Comprehensive body-building training device
Technical Field
The invention relates to the technical field of fitness equipment, in particular to a comprehensive fitness trainer.
Background
The existing multifunctional comprehensive training equipment on the market has the defects of large occupied area, large use volume, complex conversion mode between different functions, poor expansibility and the like when realizing multifunctional training, and cannot meet the training requirements of users on multiple directions such as flying birds, high-pulling and the like.
Disclosure of Invention
The invention aims to provide a comprehensive body-building trainer which has small occupied area and convenient adjustment and can be used for a user to exercise in multiple directions and multiple postures.
In order to solve the problems, the invention provides an integrated body-building training device, which comprises a supporting frame, a longitudinal adjusting piece, a transverse adjusting piece, a sliding rope assembly and a load bearing assembly, wherein a transverse plate is arranged at the upper part of the supporting frame, two sides of the transverse plate are respectively provided with a transfer pipe capable of rotating vertically, the outer side walls of the transfer pipes are respectively provided with an adjusting plate, the longitudinal adjusting piece is detachably connected to the transverse plate and is abutted with the transfer pipes to control the rotation angle of the transfer pipes, a side arm pipe capable of rotating transversely is arranged on the adjusting plate, the transverse adjusting piece is detachably connected to the adjusting plate and is abutted with the side arm pipes to control the rotation angle of the side arm pipes, one side of the side arm pipe away from the adjusting plate is provided with a clamping opening, and the sliding rope assembly comprises a load bearing rope section connected to the load bearing assembly, and a first rope section and a second rope section respectively penetrating out of the clamping openings of the two side arm pipes.
According to the scheme, a user realizes weight-bearing exercise in various directions or postures by pulling the first cable section and the second cable section, so that the adjusting plate can adjust the rotation angle in a certain range by taking the longitudinal direction as the axis and further drive the side arm pipe to rotate by taking the longitudinal direction as the axis through the arrangement of the switching pipe and the longitudinal adjusting piece, and the side arm pipe can rotate by taking the transverse direction as the axis through the arrangement of the adjusting plate and the transverse adjusting piece, namely, the quick adjustment of multiple degrees of freedom of the side arm pipe is realized. Compared with the prior art, the multi-angle unfolding or storage of the side arm pipe is realized through the arrangement of the longitudinal adjusting piece and the transverse adjusting piece, the adjustment is simple and quick during unfolding, the occupied space can be effectively reduced during storage, and the side arm pipe folding device has higher practicability.
Preferably, the above scheme further comprises a seat frame, a cushion is arranged on the upper side of the seat frame, a clamping groove is formed in the side face of the seat frame, and a plurality of supporting pieces used for detachably clamping the clamping groove are arranged on the side face of the supporting frame, so that the height of the seat frame can be quickly switched when a user exercises in different postures, and the seat frame is simple and convenient to adjust.
Preferably, a plurality of circular arc-shaped longitudinal jacks are arranged on two sides of the transverse plate, a raised longitudinal baffle is arranged on the outer side wall of the transfer tube, the longitudinal adjusting piece is used for being detachably inserted into any longitudinal jack, the longitudinal baffle is abutted with the longitudinal adjusting piece to fix the transfer tube, and therefore the angle of the transfer tube can be quickly adjusted by inserting the longitudinal adjusting piece into different longitudinal jacks.
Preferably, the adjusting plate is provided with a plurality of circular arc-shaped distributed transverse insertion holes, a limiting hole is formed in one side, close to the adjusting plate, of the side arm pipe, and the transverse adjusting piece is used for penetrating through the limiting hole and detachably inserting into any one of the transverse insertion holes, so that the angle of the side arm pipe can be quickly adjusted by inserting the transverse adjusting piece into different transverse insertion holes.
Preferably, the arc centers of the distribution tracks of the transverse insertion holes on the same adjusting plate are provided with rotating shafts, and the side arm pipes are rotationally connected to the rotating shafts, so that the transverse adjusting piece can be conveniently and stably inserted into the limiting holes and the transverse insertion holes, and the transverse adjusting piece is attractive.
Preferably, the load assembly comprises a stand column and a load sliding sleeve, the load sliding sleeve is sleeved on the stand column in a sliding manner, a counterweight part is arranged on the side face of the load sliding sleeve, and a load cable section of the sliding cable assembly is connected with the load sliding sleeve, so that different force demands of users can be met by adjusting the weight of a seed matching part of the load sliding sleeve.
Preferably, the scheme further comprises a top frame, wherein the top frame is connected between the supporting frame and the upright post, and a shelving part which is obliquely arranged is arranged on the front side of the top frame. The setting of the rest part can be convenient for place the electronic product, and the user can conveniently pass through video auxiliary training.
Preferably, the above scheme further includes a buffer pulley block, the buffer pulley block includes a locating plate, a spring, a buffer wheel shaft and a buffer pulley, the locating plate is connected to the support frame and a long hole is formed in the side face of the locating plate, the buffer wheel shaft is movably inserted into the long hole, the spring is abutted between the buffer wheel shaft and the support frame, the buffer pulley is rotationally connected to the buffer wheel shaft, and the middle part of the sliding rope assembly is wound and connected to the buffer pulley. Considering that the problems that the sliding rope assembly can be out of the stroke or accidentally fall off when a user pulls the sliding rope assembly to exercise, the length of the sliding rope assembly can be compensated by the arrangement of the buffer pulley block, and excessive abrasion of the sliding rope assembly is avoided.
Preferably, the buffer pulleys are two and are respectively positioned at two ends of the buffer wheel shaft, the springs are abutted to the middle part of the buffer wheel shaft, and the first cable segment and the second cable segment of the sliding cable assembly are respectively wound on the buffer pulleys at two ends of the buffer wheel shaft, so that the stress balance between the buffer wheel shaft and the springs is ensured.
Preferably, the sliding cable assembly further comprises a middle rotating head and a beam-collecting pulley rotatably connected with the middle rotating head, the first cable section and the second cable section are both wound to the beam-collecting pulley, and the load-bearing cable section is connected with the middle rotating head, so that the first cable section and the second cable section can directly slide relative to the beam-collecting pulley, and the first cable section and the second cable section can be pulled simultaneously to achieve traction on the load-bearing cable section.
Preferably, two side arm pipes are close to one side of the regulating plate and are all provided with storage openings, and two clamping openings of the side arm pipes are all provided with transfer pieces capable of rotating vertically, each transfer piece is provided with a first guide wheel and a second guide wheel, the first cable section and the second cable section respectively penetrate through the storage openings of the two side arm pipes and then penetrate through the clamping openings, clamping balls are arranged at the ends of the first cable section and the second cable section, and the two clamping balls are respectively clamped between the first guide wheels and the second guide wheels of the transfer pieces, so that a user can conveniently pull the first cable section and the second cable section to exercise.
Drawings
FIG. 1 is a schematic illustration of an isometric view of the front side of a comprehensive fitness trainer;
FIG. 2 is a schematic illustration of an isometric view of the rear side of the integrated fitness trainer;
FIG. 3 is a schematic side view of an integrated fitness trainer;
FIG. 4 is a schematic rear view of an integrated fitness trainer;
FIG. 5 is an enlarged schematic view of a portion of the area A of FIG. 2;
fig. 6 is a partially enlarged schematic view of region B in fig. 2.
Reference numerals illustrate:
a 1-supporting frame, a 11-supporting piece, a 2-transverse plate, a 21-longitudinal inserting hole, a 3-switching tube, a 31-longitudinal baffle, a 4-adjusting plate, a 41-transverse inserting hole, a 42-rotating shaft, a 5-seat frame, a 51-seat cushion, a 52-clamping groove, a 6-top frame, a 61-placing part, b 1-loading cable section, b 2-first cable section, b 3-second cable section, b 4-middle rotating head, b 41-collecting pulley, b 5-clamping ball, c 1-longitudinal adjusting piece, c 2-transverse adjusting piece, d 1-side arm tube, d 11-limiting hole, d 12-clamping opening, d 13-containing opening, d 2-switching piece, d 21-first guide wheel, d 22-second guide wheel, e 1-loading assembly, e 11-upright post, e 12-loading weight, e 13-counterweight part, f 1-positioning plate, f 11-long hole, f 2-spring, f 3-buffering pulley and f 4-buffering pulley.
Detailed Description
In order that the above objects, features and advantages of the invention will be readily understood, a more particular description of the invention will be rendered by reference to specific embodiments thereof which are illustrated in the appended drawings. The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention. It should be further noted that, in the embodiments of the present invention, all directional indications (such as up, down, left, right, front, back, inner, and outer) are merely used to explain the relative positional relationship, movement conditions, etc. between the components in a specific posture (as shown in the drawings), and if the specific posture is changed, the directional indication is correspondingly changed.
Referring to fig. 1-6, an integrated exercise training device provided by the embodiment of the invention includes a supporting frame a1, a longitudinal adjusting member c1, a transverse adjusting member c2, a sliding cable assembly and a load bearing assembly e1, wherein a transverse plate a2 is arranged at the upper portion of the supporting frame a1, two vertically rotatable switching tubes a3 are arranged at both sides of the transverse plate a2, an adjusting plate a4 is arranged at the outer side wall of the switching tube a3, the longitudinal adjusting member c1 is detachably connected to the transverse plate a2 and is abutted to the switching tubes a3 to control the rotation angle of the switching tube a3, a side wall tube d1 capable of transversely rotating is arranged on the adjusting plate a4 and is abutted to the side wall tube d1 to control the rotation angle of the side wall tube d1, a clamping opening d12 is arranged at one side of the side wall tube d1 far from the adjusting plate a4, and the sliding cable assembly includes a load bearing cable segment b1 connected to the load bearing assembly e1 and a first cable segment b2 and a second cable segment b3 respectively penetrating from the clamping openings d12 of the two side wall tubes d 1.
In the above scheme, the user realizes the weight-bearing exercise in various directions or postures by pulling the first cable section b2 and the second cable section b3, so that the adjusting plate a4 can adjust the rotation angle in a certain range by taking the longitudinal direction as the axis through the arrangement of the switching tube a3 and the longitudinal adjusting piece c1, and further drives the side wall tube d1 to rotate by taking the longitudinal direction as the axis, and the side wall tube d1 can rotate by taking the transverse direction as the axis through the arrangement of the adjusting plate a4 and the transverse adjusting piece c2, namely, the quick adjustment of a plurality of degrees of freedom of the side wall tube d1 is realized. Compared with the prior art, the multi-angle unfolding or storage of the side wall pipe d1 is achieved through the arrangement of the longitudinal adjusting piece c1 and the transverse adjusting piece c2, the adjustment is simple and quick during unfolding, the occupied space can be effectively reduced during storage, and the multi-angle unfolding device is high in practicability.
As an extension of the above embodiment, the seat frame a5 is further included, a cushion a51 is disposed on the upper side of the seat frame a5, a clamping groove a52 is disposed on the side surface of the seat frame a5 facing the support frame a1, and two protruding support members a11 are disposed on the side surface of the support frame a1, so that when the clamping groove a52 is detachably clamped to the support members a11, the seat frame a5 can be connected to the support frame a 1. When a user exercises in different postures, the height of the seat frame a5 can be quickly switched by clamping the clamping grooves a52 on different supporting pieces a11, and the adjustment is simple and convenient.
In this embodiment, a plurality of circular arc-shaped longitudinal insertion holes a21 are formed in two sides of the transverse plate a2, a raised longitudinal baffle a31 is arranged on the outer side wall of the switching tube a3, the longitudinal adjusting piece c1 is in a shaft shape and is used for being detachably inserted into any one of the longitudinal insertion holes a21, and meanwhile, the longitudinal baffle a31 is abutted against the longitudinal adjusting piece c1 to fix the switching tube a3, so that the angle of the switching tube a3 can be quickly adjusted by inserting the longitudinal adjusting piece c1 into different longitudinal insertion holes a 21.
In this embodiment, the adjusting plate a4 is provided with a plurality of circular arc-shaped transverse insertion holes a41, one side of the sidewall tube d1 close to the adjusting plate a4 is provided with a limiting hole d11, and the transverse adjusting member c2 is shaft-shaped and is detachably inserted into any one of the transverse insertion holes a41 after passing through the limiting hole d11, so that the angle of the sidewall tube d1 can be quickly adjusted by inserting the transverse adjusting member c2 into different transverse insertion holes a 41.
In this embodiment, the arc center of the distribution track of the plurality of transverse insertion holes a41 on the same adjusting plate a4 is provided with a rotating shaft a42, and the side wall tube d1 is rotatably connected to the rotating shaft a42, so that the transverse adjusting piece c2 can be more conveniently and stably inserted into the limiting hole d11 and the transverse insertion holes a41, and is more attractive.
In this embodiment, the load assembly e1 includes a vertical column e11 and a load sliding sleeve e12 slidably adjusted on the vertical column e11, where the left side surface and the side surface of the load sliding sleeve e12 are provided with a weight portion e13, and the weight portion e13 is preferably rod-shaped so as to allow the disc to be conveniently sleeved. The load cable section b1 of the sliding cable assembly is connected with the load sliding sleeve e12, so that different force demands of users can be met by adjusting the weight of the mating part of the load sliding sleeve e 12.
As an extension of the above embodiment, the device further includes a top frame a6, where the top frame a6 is connected between the support frame a1 and the upright e11, and a rest portion a61 disposed obliquely is disposed on the front side of the top frame a 6. The setting of portion a61 of shelving can be convenient for place the electronic product, and the convenience of customers passes through the video auxiliary training, and roof-rack a6 also can play the shielding effect to the sliding rope subassembly simultaneously, avoids the potential safety hazard.
As an extension to the above embodiment, the device further includes a buffer pulley f4 set, where the buffer pulley f4 set includes a positioning plate f1, a spring f2, a buffer wheel shaft f3 and a buffer pulley f4, the positioning plate f1 is connected to the support frame a1, a long hole f11 vertically arranged is provided on a side surface of the positioning plate f1, the buffer wheel shaft f3 is movably inserted into the long hole f11, the spring f2 is abutted between the buffer wheel shaft f3 and the support frame a1, the buffer pulley f4 is rotationally connected to the buffer wheel shaft f3, and a middle part of the sliding cable assembly is wound around the buffer pulley f4. Considering that the problems that the user possibly exceeds the stroke or the sliding rope component accidentally drops off when pulling the sliding rope component to exercise, the length of the sliding rope component can be compensated by the buffer pulley f4 group, and excessive abrasion of the sliding rope component is avoided. Further, the buffer pulleys f4 are two and are respectively positioned at two ends of the buffer wheel shaft f3, the spring f2 is abutted against the middle part of the buffer wheel shaft f3, the first rope section b2 and the second rope section b3 of the sliding rope assembly are respectively wound on the buffer pulleys f4 at two ends of the buffer wheel shaft f3, and the stress balance between the buffer wheel shaft f3 and the spring f2 is ensured.
As an extension of the above embodiment, the sliding cable assembly further includes a middle rotating head b4 and a receiving pulley b41 rotatably connected to the middle rotating head b4, and the first cable segment b2 and the second cable segment b3 are both wound to the receiving pulley b41, and the load bearing cable segment b1 is connected to the middle rotating head b4, so that not only the first cable segment b2 and the second cable segment b3 can directly slide relative to the receiving pulley b41, but also the first cable segment b2 and the second cable segment b3 can be pulled simultaneously to achieve traction of the load bearing cable segment b 1.
In this embodiment, a receiving opening d13 is formed on one side of the two side wall tubes d1 close to the adjusting plate a4, a transfer piece d2 capable of rotating vertically is sleeved at the clamping opening d12 of the two side wall tubes, a first guide wheel d21 and a second guide wheel d22 are arranged on the transfer piece d2, the first cable segment b2 and the second cable segment b3 respectively pass through the receiving opening d13 of the two side wall tubes d1 and then pass through the clamping opening d12, clamping balls b5 are respectively arranged at the ends of the first cable segment b2 and the second cable segment b3, and the two clamping balls b5 are respectively clamped between the first guide wheel d21 and the second guide wheel d22 of the two transfer pieces d2, so that a user can conveniently pull the first cable segment b2 and the second cable segment b 3.
In the above description, "vertically rotate" means rotate about a vertical axis, and "horizontally rotate" means rotate about a horizontal axis.
Although the present disclosure is described above, the scope of protection of the present disclosure is not limited thereto. Various changes and modifications may be made by one skilled in the art without departing from the spirit and scope of the disclosure, and these changes and modifications will fall within the scope of the invention.