CN204072661U - Reciprocal bounce motion machine - Google Patents

Reciprocal bounce motion machine Download PDF

Info

Publication number
CN204072661U
CN204072661U CN201420438351.6U CN201420438351U CN204072661U CN 204072661 U CN204072661 U CN 204072661U CN 201420438351 U CN201420438351 U CN 201420438351U CN 204072661 U CN204072661 U CN 204072661U
Authority
CN
China
Prior art keywords
pedal
base
buffering
bounce motion
motion machine
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN201420438351.6U
Other languages
Chinese (zh)
Inventor
江榆崧
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangzhou Feida Exercise & Massager Equipment Co Ltd
Original Assignee
Guangzhou Feida Exercise & Massager Equipment Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Guangzhou Feida Exercise & Massager Equipment Co Ltd filed Critical Guangzhou Feida Exercise & Massager Equipment Co Ltd
Priority to CN201420438351.6U priority Critical patent/CN204072661U/en
Application granted granted Critical
Publication of CN204072661U publication Critical patent/CN204072661U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

This utility model relates to a kind of back and forth bounce motion machine, comprising: the pedal of standing for user; Be positioned at the base below pedal; Be installed in the driving device on base, it comprises: motor, reducing gear, eccentrically weighted shaft and kinematic link; And energy-saving and buffering mechanism, comprising: a plurality of guide pillar, to be vertically fixedly arranged on base and to be symmetrical in the center of pedal; And a plurality of buffering accumulated energy device, match with a plurality of guide pillar, each buffering accumulated energy device can move back and forth along the guide pillar of correspondence, with activation pedal downwards close to storage area kinetic energy during base to provide the function of buffering, and energy storage can be discharged when pedal upwards leaves base to provide the auxiliary strength of elevate a turnable ladder.Reciprocal bounce motion facility described in the utility model have and alleviate the impact and abrasion that structure is subject to, and save the energy resource consumption of driving device, and then extend the effect of machine service life.

Description

Reciprocal bounce motion machine
Technical field
This utility model relates to a kind of back and forth bounce motion machine, especially a kind of reciprocal bounce motion machine with energy-saving and buffering effect.
Background technology
In order to reach the effect of body-building and motion, and along with sport and body-building apparatus popularizing to family, industry proposes the multiple gymnasium equipment that user health can be driven to produce oscillating movement.These gymnasium equipments all have the platform of the support human body being positioned over ground usually, motor is utilized to drive eccentric drive shaft, the interlinked mechanism be made up of many connecting rods is driven again by eccentric drive shaft, the bracing frame or shell, pedestal that are used for support human body directly and is continuously driven again by this interlinked mechanism, produce up-down vibration displacement, and then support human body produces oscillating movement.But the complex structure assembling of existing gymnasium equipment is time-consuming takes a lot of work, and also there is the irrational place of many designs, such as: part junction point is more, user easily makes apparatus be subject to excessive impact when moving, and causes part easily to produce wearing and tearing, even impaired, thus shorten service life; On the other hand, up-down vibration motion is driven by motor completely, also easily produces higher energy consumption, causes the energy resource consumption of motor more.Especially, for shuttle bounce motion, the frame for movement due to equipment needs to bear to pump more frequently, and the strength be subject at the volley is impacted larger, and machine more easily weares and teares and even damages, and maintenance cost is higher.Therefore, be necessary to develop a kind of reciprocal bounce motion machine with energy-saving and buffering effect.
Summary of the invention
The purpose of this utility model is to provide a kind of back and forth bounce motion machine, has and alleviates the impact and abrasion that structure is subject to, save the energy resource consumption of driving device, and then extend the effect of machine service life.
More effectively can carry the larger pressure from external loads, and reduce and offset pump produced impact that each spare and accessory parts of apparatus are brought and the wearing and tearing perpendicular to baseplane.
The reciprocal bounce motion machine of one described in the utility model, comprising: pedal, stands for user; Base, is positioned at the below of described pedal; Driving device, be installed on described base, it comprises: motor, reducing gear, eccentrically weighted shaft and kinematic link; The output shaft of described motor connects the input side of described reducing gear, and the outlet side of described reducing gear connects described eccentrically weighted shaft; Described eccentrically weighted shaft is rotatably installed on described base; One end of described kinematic link is articulated in this eccentrically weighted shaft rotationally, and the other end is articulated in the central authorities of described pedal rotationally; And energy-saving and buffering mechanism, comprising: a plurality of guide pillar, to be vertically fixedly arranged on described base and to be symmetrical in the center of described pedal; And a plurality of buffering accumulated energy device, match with described a plurality of guide pillar, each described buffering accumulated energy device can move back and forth along the guide pillar of correspondence, with activation described pedal downwards close to storage area kinetic energy during described base to provide the function of buffering, and energy storage can be discharged when described pedal upwards leaves described base to provide the auxiliary strength of elevate a turnable ladder.
According to the further feature of reciprocal bounce motion machine described in the utility model, described reducing gear comprises: the first belt pulley, is hubbed at the bracing frame of described base rotationally; First driving belt, connects the output shaft of described first belt pulley and described motor; Second belt pulley, is fixedly arranged on described eccentrically weighted shaft and synchronous rotary thereupon; Second driving belt, connects the wheel shaft of the second belt pulley and the first belt pulley.
According to the further feature of reciprocal bounce motion machine described in the utility model, described eccentrically weighted shaft comprises rotating shaft and is fixedly arranged on the eccentric of this rotating shaft, the two ends of described rotating shaft are respectively equipped with clutch shaft bearing and the second bearing, and described first and second bearings are individually fixed in the bearing bracket stand on described base.。
According to a specific embodiment of reciprocal bounce motion machine described in the utility model, described buffering accumulated energy device comprises: buffering guide pin bushing, is fixedly arranged on the bottom surface of described pedal, its so that slide over each other fit corresponding with the position of described guide pillar; And the energy storage sleeve pipe of built-in spring, be sheathed on described guide pillar, between described buffering guide pin bushing and described base.Preferably, the inside of described buffering guide pin bushing offers the oil storage tank can filling lubricating oil.
According to another specific embodiment of reciprocal bounce motion machine described in the utility model, described buffering accumulated energy device comprises: guide pin bushing, is fixedly arranged on the bottom surface of described pedal, its so that slide over each other fit corresponding with the position of described guide pillar; And spring, be sheathed on corresponding guide pin bushing and the outside of guide pillar.Further, described energy-saving and buffering mechanism also comprises rubber cushion, be sheathed on described guide pillar outside and between described guide pin bushing and described base.
According to the further feature of reciprocal bounce motion machine described in the utility model, described reciprocal bounce motion machine also comprises a plurality of balance weight, is fixedly arranged on the bottom surface of described pedal symmetrically, between described pedal and described base.
According to the further feature of reciprocal bounce motion machine described in the utility model, described reciprocal bounce motion machine also has a plurality of shock-absorbing foot pad, is configured at the bottom of described base equably.
According to the further feature of reciprocal bounce motion machine described in the utility model, described shock-absorbing foot pad comprises screw rod, chassis and elastic washer, the bottom surface on described chassis is located at by described elastic washer, and described screw rod passes described chassis and is screwed together in the bottom of described base.
Reciprocal bounce motion machine described in the utility model, has following characteristics and advantage:
(1) load making outside be applied to pedal by energy-saving and buffering mechanism is partly carried and is cushioned its impulsive force, wherein, the impulsive force that the energy storage sleeve pipe available buffer of built-in spring is downward, and make guide pin bushing resilience, oil storage tank simultaneously in guide pin bushing can load lubricating oil, the slip further between lubrication guide pin bushing and guide rod.
(2) by setting up balance weight, energy-saving and buffering mechanism can be coordinated jointly to bear pressure, when described spring machine has downward pressure, effectively can alleviate required torsion when camshaft down rotates.When camshaft upwards reverses, balance weight, spring, rubber cushion discharge the above-mentioned pressure born all thereupon, upwards lift load so that auxiliary.And so forth, the energy resource consumption of motor can be greatly reduced.According to measuring and calculating, when supposing that load is 100Kg, described spring machine can save necessary motor horsepower more than at least 30%.
(3) be also configured with shock-absorbing foot pad at base, it utilizes screw rod to be screwed together in the bottom of base, and can adjust spacing between base and ground through the mode of rotating screw bolt, makes base can be positioned over ground stably and uses.Shock-absorbing foot pad can carry a constant load, and its bottom design has the elastic washer formed with the flexible ring limit of earth surface, strengthening reciprocal bounce motion machine and be positioned over the adhesive force on ground with firm, produce suitable buffering again when accepting external loads.
(4) spring in buffering accumulated energy device can also make pedal produce the effect of spring when doing the reciprocating motion of above-below direction relative to base, does not have stiff collision impression, can reduce user sense of discomfort in use.
Accompanying drawing explanation
Fig. 1 is the schematic diagram of the reciprocal bounce motion machine described in a specific embodiment of the present invention.
Fig. 2 be the reciprocal bounce motion machine shown in Fig. 1 disassemble scheme of installation.
Fig. 3 is the explosive decomposition figure of the reciprocal bounce motion machine shown in Fig. 1.
Fig. 4 is the amplification view cushioning guide pin bushing and energy storage sleeve pipe in Fig. 3.
Fig. 5 is the schematic diagram of the reciprocal bounce motion machine described in another detailed description of the invention of the present invention.
Fig. 6 be the reciprocal bounce motion machine shown in Fig. 5 disassemble scheme of installation.
Fig. 7 is the explosive decomposition figure of the reciprocal bounce motion machine shown in Fig. 5.
Reference numeral
10: pedal; 20: base; 22: bracing frame; 23: bearing bracket stand; 30: shock-absorbing foot pad; 31: screw rod; 32: chassis; 33: elastic washer; 23: bearing block; 41: motor; 42: eccentrically weighted shaft; 421: rotating shaft; 422: eccentric; 423: clutch shaft bearing; 424: the second bearings; 43: kinematic link; 44: the first belt pulleys; 441: first belt pulley; 442: the first small belt pulleys; 45: the first driving belts; 46: the second belt pulleys; 47: the second driving belts; 48: drive pulley; 51: guide pillar; 52: guide pin bushing; 521: the seat portion of guide pin bushing; 53: spring; 54: rubber cushion; 55: balance weight; 61: guide pin bushing; 611: the seat portion of buffering guide pin bushing; 612: oil storage tank; 62: energy storage sleeve pipe; 63: spring.
Detailed description of the invention
Mode below by means of only embodiment is described in detail to principle of the present utility model and structure in conjunction with appended accompanying drawing, but specific embodiment is hereinafter described only exemplary, should not be considered as any restriction of the present utility model.
Fig. 1 to Fig. 4 of accompanying drawings, shows first specific embodiment of reciprocal bounce motion machine described in the utility model.This spring machine comprises: pedal 10, stands for user; Base 20, is positioned at the below of pedal 10; Driving device, is installed on base 20, does the reciprocating motion of above-below direction for interlock pedal 10 relative to base 20; And energy-saving and buffering mechanism.
As shown in Figure 1, pedal 10 is a kind of flat assembly, in the present embodiment, pedal 10 can form a frame structure by several pipe fitting 11 (can be the pipe fitting of hollow), on framework, arrange dull and stereotyped 12 again, the pipe fitting 11 of hollow can alleviate the weight of structure and obtain enough intensity.
Similarly, in the present embodiment, a kind of frame structure of being made up of several pipe fitting 21 (can be the pipe fitting of hollow) of base 20.As shown in Figure 1 to Figure 3, also can configure a plurality of shock-absorbing foot pad 30 equably in the bottom of base 20, in this example, have four shock-absorbing foot pads 30 to be distributed in four angles of base 20.As shown in Figure 3, an example of this shock-absorbing foot pad 30 comprises: screw rod 31, chassis 32 and elastic washer 33; The bottom surface on chassis 32 is located at by elastic washer 33, and screw rod 31 passes chassis 32 and is screwed together in the bottom of base 20.These shock-absorbing foot pads can play damping effect to overall structure further.
As shown in Figures 2 and 3, driving device comprises: motor 41, reducing gear, eccentrically weighted shaft 42 and kinematic link 43.The output shaft of motor 41 connects the input side of reducing gear, and the outlet side of reducing gear connects eccentrically weighted shaft 42; Eccentrically weighted shaft 42 is rotatably installed on base 20; One end of kinematic link 43 is articulated in this eccentrically weighted shaft 42 rotationally, and the other end is articulated in the central authorities of pedal 10 rotationally.
As shown in Figures 2 and 3, reducing gear comprises: the first belt pulley 44, is hubbed at the bracing frame 22 of base 20 rotationally; First driving belt 45 (being the input side of reducing gear), connects the output shaft of the first belt pulley 44 and motor 41; Second belt pulley 46 (being the outlet side of reducing gear), is fixedly arranged on eccentrically weighted shaft 42 and synchronous rotary thereupon; And second driving belt 47, connect the wheel shaft of the second belt pulley 46 and the first belt pulley 44.Therefore, the rotary power that the output shaft of motor 41 exports is by the decelerating effect of reducing gear, and the rotary driving force that can export relative to slow-speed of revolution height torsion at the outlet side of reducing gear rotates in order to drive eccentrically weighted shaft 42.
Fig. 3 shows a concrete structure between belt pulley.First belt pulley 44 has the larger first belt pulley 441 of diameter and coaxial relation and relatively little one first small belt pulley 442 of diameter, the diameter of the second belt pulley 46 is greater than the first small belt pulley 442, the output shaft of motor 41 is provided with drive pulley 48, the diameter of drive pulley 48 is less than first belt pulley 441, first driving belt 45 connects drive pulley 48 and first belt pulley 441, second driving belt 47 connects the first small belt pulley 442 and the second belt pulley 46.
As shown in Figures 2 and 3, eccentrically weighted shaft 42 comprises rotating shaft 421 and is fixedly arranged on the eccentric 422 of rotating shaft, and the two ends of rotating shaft 421 are respectively equipped with clutch shaft bearing 423 and the second bearing 424, first and second bearing and are individually fixed in bearing bracket stand 23 on base 20.
In energy-saving and buffering mechanism, as shown in Figures 2 and 3, have a plurality of guide pillar 51, they to be vertically fixedly arranged on base 20 and to be symmetrical in the center of pedal 10; And a plurality of buffering accumulated energy device, match with a plurality of guide pillar 51, each buffering accumulated energy device can move back and forth along the guide pillar 51 of correspondence, with activation pedal 10 downwards close to storage area kinetic energy during base 20 to provide the function of buffering, and energy storage can be discharged when pedal 10 upwards leaves base 20 to provide the auxiliary strength of elevate a turnable ladder.
As shown in Figures 2 and 3, buffering accumulated energy device comprises: buffering guide pin bushing 61, is fixedly arranged on the bottom surface of pedal 10, its so that slide over each other fit corresponding with the position of guide pillar 51; And energy storage sleeve pipe 62, be sheathed on guide pillar 51, between buffering guide pin bushing 61 and base 20.Buffering guide pin bushing 61 and energy storage sleeve pipe 62 can be made up of elastomeric material.The top of buffering guide pin bushing 61 is provided with a portion 611, and buffering guide pin bushing 61 is fixed on the bottom surface of pedal 10 by seat portion 611.
Fig. 4 shows the amplification view of buffering guide pin bushing 61 and energy storage sleeve pipe 62.As shown in Figure 4, the inside of buffering guide pin bushing 61 offers oil storage tank 612, can fill lubricating oil, making to cushion guide pin bushing 61 more smooth and easy when moving along the axial reciprocating of guide pillar 51, can reduce abrasion simultaneously, avoids because rub and heating and minimizing noise.As shown in Figure 4, energy storage sleeve pipe 62 is built-in with spring 63, utilizes the contraction of spring and replys energy storage and release energy storage.
As shown in Figures 2 and 3, this reciprocal bounce motion machine also comprises a plurality of balance weight 55, is fixedly arranged on the bottom surface of pedal 10 symmetrically, between pedal 10 and base 20, the effect of balance is provided when pedal 10 moves back and forth up and down, bears the impulse force that pedal 10 is downward simultaneously.In the present embodiment, provide a pair balance weight 55, be separately positioned between the bottom surface of pedal 10 and clutch shaft bearing 423 and the second bearing 424.Balance weight 55 can be made up of elastomeric material.
Fig. 5 to Fig. 7 of accompanying drawings, shows second specific embodiment of reciprocal bounce motion machine described in the utility model.This spring machine comprises: pedal 10, stands for user; Base 20, is positioned at the below of pedal 10; Driving device, is installed on base 20, does the reciprocating motion of above-below direction for interlock pedal 10 relative to base 20; And energy-saving and buffering mechanism.For with first same or similar structure of specific embodiment, no longer launch here describe.
In second specific embodiment, provide another kind of buffering accumulated energy device, as shown in Figure 6 and Figure 7, this buffering accumulated energy device comprises: guide pin bushing 52, is fixedly arranged on the bottom surface of pedal 10, its so that slide over each other fit corresponding with the position of guide pillar 51; And spring 53, be sheathed on corresponding guide pin bushing 52 and the outside of guide pillar 51.In this example, the top of guide pin bushing 52 is provided with a portion 521, and guide pin bushing 52 is fixed on the bottom surface of pedal 10 by seat portion 521.Spring 53 can provide the function of buffering when pedal 10 moves towards base 20 direction, part impulse force when simultaneously pedal 10 being moved down transfer to elasticity can and be stored among spring 53, on the other hand, when pedal 10 is moved towards base 20 direction by connecting rod 43 by motor 41 interlock eccentrically weighted shaft 42, the part weight standing on the user on pedal 10 can be born by several spring 53, and remaining weight is just by connecting rod 43, the motor 41 of eccentrically weighted shaft 42 and driving device bears, torsion required when motor 41 interlock pedal 10 moves down can be reduced like this, otherwise, pedal 10 upwards elevate a turnable ladder time, can elasticity in retracting spring 53 can as the auxiliary strength of elevate a turnable ladder pedal 10, therefore there is impact and abrasion that the load that alleviates driving device and structure be subject to, and then obtain the effect increased the service life.In addition, spring 53 can also make pedal 10 produce the effect of spring when doing the reciprocating motion of above-below direction relative to base 20, does not have stiff collision impression, can reduce user sense of discomfort in use.
In the present embodiment, energy-saving and buffering mechanism also comprises rubber cushion 54, be sheathed on guide pillar 51 outside and between guide pin bushing 52 and base 20.Spring 53 and rubber cushion 54 can provide the function of buffering when pedal 10 moves towards base 20 direction, have and alleviate impact and abrasion that structure is subject to and reduce noise, also have the effect increased the service life in addition.
Although this utility model has been described in detail by above-mentioned specific embodiment; but these specific embodiments are not intended to limit this utility model; those skilled in the art are not departing from spirit and scope of the present utility model; can make more feasible change, modification or change, the scope that therefore protection domain of the present utility model should define with appended claim is as the criterion.

Claims (10)

1. a reciprocal bounce motion machine, is characterized in that, comprising:
Pedal (10), stands for user;
Base (20), is positioned at the below of described pedal (10);
Driving device, be installed on described base (20), it comprises: motor (41), reducing gear, eccentrically weighted shaft (42) and kinematic link (43); The output shaft of described motor (41) connects the input side of described reducing gear, and the outlet side of described reducing gear connects described eccentrically weighted shaft (42); Described eccentrically weighted shaft (42) is rotatably installed on described base (20); One end of described kinematic link (43) is articulated in this eccentrically weighted shaft (42) rotationally, and the other end is articulated in the central authorities of described pedal (10) rotationally; And
Energy-saving and buffering mechanism, comprising: a plurality of guide pillar (51), is vertically fixedly arranged on described base (20) and goes up and the center being symmetrical in described pedal (10); And a plurality of buffering accumulated energy device, match with described a plurality of guide pillar (51), each described buffering accumulated energy device can move back and forth along the guide pillar of correspondence (51), with activation described pedal (10) downwards close to storage area kinetic energy time described base (20) to provide the function of buffering, and energy storage can be discharged when described pedal (10) upwards leave described base (20) to provide the auxiliary strength of elevate a turnable ladder.
2. reciprocal bounce motion machine according to claim 1, it is characterized in that, described reducing gear comprises:
First belt pulley (44), is hubbed at the bracing frame (22) of described base (20) rotationally;
First driving belt (45), connects the output shaft of described first belt pulley (44) and described motor (41);
Second belt pulley (46), is fixedly arranged on described eccentrically weighted shaft (42) and synchronous rotary thereupon; And
Second driving belt (47), connects the wheel shaft of the second belt pulley (46) and the first belt pulley (44).
3. reciprocal bounce motion machine according to claim 1, it is characterized in that: described eccentrically weighted shaft (42) comprises rotating shaft (421) and is fixedly arranged on the eccentric (422) of described rotating shaft, the two ends of described rotating shaft (421) are respectively equipped with clutch shaft bearing (423) and the second bearing (424), and described first and second bearings are individually fixed in the bearing bracket stand (23) on described base (20).
4. reciprocal bounce motion machine according to claim 1, it is characterized in that, described buffering accumulated energy device comprises: buffering guide pin bushing (61), is fixedly arranged on the bottom surface of described pedal (10), its so that slide over each other fit corresponding with the position of described guide pillar (51); And
The energy storage sleeve pipe (62) of built-in spring (63), is sheathed on described guide pillar (51), between described buffering guide pin bushing (61) and described base (20).
5. reciprocal bounce motion machine according to claim 4, is characterized in that: the inside of described buffering guide pin bushing (61) offers the oil storage tank (612) can filling lubricating oil.
6. reciprocal bounce motion machine according to claim 1, is characterized in that, described buffering accumulated energy device comprises: guide pin bushing (52), is fixedly arranged on the bottom surface of described pedal (10), its so that slide over each other fit corresponding with the position of described guide pillar (51); And
Spring (53), is sheathed on corresponding guide pin bushing (52) and the outside of guide pillar (51).
7. reciprocal bounce motion machine according to claim 6, is characterized in that: described energy-saving and buffering mechanism also comprises rubber cushion (54), be sheathed on described guide pillar (51) outside and between described guide pin bushing (52) and described base (20).
8. reciprocal bounce motion machine according to claim 1, is characterized in that: also comprise a plurality of balance weight (55), be fixedly arranged on the bottom surface of described pedal (10) symmetrically, between described pedal (10) and described base (20).
9. reciprocal bounce motion machine according to claim 1, is characterized in that: also have a plurality of shock-absorbing foot pad (30), be configured at the bottom of described base (20) equably.
10. reciprocal bounce motion machine according to claim 9, it is characterized in that: described shock-absorbing foot pad (30) comprises screw rod (31), chassis (32) and elastic washer (33), the bottom surface of described chassis (32) is located at by described elastic washer (33), and described screw rod (31) is through described chassis (32) and be screwed together in the bottom of described base (20).
CN201420438351.6U 2014-08-05 2014-08-05 Reciprocal bounce motion machine Withdrawn - After Issue CN204072661U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420438351.6U CN204072661U (en) 2014-08-05 2014-08-05 Reciprocal bounce motion machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420438351.6U CN204072661U (en) 2014-08-05 2014-08-05 Reciprocal bounce motion machine

Publications (1)

Publication Number Publication Date
CN204072661U true CN204072661U (en) 2015-01-07

Family

ID=52165433

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420438351.6U Withdrawn - After Issue CN204072661U (en) 2014-08-05 2014-08-05 Reciprocal bounce motion machine

Country Status (1)

Country Link
CN (1) CN204072661U (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104127296A (en) * 2014-08-05 2014-11-05 广州飞达运动按摩器材有限公司 Reciprocating bouncing sports machine
CN105216873A (en) * 2015-11-13 2016-01-06 意欧斯仓储设备股份有限公司 A kind of novel floating shock-absorbing is ridden
CN106823268A (en) * 2017-03-10 2017-06-13 郭柏权 Body-building device with automatic alternately lifting pedal

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104127296A (en) * 2014-08-05 2014-11-05 广州飞达运动按摩器材有限公司 Reciprocating bouncing sports machine
CN104127296B (en) * 2014-08-05 2016-06-22 广州飞达运动按摩器材有限公司 Reciprocal bounce motion machine
CN105216873A (en) * 2015-11-13 2016-01-06 意欧斯仓储设备股份有限公司 A kind of novel floating shock-absorbing is ridden
CN105216873B (en) * 2015-11-13 2018-06-22 意欧斯智能科技股份有限公司 A kind of floating shock-absorbing is ridden
CN106823268A (en) * 2017-03-10 2017-06-13 郭柏权 Body-building device with automatic alternately lifting pedal
CN106823268B (en) * 2017-03-10 2022-02-22 郭柏权 Body-building device with automatic alternate lifting pedals

Similar Documents

Publication Publication Date Title
CN104127296B (en) Reciprocal bounce motion machine
CN204072661U (en) Reciprocal bounce motion machine
CN106986006B (en) Reusable variable-angle variable-length self-adaptive buffer landing mechanism
CN201159260Y (en) Shock-absorbing transmission carrier roller
CN109441758B (en) Hydraulic pump with noise reduction function
CN205663817U (en) Damping device of printing and dyeing cloth hydroextractor
CN104226586A (en) Energy-saving vibration sieve
CN108799721B (en) Equipment mounting base for hardware electromechanics
CN105317042B (en) Line pile-grafting machine base before flexible
TW201605513A (en) Reciprocal bouncing exercise machine and method thereof for buffering and saving energy
CN202483523U (en) Double-walking beam twin-well pumping unit
CN204522272U (en) Rotate spring swing type amusement device
CN203954551U (en) A kind of elastic damping treadmill that can lifting runway
CN100414070C (en) Automatic torque-changing pumping unit
CN211847057U (en) Vehicle-mounted hydraulic aerial working device
CN111021731B (en) Concrete pump truck
CN108643866A (en) A kind of mechanic automatic direction change double well long distance oil suction machine
CN211103812U (en) Electric tool with vibration damper
CN113653610A (en) Vibration suppression device for wind power generation equipment
CN206660418U (en) A kind of suspension ring
CN208669486U (en) A kind of diesel oil tank supporting element
CN206590508U (en) It is a kind of can smooth transport goods conveyer belt
CN205309024U (en) Round as a ball device of general shaped steel board
CN110170973A (en) A kind of fluid pressure type transformer core overturning workbench
CN111021994B (en) Balance device for crank type pumping unit and pumping unit

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20150107

Effective date of abandoning: 20160622

C25 Abandonment of patent right or utility model to avoid double patenting