21 and movable pin 24 is set, button portion 21 includes turret terminal 211 and is connected with turret terminal 211 Button power transmission portion 212, which exposes outside the lateral surface of mounting end 20 in order to operate with.
Referring to figs 5 and 6, movable pin 24 includes elastic portion 241(for example, elastic portion 241 is pressure spring) and set respectively Two pin ends 242 in 241 liang of ends of elastic portion are set, each pin ends 242 are relatively close when having by external force The pin stress surface 2421 of movement, one of pin ends 242 are fixed on mounting end 20, another pin ends 242 It is exposed rear among reset location hole 321 or new line location hole 322 from pin hole 23.The first end and button of pushing part 25 The button power transmission portion 212 in portion 21 contacts setting, and the second end of pushing part 25 has to be pushed away with what pin stress surface 2421 was in contact Power face 251.
For example, button portion 21 is a rotary type button, the two sides in button power transmission portion 212, which have, is located in mounting end 20 On newel 2121, thus when pressing turret terminal 211, button power transmission portion 212 according to two sides the rotation of newel 2121 to Motive force is generated to pushing part 25 during rotation.
Under original state shown in Fig. 1, positioning column 33 is located among the first limit hole 22, one of pin of movable pin It is exposed rear positioned at reset location hole 321, the lower end of bracket 2 and the load end face 301 of pedestal 3 from pin hole 23 to follow closely end 242 Contact setting.When needing to switch to new line state shown in Fig. 2 from original state, user passes through promotion, push button portion 21 turret terminal 211, so that the button power transmission portion 212 of button portion 21, which generates a motive force to pushing part 25, allows pushing part 25 Thrust face 251 is moved towards pin stress surface 2421, the pin stress surfaces 2421 of two pin ends 242 by motive force to The two is moved toward one another towards close to mutual direction, and elastic portion 241 is compressed so that pin ends 242, which are detached from, resets location hole 321, when the handle 11 that user's hand holds head 1 at this time is exerted oneself upwards, matched by positioning column 33 with the first limit hole 22 To allow head 1 that can rotate a predetermined angle until one of pin of movable pin 24 towards the direction far from pedestal 3 End 242 moves among new line location hole 322 along limit sliding chutes 32 and limits fixation, realizes and switches to lift by original state Head state.Conversely, when needing from new line state reset to original state, after being operated by button portion 21, movable pin 24 Elastic portion is compressed so that pin ends 242, which are detached from, resets location hole 321, and user's hand holds the handle of head 1 at this time 11 downward firmly (or self gravitys according to head 1) allow head 1 to move towards base 3, and pin ends 242 are along limit sliding chutes 32 move to from new line location hole 322 and reset location hole 321 and the location hole 321 that is reset and limit fixation.
Also, due to leading between installation position slot 301 and mounting end 20 there is no being fixed by components such as screws Cross head-lifting mechanism realization activity mating connection: by positioning column 33 and the first limit hole between installation position slot 301 and mounting end 20 22 match the axially position for realizing new line handoff procedure, and by being limited between pin ends 242 and limit sliding chutes 32 Positioning, to provide head 1 by realizing dismountable mounting structure between bracket 2 and pedestal 3.Specifically, by pressing The operation of button portion 211 allows pin ends 242 from new line location hole 322 or after resetting the disengaging of location hole 321, applies one to head 1 Towards the active force of the notch of installation position slot 301, the active force is by mounting end 20 and 301 disengaging movement of installation position slot, pin End 242 detaches limit sliding chutes 32 and positioning column 33 detaches the first limit hole 22, thus realize head 1 be connected to bracket 2 from Disassembled on pedestal 3 with it is convenient to use (just can be easily to the stirring group being fixed on head 1 for example, removing head 1 Part 5 is cleaned).
In conjunction with another embodiment of Fig. 7, head-lifting mechanism shown in Fig. 8.Movable pin in Fig. 5 and embodiment illustrated in fig. 6 Force transferring structure between 24 and button power transmission portion 212 is that thrust face 251 and pin stress surface 2421 cooperate;And shown in Fig. 7, Fig. 8 Force transferring structure in embodiment between movable pin 24 and button power transmission portion 212 includes: the guide post being arranged in pin ends 242 2422, the oblique guide groove 252 on pushing part 25, the guide post 2422 is located among the oblique guide groove 252.When pushing part 25 is given When movable 24 1 thrust of pin, guiding is carried out to guide post 2422 to make two of movable pin by the oblique guide groove 252 Pin ends 242 move towards one another, and play the intermal force realized in thrust face 251 and the cooperation of pin stress surface 2421.
Certainly, according to foregoing description it is found that head 1 is switched to new line state shown in Fig. 2 after, second gear 28 with stir The outer gear ring 41 for mixing container 4 is no longer engaged, and head 1 drives mixing component 5 to detach stirring container 4, so as to convenient Stirring container 4 is removed from pedestal 3.
The above is only the preferred embodiment of the utility model only, is not intended to limit the utility model, all at this Made any modifications, equivalent replacements, and improvements etc., should be included in the utility model within the spirit and principle of utility model Protection scope within.

Claims (10)

1. a kind of reliability and durability detachable blender, comprising: head (1), pedestal (3) with driving motor are set to bottom Stirring container (4) on seat (3) and the mixing component (5) that is fixed on head (1), the mixing component (5) including at least and drive The connected agitating shaft (51) of dynamic motor drive and the blender (52) for being fixed on agitating shaft (51) lower end, and head (1) passes through Bracket (2) is set on pedestal (3);It is characterized by further comprising: being fixed on agitating shaft (51) with agitating shaft (51) with first party To the first gear (53) of synchronous rotation;Set on the outer gear ring (41) of stirring container (4) lateral surface;For driving stirring container (4) second gear (28) rotated in the opposite direction towards first party, the second gear (28) and outer gear ring (41) outer tooth engagement It is connected and is connected by gear transmission structure with first gear (53) transmission.
2. reliability and durability detachable blender according to claim 1, which is characterized in that fixation is set on agitating shaft (51) Have can rotation axle sleeve (54), bracket (2) be equipped with axis hole (200), agitating shaft (51) pass through axis hole (200), axle sleeve (54) position It is clearance fit between axle sleeve (54) and axis hole (200) among axis hole (200).
3. reliability and durability detachable blender according to claim 1, which is characterized in that second gear (28) directly with First gear (53) outer tooth engagement is connected, alternatively, being equipped with 1 grade or Multi-stage transmission between second gear (28) and first gear (53) Gear is to ensure that first gear (53) is able to drive second gear (28) rotation.
4. reliability and durability detachable blender according to claim 1, which is characterized in that a side of the pedestal (3) to On extend support portion (30), one of the lower end of bracket (2), the upper end of support portion (30) are respectively equipped with by multiple Cell wall (302) be sequentially connected installation position slot (301) of the formed side with notch, can from the notch of installation position slot (301) into Enter to the mounting end (20) among installation position slot (301).
5. reliability and durability detachable blender according to claim 4, which is characterized in that in installation position slot (301) One of cell wall (302) medial surface adjacent with notch is equipped with limit sliding chutes (32) and lateral evagination extends to installation position slot (301) positioning column (33) in, the lower end of the limit sliding chutes (32), upper end, which are respectively equipped with, to be resetted location hole (321) and lifts Head location hole (322);Movable pin (24), the first limit hole (22) are equipped on mounting end (20) and for controlling removable pin Nail (24) and the switch block that location hole (321) or new line location hole (322) carry out limit cooperation is resetted, and positioning column (33) End is located in the first limit hole (22).
6. reliability and durability detachable blender according to claim 5, which is characterized in that mounting end (20) is equipped with Pin hole (23), the one of pin ends of movable pin (24) (242) are exposed from pin hole (23), when head (1) is the bottom of with respect to Pin ends (242), which are located at, when seat (3) is in original state resets among location hole (321), when head (1) is with respect to pedestal (3) Pin ends (242) are located among new line location hole (322) when rotating after a predetermined angle in new line state.
7. reliability and durability detachable blender according to claim 5, which is characterized in that switch block includes button portion (21) and pushing part (25) of the setting between button portion (21) and activity pin (24).
8. reliability and durability detachable blender according to claim 7, which is characterized in that movable pin (24) includes bullet Property portion (241) and two pin ends (242) for being separately positioned on (241) two end of elastic portion, one of pin ends (242) it is fixed on mounting end (20), and another pin ends (242) is mobilizable exposes outside mounting end (20), and There is force transferring structure between each pin ends (242) and pushing part (25).
9. according to detachable blender reliability and durability described in claim 8, which is characterized in that force transferring structure includes: that setting exists In pin ends (242) for make when by external force two pin ends (242) toward each other close to movement pin by Power face (2421) is set to the thrust face 251 being in contact on pushing part (25) with pin stress surface (2421).
10. reliability and durability detachable blender according to claim 8, which is characterized in that force transferring structure includes: setting Guide post (2422) on pin ends (242), the oblique guide groove (252) being set on pushing part (25), guide post (2422) position Among the oblique guide groove (252).
CN201820938087.0U 2018-06-15 2018-06-15 Reliability and durability detachable blender Active CN208808284U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820938087.0U CN208808284U (en) 2018-06-15 2018-06-15 Reliability and durability detachable blender

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820938087.0U CN208808284U (en) 2018-06-15 2018-06-15 Reliability and durability detachable blender

Publications (1)

Publication Number Publication Date
CN208808284U true CN208808284U (en) 2019-05-03

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CN201820938087.0U Active CN208808284U (en) 2018-06-15 2018-06-15 Reliability and durability detachable blender

Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108742191A (en) * 2018-06-15 2018-11-06 小熊电器股份有限公司 Reliability and durability detachable blender

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108742191A (en) * 2018-06-15 2018-11-06 小熊电器股份有限公司 Reliability and durability detachable blender
CN108742191B (en) * 2018-06-15 2024-03-29 小熊电器股份有限公司 Reliable durable detachable stirrer

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