Transport dolly

By positioning the brake pedal rearward and overlapping it with the cart body, the transport cart minimizes brake pedal damage during use.

JP2025168566APending Publication Date: 2025-11-07GOP KK
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Patent Information

Application Number
JP2025148575
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-09-08
Publication Date
2025-11-07

AI Technical Summary

Technical Problem

In transport carts, the brake pedal protrudes and is prone to damage during normal use, especially when turning.

Method used

The brake pedal is positioned rearward of the wheels and overlaps with the cart body in a plan view, preventing it from being hit by obstacles.

Benefits of technology

The design reduces the likelihood of brake pedal damage by ensuring it does not protrude and overlaps with the cart body, enhancing durability.

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Abstract

To provide a transport dolly which makes a brake pedal less likely to be damaged.SOLUTION: A transport dolly of the invention includes: a dolly body 110; and casters 121A arranged in at least four corners of the dolly body 110. The caster 121A includes: a support part 124; a wheel 123 rotatably supported by the support part 124; and a brake pedal 127 for fixing rotation of the wheel 123. The brake pedal 127 has an operation part 128 which is operated by stepping with a foot. The operation part 128 is located at the rear relative to the wheel 123. When the wheel 123 oriented in an anteroposterior direction is viewed in a plan view, the operation part 128 overlaps with the dolly body 110.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] The present invention relates to a transport cart. [Background technology]

[0002] Conventionally, by improving the visibility of the brake pedal of a cart, a user can instantly see the brake pedal and immediately operate the brake to brake the cart. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Publication No. 2019-186445 Summary of the Invention [Problem to be solved by the invention]

[0004] However, in such transport carts, in order to increase the visibility of the brake pedal, only the brake pedal protrudes from the cart body, which can cause the brake pedal to be hit and damaged during normal use, for example, when the transport cart is turning.

[0005] The present invention has been made in consideration of the above-mentioned problems, and has an object to provide a transport cart in which the brake pedal is less likely to be damaged. [Means for solving the problem]

[0006] The transport cart of the present invention is a transport cart comprising a cart main body and casters arranged at at least four corners of the cart main body, wherein the casters have support parts, wheels rotatably supported by the support parts, and brake pedals for fixing the rotation of the wheels, and the brake pedals have operating parts that are depressed with the foot, the operating parts being located rearward of the wheels, and when viewed in a plan view with the wheels facing forward and backward, the operating parts overlap with the cart main body. [Effects of the Invention]

[0007] According to the present invention, a transport cart can be provided in which the brake pedal is less likely to be damaged. [Brief explanation of the drawings]

[0008] [Figure 1] FIG. 1 is a perspective view of a transport cart according to a first embodiment. [Figure 2] FIG. 2 is a bottom view of the transport cart of the first embodiment. [Figure 3] FIG. 2 is a plan view of the transport cart of the first embodiment. [Figure 4] FIG. 2 is a rear view of the transport cart of the first embodiment. [Figure 5] FIG. 2 is a side view of the transport cart of the first embodiment. [Figure 6] FIG. 3 is an enlarged view of a caster of the transport cart of the first embodiment. [Figure 7] FIG. 10 is a perspective view of a transport cart according to a second embodiment. [Figure 8] FIG. 10 is a bottom view of the transport cart of the second embodiment. [Figure 9] FIG. 10 is a plan view of the transport cart of the second embodiment. [Figure 10] FIG. 10 is a rear view of the transport cart of the second embodiment. [Figure 11] FIG. 10 is a side view of the transport cart according to the second embodiment. [Figure 12] FIG. 10 is an enlarged view of a caster of the transport cart of the second embodiment. [Figure 13] FIG. 10 is a perspective view of a transport cart according to a third embodiment. [Figure 14] FIG. 10 is a bottom view of the transport cart of the third embodiment. [Figure 15] FIG. 10 is a plan view of the transport cart of the third embodiment. [Figure 16] FIG. 11 is a rear view of the transport cart according to the third embodiment. [Figure 17] FIG. 10 is a side view of the transport cart according to the third embodiment. [Figure 18] FIG. 10 is an enlarged view of a caster of the transport cart of the third embodiment. [Figure 19] 10A and 10B are diagrams illustrating an example of a configuration of a corner member according to a modified example. DETAILED DESCRIPTION OF THE INVENTION

[0009] The transport vehicle according to this embodiment will be described below with reference to the drawings. To facilitate the description, in each drawing, the upper side is indicated as Up, the lower side as Lo, the right side as Ri, the left side as Le, the front side as Fr, and the rear side as Rr, as necessary. However, the transport vehicle 100 can travel in any direction, forward, backward, leftward, or rightward, on the travel surface.

[0010] (First embodiment) Fig. 1 is a perspective view of the transport cart 100. Fig. 2 is a bottom view of the transport cart 100. Fig. 3 is a plan view of the transport cart 100. The transport cart 100 comprises a cart body 110, a running section 120, and a push member 130.

[0011] The carriage body 110 is configured by connecting multiple frame sections and the like, and is used to carry transported goods. In a plan view, the carriage body 110 is substantially rectangular, with the longitudinal direction being the front-to-rear direction and the transverse direction being the left-to-right direction. The carriage body 110 has a front frame section 111a, a rear frame section 111b, a right frame section 111c, a left frame section 111d, corner members 112, reinforcing frame sections (reinforcing sections) 115a to 115c, and a mounting section 117.

[0012] The front frame portion 111a, the rear frame portion 111b, the right frame portion 111c, and the left frame portion 111d constitute the outer shape of the bogie main body 110. The front frame portion 111a and the rear frame portion 111b correspond to an example of a pair of opposing frame portions. The right frame portion 111c and the left frame portion 111d correspond to an example of a pair of opposing frame portions. The front frame portion 111a, the rear frame portion 111b, the right frame portion 111c, and the left frame portion 111d can be, for example, rectangular hollow pipes made of aluminum alloy.

[0013] Fig. 4 is a rear view of the transport cart 100. Fig. 5 is a side view of the transport cart 100. Corner member 112 is made of, for example, an aluminum alloy formed by extrusion molding. Corner member 112 has an insertion hole 113 that opens to the top and a stopper portion 114 that closes the bottom. A push member 130 can be inserted into insertion hole 113 of corner member 112. The lower end of push member 130 inserted into insertion hole 113 is supported by stopper portion 114.

[0014] Here, corner member 112 is generally trapezoidal in side and rear views, with the height of the portion where insertion hole 113 is located being greater than the height of the portion where it is joined to the frame portion. As seen in Figures 4 and 5, insertion hole 113 is deeper than the frame portions that form the outer shape of cart body 110. In other words, stopper portion 114 is located at a position lower than the bottom end of cart body 110, and supports push member 130.

[0015] The front frame portion 111a, the rear frame portion 111b, the right frame portion 111c, and the left frame portion 111d are joined at their four corners by corner members 112 to form a rectangular four-sided frame. The inside of the frame is reinforced by a plurality of reinforcing frame portions 115a, 115b, and 115c that are butted together in the front-rear and left-right directions and joined with screws, rivets, welding, or the like. The reinforcing frame portions 115a, 115b, and 115c may be, for example, rectangular hollow pipes made of aluminum alloy or plates with an uneven cross section. Here, by joining two reinforcing frame portions 115a, 115b that are long in the front-rear direction to twelve reinforcing frame portions 115c that are short in the left-right direction, a plurality of rectangular spaces 116 are formed that are divided into three rows in the front-rear direction and five rows in the left-right direction in a plan view. Furthermore, the carriage body 110 has a mounting portion 117 attached to the upper portion of each of the spaces 116 that are not blocked by mounting members 122A and 122B (described later). The mounting portion 117 is a flat metal plate on which an object to be transported is placed. The mounting portion 117 is connected to each frame portion and each reinforcing frame portion with rivets or screws. When the same carriages 100 are stacked, portions of casters 121A and 121B (described later) of the upper carriage 100 fit into the spaces 116 that are not blocked by the mounting portion 117, i.e., the spaces 116 that are open at the top.

[0016] The running section 120 runs on a running surface while supporting the weight of the carriage body 110 and the transported object. The running unit 120 has a plurality of casters 121A, 121B. As shown in Fig. 2, the running unit 120 has six casters: four casters 121A arranged at the four corners of the carriage body 110 and two casters 121B arranged at the center in the front-to-rear direction and spaced apart on the left and right. The casters 121A, 121B are attached to the carriage body 110 via mounting members 122A, 122B connected to the respective frame portions and reinforcing frame portions in a manner that closes the space 116 from below. The casters 121A, 121B are rotatable about a rotation axis O1 that extends in the up-down direction.

[0017] Here, casters 121A located at the four corners are braked casters that can be braked or released in response to a user's operation. On the other hand, caster 121B located in the center is a brakeless caster. The configuration of caster 121A will be described below. Note that caster 121B is configured such that the brake function is omitted from caster 121A, and a detailed description thereof will be omitted.

[0018] 6 is an enlarged view of the caster 121A, in which the corner member 112 is indicated by a two-dot chain line. As shown in FIGS. 5 and 6, the caster 121A includes a wheel 123, a support portion 124, a brake pedal 127, and a swivel portion 129. The wheel 123 has a wheel portion with a built-in bearing and a tire portion fitted onto the outer periphery of the wheel portion.

[0019] The support portion 124 rotatably supports the wheel 123 via an axle. The support portion 124 has a fork member 125 that supports the wheel 123, and a pedal holding member 126 that holds the brake pedal 127 so that it can swing. Fork member 125 is formed, for example, by press-forming a steel plate. Fork member 125 is integrally formed with a pair of side walls located on both sides of wheel 123 and a circular top plate that connects the pair of side walls above wheel 123. The top plate is held rotatably by swivel part 129.

[0020] Pedal holding member 126 is formed, for example, by press-forming a steel plate. Pedal holding member 126 is located on both sides of wheel 123 and is integrally formed with a pair of side walls fixed to fork member 125 and a connecting plate connecting the pair of side walls at the top.

[0021] The brake pedal 127 fixes the rotation of the wheels 123. The brake pedal 127 is formed, for example, by press-forming a steel plate. The brake pedal 127 can swing up and down relative to the pedal holding member 126. The brake pedal 127 has an operating unit 128. The operating unit 128 is substantially plate-shaped, and is operated by the user's foot or the like to swing the brake pedal 127 up and down. The operating unit 128 is located rearward of the wheels 123, more specifically, rearward of the rear ends of the wheels 123, so that the user can easily operate it when the wheels 123 are facing in the front-to-rear direction.

[0022] When the brake is released, the brake pedal 127 is in a raised position. On the other hand, when the user operates the operating portion 128 of the brake pedal 127 by depressing it downward with their foot, the brake pedal 127 swings downward against the bias of the spring, as shown by the two-dot chain line in FIG. 6. As the brake pedal 127 moves, the brake pedal 127 directly or indirectly presses firmly against the outer circumferential surface of the wheel 123, preventing the wheel 123 from rotating and placing the brake in an applied state. Furthermore, the brake pedal 127 functions as a stopper because it is maintained in the applied state. The pivoting portion 129 allows the wheel 123, the support portion 124, and the brake pedal 127 to pivot.

[0023] Here, caster 121A has been described, but caster 121B has a configuration in which the brake-related members of caster 121A are omitted. That is, caster 121B has wheel 123, support portion 124, and swivel portion 129, but does not have brake pedal 127. Therefore, caster 121B can swivel about swivel axis O1 via the top plate of fork member 125, similar to caster 121A, but cannot be braked.

[0024] Casters 121A and 121B can be attached to cart body 110 by attaching swivel portions 129 of casters 121A and 121B configured in this manner to mounting members 122A and 122B at predetermined positions on cart body 110 with rivets or screws. The casters 121A and 121B are set at positions where the ground contact position of the wheels 123 and the rotation axis O1 are eccentric in a plan view. Therefore, the casters 121A and 121B rotate around the rotation axis O1 so that the wheels 123 are on the rear side relative to the front side, which is the direction of travel.

[0025] 2 and 6, when the rear caster 121A is viewed in a plan view with the wheel 123 facing the front-to-rear direction, the operating unit 128 is positioned so that it overlaps with the bogie main body 110. Specifically, when viewed in a plan view, the operating unit 128 is positioned so that it overlaps with the rear frame portion 111b of the bogie main body 110. In other words, the rear end (rear end of the operating unit 128) of the operating unit 128 of the brake pedal 127 is positioned forward of the rear end of the bogie main body 110, and therefore does not protrude from the rear end of the bogie main body 110. This makes it possible to prevent the brake pedal 127 from coming into contact with an obstacle and being damaged.

[0026] 2, the locus T1 of the component (brake pedal 127) of caster 121A that is the farthest from pivot axis O1 when caster 121A pivots around pivot axis O1 is shown by a dashed dotted line. The locus T1' of the component (wheel 123) of caster 121B that is the farthest from pivot axis O1 when caster 121B pivots around pivot axis O1 is shown by a dashed dotted line.

[0027] Here, the entire locus T1 is inside the bogie body 110 in a bottom view. In other words, when the caster 121A swivels, it overlaps with the bogie body 110 in a plan view regardless of the position of the caster 121A. In other words, the operating part 128 of the brake pedal 127 does not protrude from the bogie body 110, thereby preventing the brake pedal 127 from coming into contact with an obstacle and being damaged. On the other hand, the locus T1 does not overlap with the insertion hole 113 of the corner member 112 or the handrail member 130 inserted into the insertion hole 113. Note that the predetermined positions for attaching the mounting member 122A are the four corner positions of the bogie body 110 where the locus T1 follows the locus described above.

[0028] Furthermore, because caster 121B does not have a brake-related component, it may be located anywhere in the center of bogie main body 110, as shown in FIG. 2. However, caster 121B may have the same configuration as caster 121A. In this case, trajectory T1' when caster 121B is attached will be the same as trajectory T1 when caster 121A is attached. In other words, the predetermined position for attaching mounting member 122B is the center of bogie main body 110 such that when swiveling, whatever the position, it overlaps with bogie main body 110 in a plan view.

[0029] The push member 130 is a member that a user holds onto when moving the transport cart 100. The user moves the transport cart 100 by gripping the push member 130 with their hands and pushing or pulling it. The push member 130 is attached to the cart body 110 by inserting its lower end into the insertion hole 113 of the corner member 112. The transport cart 100 has four push members 130, which are inserted into the insertion holes 113 of the corner members 112. All four push members 130 have approximately the same configuration. However, the number of push members 130 is not limited to four; one, two, or three push members 130 may be attached. The push members 130 can be removed from the cart body 110 by pulling them out of the insertion holes 113 of the corner members 112.

[0030] The push member 130 has a main body member 131 as a main body portion, a protective member 133, and a reinforcing member 134. The main body member 131 is a rod-shaped or long, pipe-shaped member. The main body member 131 is made of, for example, an aluminum alloy and is formed by extrusion molding. The main body member 131 has a metallic color such as silver. The inside of the main body member 131 is reinforced in a cross shape to improve its strength.

[0031] The protective member 133 protects the user's hands from coming into contact with surrounding objects when the user grasps the push member 130. The protective member 133 also serves as an indicator of the maximum loading height when loading transported items. The protective member 133 is fixed to the upper side of the main body member 131 at a predetermined distance from the upper end with bolts, rivets, etc. The part of the push member 130 above the protective member 133 functions as a grip portion that the user grasps with their hands. The protective member 133 is disc-shaped and protrudes outward from the outer periphery of the main body member 131, and has a larger outer diameter than the main body member 131.

[0032] The reinforcing member 134 is fixed to the lower end of the main body member 131, specifically at a position close to the lower end, with bolts, rivets, etc. The reinforcing member 134 not only reinforces the strength of the main body member 131, but also suppresses rattle between the main body member 131 and the insertion hole 113 when the main body member 131 is inserted into the insertion hole 113 of the corner member 112. The reinforcing member 134 is made of, for example, an aluminum alloy and is formed by extrusion molding.

[0033] As described above, the transporter cart 100 of this embodiment is provided with the caster 121A that follows a locus T1 that overlaps with the cart main body 110 in a bottom view, regardless of the rotation position. In other words, when the transporter cart 100 is viewed in a plan view, the cart main body 110 and the operating part 128 of the brake pedal 127 overlap. Therefore, when the transporter cart 100 is moved, an obstacle may come into contact with the cart main body 110 before coming into contact with the operating part 128, thereby reducing contact between the operating part 128 and an obstacle that could cause damage to the operating part 128.

[0034] Furthermore, in the transport cart 100 of this embodiment, the locus T1 does not overlap the insertion hole 113 of the corner member 112 or the handle member 130 inserted into the insertion hole 112, so that the operating part 128 does not interfere with the push member 130, thereby improving the design freedom of the corner member 112. However, the locus T1 may also overlap the insertion hole 113 of the corner member 112 or the handle member 130 inserted into the insertion hole 112.

[0035] (Second embodiment) Fig. 7 is a perspective view of the transport cart 200. Fig. 8 is a bottom view of the transport cart 200. Fig. 9 is a plan view of the transport cart 200. Fig. 10 is a rear view of the transport cart 200. Note that the same components as those in the first embodiment are given the same reference numerals, and descriptions thereof will be omitted as appropriate. The running unit 220 has a plurality of casters 221A, 121B. As shown in Fig. 8, the running unit 220 has six casters: four casters 221A arranged at the four corners of the carriage body 110, and two casters 121B arranged at the center in the front-to-rear direction and spaced apart on the left and right. The caster 221A can rotate around a rotation axis O2 along the up-down direction.

[0036] Here, the casters 221A arranged at the four corners are braked casters that can be braked or released in response to an operation by the user.

[0037] As shown in FIGS. 11 and 12, the caster 221A includes a wheel 123, a support portion 224, a brake pedal 127, and a swivel portion 129.

[0038] The support portion 224 rotatably supports the wheel 123 via an axle. The support portion 224 has a fork member 225 that supports the wheel 123, and a pedal holding member 126 that holds the brake pedal 127 so that it can swing. Fork member 225 is formed, for example, by press-forming a steel plate. Fork member 225 is integrally formed with a pair of side walls located on both sides of wheel 123 and a circular top plate that connects the pair of side walls above wheel 123.

[0039] 8, the locus of the component (brake pedal 127) of caster 221A that is farthest from pivot axis O2 when caster 221A pivots around pivot axis O2 is shown by a dashed line as locus T2. Similarly, the locus of the part of wheel 123 that is farthest from pivot axis O2 is shown by a dashed line as locus T2'. For this reason, locus T2 is longer than locus T2'.

[0040] The swivel portions 229 of the casters 221A can be attached to the mounting members 222A at predetermined positions on the carriage body 110 with rivets or screws. Here, the predetermined position is a position where the caster 221A can rotate, and when the caster 221A is viewed in a planar view facing forward / backward or left / right, at least a portion of the wheel 123 and the operating unit 128 do not overlap with the cart main body 110. 11 and 12, when the transport cart 200 is viewed from the side, the pivot axis O2 and the pedal holding member 126 sandwich the fork member 225, and thus there is a certain distance l1 between them. Similarly, there is also a maximum distance l3 between the wheels 123. In this case, the size of the distance l1 can be adjusted to adjust the size of the distance l, which is the sum of the distance l2 between the pedal holding member 126 and the brake pedal 127 in a direction horizontal to the floor, and the size of the maximum distance l' between the wheels 123 in a direction horizontal to the floor. That is, the size of the loci T2 and T2' depends on the size of the distance l1, and the size of the distance l1 depends on the size of the fork member 225. When caster 221A is viewed in a plan view facing the front-rear or left-right direction, at least a part of wheel 123 and operating unit 128 do not overlap with cart main body 110. Therefore, distance 11 is set to a size such that trajectories T2 and T2' do not overlap with cart main body 110.

[0041] In this way, in the transport cart 200 of this embodiment, at least a part of the wheels 123 and the operating unit 128 are located outside the cart main body 110. Therefore, when an obstacle comes into contact with the operating unit 128, it comes into contact with not only the operating unit 128 but also the wheels 123, thereby dispersing the force acting on the operating unit 128 and preventing it from being subjected to a force that could damage it.

[0042] (Third embodiment) Fig. 13 is a perspective view of the transport cart 300. Fig. 14 is a bottom view of the transport cart 300. Fig. 15 is a plan view of the transport cart 300. Fig. 16 is a rear view of the transport cart 300. Fig. 17 is a side view of the transport cart 300. Note that the same components as those in the first and second embodiments are designated by the same reference numerals, and descriptions thereof will be omitted as appropriate.

[0043] The corner member 312 is made of, for example, an aluminum alloy formed by extrusion molding. The corner member 312 has an insertion hole 313 that opens to the upper side and a stopper portion 314 that closes the lower side.

[0044] Fig. 18 is an enlarged view of the casters of the transport cart 300. In Fig. 18, the corner members 312 are indicated by two-dot chain lines. Corner member 312 is a member that is approximately L-shaped in a plan view and approximately rectangular in a side, front, and rear view. Hand push member 130 can be inserted into insertion hole 313 of corner member 312. The lower end of hand push member 130 inserted into insertion hole 313 is supported by stopper portion 314. Here, corner member 312 is rectangular in side and rear views, with the height dimension of the portion where insertion hole 313 is located being the same as the height dimension of the portion where it is joined to the frame. Push member 130 is supported at least at the lower end of the frame portion of cart body 110. In other words, stopper portion 314 is installed at the same height as the lower end of the frame portion of cart body 110, and supports push member 130. Furthermore, at least operating portion 128 of caster 121A is located at a position lower than corner member 312.

[0045] Furthermore, the stopper portion 314 of the corner member 312 is not limited to supporting the push member 130 at the lower end of the frame portion, and may be located at any position in the insertion hole 313 as long as it supports the push member 130 at a position higher than the lower end of the frame portion. For example, the stopper portion 314 may be located midway through the insertion hole 313 to support the push member 130. In this case, at least the operating portion 128 of the caster 121A is located at a position lower than the corner member 312.

[0046] Furthermore, the casters 121A and 121B of the transport cart 300 can rotate around a rotation axis O1. 14, the locus T3 of the component (brake pedal 127) of caster 121A that is the farthest from pivot axis O1 when caster 121A pivots around pivot axis O1 is shown by a dashed dotted line. Also, the locus T1' of the component (wheel 123) of caster 121B that is the farthest from pivot axis O1 when caster 121B pivots around pivot axis O1 is shown by a dashed dotted line. The swivel axis O1 of the casters 121A, 121B is set so that when facing the front-rear or left-right direction, a portion of the casters 121A, 121B does not overlap with the cart main body 110 in a plan view. In other words, the mounting positions of the casters 121A, 121B are also determined based on this, but other positions are also possible. Furthermore, although the locus T3 overlaps with the insertion hole 313 of the corner member 312 or the handrail member 130 inserted into the insertion hole 313, the corner member 312 has the insertion hole 313 that is supported at the lower end of the frame portion or at a position higher than the lower end, so that the operating unit 128 does not come into contact with the corner member 312.

[0047] As described above, the transport cart 300 of this embodiment does not have any components other than the running part 120 below the lower end position of the cart body 110, and even when the casters 121A, 121B rotate, they do not come into contact with other components of the transport cart 300. Therefore, it is possible to reduce contact with other components that could cause damage to the brake pedal 127.

[0048] The present invention has been described above using various embodiments, but the present invention is not limited to the above-described embodiments, and modifications and variations are possible within the scope of the present invention, and the embodiments and variations may be combined as appropriate. For example, the transport cart 200 may include corner members 312 .

[0049] In the above-described embodiment, the corner members 112 and 312 are used, but the present invention is not limited to this. Fig. 19(a) is a perspective view of a modified corner member 412, and Fig. 19(b) is a plan view of the modified corner member 412. In Fig. 19(a), a portion of the side wall of the corner member 412 is cut away as shown by the dashed dotted line so that the inside of the insertion hole 413 can be seen. The corner member 412 has a cylindrical portion 414 , connecting portions 415 a and 415 b , and a stopper portion 416 .

[0050] An insertion hole 413 extending in the vertical direction is formed inside the cylindrical portion 414. The height of the lower end of the cylindrical portion 414 is at approximately the same position as the height of the lower end of the carriage main body 110. On the other hand, the height of the upper end of the cylindrical portion 414 is at a position higher than the height of the upper end of the carriage main body 110. The connecting portions 415a, 415b connect two adjacent frame portions among the front frame portion 111a, the rear frame portion 111b, the right frame portion 111c, and the left frame portion 111d using bolts, rivets, welding, or the like. The connecting portions 415a, 415b extend perpendicularly from the tubular portion 414 and are each composed of a pair of parallel side walls. The front frame portion 111a, the rear frame portion 111b, the right frame portion 111c, and the left frame portion 111d are connected while being sandwiched between the pair of side walls of the connecting portions 415a, 415b. The height of the lower ends of the connecting portions 415a, 415b is approximately the same as the height of the lower end of the bogie main body 110. On the other hand, the height of the upper ends of the connecting portions 415a, 415b gradually decreases from a point substantially equal to the height of the upper end of the cylindrical portion 414 to a point substantially equal to the height of the upper end of the carriage main body portion 110.

[0051] The stopper portion 416 supports the push member 140 inserted into the insertion hole 413. The stopper portion 416 has a shaft member 417 and a fixing member 418. The shaft member 417 is, for example, a bolt, and the fixing member 418 is, for example, a nut. Opposing side walls of the cylindrical portion 414 are formed with insertion holes for inserting the shaft member 417, and the shaft member 417 is inserted into the insertion holes in a substantially horizontal direction, thereby traversing the insertion hole 413. The fixing member 418 fixes the shaft member 417 on the outside of the cylindrical portion 414 so that the shaft member 417 does not come off from the cylindrical portion 414. Specifically, the fixing member 418 is screwed into a threaded portion of the shaft member 417, thereby fixing the shaft member 417 to the cylindrical portion 414.

[0052] The push member 140 has a main body member 141 that can be inserted into the insertion hole 413. By inserting the push member 140 into the insertion hole 123, the lower end of the push member 140 is supported by the stopper portion 416. The stopper portion 416 supports the push member 140 at a position higher than the lower ends of the front frame portion 111a, the rear frame portion 111b, the right frame portion 111c, and the left frame portion 111d. Even in this case, the height of the upper end of the corner member 412 is higher than the height of the upper ends of the dolly main body 110 or the front frame portion 111a, the rear frame portion 111b, the right frame portion 111c, and the left frame portion 111d, thereby preventing the depth of the insertion hole 413 from becoming shallow. Note that, although the modified example has been described in which the shaft member 417 is a bolt, the shaft member 417 may be a rivet, and the fixing member 418 may be formed by crimping the tip of the rivet. In addition, in a modified example, the hand push member 140 does not have the reinforcing member 134, but may have the reinforcing member 134. [Explanation of symbols]

[0053] 100, 200, 300: Transport cart 110: Cart body 121, 221: Caster 112, 312, 412: Corner member 114, 314, 416: Stopper portion 125, 225: Fork member 126: Pedal holding member 127: Brake pedal 111a, 111b, 111c: Frame portion T1, T1', T2, T2': Trajectory 116: Space 117: Placement portion 124, 224: Support portion 123: Wheel 122A, 122B, 222A, 222B: Mounting member 130, 140: Hand push member O1, O2: Swivel shaft 129, 229: Swivel portion 113, 313, 413: Insertion hole 128: Operation portion 120, 220: Running part 133: Protective member 115: Reinforcing frame part 134: Reinforcing member 131: Main body member l, l1, l2, l3: Distance

Claims

1. A bogie main body; A transport cart comprising: casters arranged at at least four corners of the cart body; The caster includes a support portion, a wheel rotatably supported by the support portion, and a brake pedal for fixing the rotation of the wheel, The brake pedal has an operating portion that is depressed by a foot, The operating unit is located rearward of the wheels, The transporting cart is characterized in that, when viewed in a plan view with the wheels facing forward and backward, the operating unit overlaps with the cart main body.

2. The caster is It can rotate around a vertical axis, 2. The transporting cart according to claim 1, wherein the operating portion overlaps with the cart body portion in any of the rotation positions in plan view.

3. A bogie main body; A transport cart comprising: casters arranged at at least four corners of the cart body; The caster includes a support portion, a wheel rotatably supported by the support portion, and a brake pedal for fixing the rotation of the wheel, The brake pedal has an operating portion that is depressed by a foot, The operating unit is located rearward of the wheels, A transport cart characterized in that, when viewed in a plan view with the wheels facing forward and backward, at least a portion of the wheels and the operating unit are located in a position that does not overlap with the cart main body.

4. The caster is It can rotate around a vertical axis, The transport cart according to claim 3, characterized in that when viewed from the bottom with the wheels facing forward / backward or left / right, at least a portion of the wheels and the operating unit do not overlap with the cart main body.

5. A bogie main body; A transport cart comprising: casters arranged at at least four corners of the cart body; The bogie body portion has a frame portion and corner members that join the frame portions to each other at four corners of the bogie body portion, The corner member has an insertion hole through which a push member inserted from above is supported at least at the lower end of the frame portion or at a position above the lower end, The caster includes a support portion, a wheel rotatably supported by the support portion, a brake pedal for fixing the rotation of the wheel; The brake pedal has an operating portion that is depressed by a foot, The transport cart is characterized in that the operating unit is located rearward of the wheels.

Citation Information

Patent Citations

  • Coating liquid and manufacturing method thereof, and method for manufacturing coating material

    JP2019186445A