Floor subsidence correction work×アップコン - メーカー・企業と製品の一覧

Floor subsidence correction workの製品一覧

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[Construction Example] Bag Manufacturing Factory in Miyagi Prefecture

Introducing a case of a bag manufacturing factory that sank due to ground subsidence and earthquake impacts!

We would like to introduce a case study of floor sinking correction work and subfloor void filling work carried out at a bag manufacturing factory located in Miyagi Prefecture. The bag-making machines, which were neatly installed, were tilted due to floor sinking, causing disruptions in production. As a temporary measure, adjustable legs were placed under the machines to level them, allowing work to continue. Consequently, the company requested a correction that could be done quickly without removing the machines, and we proceeded with the work. In addition to the floor sinking, voids were also observed under the floor, so filling work was also carried out. 【Case Study】 ■ Construction Area: Approximately 730m2 ■ Maximum Sinking Amount: Approximately 110mm ■ Construction Period: 3 days *For more details, please refer to the PDF document or feel free to contact us.

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[Construction Case] T Printing Company Factory in Miyagi Prefecture

We would like to introduce several case studies of factories in the industrial zone of Miyagi Prefecture that have been modified using our construction method!

We would like to introduce a case of floor vibration suppression work carried out at the T Printing Company factory located in Miyagi Prefecture. In a factory where a machine weighing approximately 26 tons is placed, the floor began to vibrate after the earthquake. To assess the situation before installing the machine, we conducted core drilling at several locations. As a result, we confirmed that there was a gap of up to approximately 180mm beneath the concrete. We performed gap filling work, which allowed us to restore the original performance of the concrete floor and suppress the floor vibrations. Additionally, we also carried out floor subsidence correction work at the T Industry factory located in Miyagi Prefecture. 【Case Study】 <Floor Vibration Suppression Work at T Printing Company Factory in Miyagi Prefecture> ■ Construction: (Phase 1) July 2011, (Phase 2) October 2011 ■ Maximum Gap Size: Approximately 180mm ■ Total Construction Area: Approximately 160m2 ■ Actual Working Days: 1.5 days *For more details, please refer to the PDF document or feel free to contact us.

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[Construction Case] Correction Work for Floor Subsidence in Store - Continuous Night Work Without Stopping Business

Maximum subsidence of 144mm, construction area of approximately 2,300m2! Introduction of a case where corrections were made over 11 consecutive nights of construction.

Due to the impact of the Great East Japan Earthquake, the floor inside the store has significantly sunk. As a result of the floor sinking, gaps were observed between the floor and walls, as well as between the walls and ceiling. Therefore, our company carried out repair work. The 'Upcon Method', which can be implemented at night during the business closure, was adopted for the repairs. Additionally, voids were observed under the floor, so filling work was also conducted. 【Construction Overview】 ■ Construction Area: Approximately 2,300 m2 ■ Maximum Settlement: 144 mm ■ Construction in 2012, completed in 11 nights of continuous work *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods
  • Special Construction Method

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[Construction Case] Vibration Suppression in Precision Parts Manufacturing Factory - Void Filling Work

"The earthen floor is sagging, and the machine is vibrating." "The vibration of the machine affects product accuracy." Quickly resolved with the Upcon method.

This time, we would like to introduce a case study of a precision parts manufacturing factory in Saitama Prefecture. Due to ground subsidence, cracks and deflections occurred in the floor slab, causing vibrations in the machinery. To prevent the impact of these vibrations on product accuracy, we carried out subsidence correction work to alleviate the deflection and filling work for the voids under the floor slab. The Upcon method was adopted because it allows for construction without moving the machinery and without stopping operations. 【Site Information】 Saitama Prefecture / Precision Parts Manufacturing Factory Construction Area: 287 square meters Maximum Subsidence: 44mm Maximum Void Volume: 50mm Construction Period: 3 days You can view detailed construction information in the PDF download below.

  • Foundation construction

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[Construction Example] Warehouse and Factory: Floor Slab Settlement Correction and Void Filling Work

Due to ground subsidence, there is sinking and sagging in the concrete floor! The items remain as they are, and the concrete floor will be repaired in a short time.

We would like to introduce a case of "floor sinking correction and void filling work" carried out at a warehouse and factory located in Hokkaido. Due to the effects of ground subsidence, there were signs of sinking and sagging in the floor, and we received a request for correction from the company. Before the work, the storage racks for goods, which had tilted due to floor sinking, were adjusted in height using spacers, but after the work, they became flat. 【Case Overview】 ■ Construction Area: 334m2 ■ Maximum Subsidence: 105mm ■ Construction Period: 3 days ■ Area: Sapporo City, Hokkaido *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods

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[Construction Example] Warehouse and Factory in Sapporo City, Hokkaido

We would like to introduce a case where we made corrections in a short time without stopping the customer's operations!

This is a case study of floor sinking correction work and void filling work conducted at a warehouse and factory located in Sapporo, Hokkaido. Due to floor sinking, the racks used for storing goods had become tilted. As a temporary measure, spacers were used under the racks to adjust their height and level them. The sinking correction work was carried out in a limited space, and within a few hours, the floor was made flat. Additionally, sinking correction work was performed in the office without interrupting the customer's operations. [Case Study] - Total construction area: Approximately 334 m² - Maximum sinking amount: 105 mm - Construction period: 3 days *For more details, please refer to the PDF document or feel free to contact us.

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[Construction Case] Shopping Center (Iwate Prefecture): Subfloor Settlement Correction Work

Maximum subsidence 71mm, maximum gap 190mm! Conducting polyurethane resin injection work while constantly checking the level!

A shopping center where widespread floor subsidence was observed due to ground subsidence. As a result of the floor subsidence, gaps appeared between the floor and walls, causing various issues throughout the store. Therefore, our company implemented repairs. The "Upcon Method," which can be executed at night during the business closure, was adopted for the repairs. Additionally, since voids were also observed under the floor, filling work was carried out. 【Construction Overview】 ■ Construction Area: Approximately 540m2 ■ Maximum Subsidence: 71mm ■ Maximum Void: 190mm ■ Construction completed in 2011, with repairs conducted over a continuous 7-night period. *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods

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[Construction Case] Factory: Floor Slab Settlement Correction Work

Materials and cargo are not stacking straight! Here are examples of how we corrected sinking and resolved issues.

Here is a case study of "floor sinking correction work" carried out at a factory in Iwate Prefecture. At this factory, the floor had sunk due to ground subsidence, causing issues such as materials and cargo not stacking straight and forklifts being unable to access certain areas. The maximum subsidence was approximately 130mm, and the area of the work was about 2000m2, but the correction was completed in 16 days. 【Case Overview】 ■ Work Area: Approximately 2000m2 ■ Maximum Subsidence: Approximately 130mm ■ Maximum Gap: Approximately 80mm ■ Area: Iwate Prefecture ■ Construction Period: 16 days *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods

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[Construction Case] Office/Parts Warehouse: Settlement Correction Work

No stoppage of operations, correction of subsidence! We present a case where the floor level was corrected and gaps in the walls were improved.

We would like to introduce a case of "settlement repair work" carried out at the office and parts warehouse of an automobile manufacturer located in Hokkaido. Due to the settlement, the building was tilting, causing issues with the opening and closing of doors, and gaps had formed in the ceiling. Therefore, the company adopted the Upcon method, which allows for construction without stopping operations and can be completed in a short time. After the work was completed, the floor levels throughout the office and parts warehouse were corrected, and the gaps in the walls that had existed before the construction were also improved. 【Case Overview】 ■ Construction area: 345m2 ■ Maximum settlement amount: 63mm ■ Maximum gap amount: 70mm ■ Area: Office of an automobile manufacturer located in Hokkaido ■ Construction period: 3 days *For more details, please refer to the PDF materials or feel free to contact us.

  • Renovation and repair methods

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[Construction Case] Parts Manufacturer Factory: Floor Slab Settlement Correction Work

A case where the earthen floor, which had subsided and developed gaps due to the earthquake, was repaired in a short construction period without breaking the existing floor!

We would like to introduce a case where "floor sinking correction work" and "void filling work under the floor" were carried out at a parts manufacturer factory in Fukushima Prefecture. There were various areas within the factory experiencing sinking and deflection, resulting in a wavy floor and the occurrence of voids in addition to the sinking. After the construction, the factory floor was corrected to a nearly level state, and to suppress vibrations caused by forklift passage, we focused on injecting and filling the corridor areas to mitigate the vibrations. [Case Overview] ■ Construction Area: Approximately 1,470 m² ■ Maximum Sinking Amount: 40 mm ■ Maximum Void: 60 mm ■ Area: Parts manufacturer located in Fukushima Prefecture ■ Construction Period: 11 days *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods

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[Construction Case] Large Pachinko Parlor: Earthquake Recovery Work / Slab Floor Subsidence Correction Work

Settlement due to compaction: Significant sinking of the floor inside the store due to the impact of the Great East Japan Earthquake! We will introduce our response case.

We would like to introduce a case of "earthquake recovery work" and "floor sinking correction work" carried out at a large pachinko parlor located in Fukushima Prefecture. In this case, the floor inside the store had significantly sunk due to consolidation settlement and the impact of the Great East Japan Earthquake. The tilt of the floor caused discomfort while walking inside the store. An up-con method that could be corrected during the night while the store was closed was adopted, and our company conducted the sinking correction work. 【Case Overview】 ■ Construction Area: Approximately 700m2 ■ Maximum Settlement Amount: 161mm ■ Area: Fukushima Prefecture ■ Construction Period: Continuous 4 nights *For more details, please refer to the PDF materials or feel free to contact us.

  • Renovation and repair methods
  • Ground foundation construction method
  • Civil Engineering Method

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[Construction Example] Apartment: Correction of Sunken Floor Slab / Underfloor Void Filling Work

Resolve issues like 'gaps between the wall and ceiling' in just one day with the Upcon method!

We would like to introduce a case of "floor sinking correction work" and "filling work for voids and cavities under the floor" conducted in a condominium located in Niigata Prefecture. In the particular RC apartment building (first floor) we are introducing this time, due to the sinking of the floor, there were issues not only with "the tilt of the floor" but also with "gaps occurring between the walls and ceiling" and "doors not closing." After completing the floor sinking correction work and the filling work for voids (cavities) under the floor, the gaps between the walls and ceiling were eliminated, and the misaligned tile joints were leveled. Additionally, the doors that had been unable to close due to the distortion of the frames from the sinking were now able to close properly. 【Case Overview】 ■ Construction Area: 69m2 ■ Maximum Sinking Amount: 36mm ■ Maximum Void Amount: 190mm ■ Area: Niigata Prefecture ■ Construction Period: 1 day *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods
  • Ground foundation construction method
  • Civil Engineering Method

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[Construction Case] Junior High School (Gymnasium Floor): Settlement Correction and Void Filling Work

Due to the impact of the earthquake, the gymnasium floor has significantly sunk in a bowl shape! A case resolved using the Upcon method.

We would like to introduce a case of "settlement correction and void filling work" carried out on the gymnasium floor of a junior high school in Fukushima Prefecture. Due to the impact of an earthquake, the floor had significantly sunk in a bowl shape from the outer edges towards the center, causing issues with the use of the gymnasium. The area that had sunk by a maximum of 108mm was corrected to within the planned value of -15mm, and it was confirmed using a CCD camera that the polyurethane resin was filled without any gaps, completing the work. 【Case Overview】 ■ Construction Area: 1,036m2 ■ Construction Period: 8 days ■ Maximum Settlement: 108mm ■ Area: Fukushima Prefecture *For more details about the case, please refer to the related links. For further information, please check the PDF materials or feel free to contact us.

  • Renovation and repair methods

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[Construction Case] Elementary School: Correction Work for Sunken Earthen Floor

Utilizing spring break for quick subsidence correction! The cycle from construction to restoration is short.

Here is an example of "subsidance correction" carried out at an elementary school in Miyagi Prefecture. Due to floor subsidence, gaps appeared between the classroom walls and ceiling, causing the classroom door to tilt and hindering the opening and closing of the lock. The overall floor level of the classroom and hallway was corrected from a maximum subsidence of 69mm to within -18mm, and the gaps that had formed between the walls and ceiling before the work were also improved. 【Case Overview】 ■ Construction Area: 331m2 ■ Maximum Subsidence: 69mm ■ Area: Tagajo City, Miyagi Prefecture / Elementary School ■ Construction Period: 4 days *For more detailed information about the case, please refer to the related link. For more details, please check the PDF materials or feel free to contact us.

  • Renovation and repair methods

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[Construction Case] Metal Processing Factory: Floor Slab Settlement Correction Work and Deflection Correction Work

A case where the floor of the aisle in the factory sagged and gaps appeared! Introducing an example of how it was fixed in one day without stopping operations.

We would like to introduce a case of "floor sinking correction work and deflection correction work" conducted at a metal processing factory in Fukuoka Prefecture. Due to ground subsidence over the years, the floor of the corridor inside the factory sagged, creating gaps between the walls and the floor. To address the floor sagging and eliminate the gaps between the walls and the floor, subsidence correction work was carried out. After the work was completed, areas that had sunk by up to 72mm, including the maximum subsidence point, were corrected to within management values, and the gaps that had formed between the walls and the floor due to subsidence were also resolved. [Case Overview] ■ Construction Area: 114m2 ■ Construction Period: 1 day ■ Maximum Subsidence: 72mm ■ Area: Fukuoka Prefecture *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods

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