WO2017014535A1 - Dispositif de réglage de poignée et sac de voyage comprenant ce dernier - Google Patents

Dispositif de réglage de poignée et sac de voyage comprenant ce dernier Download PDF

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Publication number
WO2017014535A1
WO2017014535A1 PCT/KR2016/007852 KR2016007852W WO2017014535A1 WO 2017014535 A1 WO2017014535 A1 WO 2017014535A1 KR 2016007852 W KR2016007852 W KR 2016007852W WO 2017014535 A1 WO2017014535 A1 WO 2017014535A1
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WO
WIPO (PCT)
Prior art keywords
rod
locking
point
lower rod
handle
Prior art date
Application number
PCT/KR2016/007852
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English (en)
Korean (ko)
Inventor
권형주
Original Assignee
주식회사 캐리맥스통상
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Application filed by 주식회사 캐리맥스통상 filed Critical 주식회사 캐리맥스통상
Publication of WO2017014535A1 publication Critical patent/WO2017014535A1/fr

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    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45CPURSES; LUGGAGE; HAND CARRIED BAGS
    • A45C5/00Rigid or semi-rigid luggage
    • A45C5/04Trunks; Travelling baskets
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45CPURSES; LUGGAGE; HAND CARRIED BAGS
    • A45C13/00Details; Accessories
    • A45C13/26Special adaptations of handles

Definitions

  • the present invention relates to a handle adjusting device and a travel bag including the same, and more specifically, a travel bag that is stored or accommodated to carry goods, or used in combination with a cart that is accommodated, mounted or seated to carry goods It relates to a handle adjusting device that can adjust the handle as it is and a travel bag comprising the same.
  • wheels and handles are used in combination so as to carry heavy loads more easily, and the handles are made of a variable shape so that they can be used more conveniently.
  • Traveling bag having a variable length of the handle the handle is made to be pulled out against the bag in a state in which the handle is coupled to one side of the bag, so that the handle can be fixed in the pulled out state.
  • the overall length of the handle pulled out from the bag it is generally made to be adjusted in two or three steps, so as to meet a variety of use conditions.
  • Korean Patent No. 0314167 discloses a "height adjusting device for a bag handle.”
  • the height adjustment device for a handle for a bag is an inner pipe in which an inner pipe installed at an upper portion of a bowling bag and a travel bag having wheels installed at a lower portion thereof is movable in an outer pipe.
  • a height adjustment device for a handle for a bag in which the height of the handle is adjusted by moving and stopping, wherein the elastic member is provided between the release member, the release member, and the handle to be movable within the handle to provide elastic force to the release member.
  • the first elastic member is disposed in the inner pipe and the upper end is connected to both ends of the release member, respectively, and the power transmission wire is moved in the longitudinal direction by the release member, respectively connected to the lower end of the power transmission wire and fixed to one side
  • the lower part of the inner pipe is built by the built-in fixing member and the fixing member
  • the support body is inserted and fixed at each end and the guide hole is formed on one side, the support body is movable to the guide hole of the support body, respectively, and one or two or more inclined protrusions are formed at the front end of the inner pipe by the second elastic member.
  • Protruding members each projecting to the outside through a hole formed in the lower side of the lower portion, and fixed or unfixed by the fixing member, and are fixed to the one side of the inner side of the outer pipe in the longitudinal direction, respectively, and formed irregularities on one side to form an inclined protrusion of the projecting member It is made to be made of a strip concave-convex member in contact with, and by this it is described that the height of the handle can be adjusted in various ways can be used according to the body height or physical conditions.
  • a device for adjusting the length (height) of the handle is mounted to be pulled in and pulled out from one side of the luggage, and for this purpose, the handle adjusting device is mounted on the bottom of one side of the inside of the luggage. Since it is generally formed to extend from the upper part to the upper part, it takes up a lot of installation space, so there is a problem in that the space for storing luggage inside the travel bag becomes smaller.
  • the conventional knob adjusting device including the above-described Korea Patent Registration, so that the direction of the handle is formed in the horizontal direction when the height of the handle is adjusted, to prevent the user's wrist from being bent in using the handle.
  • the conventional knob adjusting device including the above-described Korea Patent Registration, so that the direction of the handle is formed in the horizontal direction when the height of the handle is adjusted, to prevent the user's wrist from being bent in using the handle.
  • there is a problem that continuous use in this state will inevitably cause inconvenience.
  • the user can adjust the direction of formation of the handle in any desired direction (angle)
  • the structure for adjusting the handle is simple to improve the durability
  • the handle can minimize the overall volume It provides a control device and a travel bag including the same.
  • the object, the combination is fixed to the main body is stored, accommodated, mounted or seated and the wheel is formed on one side that needs to be transported;
  • a first lower rod coupled directly or indirectly to the assembly at a first point, the first point being laterally movable and rotating about the first point;
  • a second lower rod coupled directly or indirectly to the assembly at a second point, the second point being laterally movable, rotating about the second point, and intersecting the first lower rod;
  • a second upper rod which is elastically coupled in the second lower rod in a longitudinal direction thereof;
  • a handle rotatably coupled to the first upper rod at a third point, and rotatably coupled to the second upper rod at a fourth point, wherein the forming direction of the handle is variable. Achieved by an adjusting device.
  • the combination is provided with a guide rail formed along the horizontal direction, the first point and the second point may be made to move in the opposite direction along the guide rail.
  • first lower rod a first elastic unit for applying an elastic force to approach the second point toward the second point
  • second lower rod the second point is the first point
  • the second elastic unit exerting an elastic force to approach the point can be coupled directly or indirectly.
  • the handle is provided with a first locking protrusion formed adjacent to the third point and the second locking protrusion formed adjacent to the fourth point, and the combination includes: a first locking projection on which the first locking protrusion is caught;
  • the second locking projection is provided with the second locking projection, and the first locking projection and the second locking projection are caught in the first locking projection and the second locking projection, respectively, the first lower rod and the first upper rod.
  • the entire length of and the total length of the second lower rod and the second upper rod may be made of the shortest length, respectively.
  • an accommodation space is provided inside the assembly, and the first lower rod, the second lower rod, and the first locking protrusion and the second locking protrusion are caught by the first locking jaw and the second locking jaw, respectively.
  • the upper rod and the second upper rod may be accommodated in the accommodation space.
  • each of the first lower rod and the second lower rod may have a length shorter than the entire length of the guide rail and longer than half of the entire length of the guide rail.
  • first lower rod and the second lower rod may have a pipe shape, and each of the first upper rod and the second upper rod may be inserted into each of the first lower rod and the second lower rod.
  • the handle adjusting device includes a first locking device for fixing the first lower rod and the first upper rod to each other; And a second locking device for fixing the second lower rod and the second upper rod to each other, wherein the first locking device is formed to be elongated in the longitudinal direction of the first upper rod and reciprocates along the longitudinal direction.
  • a second guide rod is formed long along the, reciprocating in the longitudinal direction; A second lever rotating according to the movement of the second guide rod; A second locking protrusion inserted into or withdrawn from the second locking hole of the second lower rod in cooperation with the second lever; And a second locking elastic unit for elastically supporting the second locking protrusion in a direction in which the second locking protrusion is inserted into the second locking hole.
  • the handle may include a first push rod protruding toward the top head of the first guide rod, a second push rod protruding toward the top head of the second guide rod, and a push button protruding upward of the handle.
  • Push frame And a push elastic unit for elastically supporting the push frame in a direction in which the push button protrudes.
  • the handle adjusting device in addition, the handle adjusting device according to the present invention, the first rotating body coupled to the outer peripheral surface of the first lower rod; And a second rotor coupled to an outer circumferential surface of the second lower rod and rotatably coupled to the first rotor.
  • the object is also achieved by a travel bag comprising the above-described handle adjusting device.
  • the forming direction of the handle is variable to maximize the ease of use, it is possible to provide a travel bag that can expand the internal space by minimizing the area occupied by the handle adjusting device.
  • FIG. 1 is a perspective view of a travel bag according to an embodiment of the present invention
  • FIG 2 is an exploded perspective view showing the knob adjustment device shown in Figure 1
  • FIG. 3 is a cross-sectional view showing the knob adjustment device shown in FIG.
  • FIG. 4 is a view showing an operating state of the knob adjusting device shown in FIG.
  • FIG. 5 is an exploded view showing some components in a knob adjusting device according to another embodiment of the present invention.
  • FIG. 6 is a cross-sectional view showing a knob adjusting device according to another embodiment of the present invention.
  • handle adjustment device 2 travel bag
  • first engaging hole 30 second lower rod
  • first jamming projection 62 second jamming projection
  • FIG. 1 is a perspective view of a travel bag 2 according to an embodiment of the present invention
  • Figure 2 is an exploded perspective view showing a handle adjusting device 1 shown in Figure 1
  • Figure 3 is a handle shown in Figure 1 4 is a cross-sectional view of the adjusting device 1
  • FIG. 4 is a view showing an operating state of the knob adjusting device 1 shown in FIG.
  • the knob adjusting device 1 is used in combination with a device used to easily carry an object, such as a suitcase (carrier), a cart, or the like.
  • the handle adjuster 1 When the handle adjuster 1 according to the present invention is used in combination with the travel bag 2, the handle adjuster 1 is coupled to the body 3 of the travel bag 2, wherein the body 3 is Objects that need to be transported are stored or housed. That is, the main body 3 is made of a form that can be opened and closed like a normal travel bag 2 so as to store an object therein.
  • the handle adjusting device 1 When the handle adjusting device 1 according to the present invention is used in conjunction with a cart, the handle adjusting device 1 is coupled to the body of the cart, wherein the body of the cart may be formed in the form of a basket with the upper side opened, or It can be made of a structure that can be placed on top of the simple frame form.
  • the body 3 described in the present invention may be made in various forms in the form of a bag, basket or frame, and at least one or more wheels may be coupled to the body for easy movement.
  • the handle adjusting device 1 according to the present invention is used in combination with the travel bag 2, it is preferable that four wheels are attached to the main body.
  • the handle adjusting device 1 according to the present invention will be described on the basis of the case used in combination with the travel bag 2, and the body 3 is, of course, made of a bag shape.
  • the wheel is located at the bottom as a means for contacting the ground, the handle 60 is to be drawn out toward the upper direction opposite to the wheel, so the travel bag so that the portion of the handle 60 is upward (2) Set up and down direction based on this upright position and explain.
  • Handle adjusting apparatus 1 is a combination 10, the first lower rod 20, the second lower rod 30, the first upper rod 40, the second upper rod 50 and the handle ( 60).
  • the handle adjusting device 1 may include a first elastic unit 70 and the second elastic unit 80.
  • the assembly 10 is fixedly coupled to the body of the travel bag 2, and serves to mediate the handle adjusting device 1 and the body.
  • the combination 10 may be coupled to the main body adjacent to the rear upper end of the travel bag 2, and the first lower rod 20, the second lower rod 30, the first upper rod 40, the second upper portion It serves to support the rod 50 and the handle 60 and also serves as a space in which such means are stored.
  • the assembly 10 is formed in a case shape and includes an accommodation space 14 therein, and is formed in an upwardly open shape.
  • the guide rail 11 is fixedly coupled to the inside of the assembly 10, and the guide rail 11 is elongated along the horizontal direction.
  • the guide rail 11 is a means for guiding while constraining the first lower rod 20 and the second lower rod 30 to move only in a predetermined direction, and the constrained point can move smoothly in the horizontal direction.
  • Guide rail 11 in the handle adjusting device 1 according to the present invention can be variously modified to achieve this effect.
  • the guide rail 11 may include an upper rail 11a and a lower rail 11b arranged up and down, wherein the upper rail 11a and the lower portion The interval of the rail 11b is constant, and the 2nd of the 1st point P1 of the 1st lower rail 11b and the 2nd lower rail 11b between this upper rail 11a and the lower rail 11b.
  • the point P2 may be interposed to slide the horizontal direction.
  • the first lower rod 20 may be in the form of a rod or a pipe, and the overall shape of the first lower rod 20 has a straight shape.
  • the second lower rod 30 has a symmetrical shape with the first lower rod 20, and more preferably, has a rotational symmetry (rotation symmetry based on the rotation axis in the vertical direction).
  • the first lower rod 20 and the second lower rod 30 are preferably made of a pipe shape.
  • the first lower fastening hole 21 may be repeatedly formed in the first lower rod 20 in the longitudinal direction thereof, and the second lower fastening hole 30 may also be formed in the second lower rod 30. 31) may be repeated.
  • each of the first lower rod 20 and the second lower rod 30 is directly coupled to the assembly 10 (to the guide rail 11 inside the assembly 10). Or indirectly coupled to the conjugate 10 via other means.
  • the former case is shown in FIGS. 2 to 5.
  • the first point P1 of the first lower rod 20 is coupled to the assembly 10
  • the second point P2 of the second lower rod 30 is coupled to the assembly 10.
  • FIG. 6 a first auxiliary lower rod 130 and a second auxiliary lower rod 140 similar to the first lower rod 20 and the second lower rod 30 may be further provided.
  • the first lower rod 20 is coupled to the assembly 10 via the first auxiliary lower rod 130
  • the second lower rod 30 is coupled to the assembly 10 via the second auxiliary lower rod 140. Can be combined.
  • the first auxiliary lower rod 130 is rotatably coupled to the first lower rod 20 and the assembly 10 (the guide rail 11), respectively, and the second auxiliary lower rod 140 is connected to the second lower rod ( 30 and rotatably coupled to the coupling body 10 (guide rails 11), respectively, and the second auxiliary lower rod 140 and the point where the first auxiliary lower rod 130 is coupled to the guide rail 11 are
  • the point coupled to the guide rail 11 slides along the longitudinal direction (left and right directions) of the guide rail 11.
  • the first lower rod 20 and the second lower rod 30 will be described based on the form directly coupled to the combination 10, and in this case, the knob adjusting device.
  • the knob adjusting device There is an advantage that the total volume of (1) can be reduced.
  • the first point P1 of the first lower rod 20 is formed in the form of a protrusion, and in particular, has a cylindrical or cylindrical protrusion.
  • the first point P1 is interposed between the upper rail 11a and the lower rail 11b to slide in the horizontal direction.
  • the first point P1 is constrained by the guide rail 11 so as not to move in a direction other than the horizontal direction (the longitudinal direction of the guide rail 11).
  • the first lower rod 20 is configured to rotate with the first point P1 as the rotation axis. However, the rotation of the first lower rod 20 is made with the movement of the first point P1 (moving along the guide rail 11).
  • the second point P2 of the second lower rod 30 is also formed in the form of a protrusion, in particular in the form of a cylindrical or cylindrical protrusion.
  • the second point P2 is interposed between the upper rail 11a and the lower rail 11b to slide in the horizontal direction.
  • the second point P2 is constrained by the guide rail 11 so as not to move in a direction other than the horizontal direction.
  • the second lower rod 30 is configured to rotate with the second point P2 as the rotation axis. However, the rotation of the second lower rod 30 is made with the movement of the second point P2 (moving along the guide rail 11).
  • the first upper rod 40 may be in the form of a rod or pipe, the overall shape is a straight shape.
  • the first upper rod 40 is preferably formed in a pipe shape, and is inserted into the first lower rod 20 and is elastically coupled along its longitudinal direction.
  • the outer circumferential surface shape and size of the first upper rod 40 preferably correspond to the inner circumferential surface shape and the size of the first lower rod 20.
  • the total length of the combined first lower rod 20 and the first upper rod 40 is varied.
  • the straight line distance L1 between the point P1 and the third point P3 is represented by the total length of the first lower rod 20 and the first upper rod 40.
  • the second upper rod 50 may be in the form of a rod or a pipe, and the overall shape is a straight line.
  • the second upper rod 50 is preferably formed in a pipe shape, and is inserted into the second lower rod 30 to be elastically coupled along its longitudinal direction.
  • the outer circumferential surface shape and size of the second upper rod 50 preferably correspond to the inner circumferential surface shape and the size of the second lower rod 30.
  • the straight line distance (called L2) between the point P2 and the fourth point P4 is expressed as the total length of the second lower rod 30 and the second upper rod 50.
  • the handle 60 is a part made to be gripped by the user, and is generally formed in a long cylindrical shape in the left and right directions, and is coupled to each of the first upper rod 40 and the second upper rod 50 at the bottom of each of the left and right sides. It is made of a protruding form. In this protruding portion, the third point P3 and the fourth point P4 are located.
  • the handle 60 is rotatably coupled with the first upper rod 40 at the third point P3 and rotatably coupled with the second upper rod 50 at the fourth point.
  • the rotation axis of the third point P3 and the rotation axis of the fourth point P4 are parallel to each other.
  • the handle 60 forming line When the virtual line connecting the third point P3 and the fourth point P4 is called the handle 60 forming line (the direction in which the handle 60 is formed), the handle 60 forming line is in a horizontal direction. Can be made according to (see Fig. 4 (a), (b)), and can also be inclined horizontally (see Fig. 4 (c), (d)).
  • the forming direction may be horizontal or any direction other than horizontal.
  • FIG. 4 (a) and (b) show the case where L1 and L2 are the same, and FIG. 4 (c) and (d) shows the case where L1 and L2 are different from each other.
  • the handle 60 can be formed in a horizontal direction, as well as can be adjusted at any of various angles other than the horizontal, the user at the various positions 60 Even if gripping the wrist can be prevented from bending, and also easy to move in the grip (60) state can maximize the ease of use.
  • the first elastic unit 70 is coupled to the first lower rod 20 to apply an elastic force to the first lower rod 20, specifically, the elastic force such that the first point P1 approaches the second point P2.
  • the first elastic unit 70 may be formed in the form of a spring, and may be formed in the form of a common spring as shown in FIG. 3.
  • the first elastic unit 70 is made of a spring, one end of the first elastic unit 70 is coupled to the first point (P1) and the other end is coupled to the guide rail 11 to pull both points together Elastic force to act.
  • the second elastic unit 80 is coupled to the second lower rod 30 to apply an elastic force to the second lower rod 30, and apply an elastic force to approach the second point P2 toward the first point P1.
  • the second elastic unit 80 may also be formed in a spring-like form as in the first elastic unit 70, and may be made of a spring as shown in FIG. 3.
  • the second elastic unit 80 is formed of a spring, one end of the second elastic unit 80 may be coupled to the second point P2, and the other end may be coupled to the guide rail 11.
  • the handle 60 is provided with a first locking protrusion 61 and a second locking protrusion 62, and the coupling 10 has a first locking projection 12 and a first locking protrusion. 2 engaging jaw 13 may be provided.
  • the first locking protrusion 61 is coupled to the handle 60 adjacent to the third point P3, and one end thereof protrudes to be caught by the corner portion of the first locking jaw 12.
  • the first locking projection 61 is preferably formed on the handle 60 in an elastically deformable form, and elastic deformation is performed when the free end portion is caught or detached from the first locking jaw 12.
  • the surface touching the first locking projection 12 in the first locking projection 61 is preferably formed of an inclined surface forming an inclination direction and inclination, and accordingly the external force (the first locking projection 61 is the first locking projection ( 12) the elastic deformation of the first locking projection (61) is made smoothly upon the action of the external force that is caught or acts to release the locking.
  • the second locking protrusion 62 is coupled to the handle 60 adjacent to the fourth point P4, and one end thereof protrudes to be caught by the second locking jaw 13.
  • the second locking projection 62 is preferably formed on the handle 60 in a form that is elastically deformable, such as a leaf spring, and is elastically deformed when the second locking projection 13 is caught or detached from the second locking projection 13.
  • the surface touching the second locking projection 13 in the second locking projection 62 is preferably formed of an inclined surface forming an inclination direction and inclination, and accordingly, the external force (the second locking projection 62 is the second locking projection ( 13) the elastic deformation of the second locking projection 62 is made smoothly upon the action of the external force to be caught or released.
  • the second locking protrusion 62 may be formed in a symmetrical form with the first locking protrusion 61.
  • Each of the first locking jaw 12 and the second locking jaw 13 may form a part of an edge of the inlet opened to the upper side of the accommodation space 14 in the assembly 10.
  • the first locking projection 61 and the second locking projection 62 are caught in the first locking jaw 12 and the second locking jaw 13, respectively,
  • the total length of the first lower rod 20 and the first upper rod 40 and the entire length of the second lower rod 30 and the second upper rod 50 become the shortest length, respectively.
  • the first lower rod 20, the second lower rod 30, the first upper rod 40, and the second upper rod 50 are completely accommodated in the accommodation space 14, and the assembly 10 is provided. Only the handle 60 is exposed upward.
  • each of the first lower rod 20 and the second lower rod 30, the length of the guide rail 11 is shorter than the total length of the guide rail 11 It is preferably made to be longer than 1/2 of the total length, the first point (P1) and the second point (P2) in the state inserted into the receiving space 14 of the assembly 10 is arranged to be inclined downward It is preferable to be.
  • the total volume of the knob adjusting device 1 is minimized while the first locking protrusion 61 and the second locking protrusion 62 are locked to the first locking jaw 12 and the second locking jaw 13, respectively.
  • the handle 60 may be naturally drawn upwards, thereby making it easier to use the handle 60.
  • the knob adjusting device 1 may further include a first locking device 90 and a second locking device 100, wherein the handle 60 includes a push frame 63 and a push elastic unit ( 64).
  • the first locking device 90 includes a first guide rod 91, a first lever 92, a first locking protrusion 93, and a first locking elastic unit 94.
  • the second locking device 100 includes a second guide rod 101, a second lever 102, a second locking protrusion 103, and a second locking elastic unit 104.
  • Each of the second guide rod 101, the second lever 102, the second locking protrusion 103, and the second locking elastic unit 104 of the second locking device 100 may be formed of the first locking device 90.
  • the description of the second locking device 100 will be replaced with the description of the first locking device 90, and the description of the second locking hole 31 of the second lower rod 30 will also be described. It replaces with the description about the 1st latching hole 21 of the rod 20. As shown in FIG.
  • the first guide rod 91 is formed long in the longitudinal direction of the first upper rod 40 and reciprocates along the longitudinal direction.
  • the first guide rod 91 is formed in a long rod shape and reciprocates along the longitudinal direction of the first upper rod 40 in a state of being inserted into the first upper rod 40.
  • the head 91a of the upper side protrudes to the outside of the first guide rod 91, and the head 91a is pushed downward to form a first upper portion. It moves on the rod 40, and the lower end (distant from the handle 60) is connected with the first lever 92.
  • the first lever 92 is rotatably coupled in the first upper rod 40, and one end thereof is connected to the first guide rod 91 to rotate in accordance with the movement of the first guide rod 91.
  • the first lever 92 is formed in a shape bent around the rotation axis, and one end (part connected to the first guide rod 91) is generally moved along the longitudinal direction of the first upper rod 40 ( Strictly rotated about the axis of rotation, the other end (part connected with the first locking projection 93) moves along the transverse direction of the first upper rod 40 (strictly about the axis of rotation) Rotates).
  • the first locking protrusion 93 is formed to move along the transverse direction of the first upper rod 40, and one end of the first upper rod 40 is inserted into the first locking hole 21 of the first lower rod 20. 40 is protruded outward. The first locking protrusion 93 moves in conjunction with the rotation of the first lever 92.
  • the first locking elastic unit 94 may have a shape such as a coil spring, and elastically supports the first locking protrusion 93 in a direction in which the first locking protrusion 93 is inserted into the first locking hole 21. . That is, in a state in which no external force is applied, the first locking protrusion 93 is pressed outward in the lateral direction of the first upper rod 40 by the elastic force of the first locking elastic unit 94, and the first locking protrusion If 93 is in the state where the first locking hole 21 is located, it is inserted into the first locking hole 21.
  • the first upper rod 40 and the first lower rod 20 are fixed to each other (the locking is performed by the first locking device 90), and the first upper rod 40 and the first lower rod 20 are fixed to each other. The entire length of the lower rod 20 is maintained.
  • the operation may be performed as follows.
  • the head 91a of the first guide rod 91 is pushed downward to move the first guide rod 91. Accordingly, the first lever 92 connected to the first guide rod 91 rotates, and the first locking protrusion 93 moves in the horizontal direction of the first upper rod 40 in association with the rotation of the first lever 92. It will move inwards.
  • the first locking projection 93 is urged to the outside of the first upper rod 40 laterally by the elastic force of the first locking elastic unit 94. to be.
  • Push frame 63 is provided in the handle 60 and made to move in the vertical direction.
  • the push frame 63 includes a first push rod 63a, a second push rod 63b, and a push button 63c.
  • the first push rod 63a protrudes toward the upper head 91a of the first guide rod 91, and lowers the head 91a of the first guide rod 91 when the push frame 63 moves downward. Pressurized by.
  • the second push rod 63b protrudes toward the upper head 101a of the second guide rod 101, and lowers the head 101a of the second guide rod 101 when the push frame 63 moves downward. Pressurized by.
  • the second push rod 63b is preferably formed in a symmetrical form with the first push rod 63a.
  • the push button 63c protrudes to the upper side of the handle 60, so that the user can press it.
  • the push elastic unit 64 may be formed of an elastic body such as a coil spring and a leaf spring, and elastically supports the push frame 63 in a direction in which the push button 63c protrudes upward from the handle 60. That is, the push elastic unit 64 allows the push frame 63 to return upward when the external force is removed after the push frame 63 is pressed downward by the external force.
  • FIG 5 is an exploded view showing some components of the knob adjusting device 1 according to another embodiment of the present invention.
  • the knob adjusting device 1 may further include a first rotating body 110 and a second rotating body 120.
  • the first rotating body 110 is coupled to the outer circumferential surface of the first lower rod 20, and the second rotating body 120 is coupled to the outer circumferential surface of the second lower rod 30.
  • the first rotating body 110 may be movably coupled along the longitudinal direction of the first lower rod 20, and the second rotating body 120 may move along the longitudinal direction of the second lower rod 30. Can be combined.
  • the first and second rotors 110 and 120 are rotatably coupled to each other.
  • the rotation axis of the 1st rotating body 110 and the 2nd rotating body 120 is made in parallel with the rotating shaft of the 1st point P1 and the 2nd point P2.
  • the first lower rod 20 supports the first rotating body 110 and the second rotating body 120 so that the crossing angle between the first lower rod 20 and the second lower rod 30 is freely deformed.
  • the second lower rod 30 and the second lower rod 30 are prevented from being separated from each other and the first lower rod 20 and the second lower rod 30 are prevented from moving in an unintended direction.
  • the forming direction of the handle 60 is variable to maximize the ease of use, and to minimize the area occupied by the handle adjusting device 1 to expand the internal space ( 2) can be provided.
  • the forming direction of the handle can be made to maximize the ease of use, to minimize the area occupied by the handle adjusting device to expand the interior space
  • the possibility of commercially available or commercially available devices as well as the use of the related technology as well as the use of the related technology is not only sufficient, but also practically evident. This is an invention.

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Abstract

L'invention concerne un dispositif de réglage de poignée selon la présente invention comprenant: un corps d'accouplement fixé à un corps, dans lequel un objet devant être porté est stocké, contenu, entouré, ou placé, et qui comprend une roue formée sur un côté de ce dernier; une première tige inférieure, qui est accouplée directement ou indirectement au corps d'accouplement au niveau d'un premier point, le premier point étant mobile latéralement, et qui tourne autour du premier point; une seconde tige inférieure, qui est accouplée directement ou indirectement au corps d'accouplement au niveau d'un deuxième point, le deuxième point étant mobile latéralement, qui tourne autour du deuxième point et qui croise la première tige inférieure; une première tige supérieure accouplée de sorte que cette dernière puisse s'étendre à partir de la première tige inférieure le long de la direction longitudinale de cette dernière ; une seconde tige supérieure accouplée de sorte que cette dernière puisse s'étendre à partir de la seconde tige inférieure le long de la direction longitudinale de cette dernière; et une poignée, qui est accouplée en rotation à la première tige supérieure au niveau d'un troisième point, et qui est accouplée en rotation à la seconde tige supérieure au niveau d'un quatrième point, la direction de formation de la poignée étant variable.
PCT/KR2016/007852 2015-07-22 2016-07-19 Dispositif de réglage de poignée et sac de voyage comprenant ce dernier WO2017014535A1 (fr)

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0720445B2 (ja) * 1985-07-03 1995-03-08 松下電器産業株式会社 可搬機器用ハンドル装置
US7270223B2 (en) * 2004-10-13 2007-09-18 Travelpro International, Inc. Luggage handle system with pivot grip
JP2009178455A (ja) * 2008-01-31 2009-08-13 Vanguard Co Ltd スーツケース
KR20090105784A (ko) * 2008-04-01 2009-10-07 주식회사 캐리맥스통상 접이식 손잡이 및 이를 구비한 가방
JP2015084980A (ja) * 2013-10-31 2015-05-07 エンドー鞄株式会社 キャリーバッグ

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100314167B1 (ko) 1999-09-13 2001-11-23 배성환 가방용 손잡이의 높이조정장치

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0720445B2 (ja) * 1985-07-03 1995-03-08 松下電器産業株式会社 可搬機器用ハンドル装置
US7270223B2 (en) * 2004-10-13 2007-09-18 Travelpro International, Inc. Luggage handle system with pivot grip
JP2009178455A (ja) * 2008-01-31 2009-08-13 Vanguard Co Ltd スーツケース
KR20090105784A (ko) * 2008-04-01 2009-10-07 주식회사 캐리맥스통상 접이식 손잡이 및 이를 구비한 가방
JP2015084980A (ja) * 2013-10-31 2015-05-07 エンドー鞄株式会社 キャリーバッグ

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